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Galaxy 2 Series Installation and Programming Manual Honeywell Security

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Page 1: Galaxy 2 Series - SDS Security. London. Security Systems ... · Galaxy 2 Series Users ... • RF Radio Receiver: ... The keypads will configure and show the typical default banner

Galaxy 2 SeriesInstallation and Programming Manual

Honeywell Security

Page 2: Galaxy 2 Series - SDS Security. London. Security Systems ... · Galaxy 2 Series Users ... • RF Radio Receiver: ... The keypads will configure and show the typical default banner
Page 3: Galaxy 2 Series - SDS Security. London. Security Systems ... · Galaxy 2 Series Users ... • RF Radio Receiver: ... The keypads will configure and show the typical default banner

Galaxy 2 Series Installation/Programming Manual

i

Table of Contents

Contents

SECTION 1: INTRODUCTION .................................................................... 1Optional Peripherals ............................................................................................. 2

Features .................................................................................................................. 3RF ........................................................................................................................................... 3Groups ................................................................................................................................... 3Dialler ..................................................................................................................................... 3SMS Text Messaging............................................................................................................ 3ProxKeypads ........................................................................................................................ 3Access Door Control ........................................................................................................... 3Remote Servicing ................................................................................................................. 3

SECTION 2: QUICK GUIDE ........................................................................ 5How to Boot up ...................................................................................................... 5

Default Codes......................................................................................................... 5

Menu Access Operation/Navigation .................................................................... 5

How to get in and out of Engineer Mode ............................................................ 5

How to Set/Unset.................................................................................................... 5

How to Restore an Alarm ...................................................................................... 6

SECTION 3: SYSTEM ARCHITECTURE .................................................... 7

SECTION 4: SYSTEM WIRING ................................................................... 8General Information .............................................................................................. 8

Siting ...................................................................................................................................... 8Ventilation.............................................................................................................................. 8Cabling .................................................................................................................................. 8Mains Cable Type ................................................................................................................. 8Zone and Data Cable Type .................................................................................................. 9Mains Supply Connection................................................................................................... 9

Equipment Electrical Rating ............................................................................... 10Batteries .............................................................................................................................. 10Fuses ................................................................................................................................... 10

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Table of Contents

Connecting the Galaxy 2 Series to the PSTN ................................................... 11Private Branch Exchange (PBX) Approval ...................................................................... 11REN and SEN Numbers...................................................................................................... 12

SECTION 5: HARDWARE ......................................................................... 13PCB Layout (2–44+) ............................................................................................. 13

PCB Layout (2–20) ............................................................................................... 14Zones ................................................................................................................................... 15

Zone Links ................................................................................................................................................. 15Wiring Zones ............................................................................................................................................. 16Wiring Keyswitches ................................................................................................................................... 16Wiring Push-Set Buttons ............................................................................................................................ 16

Zone Addresses ................................................................................................................. 17Zone Numbering System .......................................................................................................................... 17

Outputs ................................................................................................................................ 18Trigger Header .................................................................................................................... 18

Trig 1-8 ....................................................................................................................................................... 18Inputs ......................................................................................................................................................... 19Supply ....................................................................................................................................................... 19

Data Buses .......................................................................................................................... 19RS485 Wiring Configurations ..................................................................................................................... 19RS485 Wiring Recommendations ............................................................................................................. 20ECP Bus (2–44+ Only) .............................................................................................................................. 21

Built-in Dialler/Modem........................................................................................................ 21LED’S.................................................................................................................................... 21Audio Header (2–44+ Only) ............................................................................................... 21GSM Interface (2–44+ Only)............................................................................................... 21

Panel Mounting (Plastic Box) ............................................................................. 22Installation Kit ..................................................................................................................... 22Removing the Enclosure Lid ............................................................................................ 22Installing the Enclosure Lid .............................................................................................. 22Removing and Replacing the Galaxy 2 Series PCB ...................................................... 22

Remove the PCB ...................................................................................................................................... 23Replace the PCB ....................................................................................................................................... 23

Mounting the Plastic Enclosure Base ............................................................................. 23Fitting the Tamper Spring ................................................................................................. 23

Panel Mounting (Metal Box) ............................................................................... 24Installation Kit ..................................................................................................................... 24Removing and Installing the Enclosure Lid ................................................................... 24Removing and Replacing the Galaxy 2 Series PCB ...................................................... 25Mounting the Metal Enclosure Base................................................................................ 25

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Table of Contents

Peripherals - Installation, Wiring & Addressing............................................... 26Configuring ......................................................................................................................... 26General ................................................................................................................................ 26Mk7 LCD Keypad/Keyprox ................................................................................................ 27

Keypad/Keyprox Installation ..................................................................................................................... 27Volume Control .......................................................................................................................................... 28Mk7 Keypad/Keyprox Addressing ........................................................................................................... 28Adding a Mk7 Keypad/Keyprox to the System ........................................................................................ 28EN50131 Compliance ................................................................................................................................ 28

Remote Input Output (RIO) ................................................................................................ 29Addressing the RIO ................................................................................................................................... 29Connecting the RIO ................................................................................................................................... 29Configuring the RIO ................................................................................................................................... 30Zones ......................................................................................................................................................... 30Outputs ...................................................................................................................................................... 30

Power Supply Unit .............................................................................................................. 31Configuration .............................................................................................................................................. 31Installation Instructions ............................................................................................................................... 32Battery ........................................................................................................................................................ 33Battery Test ................................................................................................................................................ 33Specifications ............................................................................................................................................ 33EN50131 Compliance ................................................................................................................................ 33

ECP Zone Expander (2–44+ Only) .................................................................................... 34Zone Expander Outputs ............................................................................................................................ 34Addressing the ECP Zone Expander ....................................................................................................... 35

5882H RF Receiver (2–44+ Only) ...................................................................................... 35Installation .................................................................................................................................................. 35Wiring ......................................................................................................................................................... 35Addressing ................................................................................................................................................ 35

Ethernet Module ................................................................................................................. 36Configuring the Ethernet Module ............................................................................................................... 36Ethernet Communication ........................................................................................................................... 36

G2 RF Portal ........................................................................................................................ 37Mounting the Plastic Base ......................................................................................................................... 37Attaching the PCB...................................................................................................................................... 38Addressing the RF Portal .......................................................................................................................... 38Connecting the RF Portal .......................................................................................................................... 39Configuring the RF Portal .......................................................................................................................... 39Attaching the Plastic Box Lid ..................................................................................................................... 39Specifications ............................................................................................................................................ 39EN50131 Compliance ................................................................................................................................ 39

6160 Keypad/Keyprox/RFH (2–44+ Only) ........................................................................ 40Installation and Wiring ................................................................................................................................ 40Addressing the 6160 Keypad ................................................................................................................... 41Addressing the 6160 Keyprox .................................................................................................................. 41Addressing the 6160 RFH ......................................................................................................................... 41

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Table of Contents

Door Control Module - MAX3 ............................................................................................ 42Standalone ................................................................................................................................................ 42On-line ....................................................................................................................................................... 42Installing the MAX3 .................................................................................................................................... 42Wiring the MAX3 ........................................................................................................................................ 43Configuring a MAX3 Reader into the System............................................................................................ 44Configuring as On-Line MAX3 ................................................................................................................... 44Configuring as a Stand-Alone MAX3 ......................................................................................................... 45Removing a MAX3 Reader from the System ............................................................................................ 45Operating Instructions ................................................................................................................................ 46

2-Way Audio (2–44+ Only) ................................................................................................. 47Operation of 2-Way Audio ......................................................................................................................... 48

GSM Module (2–44+ Only) ................................................................................................. 49Characteristics ........................................................................................................................................... 50Compliance ............................................................................................................................................... 50

SECTION 6: GENERAL OPERATION ...................................................... 51Galaxy 2 Series Users ......................................................................................... 51

Users .................................................................................................................................... 51Engineers ............................................................................................................................ 51

General Menu Operation..................................................................................... 51Full Setting .......................................................................................................................... 52Part Setting .......................................................................................................................... 52Night Setting ....................................................................................................................... 53Cancelling the Setting ....................................................................................................... 53Unsetting the System ........................................................................................................ 53Cancelling Alarms and Alerts ........................................................................................... 53Alert Indication ................................................................................................................... 53Restoring alarms ................................................................................................................ 54Resetting Using Alarm Cause Code ................................................................................ 54Overriding of Faults and Tampers ................................................................................... 54Setting and Unsetting with Keyfobs ................................................................................ 55Setting and Unsetting with Keytags or Cards ................................................................ 58Setting With MAXs .............................................................................................................. 58Text Programming.............................................................................................................. 59Additional Functions ......................................................................................................... 60

Code Tampers ........................................................................................................................................... 60Hot Keys .................................................................................................................................................... 60

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Table of Contents

SECTION 7: MENU OPTIONS .................................................................. 61Menu 10 - Setting Options................................................................................................. 61

Option 11 - Omit Zones .............................................................................................................................. 61Option 12 - Timed Set ............................................................................................................................... 61Option 13 - Part Set ................................................................................................................................... 61Option 14 - Night Set ................................................................................................................................. 61Option 15 - Chime ...................................................................................................................................... 61

Menu 20 - Display Options ................................................................................................ 62Option 21 - Zone Status ............................................................................................................................. 62Option 22 - View Log ................................................................................................................................. 62Option 23 - System Version ...................................................................................................................... 63Option 24 - Print ......................................................................................................................................... 63Option 26 - Trace ....................................................................................................................................... 63

Menu 30 - Test Options...................................................................................................... 64Option 31 - Walk Test ................................................................................................................................ 64Option 32 - Output Test .............................................................................................................................. 64

Menu 40 - Modify Options ................................................................................................. 65Option 41 - Time/Date ................................................................................................................................ 65Option 42 - Users ...................................................................................................................................... 65

Adding Keyfobs (ECP) .......................................................................................................................................... 68Adding Keyfobs (RS485) ...................................................................................................................................... 68Removing Keyfobs ............................................................................................................................................... 68Adding Keytags or Cards - Mk7 485 Keyprox only ............................................................................................... 69Adding Keytags or Cards - 6160 Keyprox only ..................................................................................................... 69Removing Keytags or Cards - Mk7 485 Keyprox/MAX3 only ............................................................................... 69Removing Keytags or Cards - ECP 6160 Tags only ............................................................................................ 69

Option 44 - Mobile Nos ............................................................................................................................. 70Option 47 - Remote Access ...................................................................................................................... 70Option 48 - Level 3 Access ....................................................................................................................... 71

Menu 50 - Engineer 1 Options .......................................................................................... 72Option 51 - Parameters ............................................................................................................................. 72Option 52 - Zones ...................................................................................................................................... 85Option 53 - Outputs .................................................................................................................................... 91Option 56 - Comms ................................................................................................................................... 95Option 57 - System Print ......................................................................................................................... 117Option 58 - Keypad Groups .................................................................................................................... 118

Menu 60 - Engineer 2 Options ........................................................................................ 119Option 61 - Diagnostics ........................................................................................................................... 119Option 62 - Full Test ................................................................................................................................. 120Option 63 - Options ................................................................................................................................. 121

SECTION 8: RF HINTS AND TIPS .......................................................... 125How to Install RF............................................................................................................... 125RF Zones ........................................................................................................................... 125RF Stop Set ....................................................................................................................... 125RF Diagnostics ................................................................................................................. 125

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SECTION 9: FINAL COMMISSIONING ................................................... 126Final system Test ............................................................................................................. 126User Information............................................................................................................... 126

SECTION 10: REMOTE SERVICING ...................................................... 127Telephone Line Set-Up .................................................................................................... 127Direct Wire Set-Up ............................................................................................................ 127Remote Programming ..................................................................................................... 127

SECTION 11: FLASH UPGRADE ........................................................... 128

SECTION 12: PRINTER CONNECTION ................................................. 129

SECTION 13: BELL-BOX CONNECTIONS ............................................ 130

SECTION 14: EVENT LOG LIST ............................................................ 131

SECTION 15: SPECIFICATIONS ............................................................ 134

SECTION 16: COMPLIANCE AND APPROVALS................................... 136EN50131 Compliance....................................................................................................... 136Public Switched Telephone Network (PSTN) Approval ............................................... 136

HONEYWELL SECURITY LIMITED WARRANTY ................................... 137

Appendix A: Point ID Comms Triggers ................................................ A-1

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Galaxy 2 Series Installation/Programming Manual

SECTION 1: INTRODUCTIONThe Galaxy 2 Series is a 12-zone intruder alarm control panel. There are 2 variants. The 2-44+ is the fullfunction version which is expandable to 44 zones. The 2-20 is an entry level version which is expandable to20 zones. This manual covers both versions. However, certain features are not available on the 2-20 variant.

The following table gives the general specification for both variants.

Table 1. General Specifications

The Galaxy 2 Series requires at least one external keypad for programming and general operation. There aretwo main types of keypad available.

Galaxy Mk7 LCD Keypad: This keypad has a 2 x 16 character display and operates on the RS485 databus. Optionally, a keyprox version is available. This is a standard Mk7 keypad with a proximity card readerbuilt in to the lower right-hand corner. The keyprox is for set/unset only.

6160 Full Text Keypad: This keypad has a 2 x 16 character display and operates on the ECP data bus.Optionally versions are available with built-in prox reader and wireless receiver.

Introduction

Specification Feature

Galaxy 2-20 Galaxy 2-44+

Zones 12 expandable to 20 12 expandable 44 Outputs 4+8 expandable to 16 4+8 expandable to 28 Databuses RS485 Only RS485 and ECP PSU 1A (0.6A @ Grade 2) 1.4A (1A @ Grade 2)

Alphanumeric LCD Keypads/ Alphanumeric LCD KeyProx

4

4

RIO (8 zones/4 outputs) 1 4 RF Receiver 2 2 User Codes (PIN and Card) 23 23 Groups 3+1 common group 3+1 common group Part Set 2 Part Sets 2 Part Sets Silent Night Set Yes Yes Zone Types 21 21 O/P Types 26 26 Event Log 384 384 Multi-Users 4 4 Printer Module Optional Optional PSTN Communicator/Modem On-Board On-Board GSM Comunicator/Modem - Plug on Option Ethernet Optional Optional MAX3 Optional Optional Serial Port 1 on-board 1 on-board 2-way Voice - Optional

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Galaxy 2 Series Installation/Programming ManualIntroduction (cont’d)

Optional Peripherals• Zone Expander: This gives eight extra hardwire zones and four programmable outputs. Alternatively

four extra hardwire zones and no outputs.

• Ethernet Module: This optional peripheral can be connected to the RS485 line of the control panel toprovide alarm signalling, remote servicing and integrated facilities over Ethernet Local Area Network(LAN) or a Wide Area Network (WAN).

• MAX3: The MAX3 is a proximity reader access control device for a single door, which can also beused for setting and unsetting of the alarm control panel.

• RF Radio Receiver: This allows the control panel to receive signals from wire-free detectors andradio keyfobs. One radio receiver will allow the panel to assign wire-free detectors to any or all of the44 detection zones. However, two receivers can be used to increase coverage.

• Proximity Card Reader: This allows users to set/unset simply by presenting a card or tag in front ofthe reader. The proximity card readers are built into the housing of the keypads.

• RIO/ PSU Control: Up to four RIO’s or PSU’s can be added to the RS485 Bus. Each RIO/ PSUControl expands the system by eight zones and four outputs.

• GSM Module: This module provides mobile telecommunications between the panel and the AlarmReceiving Center (ARC).

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Galaxy 2 Series Installation/Programming Manual

Features

RFThe system operates with the 5800 receivers on ECP and/or the RF Portal on RS485. A maximum of two RFreceivers can be fitted to the system (two on the ECP bus, two on the RS485 bus or one on each bus), tosupport up to 44 zones. The RF receivers are in addition to the prox keypads on RS485 but in place of ECPprox keypads.

GroupsGroup functionality allows the system to be split into three individual sub-systems that can be set and unsetindependently. Additionally there is a fourth common group which will set automatically when all the othergroups in the common set map have set. If the common set map is all N then the common group will never set.It is unset as soon as any one group has been unset by a user. Zones are assigned to a single group only. Usersare assigned to one or more groups.

DiallerThe system can have two active comms devices configured, chosen from:

• On-board PSTN/Modem• Ethernet Module• Plug-on GSM Module

These are used for Dial-up primary and secondary signalling, as well as remote servicing and two-way audio.

SMS Text MessagingThis is a secondary alarm notification to keyholders. Text messages are sent to GSM mobile phones, givinginformation on panel events.

ProxKeypadsThese are standard keypads with an added proximity card reader, combined into one housing. This allowsdual function setting/unsetting ability from the one station without the need for a separate card reader. Theyare primarily intended for use in situations where a PIN card is needed to set and unset the intruder alarmsystem.

Access Door ControlThis allows single door access by use of a MAX3 proximity reader in conjunction with a valid user card.

Remote ServicingThe Galaxy 2 series control panel can be remotely and/or locally serviced by a Personal computer (PC). Thisis accomplished when the Remote Servicing Software (Access Lite) is installed on the PC.

Introduction (cont’d)

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Galaxy 2 Series Installation/Programming Manual

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Galaxy 2 Series Installation/Programming Manual

SECTION 2: QUICK GUIDE

How to Boot upWire up the keypads, address them (see Peripherals - Installation, Wiring and Addressing), then apply powerto the system. The keypads will configure and show the typical default banner display.

Default CodesDefault User Code: 1234

Default Engineer code: 112233

Menu Access Operation/NavigationOnly valid codes can access the Galaxy 2 Series menu options.

Type the code then press ent to access the menu.

Data entry, on both ECP and RS485 keypads, is via the 0-9 function keys and the *, # on the keypad.

The A> and <B keys are curser or scroll keys and are used to scroll through options in menus.

The ent key is used to enter a PIN code and to accept screen information.

The esc key is used to cancel or exit from the current operation.

NOTE: Users cannot view or access options for which they are not authorised.

How to get in and out of Engineer ModeEntry to engineer mode is authorised by a user in menu option 48 = Level 3 Access. Following this theengineer will have five minutes in which to enter his code. When the engineer code is entered four thingshappen:

• All system tampers become isolated.• All fault signalling is suppressed, and indications are silent.• The engineer is given access to the full menu.• The banner message is changed to indicate engineer mode.

To bring the system back out of engineer access mode and reinstate all the tampers from the banner, theengineer enters his code but presses the esc key rather than the ent key.

How to Set/UnsetTo Full Set the system, the user types their code then presses the A key.

To Part Set the system, the user types their code, presses the B key then presses the [1] key.

To Night Set the system, the user types their code, presses the B key then presses the [2] key.

To Unset the system, the user types their code then presses ent.

GalaxyGalaxyGalaxyGalaxyGalaxy 44 V1.4 44 V1.4 44 V1.4 44 V1.4 44 V1.400:00 SAT 01 JAN00:00 SAT 01 JAN00:00 SAT 01 JAN00:00 SAT 01 JAN00:00 SAT 01 JAN

Quick Guide

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Galaxy 2 Series Installation/Programming Manual

How to Restore an AlarmAlarms, faults and tampers will be restored provided:

1. The cause has cleared.

2. An authorised user PIN code or anti-code has been entered.

3. The conditions have been viewed on the keypad display after steps 1 and 2 above.

If a user cannot restore all the conditions, a temporary banner is displayed to indicate that a manager orengineer is required to restore the system. This lasts for 30 seconds before the normal banner is displayed.

Quick Guide (cont’d)

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Galaxy 2 Series Installation/Programming Manual

SECTION 3: SYSTEM ARCHITECTURE

Figure 1. Galaxy 2 Series System Configuration

Architecture

12 on-board zones

Galaxy 2-44 PCB

TriggerHeader

12-way ribbon cableExternalCommunicator

ECP BUS (2 44+ only)

4 outputs

Phone line

Serial Port to PC

Maximum cable lengthfrom panel to last moduleon line is 100m

6160 keypad (4)(optionally withbuilt-inreceiver/keyprox)Note: maximum of2 receivers/keyproxes

ECP zone expander8 zone, 4 output (3)

5882H RF receiver (2)

Standard 4-core cablespurred or T wiredNote: A maximum of 4 keypads

(including keyprox) can be connected to the RS485 line.

GALAXY 44 V1.009:51 01/08/04

1 2 3 A

4 5 6 B

7 8 9 ent

* 0 # esc

Mk7 LCD Keypad/Keyprox (4)

RS485 BUS

8 zones

4 outputs

8 zones

4 outputs

Power Unit (4) P025orPower RIO (4) P026

RIO (4)C072

OR

RF Portal (2)

Twisted pair screened cableBelden 8723 equivalent.Daisy chain configuration only.Maximum cable lengthfrom panel to last moduleon line is 1km

Max (1) MX03

Ethernet Module (1)E080

MODULETOTAL

QTYADDRESSESAVAILABLE

ECP RS485 PLUG-ON

Keypads 4 0, 1, 2, 3 4 4

Keyprox 4 0, 1, 2, 3 4 4

MAX3 1 0, 1, 2, 3 - 1

Expanders* 4 on RS485or

3 on ECP

2, 3, 4, 5 3 4

RF Receivers 2 4, 5 2 2

PSU Control/RIO 4 2, 3, 4, 5 - 4

Ethernet 1 fixed moduleaddress of 17

- 1

GSM (2-44+ only) 1 - - - 12-way Voice (2-44+ only 1 - - - 1

* Only the first expander can be used on the 2-20

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Galaxy 2 Series Installation/Programming ManualSystem Wiring

SECTION 4: SYSTEM WIRING

General InformationIt is essential that this product is installed correctly, in particular with respect to a person’s safety and connec-tion to the mains electricity supply. This product is not suitable for installation, maintenance or connection bythe user. A competent, qualified engineer, with for example NACOSS approval, must carry out installation andmaintenance.

SitingThe control panel enclosure (plastic box or metal box), must be sited indoors in a secure area where it cannotbe readily interfered with. There must be adequate ventilation, ample light and easy access for servicing andmaintenance. It is not suitable for siting externally or in harsh environments where it could be subject to highhumidity, extremes of temperature, chemical atmospheres, high dust levels, or in a position where it may besubject to being dripped on, or splashed by, water or other fluids.

The enclosure base must be securely fixed to a vertical, smooth, solid surface that is a part of the fabric of thebuilding. The position chosen must allow the cabinet lid to be removed and allow unhindered access forinstallation and maintenance.

VentilationWhile the control panel has been designed so that no part attains an unsafe temperature it is important thatadequate ventilation is provided around the cabinet, therefore the cabinet must not be positioned close toheat-radiating equipment or other sources of heat.

CablingThe panel has high voltage barriers between the a.c. mains supply and the alarm wiring terminals. It is essentialthat these barriers be maintained in the way the cables enter the cabinet, are routed inside the cabinet, and arerouted externally.

Additional holes must not be cut in the enclosure, rear entry points are provided for cables. Alarm systemcables must be neatly trimmed and not allowed to loop inside the cabinet.

Cables external to the cabinet must be either firmly affixed to the fabric of the building using suitable clips orsaddles, or mechanically protected in conduit or trunking. It must not be possible to put strain on the wiringwithin the control cabinet by pulling on cabling external to the cabinet.

It must not be possible to push a finger or similar size object or instrument into any hole or cable entry point.

Mains Cable TypeThe conductors of the mains supply cable must have a minimum cross-sectional area of 0.75 mm and theinsulating material on each conductor must be a minimum of 0.4 mm thick Polyvinyl Chloride (pvc). Flexiblecables must conform to the requirements of BS6500 and IEC Publication 227. Non-flexible electrical installa-tion cables must conform to BS6004.

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Galaxy 2 Series Installation/Programming Manual

NOTE: Connections shown as dashed linesare factory made. The metal boxmust be earthed.

Figure 2. Mains Connection to the Galaxy 2 Series

The outer covering insulation must be clamped under the cable clamp. It is important that this cable enters thecontrol panel enclosure through the mains entry hole next to the mains terminal block, is not looped within thecontrol panel enclosure and does not run close to other system cables inside or external to the enclosure.

WARNING: The control panel enclosure must not be opened before isolating the mains supply.Illumination of the green power LED 2 indicates the presence of a.c. mains supply. Thecover of the Galaxy 2 Series enclosure must be replaced whenever any connection to theBT master socket is completed to prevent exposure to potentially lethal voltages from thePSTN.

System Wiring (cont’d)

Zone and Data Cable TypeZone cables and all cables between the panel, keypads and expansion modules must be as follows:

RS485 Bus: Twisted pair screen cable Belden 8723 equivalent. For systems with less than 100m cable runin total, standard 4-core alarm cable may be used in most normal environments.ECP Bus and Zone Cables: Standard 4-core alarm cable.Zones: Standard 4-core alarm cable.

Mains Supply ConnectionThe connection to the a.c. mains supply must be made by a competent, qualified person, for example NICEICapproved, in accordance with the current IEE and local supply regulations.

Warning: A means of isolation from the mains supply must be provided within two metres of thecontrol panel. Where live and neutral supplies can be identified, a fused spur with a 3Afuse, must be fitted on the live circuit. Where live and neutral circuits cannot be reliablyidentified, 3A fuses must be fitted to both circuits.

Where a flexible cable is connected to the control having cores coloured brown and blue it is important toconnect the wires to the mains terminal block as follows:

• Blue (Neutral) – connect to terminal N

• Green/Yellow (Earth) – connect to terminal E

• Brown (Live) – connect to terminal L

From a.c. mains input(entering next to terminal block)

Brown Wire

Blue Wire

Galaxy 2 Series PCB

Mains Transformer Primary Side

Mains Transformer Secondary Side

200 mAmains fuse

TB2

Batt+ Batt-

AC Power

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Galaxy 2 Series Installation/Programming Manual

Equipment Electrical RatingThe control equipment is designed to operate on a mains supply of 230 Volts a.c. (230 V +10% -15%) at afrequency of 50 Hz. It is not suitable for other types of supply. The maximum current consumption in normaluse is 200 mA.

BatteriesThe battery used with the control panel must be a 12 V sealed lead-acid rechargeable battery of up to 7 Ahr(plastic box) or 17 Ahr (metal box) capacity on the 2-44+ and 12 Ahr on the 2-20. The battery must bepositioned on the battery shelf. Wire in battery leads to panel terminals (red lead to Batt+, black lead toBatt-). The battery leads must be connected to the battery observing terminal polarity and not left hangingnear the mains terminal block.

FusesThe mains supply must be disconnected before opening the cabinet and changing the fuse. Replace the mainsfuse with the same type and rating. Refer to SECTION 15: SPECIFICATIONS.

System Wiring (cont’d)

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Galaxy 2 Series Installation/Programming Manual

Connecting the Galaxy 2 Series to the PSTNThe Telecommunications Network Voltage (TNV) port (terminals A and B on TB1) must be permanentlyconnected (hard-wired) to the PSTN via a BT master socket, refer to Figure 3.

Note: If the BT master socket is the newer type (NTE5/CTE5), then the connection can be carried out by theinstallation engineer. If the BT master socket is not an NTE5/CTE5, then the network operator must make theconnection.

Figure 3. Connecting the Galaxy 2 Series to the PSTN

NOTES: 1. Terminals 2 and 5 on the BT Master Socket must be hard-wired to the A and B terminals(TB1)on the Galaxy 2 Series PCB. The connection is polarity independent.

2. It is strongly recommended that the Galaxy 2 Series panel is the only device on the line.

3. If another device is to be connected to the line, connect the PHONE terminals on the PCBto terminals 2 and 5 on a second BT Master Socket and connect the additional devices tothe second socket.

Using cable suitable for connection to 2.8 mm diameter screw terminals, strip back approximately 20 mm ofthe outer sheath and then remove approximately 4 mm of the insulation from the wires to be connected to theGalaxy 2 Series.

Connect terminals 2 and 5 on the BT Master socket across the A and B terminals (TB1) on the Galaxy 2Series, see Figure 3.

Private Branch Exchange (PBX) ApprovalThe Galaxy 2 Series may be used with some analogue PBX exchanges. The correct operation of the Galaxy2 Series cannot be guaranteed under all possible conditions of connection to compatible PBXs.

System Wiring (cont’d)

IncomingPSTN Line

A B

Galaxy 2 Series PCB

PHONE

TB5

25

25

BT Master socket (NTE5/CTE5).BT Master socket (NTE5/CTE5).

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12

Galaxy 2 Series Installation/Programming Manual

REN and SEN NumbersIt is possible to simultaneously connect a number of items to one line of the PSTN. The limit is determined bysumming the Ringer Equivalence Number (REN) shown on each item of apparatus, ensuring that the sum ofRENs is not more than four.

The REN of the Galaxy 2 Series is one (1).

Assume that all British Telecom equipment has a REN of one unless otherwise marked.

More than one item of series apparatus may be connected to the Galaxy 2 Series ports marked phone. This islimited by summing the Series Equivalence Number (SEN) shown on each item of series connected apparatus,ensuring that the sum of the SENs is not more than one (1). The total series resistance, including cabling, mustnot exceed 50 Ohms.

• The SEN of the Galaxy 2 Series is 0.3.

• Nominal series resistance is 90 milli-ohms.

• Nominal insertion loss is 0.1 dB.

It is recommended that the PSTN should have the following facilities:

• Outgoing calls only (when used as dialler only).

• Direct exchange.

• Tone dialling.

System Wiring (cont’d)

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Galaxy 2 Series Installation/Programming Manual

SECTION 5: HARDWARE

PCB Layout (2–44+)

Figure 4. Galaxy 2–44+ PCB Layout

PCB Layout

AC

po

wer

Zo

ne

Term

inal

s

CO

MN

/OT

RIG

N/C

BELL

+12v

0vT

SA

B

Co

nn

ecti

on

sL

ou

dsp

eake

r

DI

DO

AU

X+

AU

X-

A B

AU

X+

AU

X+

LED2

BE

LL

FU

SE

AUX FUSE

F3

F2

F1

BATTERY FUSE

Pro

gra

mH

ead

er

Pro

cess

or

Alt

ern

ativ

eP

ho

ne

So

cket

B A BL

INE

INA

Ext

ensi

on

P

ho

ne

Ou

tpu

t

Ph

on

e L

ine

Inp

ut

Dat

a in

Dat

a o

ut

12V

Au

xO

utp

ut

RS

485

per

iph

eral

s

BAT

T

+B

ATT

-

Trig

ger

Hea

der

Au

dio

Co

nn

ecto

r

LK

1

RELAY

En

gin

eer

Hea

der

Bat

tery

Term

inal

s

Fo

r E

CP

per

iph

eral

s

see

No

te

No

te: I

f R

elay

is f

itte

d t

he

TR

IG t

erm

inal

is

use

d a

s N

/C fo

r R

elay

.If

Rel

ay is

no

t fi

tted

th

e C

OM

& N

/O t

erm

inal

sar

e n

ot

fitt

ed. T

he

TR

IG N

/C t

erm

inal

is

the

tran

sist

ori

sed

ou

tpu

t.

HE

AT

SIN

K

Tam

per

Spr

ing

and

switc

h S

W1

(pla

stic

box

onl

y)

No

te: S

wit

ch S

W1

and

th

e ta

mp

er s

pri

ng

are

for

the

pla

stic

box

on

ly.

Th

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etal

box

has

a 2

-way

term

inal

for

con

nec

tio

n t

o

the

lid t

amp

er m

icro

swit

ch.

RIO

0R

IO 1

12

0v3

40v

56

0v7

89

100v

0v11

120v

LE

D 1

Tele

com

s

2-w

ay h

ead

erR

S48

5 te

rmin

atio

n

TAM

PE

R

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14

Galaxy 2 Series Installation/Programming Manual

PCB Layout (2–20)

Figure 5. Galaxy 2–20 PCB Layout

PCB Layout (cont’d)

X1

B

A

LINE INB

A

COM N/O BELL+12v

0V T

TRIG(N/C)

B

A

+

+AUX

--

BATT +

BATT -

F1 (1 amp) BATT

F2 (0.5 amp) AUX

F3 (0.5 amp)

BELL

PROGRAMMING HEADER

PowerLED

AC PowerInput

BatteryTerminals

12 VoltAuxilliaryOutput

LoudspeakerNegative

TriggerOutput

SABConnections

Zone Terminals

ExtensionPhoneOutput

PhoneLineInput

AlternatePhoneSocket

TriggerHeader

RS 485lines

Note: If Relay is fitted the TRIG terminal is used as N/C for Relay.If Relay is not fitted the COM & N/O terminalsare not fitted. The TRIG N/C terminal is the transistorised output.

2-way connectorfor lid tampermicroswitch

1 20V RIO 0

3 40V

1 20V

3 40V

5 60V

7 80VRIO 1

LK1(RS485termination)

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Galaxy 2 Series Installation/Programming Manual

ZonesThe Galaxy 2–20 has 12 on-board zones expandable to 20 (RS485 bus).

The Galaxy 2–44+ has 12 on-board zones expandable to 44 (RS485 bus) or 36 (ECP bus).

The zones on the Galaxy 2 Series can function in one of three modes; Normal Closed, Double Balanced andU.S. End of line. Zone wiring for the three modes are illustrated in the following three Figures:

1K1K

Figure 6. Zone wiring for Normal Closed Zones

Figure 7. Zone wiring for Double Balanced Zones

Figure 8. Zone wiring for US EOL Zones

The mode of operation for the zones is programmed from menu option 51.46 = Parameters. Zone Resist-ance. The default zone resistors are 1k ohm. However this can be changed in option 51.46. It is stronglyrecommended that the maximum cable run on each zone is 100 m.

Zone LinksThe bell tamper circuit can be shorted using the Links provided in the installation kit. If the zones are pro-grammed as Double Balanced or U.S. End of Line, fit a 1k resistor across the zone and not the zone link. It isstrongly recommended that this be done if any of the circuits are not to be used.

Zones

1K1K

ALARM TAMP

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Galaxy 2 Series Installation/Programming Manual

Figure 9. Keyswitch/Push-Set Zone wiring

Wiring Zones

Wiring ZonesThe zones on Galaxy 2 Series panels are defaulted as double balanced. Each zone is 1 kΩ closed and 2 kΩopen. The transition from 1 to 2 kΩ generates an alarm condition. Refer to Table 2 for details of the zoneresistance and resulting conditions.

NOTE: The circuit debounce time (the period the zone must remain open to register a change in condition) is300 milliseconds by default.

Table 2. Zone Resistance

Multiple detectors can be wired into a single zone. The maximum number of detectors that can be connectedto a single zone is 10.

Wiring KeyswitchesThe transition from 1 kΩ to 2 kΩ initiates the setting procedure of an unset system, the transition from 2 kΩ to1 kΩ instantly unsets a set system. If the system is already set, then the transition from 1 kΩ to 2 kΩ has noeffect. If the system is unset, the transition from 2 kΩ to 1 kΩ has no effect.

The wiring of the keyswitch is shown in Figure 9.

Wiring Push-Set ButtonsZones programmed as Push-Set (terminator) buttons are closed going open (1 kΩ to 2 kΩ). The first activa-tion of the terminator button initialises its status to the system.

NOTE: For push-set zones to operate, parameter 51.08, Exit Terminate, must be set up.

The wiring of the terminator is shown in the following Figure .

Double Balanced ZoneResistance (ohms)

End of Line ZoneResistance (ohms)

Condition

0-700 0-500 Tamper Short Circuit (TAMP S/C)

700-1500 500-1500 Normal (CLOSED)

1500-11000 1500-infinity Alarm (Open) (OPEN)

11000-infinity Tamper Open Circuit (TAMP O/C)

Keyswitchzone

Push-setzone

1k to unset, 2k to set

1k 1%

1k

1k

1k

100m

Closed - Open

1%1%

1%

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Galaxy 2 Series Installation/Programming Manual

Zone AddressesEach zone on the Galaxy 2 Series has a 4-digit address. For example: 1004, 1058. The address is made up ofthree reference numbers as shown in the following figure:

Figure 10. Zone Addresses

The example above, 1004, is the detector connected to line 1, RIO 00, zone 4.

Zone Numbering SystemThe numbering system is as follows:

1. The first number is the Galaxy 2 Series Panel line that the RIO/Expander is connected to. This willalways be 1.

2. The next two numbers refer to the address of the RIO/Expander that the zone is on.

00 = On board RIO

01 = On board RIO

02 = RIO/Expander 1

03 = RIO/Expander 2

04 = RIO/Expander 3

05 = RIO 4

3. The last number is the actual zone on the RIO/Expander 1-8. Therefore the valid zone numbers are:

1001 - 1004

1011 - 1018

1021 - 1028

1031 - 1038

1041 - 1048

1051 - 1058

This gives a total of 44 zones.

Zone Addresses

Example: 1004

Represents PanelLine No.

RepresentsRIO Address

RepresentsZone No. 1-8 on RIO/Expander

GALAXY 2 SeriesPANEL

1

RIO ADDRESS 00 ZONE 4

1 00 4

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Galaxy 2 Series Installation/Programming Manual

OutputsThe Galaxy 2 Series has four on-board outputs all on RIO 0; Bells, Strobe, Speaker and Set. The format ofthe addressing of the outputs is similar to zones. The addresses of these outputs are as follows:

Table 3. Output Addresses

Output Addresses

Table 4. Trigger Output Addresses

*NOTE: Output 1002 - This output is configured as a 16 Ohm speaker driver (AC signal). The speakershould be connected between this output and +12V. The speaker Entry/Exit volume is controlledby parameter 51.10. It is possible to reprogram the output to operate as a normal switchednegative output by programming parameter 51.15 to 0=Switch DC. However, when it isreprogrammed to operate as Switch DC, a loudspeaker should never be connected directly tothis terminal otherwise damage may result. Always ensure that this parameter is set to 1=SPKDriver, before connecting a loudspeaker.

Trigger HeaderThe Trigger Header on the Galaxy 2 Series is a set of pins, which consists of programmable outputs for anexternal communication module. The connection is via an optional ribbon cable (Part No. A229).

Trig 1-8There are eight trigger outputs, which are intended as communication triggers, but can be used for any pur-pose. By default these outputs are programmed as positive. They are designed to sink current (to 0V) notsource current (from 12V). The addresses of these outputs are as follows:

The function of the trigger outputs can be programmed in menu 53=Outputs.

OutputAddress

Defaultfunction

Current (mA)

0001 Fire 30

0002 Panic 30

0003 Intruder 30

0004 Set 30

0005 Omit 30

0006 Not Used 30

0007 Confirm 30

0008 Not Used 30

OutputAddress

Defaultfunction

Current (mA) Normal State Active State

1001 Set 30 Off 0V

1002* SPK Driver - - -

1003 Bell 500 Off 0V

1004 Strobe 500 Off 0V

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Galaxy 2 Series Installation/Programming Manual

Figure 12. Daisy-chain Configuration

Data BusesTwo separate data buses are available to connect the Galaxy 2–44+ panel to its peripherals.

Communication between the Galaxy 2–44+ control panel and the peripherals attached to it (see Figure 1),takes place on the data bus. The control panel constantly monitors the peripherals attached to it. A break inthe communication from any of the peripherals generates a tamper alarm.

RS485 Wiring ConfigurationsThe system must be wired in a daisy-chain configuration. That is the A line from the previous peripheral isconnected to the A terminal of the current peripheral and then on to the A line of the next peripheral.

The RS485 (AB) line must have a 680 Ω resistor fitted across the A and B terminals of the last peripheral onthe line.

Figure 11. Trigger Header

InputsLine Fault: This input tells the panel that the communicator has a telephone line fault (negative applied).

Reset: This input from the communicator resets the panel on a low to high signal (negative removed).

SupplyA 100 mA, 12V output is also provided. The output is fused by the on-board AUX FUSE (F2).

Trigger Header

Galaxy 2-44Control Panel

680 Ω

Factory fitted on PCB

A B A B

680 Ω EOL

A

B

KeypadORPeripheral

GALAXY 44 V1.009:51 01/08/04

1 2 3 A

4 5 6 B

7 8 9 ent

* 0 # esc

GALAXY 44 V1.009:51 01/08/04

1 2 3 A

4 5 6 B

7 8 9 ent

* 0 # esc

Reset

Line Fault

GND

+12V

Trig 1Trig 2Trig 3Trig 4Trig 5Trig 6

Trig 7Trig 8

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Galaxy 2 Series Installation/Programming Manual

RS485 Wiring Recommendations1. The system must be wired in a daisy-chain configuration. Spur and star configurations must not be used.

2. The recommended cable used to connect the RS485 (AB) line is twisted pair screened cable (Belden8723 equivalent). However, for cable runs of less than 100m in normal environments, standard 4-corecable can normally be used.

3. There must only be a single AB pair of wires in each of the cables.

4. The power supply in the Galaxy 2 Series control panel and remote power supplies must not be connectedin parallel.

5. The 0V of all remote power supplies must be connected in common to the 0V of the Galaxy 2 Seriescontrol panel.

6. Ensure that any extension loudspeakers are not wired in the same cable as an AB pair of wires.

7. Where possible, ensure that the AB cable is at least 30 centimetres away from any other cables.

8. Where possible, ensure that the AB cable does not run parallel to other cables for extendeddistances (maximum five metres).

9. The maximum length of cable run is one kilometre.

If two lines are connected, both ends must be terminated with 680 Ω resistors and the appropriate End OFLine (EOL) resistor on the control panel PCB must be disconnected by removal of link LK1.

Figure 13. Twin AB Line Daisy-Chain Configuration

RS485 Wiring

Galaxy 2-44Control Panel A B

680 Ω EOL

A

B

GALAXY 2-44 V1.009:51 01/08/04

1 2 3 A

4 5 6 B

7 8 9 ent

* 0 # esc

GALAXY 2-44 V1.009:51 01/08/04

1 2 3 A

4 5 6 B

7 8 9 ent

* 0 # esc

KeypadORPeripheral

A B

680 Ω EOL

KeypadORPeripheral

Remove link LK1

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Galaxy 2 Series Installation/Programming Manual

Figure 15. GSM Module fitted to underside of Galaxy 2-44 PCB

Built-in Dialler/ModemThe built-in dialler allows signalling to an Alarm Receiving Centre (ARC), SMS signalling and remote servicingfrom a PC.

LED’SThere are two LED’s on the Galaxy 2–44+ PCB. Pulsing of the red LED1 indicates an active telecommuni-cations. Illumination of the green LED2 indicates the presence of AC mains supply.

There is one LED on the Galaxy 2–20 PCB. Pulsing of this LED indicates an active telecommunications.

Audio Header (2–44+ Only)This is a 14-way shrouded header for audio connection. When an alarm is received at the ARC, the ARC cancommunicate through a loudspeaker at the premises, and ask for a password before authenticating the alarm.

GSM Interface (2–44+ Only)This module provides a mobile telecommunications interface to provide an alternative to the land line. TheGSM interface provides the same functionality as the built-in dialler/modem. The module attaches to theunderside of the PCB and also connects to the antenna on the edge of the enclosure box.

ECP Bus (2–44+ Only)The ECP bus can operate at the same time as the RS485 bus. The cable can be standard 4-core and can bespurred or T wired.

The maximum length of cable run is 100 metres.

Figure 14. ECP Line - T Wire Configuration

ECP Bus

GSMModule

Heatsink

to antenna onenclosure box

Galaxy 2-44 PCB(underside)

Galaxy 2-44Control Panel

Keypad ORPeripheral

ECP Bus

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Galaxy 2 Series Installation/Programming Manual

Panel Mounting (Plastic Box)

Installation KitThe Galaxy 2 Series plastic box comes with an installation kit. It contains 13 zone links, a cable clamp withtwo self tapping screws, two M4 x 20mm lid screws, a tamper spring, battery connector leads and 24, 1Kresistors.

WARNING: The lid of the plastic box must not be removed before isolating the mains supply.Illumination of the keypad power LED indicates the presence of a.c. mains supply.

Removing the Enclosure Lid1. Remove the two M4 x 20 mm pan head screws from the bottom corner of the lid.

2. Pull the lid away from the lid hinge recesses (two menus of four) on the top of the enclosure base .

3. Remove the lid.

Installing the Enclosure Lid1. Hold the lid at an angle of 90 deg. to the enclosure base.

2. Place the eight (two menus of four) lid hinges into the recesses on the top of the enclosure base.

3. Swing the lid down making sure that the hinges fit into the holes in the top of the enclosure rim.

4. Attach the lid in place with the two M4 x 20 mm pan head screws provided.

Removing and Replacing the Galaxy 2 Series PCBNOTE: The plastic box comes with the PCB installed. The PCB must be removed to enable access to the

keyhole mounting slot (see Figure 16).

Figure 16. Galaxy 2 Series Plastic Box Layout

Keyhole Mounting Slot

PCB Clip PCB Clip

PCB

Lid Hinge Recess

Cable EntryPoints

Mains Terminal Block with 200mA fuse

Secure Mains Cable After Feeding Through Entry Point

User Instructionretaining Clip

Lid Screw

Lid ScrewMountingHole

MountingHole

Lid Hinge Recess

Transformer Output Lead to PCB Terminal Marked

KeyholeMountingSlot

Panel Mounting

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Galaxy 2 Series Installation/Programming Manual

Remove the PCB1. Gently pull back the PCB mounting clips to free the PCB.

2. Lift the PCB free of the PCB mounting pillars.

Replace the PCB1. Insert the PCB into the PCB mounting slots.

2. Ensure that any cabling is clear of the PCB support pillars.

3. Gently pull back the PCB mounting clips and place the PCB on top of the PCB support pillars.

4. Release the PCB mouting clips ensuring that they spring back into place and that the PCB is held firmly inplace.

Mounting the Plastic Enclosure BaseUse the keyhole slot in the plastic box base to position the base. Three mounting screws (not provided) arerequired to mount the plastic box. Fix one of the screws into the mounting surface, this will be used for thetop, keyhole mounting hole. Hang the enclosure base onto the mounting screw ensuring that the screw sits inthe narrow portion of the keyhole.

All cables must be brought into the enclosure base via the cable entry points shown in Figure 16. There are sixcable entry holes for the entry of alarm cables. There is one a.c. mains cable entry point located below themains terminal block.

Fitting the Tamper SpringThe Galaxy 2 Series plastic box enclosure is supplied without the tamper spring in place. The panel will notfunction without a Tamper. It is therefore the engineer’s responsibility to correctly attach the tamper spring.The spring is supplied in the Installation Kit. The engineer must ensure the spring is securely attached to theTamper Post (SW1). Refer to Figure 4.

Panel Mounting (cont’d)

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Galaxy 2 Series Installation/Programming Manual

Panel Mounting (Metal Box)

Installation KitThe Galaxy 2 Series metal box comes with an installation kit. It contains two No.8 x 12 mm self-tapping lidscrews, 6160 Text Programming Overlay, two battery leads (one red and one black), 10 mm cable staple and24, 1K resistors.

WARNING: The lid of the metal box must not be removed before isolating the mains supply.Illumination of the keypad power LED indicated the presence of a.c. mains supply.

Removing and Installing the Enclosure Lid1. Remove the two self-tapping screws that secures the lid to the enclosure base.

2. Slide the lid forward on the locating slots then lift clear.

3. To install the lid, simply reverse the process.

NOTE: The top self-tapping screw activates the Lid Tamper Microswitch.

Figure 17. Galaxy 2-20 Series Metal Box Layout

Panel Mounting (cont’d)

NOTE: Figure 17 shows the Galaxy 2-20 in the metal box. The procedure to remove and install the Galaxy2-44+ is identical to the 2-20.

PCB

KeyholeMountingSlot

EnclosureEarthConnection

MainsTerminal blockwith 200mA Fuse

Mains CableEntry Hole

Lid TamperMicroswitch

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Galaxy 2 Series Installation/Programming Manual

Removing and Replacing the Galaxy 2 Series PCBNOTE: The metal box comes with the PCB installed. The PCB does not have to be removed to enable

access to the keyhole mounting slot (see Figure 17).

Mounting the Metal Enclosure BaseUse the keyhole slot in the metal box to position the base. Three mounting screws (not provided) are requiredto mount the metal base. Fix one of the screws into the mounting surface, this will be used for the top, keyholemounting hole. Hang the enclosure base onto the mounting screw ensuring that the screw sits in the narrowportion of the keyhole.

All cables must be brought into the enclosure base via the cable entry points shown in Figure 17. There arefour cable entry holes for the entry of alarm cables. There is one a.c. mains cable entry point located belowthe mains terminal block.

NOTE: There are three knockouts at the top of the metal enclosure base and three at the bottom for cableentry if required.

Panel Mounting (cont’d)

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Galaxy 2 Series Installation/Programming Manual

Peripherals - Installation, Wiring & Addressing

ConfiguringNew peripherals will be configured onto the system at system power up or on leaving programming mode.Changes to peripheral addresses will only take effect when the peripheral is re-powered.

GeneralThe following peripherals can be connected to the Galaxy 2 Series:

RS485 Bus: Mk7 LCD Keypad/Keyprox; MAX3; RIO; PSU; Ethernet; RF Portal.

NOTE: Up to four keypads (including keyprox) can be fitted to this line. Keypads/keyproxes must be wiredin daisy chain configuration (see RS485 Wiring Configuration). The maximum length of cable forall peripherals on this line is one km.

ECP Bus (2–44+ only): 6160 Keypad/Keyprox; 5882H RF receiver; ECP zone expander.

NOTE: Up to four keypads can be fitted to this line. Keypads can be wired to the control panel indepen-dently, in series or in star configuration. The maximum cable length for all peripherals connected tothis line is 100m.

Table 5. RS485 Peripheral Wiring

Table 6. ECP Peripheral Wiring

The following table identifies the peripheral addresses:

Table 7. Peripheral Addresses

Peripherals

NOTE: No two peripherals connected can share an address, regardless of the data bus to which they areconnected.

PANEL PERIPHERAL

AUX+ +AUX- -

A AB B

PANEL6160

KEYPAD5882H

RECEIVER4+8 ZONE

EXPANDER

AUX+ + + (red) +12V I/P

AUX- - - (black) -

DO Y DO (yellow) DO

DI G DI (green) DI

PERIPHERAL ADDRESS

Mk7 Keypad/keyprox 0, 1, 2, 3

MAX3 0, 1, 2, 3

RIO 2, 3, 4, 5

PSU 2, 3, 4, 5

RF Receiver 4, 5

6160 Keypad 0, 1, 2, 3

6160 Keyprox 4, 5

5882H RF Receiver 4, 5

ECP Zone Expander 2, 3, 4

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Galaxy 2 Series Installation/Programming Manual

Mk7 LCD Keypad/KeyproxThe Mk7 keypad is a 16 character alpha-numeric keypad used to program and set the Galaxy 2 Series. Thewindow display is spread over two lines.

The Mk7 keyprox is a standard keypad with a proximity card reader combined into one housing. This allowsdual function setting/unsetting ability from one station without the need for a separate card reader.

Keypad/Keyprox Installation1. Remove the keypad from its packaging.

2. To attach the keypad to the wall, the back plate must first be removed from the front plate. To do this,insert a suitable tool into both openings at the bottom of the keypad and turn the tool gently.

CAUTION: When the keypad is separated make sure that the anti-static precautions are takenwith the keypad pcb to avoid damage from esd (electro static discharge).

3. Use the backplate as a template, then mark the locations for the three attachment screws in therequired position. Use the keyhole slot at the top of the backplate and the two elongatedholes at the bottom.

Figure 18. Galaxy Mk7 Keypad Backplate Installation

Peripherals (cont’d)

aperture keyhole slot aperture

cablechannel

cablestowagearea

elongatedhole

knockouthole

sacrificialwalltamper

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Galaxy 2 Series Installation/Programming Manual

4. If you are using a wall-run cable for the keypad (A, B, +, -) position the cable behind the back plate inthe cable channels provided. The cable can be run in from either the top or the bottom of the back plate.Use a sharp tool to remove the plastic from the top or the bottom of the cable guides on the back plateskirting.

CAUTION: Use of any screws other than No. 6 Pan-head can damage the keypadmouldings.

5. Make sure that the keypad wiring is fed through the large opening on the keypad backplate, thenposition the keypad base on the wall and attach it securely with the three No. 6 Pan-head screws.

6. If an off the wall tamper is required, using a No. 6 Pan-head screw, secure the sacrificial walltamper, indicated in Figure 18, to the wall. Make sure that the tamper knockout is stillconnected to the backplate moulding.

7. Connect the A, B and power wires to the correct terminals of the removable, four-way connectorblock.

Volume ControlKeypad (CP037) and Keyprox (CP038) have a volume control pot marked VOL at the bottom right-handcorner of the pcb. To adjust the volume, open up the keypad/keyprox cover and adjust the pot (+ or -).

Mk7 Keypad/Keyprox AddressingThe valid keypad/keyprox addresses are: 0, 1, 2, and 3. A 16-way Rotary Address Switch is used to ad-dress the Keypad/keyprox. The address switch assigns a hexadecimal address value to the keypad/keyprox.

NOTE: Any change to the keypad address must be made when the power is disconnected from the keypad.

Adding a Mk7 Keypad/Keyprox to the SystemWhen adding a keypad to an existing system, the following points must be considered:

1. Ensure that the keypad to be added has a unique address from the other keypads on the system.

2. Ensure that the keypad has a valid address.

3. Connect the keypad to the system - refer to the Keypad Installation Procedure.

4. Access engineer mode.

5. Connect the RS485 (AB) line of the keypad in parallel with the RS485 (AB) line of theexisting keypads.

6. Connect + and – terminals of the keypad to a power supply.

7. Exit engineer mode - engineer code + esc.

8. The Mk7 keypad displays the message 1 MOD. ADDED — esc=CONTINUE. Press the esckey; the keypad returns to the unset banner. If this message is not displayed, the keypad is notcommunicating with the control panel and has not been configured into the system.

9. The keypad is now configured into the system.

NOTE: MAX mode (63.2.1) has to be enabled to activate prox readers.

EN50131 ComplianceThe Mk7 Keypad/Keyprox is suitable for use in systems designed to comply with PD6662: 2004,pr EN50131-1: 2004 and meets the requirements of TS50131-3: 2003.

Security Grade - 2

Environmental class - II

Peripherals (cont’d)

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Galaxy 2 Series Installation/Programming Manual

Remote Input Output (RIO)Galaxy RIO’s can be added to the RS485 Bus on the Galaxy 2 Series control panel. Each additional RIOexpands the system by eight zones and four outputs.

Figure 19. Galaxy RIO

Addressing the RIOThe Galaxy RIO must be given a unique address before it is connected to a power supply (see Table 8. RIOAddresses).The address is selected using the 16-way Rotary Address Switch (SW1).

Table 8. RIO Addresses

Connecting the RIOThe RS485 (AB) line of the Galaxy RIO must be wired in parallel (daisy-chain configuration) with the RS485(AB) line of any keypads connected to the system. The RIO requires 12 Vd.c. (range 10.5 to 16.0 V) and40 mA. This can be supplied from the control panel power supply or from a remote power supply if thedistance causes a large voltage drop on the cable.

NOTE: A 3 Ampere Smart PSU can be fitted in place of a RIO.

RIO

sserddA detacollAsenoZ stuptuOdetacollA

2 8201-1201 4201-1201

3 8301-1301 4301-1301

4 8401-1401 4401-1401

5 8501-1501 4501-1501

3k3Ω pull-upresistors

IC1

IC2

LEDTamperSwitch

SW2

LK1 S

W4

IC4

RotaryAddressSwitch

1 2 3 4

OutputsB A - + - +

RS 485 Power

1 2 3 4 5 6 7 8Zones

SLAVE

LK2LK3LK4

S

IC3

SW1

R1

R3 R5

R7

E/E

Rev 0.3

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Galaxy 2 Series Installation/Programming Manual

Link LK1 on the RIO, if altered when the module is powered down, modifies the RIO operation:

• LK1 - short circuit this to by-pass the RIO lid tamper switch SW2

ZonesThe Galaxy RIO has eight programmable zones. These default to INTRUDER. Each zone is DoubleBalance monitored with a 1 kΩ resistor in series with the zone detector and a 1 kΩ (1%) resistor in parallelacross the detector switch. The change to 2 kΩ (1%) resistance registers the zone as open/alarm.

OutputsThe RIO has four transistorised outputs. Each output is connected to +12 V via a 3k3Ω pull-up resistor(refer to Table 10). When an output is activated, the load is switched to the negative supply voltage (groundor 0 V) of the RIO. The current available through each output is 400 mA.

The default functions and pull-up resistors of each RIO output, when connected to a Galaxy 2 Series areshown in the following Table:

Table 10. RIO Output Default Functions

RIO (cont’d)

Configuring the RIOThe added RIO is configured into the system on exiting from engineer mode. If the message XX Mod Added[<],[>] To View is displayed, the system has recognised that a new module is present. Press the A or B keysto confirm that the RIO has been added. If this message is not displayed or the RIO is not on the list of addedmodules, then the RIO is not communicating with the control panel or has been set to the same address as theRIO already connected to the system.

The flash rate of the red LED (LED1) on the RIO indicates the status of the communication with the controlpanel - refer to the following Table:

etaRhsalF gninaeM

FFO9.0/NO1.0 snoitacinummoclamroN

FFO ylppus.c.doN

FFO5.1/NO5.1 metsysotniderugifnocneebtonsahOIR

FFO2.0/NO2.0 metsyshtiwnoitacinummoctsolsahOIR

FFO1.0/NO9.0 snoitacinummocroopyreV

Table 9. RIO LED Flash Rates

Output No. Function Pull-up Resistor

1 Not Used R1

2 Not Used R3

3 Not Used R5

4 Not Used R7

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Galaxy 2 Series Installation/Programming Manual

Figure 20. Power Supply Unit

PSU

Power Supply UnitThe Galaxy 2 Series Power Supply Unit is available in 2 variants.

The Galaxy Power RIO consists of a Power Block and a Control Unit that includes an on-board RIO.

The Galaxy Power Unit consists of a Power Block and a Control Unit without the on-board RIO.

WARNING: There are lethal voltages present in the Power Block. Remove mains power fromthe Power Block before handling it.

ConfigurationThe Galaxy Power Supply Unit (PSU) consists of two modules, the Power Block and the Control Unit. ThePSU can be connected to the Galaxy 2 Series control panel via the RS485 (AB) line. The PSU can be used inplace of a standard RIO to overcome power problems that arise when the additional RIO is fitted distant tothe control panel.

A 6-way jumper lead connects the Power Block to the Control Unit.

The PSU (Power RIO variant) has eight zones and four outputs. Each variant of the PSU takes one of thefour RIO address (2 - 5). Addressing is identical to that described for RIO Modules.

The four outputs are switched 0V (0V active). Without the jumper links (LK1-4) fitted, the outputs will float inthe OFF state. They can apply a +12V signal, if required, by fitting the appropriate pull-up jumper supplied.

LK5 will short out the off-wall tamper if it is not used.

The SLAVE and E/E links must be in place for normal operation.

FAULT OP AC: This is an open collector transistor which is normally off. The output is activated by an ACfailure.

FAULT OP BAT:This is an open collector transistor which is normally off. The output is activated by aBattery Low or Battery Fail condition.

FAULT OP POWER: This is an open collector transistor which is normally off. The output is activated bylow voltage present in +12V1 or +12V2 .

Mains Terminal BlockPower

Header

To ControlUnit

Power Block

NEUTRAL

LIVE

13.8V0V14.5V0VBTAC/F

WARNING: The Power Block PCBis connected to mains voltage. Alwaysdisconnect mains supply for at least1 minute before removing the box lid.

1 1/2 2 3 3/4 4 5 5/6 6 7 7/8 8

Zones 1-8

HEATSINK

CommsLine

Outputs

RotaryAddressSwitch

AC BATPWR 0V

OP1

OP2

OP3

OP4

LIDTAMP

OWTAMP

+14.5

0V

+12V1

A(DO)

B(DI)

F1

F4

F3F2

LK1

LK2

LK3

LK4

-BAT

+BAT

AC/FBT0V14.50V13.8

LED1(comms)

LED2(AC)

Control Unit

+12V2

0V

0V

FAULT OP

Off-wallTamper

FromPowerBlock

Bell-Boxconnection

LK5

LK10

SLAVEE/E

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Galaxy 2 Series Installation/Programming Manual

Installation InstructionsThe installation and wiring must be performed by a competent engineer. The Galaxy Power Supply Unit mustbe connected to the a.c. mains supply (230/240 Va.c. 50Hz) via a fused connection outlet. The fuse in themains outlet must not exceed 3A.

The Galaxy Power Supply Unit comes installed in the metal enclosure base. The installation procedure of thepanel base is as follows:

1. Route the mains cable through the hole on the right hand side of the enclosure base. Securely anchorthe cable to the box using the tie-wrap as shown in the following Figure:

Tie wrap

Mains cable

Terminalblock

Keyholeslot (top)

Enclosurebase

Attaching hole Attaching hole

ControlUnit

PowerBlock

Off-WallTamper

Micro-switch

Lid TamperMicroswitch

6-way jumper lead

from power block

to control unit

Figure 21. Enclosure Base

2. Secure the panel base to the wall using three 1.5" No. 8 round head steel screws through the holesprovided.

The mains cable used must be a three core type (with green/yellow earth insulation) of adequate currentcarrying capacity.

NOTE: The mains cable must satisfy the requirements stated in BS6500.

3. Connect the mains cable to the mains terminal block as follows:

• blue wire to the terminal marked N (Neutral)

• green/yellow wire to the terminal marked (Earth)

• brown wire to the terminal marked L (Live)

NOTE: No other connections to the mains connector are permitted.

All wiring must be in accordance with the latest edition of the IEE Wiring Regulations, BS7671 (Requirementsfor Electrical Installations).

4. Power up by applying mains first. This unit can be powered up from the battery by momentarily shortingLK10. Never leave LK10 connected, as deep discharge of the battery will occur. LK10 is for start-uponly.

PSU (cont’d)

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Galaxy 2 Series Installation/Programming Manual

SpecificationsElectrical (based on grade 3 compliance)

Input voltage: 230V a.c. (+10%/-15%) @50Hz

Output voltage (nominal): 13.8V & 14.5V

Output current (max): 3.0A

Operating temperature: -10 deg C to +40 deg C

Aux1 & Aux2

Output voltage (nominal): 13.8V

Output current (max): 0.75A each

14.5V Output (not for EN50131: grade 2 use)

Output voltage (nominal): 14.5V

Output current (max): 0.15A (when using this current, the AUX1 & AUX2 currents willbe reduced by an equivalent amount).

Battery charge current (max): 1.4A

Maximum ripple voltage: less than 100mV

Fuses

F1 (14.5V) 500mA - 20mm anti-surge

F2 (Battery) 1.6A - 20mm anti-surge

F3 ( 12V Aux1) 1.0A - 20mm anti-surge

F4 (12V Aux2) 1.0A - 20mm anti-surge

EN50131 ComplianceThis product is suitable for use in systems designed to comply with EN50131-1:2004/PD6662:2004.

Security Grade - 2

Environmental Class - II

Power Supply Type - A

BatteryThe minimum capacity battery to supply the PSU is 1x 7Ah. The maximum capacity battery to supply thePSU is 2 x 17Ah.

Battery TestA battery test on full load is automatically performed once an hour and during the Engineer Mode exitingprocedure. If the battery voltage falls to 10 V while the Power Supply Unit is running on the battery, then it isautomatically disconnected to prevent deep discharge of the battery.

PSU (cont’d)

Battery(Ah)

Back upTime (hours)

UK 17 12*

EU 34 30

*based on PD6662 requirements

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Galaxy 2 Series Installation/Programming Manual

ECP Zone Expander (2–44+ Only)This is an expander for use on panels that use the ECP communication Bus. Up to three zone expanders canbe fitted to the Galaxy 2–44+ panel. Each expander gives 8 extra hardwired zones and four programmableoutputs. An alternative expander gives four extra hardwired zones and no outputs.

Figure 22. Zone Expander Outputs

Zone Expander OutputsThe four outputs are switched 0V (0V active). Without the jumper they will float in the ‘OFF’ state (seeFigure 23). They can apply a +12V signal, if required, by fitting the appropriate pull-up jumper supplied (seeFigure 24). (This is typically required for activating comms devices). All devices wired to the outputs musthave their negative terminals wired to the switched output, and their positive terminals wired to the + 12Voutput.

Figure 23. Output without jumper Figure 24. Output with jumper

ECP Zone Expander

SW 1

1 2 3 4 5 6 7 8

Zone Terminals(zones 5-8 not fitted in 4-zone version)

1 2 3 4

12V Pull-upJumpers

TamperSwitch

TamperBy-passSwitch

EngineerSocket

Outputs(not fitted in 4-zone version)

B A - +12V - +12V

S

DI I/P O/PDO

Data Input/Data Output

12V Input

AddressSelect

12VOutput

ZD1-0130

Data LED LK8LK9

+12 V +12 V

3k3Ω

Jumpernotrequired

0 V

Outputterminal

Siren

+

-

+12 V

3k3Ω

Jumperfitted

0 V

Outputterminal

Input to dialler/Redcare

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Galaxy 2 Series Installation/Programming Manual

Addressing the ECP Zone ExpanderSelect jumper addresses before powering up the zone expander. Available addresses are 2, 3, and 4. Refer toTable 11 for jumper settings.

Table 11. Zone Expander Addresses

5882H RF Receiver (2–44+ Only)The 5882H is a remote, stand-alone radio receiver.

InstallationAlways mount the receiver where the survey receiver showed the best reception. Make sure other equipmentsuch as panels or power supplies are not mounted immediately next to it. As a guide, try to keep other equip-ment at least half a meter away. Ensure that anyone fitting any other site equipment, knows not to locateanything close by the receiver.

WiringThe receiver comes with a five way flying lead, which should first be plugged into the RF receiver PCB. Thecoloured cables are wired direct to the Galaxy 2–44+ control panel as shown in Table 6. ECP PeripheralWiring. The blue wire is not used and may be cut off.

All wiring must be routed into the receiver via the holes and knockouts provided. Always make sure the wiringruns on the side of the PCB away from the antennas.

AddressingSet all DIP switches to OFF before powering up the 5882H RF receiver, which must be addressed as either4 or 5. Refer to Table 12 for DIP switch settings. No other settings are required on this unit.

SSERDDA HCTIWSPID

3 4 5

4 NO FFO FFO

5 NO FFO NO

Table 12. DIP Switch Settings

ECP Zone Expander (cont’d)

8-Zone Expander 4-Zone Expander

Address LK8 LK9 Zones AllocatedOutputs

AllocatedZones Allocated

OutputsAllocated

2 Off Off 1021 - 1028 1021 - 1024 1021 - 1024 0

3 Off On 1031 - 1038 1031 - 1034 1031 - 1034 0

4 On Off 1041 - 1048 1041 - 1044 1041 - 1044 0

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Galaxy 2 Series Installation/Programming Manual

Ethernet ModuleThe Ethernet Module is an optional add-on to the Galaxy 2 Series panels. It is a highly intelligent and compactmodule, combining alarm signalling, remote servicing and integrated facilities over Ethernet LAN and/or WAN.The Ethernet Module connects to 10 Base T Ethernet networks both supporting UDP/IP and TCP/IPprotocols.

The Ethernet module supports the following features:

• Full alarm signalling on SIA

• Microtech protocol signalling with Alarm Monitoring Software V3.1/3.2

• Remote servicing via remote servicing software (Access Lite compatible version).

Configuring the Ethernet ModuleThe added Ethernet Module is configured into the system on exiting from engineer mode. If the message XXMod Added [<],[>] To View is displayed, the system has recognised that a new module is present. Press theA or B keys to confirm that the Ethernet Module has been added. If this message is not displayed or theEthernet Module is not on the list of added modules, then the Ethernet Module is not communicating with thecontrol panel.

The flash rate of the red LED (LED3) on the Ethernet Module indicates the status of the communication withthe control. Refer to Table 9 for flash rate indications.

Ethernet CommunicationThe green LED (LED1) is illuminated when the Ethernet Module is connected to Ethernet.

The amber LED (LED2) flashes when the Ethernet Module is sending or receiving data.

For further information regarding the Ethernet Module, refer to Ethernet Module, Installation Instructions(II1-0080).

Figure 25. Ethernet PCB Layout

Ethernet Module

ProcessorProgrammingHeader

EngineerSocket

S + - A BLine

Processor

SKT1 SKT2

LED1 LED2

LED

3

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Galaxy 2 Series Installation/Programming Manual

G2 RF PortalThe G2 RF Portal is a wireless receiver for the Honeywell V2 & Alpha Domonial transmitter range. The G2RF Portal allows the control panel to receive signals from wire-free detectors and radio keyfobs. One RFPortal will allow the control panel to assign wire-free detectors to any or all detection zones. However, twoRF Portals can be used to increase coverage.

A maximum of two RF Portals can be connected to the RS485 (AB) line to support up to 44 zones.

Figure 26. G2 RF Portal PCB

RF Portal

Program Header

The Program Header allows field upgrades of flash software on the processor.

Tamper By-pass Link

The Tamper By-pass Link (LK1) must be removed to allow the lid tamper to function through the operationof switch SW2.

LED’s

The green RF1 LED2 will blink upon reception of decodeable signals. If a jam condition occurs (continuousinterference), the LED will come on constantly. It will switch off again only when the jam condition clears.

The yellow RF2 LED3 is on when the RF Portal is transmitting.

The red 485 LED1 gives power and communication status of the RF Portal (see Table 9 - RIO LED FlashRates for information on the meaning of the various flash rates).

Mounting the Plastic BaseBefore mounting the base it is recommended that a survey is carried out to determine the suitability of the sitefor RF installation. Refer to Galaxy RF Survey Kit, Operation Instructions (II1-0011).

PANELB A - +

SW2

LK1

TamperBy-passlink

Tamperswitch

AddressSetupJumper

Processor

ProgramHeader

Antenna

RF

1

485

RS485 line

EngineerHeader

SW

1

AD

DRLK

2

RF CircuitArea

RF

2

LED1LED2LED3

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38

Galaxy 2 Series Installation/Programming ManualRF Portal (cont’d)

Plastic Base

PCB installedin base

Antenna(pointing vertically)

Mounting hole (partially covered when PCB installed)

Clip

Pillar (2 off)

Plastic support (2 off)

Mountinghole

MountingHole

Knockout(if using anelectricalmounting box)

Side knockout (2 off)

Figure 27. Plastic Base with PCB Installed

NOTES:

• The plastic base must be mounted so that when the PCB is installed, the antenna will point vertically(see Figure 27, Plastic Base with PCB Installed)

• The plastic base is mounted using three screws that are not provided with the installation kit.

• The plastic base must be mounted before attaching the PCB or else access to the top left-handmounting hole will be severely restricted.

1. Either remove one of the knockouts in the side of the plastic base or, if fitting into an electrical box,remove the knockout in the centre of the base (see Enclosure knockout Removal Procedure, II1-0220).

2. Fit the two plastic supports for the PCB from the underside of the plastic base.

3. Using three screws, attach the plastic base loosely to a wall or electrical mounting box.

4. Bring in the cable from the control panel through the relevant knockout hole.

5. Firmly secure the plastic base with the three mounting hole screws.

Attaching the PCB1. Place the PCB over the two plastic supports and the two pillars.

2. Pull back the clip then press the PCB firmly into place.

3. To allow the lid tamper switch (SW2) to function, remove the by-pass link (LK1).

4. Attach the lid tamper spring over the lid tamper switch (SW2).

Addressing the RF PortalThe RF Portal must be given a unique address before it is connected to the power supply. This address isselected via the Address Setup Jumper and can be 4 or 5.

To set the address as 4, fit the jumper to one pin only (open) of Address Setup Jumper LK2.

To set the address as 5, fit the jumper across the two pins (shorted) of Address Setup Jumper LK2.

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Galaxy 2 Series Installation/Programming Manual RF Portal (cont’d)

Connecting the RF PortalThe RS485 (AB) line of the RF Portal must be wired in parallel (daisy-chain configuration) with the RS485(AB) line of any keypads connected to the system. The RF Portal requires 12 Vd.c. (range 9.0 V to 14.0 V)and 55 mA. This can be supplied from the control panel power supply or from a remote power supply if thedistance causes a large voltage drop on the cable.

Configuring the RF PortalThe added RF Portal is configured into the system on exiting from engineer mode. If the message XX ModAdded [<],[>] To View is displayed, the system has recognised that a new module is present. Press the A orB keys to confirm that the Receiver has been added. If this message is not displayed or the Receiver is not onthe list of added modules, then the Receiver is not communicating with the control panel or has been set to thesame address as the Receiver already connected to the system.

Attaching the Plastic Box LidPlace the lid over the plastic base then firmly attach with the four self-tapping screws provided.

Specifications

Physical

PCB Width: 104.5 mmHeight: 68 mmWeight: 42 g

PCB with antenna Width: 125 mmHeight: 76 mm

PCB in Plastic Box Weight: 245 g

Electrical

Quiescent Current 55.0 mA

Operating Voltage 12.0 V nominal, +16%/-25% (9 V to 14 V)

Operating Temperature -10 deg.C to +40 deg.C

EN50131 ComplianceThis product is suitable for use in systems designed to comply with prEN50131-1:2004.

Security Grade – 2

Environmental Class – II

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Galaxy 2 Series Installation/Programming Manual

6160 Keypad/Keyprox/RFH (2–44+ Only)The 6160 keypad is an addressible, alphanumeric remote keypad for setting/unsetting the Galaxy 2–44+control panel. It is also available as a combined keypad/keyprox unit (keypad with built-in proximity cardreader). The keyprox version allows the system to be set and unset with keytags and cards. (see Section 6:General Operation).

Installation and WiringThe keypad can be surface mounted directly to a wall or electrical box. The keypad has a built in tamperswitch to detect separation of the back case from its mounting surface. An additional mounting screw must beinserted in the tamper tab in the back case.1. Press down the two base clips located at the rear edge of the keypad while gently pulling the two halves

of the case apart.

2. Route the wiring from the control panel through the cable entry hole in the back case. Use the knockoutholes if alternative routes are necessary.

3. Securely mount the back case to a wall or electrical box via the mounting holes. Ensure the tamper tab issecurely screwed down.

4. The keypad PCB must be wired to the control panel PCB as shown in Table 6. ECP PeripheralWiring.

5. Reattach the keypad to the back case.

Figure 28. 6160 Keyprox

Figure 29. Wiring Entry (Back case)

6160 Keypad

1 2 3

4 5 6

7 8 9

0* #

A

B

ent

esc

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Galaxy 2 Series Installation/Programming Manual

Addressing the 6160 KeypadKeypad address (CON ADDR) needs to be from 0 to 3.

To set the address:

1. Either repower the keypad or activate the keypad tamper switch.

2. Within 60 seconds of step 1, press and hold buttons 1 and 3 for five seconds.

NOTE: If 10 seconds pass without a key entry, the keypad exits address mode. You must power down,power up and start the procedure again.

3. The current keypad address will be displayed.

4. Type address of keypad (00, 01, 02, 03) then press to save address and exit menu.

5. Remove then re-apply power to the system, including the keypad, to allow the new address to configure.

Addressing the 6160 KeyproxThe reader module shares the ECP Bus terminals with the keypad. The system will see the reader as an RFreceiver (address 4 or 5). The addressing can be achieved by using the address Jumper Link that is locatedabove the ECP terminals. These jumpers must be set before powering up the unit.Jumper Link not fitted: Address = 4Jumper Link fitted: Address = 5

NOTE: A keyprox unit cannot be fitted if that address is already used by any wireless receiver.The keypad section of the keyprox should be addressed as per the keypad instructions above.

Addressing the 6160 RFH1. Enter the program mode by pressing the 1 and 3 keys simultaneously for a few seconds, within 60 sec-

onds after applying power. The display shows CON ADDR = XX.

2. Enter the 2-digit keypad address (00 - 03).The display shows CON ADDR = YY. Press the * key tocontinue.

3. To enable the receiver - enter 1 to enable or 0 to disable. Enable the receiver if RF transmitters or wire-less keypads are programmed into the control and no other receivers are enabled. The display showsREC ON. Press the * key to continue.

4. If receiver is enabled, enter the 2-digit receiver address (04 or 05). The display showsREC ADDRESS = XX. Press the * key to continue.

5. Enable High Security Mode by pressing the 1 key. The display shows HIGH SECURITY ON.

Press the * key to continue.

NOTE: If this mode is enabled, the 6160RFH will only recognise encrypted fobs. If this mode isdisabled, the 6160RFH will recognise both encrypted and non-encrypted fobs.

6. Press the * key. This exits program mode.

7. Remove then re-apply power to the system, including the keypad, to allow the new addresses to config-ure.

6160 Keypad (cont’d)

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Galaxy 2 Series Installation/Programming Manual

Door Control Module - MAX3

The MAX3 is a proximity reader access control device for a single door, which can also be used for settingand unsetting of your alarm control panel. The MAX3 can be configured in one of two ways:

StandaloneIn this configuration the MAX3 can be used for either door control or alarm system set/unset control, by eitherconnecting the internal relay output to a door lock, external relay or into the keyswitch zone of the alarmsystem. When in standalone mode the MAX3 is programmed and operated using the MAX3 proximity cardsor tags.The proximity cards and tags each have unique ID numbers and must be identified to the MAX3

before being used to operate the system. The MAX3 memory can store up to 999 ID numbers, including atleast three reserved for Masters. Once programmed, the ID number of the tags and cards are stored indefi-nitely in the MAX3 memory until voided (removed) or erased. Removing power from the MAX3 does noterase the programming memory.

NOTE: The MAX3 defaults to standalone mode. It can be configured to on-line mode directly from theGalaxy 2 Series control panels.

On-lineThe MAX3 can operate in on-line mode, with the Galaxy 2 Series control panel range, as a completely inte-grated module on the system. In this configuration the MAX3 can be used for both door control and alarmsystem set/unset control.

For detailed instructions on how to programme the MAX3 onto the system in on-line mode refer to Option63.2=MAX.

Installing the MAX3

MAX3 Pack

The MAX3 pack contains the following:

• Max3 proximity reader *

• Max3 drilling template

• Max3 installation instructions

• Surge suppressor* The MAX3 is supplied with 3 metres of 12 wire E111235 AWG cable which is fixed and sealed through akeyhole opening on the rear surface of the MAX3.

Mounting the MAX3

To mount the MAX3 use the step by step diagrams provided with the drilling template.

The drilling template should be used as an aid to locate the holes required to secure the MAX3 and insert theconnection cable.

The MAX3 comes with an infra red lid tamper. The tamper is activated when the lid is removed from theMAX3 unit.

MAX3

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Galaxy 2 Series Installation/Programming Manual MAX3 (cont’d)

Wiring the MAX3

The MAX3 unit can be connected to the control panel in one of two ways depending upon whether it is beingused in an on-line or standalone configuration. The diagrams below provides details for both configurations.The MAX3 relay is configured in either the NC or NO configuration depending upon the variant purchased(MX03 - Normally Closed; MX03-NO - Normally Open).

NOTE: Fitting of an external relay may be required when using AC powered locks.

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Figure 30. Online Connection Diagram

Figure 31. Standalone Connection Diagram

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Galaxy 2 Series Installation/Programming Manual

Configuring a MAX3 Reader into the System

NOTE: The number of MAX readers is limited to one.

The MAX3 reader can only be configured into the Galaxy system from engineer mode. It will take about 10seconds before the system will see any MAXs to address.

Access engineer mode.Wire the MAX3 as per the instructions given in Figures 30 or 31.

The MAX3 reader must be assigned as either an On-Line or a Stand-Alone module using option 63.2.2 =OPTIONS.MAX.MAX Address:

1 = On-Line: The MAX3 is fully integrated with the Galaxy system and communicates via the AB line,sharing system resources and facilities.

2 = Standalone (default): The MAX operates as an entirely independent unit. The Galaxy does notmonitor the MAX3 for alarms, tampers or power failure.

Configuring as On-Line MAX3

1. Connect power to the MAX3 as per Figure 30.

2. Ensure that the MAX mode is enabled (option 63.2.1 = OPTIONS.MAX.MAX Mode).

3. Select option 63.2.2 = OPTIONS.MAX.MAX Address and press the ent key The Galaxy searchesfor the MAX3 with the highest address counting down to 3. New MAX3 readers are addressed as 8

(standalone) by default.

4. Only if adding a new MAX3 reader: On locating the MAX3 address, the keypad prompts for theOPERATING MODE of MAX3 to be assigned: select 1 = On-Line and press the ent key.

NOTE: If reprogramming an existing stand-alone reader, the system automatically selects the On-Line operating mode.

The MAX3 can then be readdressed. The keypad displays the current address of the MAX3 and the range ofvalid addresses (0-3). Enter the new MAX3 address and press the ent key; the Galaxy then reprograms theaddress of the MAX3.

NOTE: It is recommended that the MAX module is readressed as 0.

When the reprogramming is complete the MAX3 bleeps, the LEDs on the MAX3 switch off and the keypaddisplay returns to 2 = MAX Address.

5. Exit engineer mode - engineer code + esc: the keypad displays the message 1 MOD. ADDED -esc=CONTINUE. LED 2 on the MAX3 reader switches on. Press the esc key; the keypadreturns to the unset banner.

If this message is not displayed, the MAX3 reader is not communicating with the control paneland has not been configured into the system (LED 2 does not switch on).

NOTE: The MAX3 reader will not operate until engineer mode is exited and the reader is configuredinto the system.

6. The on-line MAX3 reader is now configured into the system.

MAX3 (cont’d)

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Galaxy 2 Series Installation/Programming Manual

Configuring as a Stand-Alone MAX3

1. Ensure that the MAX3 is connected to the Galaxy (RS485 AB line) and the MAX mode is enabled(option 63.2.1 = OPTIONS.MAX.MAX Mode).

2. Select option 63.2.2 = OPTIONS.MAX.MAX Address and press the ent key; the Galaxy searchesfor the MAX3 with the highest address (the new MAX3 reader). On locating the MAX address, thekeypad prompts for the OPERATING MODE of MAX to be assigned: select 2 = Standalone andpress the ent key. The MAX3 reader is readdressed as 8.

When the reprogramming is complete the MAX3 bleeps, LED’s 3-7 on the MAX3 switch on and the keypaddisplay returns to 2 = MAX Address.

3. Disconnect the AB line from the MAX3 reader. Ensure that all other modules (keypads, RIOs and on-line MAX3 readers) are still daisy-chained into the Galaxy panel. If the MAX3 reader is the last moduleon the AB line, remove the 680Ω end of line resistor and put it into the last module on the line.

4. The MAX3 reader is now programmed as a stand-alone module in sleep mode (LED’s 3–7 on) andcan be programmed using the MAX3 cards (refer to Programming Stand-Alone MAX3 Readers).

MAX3 (cont’d)

x

P

MAX3

1 = Read (Amber)

2 = Open (Green)

3 = Closed (Red)

4 = Nightlock (Red)

5 = Add (Red)

6 = Void (Red)

7 = Program (Red)

Figure 32. MAX3 LED’s

Removing a MAX3 Reader from the System

On-Line Mode

1. Access engineer mode.

2. Disconnect the MAX3 reader (AB line and power).

3. Exit engineer mode.

4. The message 1 MOD. MISSING — [<],[>] to View is displayed.

5. Press the A or B key.

6. The message MAX XX — =REMOVE MODULE is displayed.

7. Press the key to acknowledge and accept that the MAX3 reader has been removed. The keypadreturns to the unset banner.

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Galaxy 2 Series Installation/Programming Manual

Operating InstructionsThe MAX3 must be presented with a valid user card to allow access. Opening the door without presenting avalid card activates a door forced alarm at the panel; the buzzer sounds and LED 2 flashes until the door isclosed.

Activating the egress switch allows the door to be opened without activating an alarm when no card has beenpresented to the MAX3.

1. Ensure that LED 3 is on and all other LEDs are off.2. Swipe the MAX with a standard user or nightlock access user card. LED 3 switches off and LED 2

switches on for the programmed Open Timeout.3. Open the door while the LED 2 is on and access the area.4. Close the door; LED 2 switches off and LED 3 switches on. The door must be closed within the pro-

grammed Close Timeout; if the door remains open longer than this, an alarm is activated.

Card-Held Function

The MAX3 card can be assigned a single menu function (refer to option 42.1.8 = USERS.Users.MAXFunction). To activate the function assigned to the MAX3 card, hold the card in front of the reader for threeseconds; all of the LEDs switch on.

Card-Held System Setting

If the MAX3 card is assigned the Set and Unset option (42.1.8.3), the card-held function starts the settingprocedure for the groups assigned to the card.

To unset the system using the MAX3, present the reader with a valid MAX3 card. The MAX3 reader beeps.All of the groups assigned to the card are instantly unset.

Max Group Functionality

The MAX3 is automatically allocated the group map of the corresponding keypad address. This keypadaddress is used to show group choice and the overriding of faults when setting and unsetting from the MAX3.

NOTE: There does not need to be a keypad available at this address, however group choice and overridingwill not be available.

Users with ‘access only’ rights will gain door access provided all the groups which are common between theuser and the max group map are unset. Access is denied if any of these groups are set.

Users with ‘set/unset/access’ rights will also gain door access provided all the groups which are commonbetween the user and the max group map are unset before access is granted.

MAX3 (cont’d)

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Galaxy 2 Series Installation/Programming Manual

2-Way Audio (2–44+ Only)The system can support up to three TP800 speaker-mic devices via the audio header. To allow connection viathe Audio Header, an Audio Terminal Board must be fitted (part no. A233—2-way Audio Terminal Board).

Alternatively, a 14-way socket can connect directly on to the Audio Header on the main PCB.

The Galaxy 2 Series Audio Terminal Board is a connector that allows 2-way audio communication (speak andlisten) between the panel PCB and the Alarm Receiving Centre. The Audio Terminal Board is connected to aTP800 speaker mic which allows audio communication via the on-board PSTN/Modem or the plug-on GSMmodule. The Audio Terminal Board is fitted to the main PCB at the location shown in the diagram below.

Figure 33. Audio Terminal Board fitted to PCB

The TP800 modules can be adjusted for audio levels. Refer to the instructions supplied with the modules forfurther information.

The wires between the TP800 units must be no longer than 30 metres in total. The wires are connected to theterminal board as shown in the following table:

Table 13. Audio Header to TP500/800 Wiring

2-Way Audio

Audio Header TP800

ECT ECOUT

RML RML

CMD CMD

N/C NOT USED

VS+ VS+

VS- VS-

Audio Terminal Boardfitted to Audio Header on main PCB

RIO 11 2

0v3 4

0v5 6

0v7 8 9 10

0v 0v11 12

0v

LED 1

RML ECT CMD N/C VS+ VS-

NOTE: Audio Terminal Board must be fitted inorientation shown in diagram.

Connections forTP800 Speaker Mic

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Galaxy 2 Series Installation/Programming Manual

Operation of 2-Way AudioTwo types of audio communication are possible;

Listen-in

In this mode, the panel will stay on-line for 30 seconds after sending an alarm signal to the ARC to allow theoperator to listen to the audio on site. The operation is controlled by the remote DTMF telephone and is asfollows:

1. Use the 0 and 1 keys to toggle between listen and talk modes (0 or 3 = listen, 1 = talk).

2. To end the call, press the * then # keys or press 99.

3. The call ends with three beeps.

Dial-in

In this mode, a user can dial into the alarm system from a DTMF telephone and type in a special PIN code(controlled in Menu 42, User 99). This will allow the user to listen to the audio on site, and talk to the site. Theoperation is controlled by the remote telephone and is as follows:

1. Dial in to either the PSTN number or the GSM audio number.

2. The panel answers after the number of rings set up in Menu 56.1.09.

3. Wait for a long tone then enter the PIN code to start listening.

4. Use the 0 and 1 keys to toggle between listen and talk modes (0 or 3 = listen, 1 = talk).

5. To end the call, press the * then # keys or press 99.

6. The call ends with three beeps.

In both modes, if no commands are detected within two minutes the call will be timed out and hung up. If theremote user hangs up without using * and # then it can take up to two minutes before the call times out at thepanel end.

2-Way Audio (cont’d)

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Galaxy 2 Series Installation/Programming Manual

GSM Module (2–44+ Only)A Dedicated GSM telecommunication interface can be connected to the Galaxy 2 series control panel toallow an alternative communication path to the PSTN telephone line. The GSM module is installed as follows.

CAUTION: Install the control panel with the GSM Module at least 1.5 m from any wirelessperipheral device. This will avoid interference generated by the GSM. Do notinstall the module in the immediate proximity of a sound source (loudspeaker, TVset, Hi-fi chain etc.)

1. Remove all power from the control panel and remove the control panel PCB from the enclosure.

2. With the control panel PCB still removed, remove the knock-out in the top-centre of the enclosure usingbroad-nose pliers, gripping the full length of the knock-out tab and bending it sharply downwards.

3. Slide the GSM antenna into the slot in the top of the enclosure and lock into place with the locking tabprovided.

4. Fit the co-axial antenna lead to the GSM module.

5. Remove the two-way jumper fitted to two of the four audio pins on the rear of the PCB.

6. Using the three stand-offs supplied with the GSM module, fit the module to the rear of the control panelPCB, taking care to route the two power leads to the GSM power terminals on the corner of the controlpanel PCB.

GSM Module

Figure 34. Location of GSM Module on Control Panel PCB

GS

MP

WR

GS

M 0V

HeatsinkUnderside of Control Panel PCB

Outline of positionof GSM Module

10-way Connectoron Control Panel PCBfor GSM Module

Short Stand-offfitted to undersideof GSM Module Audio Pins

Long Stand-offs (2)fitted to undersideof Control Panel PCB

Power Terminals

SIM cardslotted intoholder (noteorientation)

WARNING: Do not screw the power leads into the AUX power terminals on the control panelPCB.

7. Screw the power leads into the two GSM power terminals observing polarity (Red lead is GSM PWR,black lead is GSM 0V).

8. Fit a suitable SIM card into the holder on the GSM Module (see Note on SIM cards).

9. Refit the control panel PCB into the enclosure, connecting the co-axial antenna lead to the antenna.

10. All programming of the GSM module is performed in menu 56.5 of the panel programming.

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Galaxy 2 Series Installation/Programming Manual

Note on SIM cards: Any valid GSM sim card can be used. Both contract and Pre-pay types will work,although contract SIMs are better for systems with alarm signalling as there is no chance of credit running outwhen an alarm activation needs to be signalled. If the GSM module is to be used for remote servicing, then aData-enabled SIM card must be used. Most service provider can supply this service on contract SIMs andwill issue a separate data number. This data number should be used for remote servicing when dialling into thepanel.

All GSM programming is performed through menu 56.5.

Figure 35. GSM Module - Top side

GSM Module (cont’d)

Power leads to GSM power terminalson panel PCB.

10-way header

4-way AudioHeader

Antenna leadto panel enclosure

Ribbon cable

CharacteristicsThe following table shows the technical characteristics of the GSM Module:

GSM Fault Detection Dedicated internal "GSM fault code" is triggered by lack of network

Service Temperature 0 deg to 40 deg C

Storage Temperature -20 deg C to + 70 deg C

Dual Band GSM 900 MHz and DCS 1800 MHz

Power 2 W (GSM)/ 1 W (DCS)

Antenna Supplied

SIMcard Micro

ComplianceThe GSM Module is suitable for use in systems designed to comply with EN50131-1 and PD6662:2004.

Security Grade - 2

Environmental Class - II

Alarm Transmission System - 2.

Table 14 - GSM Module Technical Data

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Galaxy 2 Series Installation/Programming Manual

SECTION 6: GENERAL OPERATION

Galaxy 2 Series UsersUsers are split into two main access levels under EN50131.

Level 2: Normal users who operate the system

Level 3: Engineers and master users who can alter PIN codes and system settings.

NOTE: Engineers can only alter their own PIN code.NOTE: Level 1 is considered to be the system in standby mode, where no users are currently accessing thesystem.

UsersFor a user to gain access, a valid PIN must be entered first. After entry of the PIN, the enter key must bepressed and the user will be ‘logged on’. At this point any alarms and alerts are silenced. The set status of thesystem (or each group that the user is assigned to) is displayed for five seconds. Pressing the ent or the scrollkeys during this five seconds, ends this time and the first event or first menu option is displayed on the keypad.

EngineersEntry to engineer mode is authorised by a user in menu option 48 = Level 3 Access. Following this theengineer will have five minutes in which to enter his code. When the engineer code is entered four thingshappen:

• All system tampers become isolated.• All fault signalling is suppressed, and indications are silent.• The engineer is given access to the full menu.• The banner message is changed to indicate engineer mode.

To bring the system back out of engineer access mode and reinstate all the tampers from the banner, theengineer enters his code but presses the esc key rather than the ent key.

When exiting engineer’s mode, there is a 30 minute window where the engineer’s code can access the menuagain. After this time, user authorisation will be required unless the engineer’s pin code has a # assigned (seeOption 42.1.1).

General Menu OperationThe Galaxy 2 Series provides various menu options for operating and modifying the functional performance ofthe system.

To access any of the functions, a user must first log-in by typing a valid pin code. See SECTION 2, QUICKGUIDE, for details.

Galaxy 2 Series Users

Table 15. Menu Options

10 = Setting 20 = Display 30 = Test 40 = Modify 50 = Engineer 1 60 = Engineer 2

11 = Omit Zones 21 = Zone status 31 = Walk Test 41 = Time/Date 51 = Parameters 61 = Diagnostics

12 = Timed Set 22 = View Log 32 = Output Test 42 = Users 52 = Zones 62 = Full Test

13 = Part Set 23 = System Version 44 = Mobile Nos. 53 = Outputs 63 = Options

14 = Night Set 24 = Print 47 = Remote Access 56 = Comms

15 = Chime 26 = Trace 48 = Level 3 Access 57 = System Print

58 = Keypad Groups

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Galaxy 2 Series Installation/Programming Manual

To navigate around the menu and enter data, the keys are used as follows:

0-9: numeric data entry.

ent: accepts current display or enters selected option.

esc: escapes out of selected option.

A> B<: scroll forward and backward in menu or selected option. Many of the menu options shownabove will have one or more sub-menus below them. A user will be timed out of the menu structure if no keysare pressed for two minutes. The engineer is not subject to timing out.

Full SettingBefore setting the system:

• Ensure all doors and windows are secure.

• Ensure movement detectors are not obstructed.

Enter: User code and press A.

If groups are enabled and a user has group choice, then the group status is displayed on screen. Each grouphas a letter under it to display the status of the group as follows:

S (steady) = Set

S (flashing) = Selected for setting

U = Unset

Pressing the group number will allow the status of the group to be toggled. The current state is shown steady.The new state is shown as flashing.

Once the required groups have been enabled press the ent key to begin the setting procedure.

If groups are not enabled and the user does not have group choice, entering the user code followed by Aimmediately starts the setting procedure.

The keypad displays the exit time countdown. At the end of the exit time, or when the setting procedure isterminated by a FINAL or PUSH-SET zone closing, the ENTRY/EXIT HORN outputs and keypad buzz-ers become silent for four seconds, then emit two long tones to confirm that the system is set. The messageSYSTEM IS NOW SET appears for five seconds on the keypad that the user has logged into only. All otherkeypads remain at the banner.

Part SettingEnter: User code and press B.

Press 1 = Part Set

This is identical to the Full Setting procedure, except the keypad display indicates that the system is beingPart Set. Only the zones which have the Part attribute enabled (refer to option 52.1.2 =ZONES.Function.Part Set), are included.

PART SETPART SETPART SETPART SETPART SET 3030303030

FULL SETFULL SETFULL SETFULL SETFULL SET 3030303030

Setting Options

SETSETSETSETSET 123123123123123GROUPS SSUGROUPS SSUGROUPS SSUGROUPS SSUGROUPS SSU

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Galaxy 2 Series Installation/Programming Manual

Night SettingEnter: User code and press B.

Press 2 = Night Set

This is identical to the Part Setting procedure, except the keypad display indicates that the system is beingNight Set. Only the zones which have the Night attribute enabled (refer to option 52.1.3 =ZONES.Function.Night Set), are included. By default, the exit time will be silent.

Cancelling the SettingThe Full, Part and Night setting routines can be cancelled, before the system sets, by pressing the esc key onthe keypad used to begin the setting. To cancel the setting on another keypad, type in a user code and pressA> or ent.

Unsetting the SystemTo unset the system the user can:

1. Type their code & press ent. If groups are enabled and the user has group choice - type their code plusA then press ent.

2. Present a valid prox tag to a prox reader.

3. Press the OFF button on a valid RF fob.

A successful unset is accompanied by a double beep. If there are no alarms, the words “System Unset”appear on the display for five seconds.

If the system has been in alarm, then entering a code to unset logs the user in, so that the alarms can be dis-played.

Cancelling Alarms and AlertsFollowing each alarm activation, the alarm must be cancelled and the system reset. The alarm is cancelled byentry of any valid user code (level 2 and above) assigned to the group that has alarmed or by presentation of avalid proximity card to a reader or keyprox. The alarm sounders, Bell and Strobe outputs are silenced andthe keypad displays information on the zones that have been activated during the alarm.

If the user code entered is not of a sufficient level to reset the Galaxy, the keypad displays the messageMANAGER RESET REQUIRED or ENGINEER RESET REQUIRED depending on the type ofalarm and level of reset required.

Alert IndicationTampers and faults cause an alert condition in the unset state. At access level 1 (no users logged on) in theunset state, no indication can be given except for an alert indication. This can be audible (0.5 seconds beepevery 30 seconds), and/or by the display shown below, until a user logs on.

Whether or not the audible and/or visible elements of alerts are given is governed by Option 51, Parameter23 = Alert Indication.

If a fault, tamper or alarm condition occurs while a user is logged on, the user is put back to the banner andthe alert/alarm indication given as appropriate.

NIGHT SETNIGHT SETNIGHT SETNIGHT SETNIGHT SET 3030303030

Setting Options (cont’d)

Alert! Alert! Alert! Alert! Alert! Enter Code Enter Code Enter Code Enter Code Enter Code

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Galaxy 2 Series Installation/Programming Manual

When systems have been set up for Technistore reset, a Technistore anti-code must be entered at the keypadto complete the restore process. If a Technistore reset is required, the restore banners shown above will bereplaced by the following:

Call ARCCall ARCCall ARCCall ARCCall ARCQuote XXXXXQuote XXXXXQuote XXXXXQuote XXXXXQuote XXXXX

Where XXXXX is the quote code generated by the internal Technistore algorithm. While this is on display, thesystem accepts both User PIN codes and the valid anti-code. Typing the anti-code cancels the technistore,and gives an opportunity to view alarms. If viewed, the system restores all the outstanding alarms, tampers andfaults, provided the conditions have cleared. The display returns to the Standard Access level 1 banner.

Resetting Using Alarm Cause CodeIf enabled in menu option 51.70, when a reset is required, an alarm cause code must be entered to reset thesystem.

If there are multiple alarm causes and/or multiple groups require to be reset, then the alarm cause code onlyhas to be entered once. The user enters the most appropriate code as determined on site. The cause codevalues should be determined in conjunction with the Alarm Receiving Centre (ARC).

Overriding of Faults and TampersWhenever a user logs in, the display shows any unrestored faults and tampers. If the condition cannot becleared and restored, then to enable the system to be set, a facility to override the condition is included.

When a user tries to set the system, the system displays any conditions and allow the user to scroll throughmultiple conditions. If the user has the authority to override the condition, the following display accompaniesthe condition;

Restoring alarmsAlarms, faults and tampers will be restored provided:

1. The cause has cleared

2. An authorised user PIN code or anti-code has been entered.

3. The conditions have been viewed on the keypad display after steps 1 and 2 above.

If a user cannot restore all the conditions, a temporary banner is displayed to indicate that a manager orengineer is required to restore the system. This lasts for 30 seconds before the normal banner is displayed.

Alarm Restore

AC FailAC FailAC FailAC FailAC FailENT to Continue>ENT to Continue>ENT to Continue>ENT to Continue>ENT to Continue>

Engineer ResetEngineer ResetEngineer ResetEngineer ResetEngineer ResetRequiredRequiredRequiredRequiredRequired

Manager ResetManager ResetManager ResetManager ResetManager ResetRequiredRequiredRequiredRequiredRequired

If the user cannot override the condition, the ENT to Continue will not be displayed.

The user can override each authorized condition, by pressing the ent key while the condition is displayed onthe keypad. Each and every condition is individually displayed and overriden.

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Galaxy 2 Series Installation/Programming Manual

Setting and Unsetting with KeyfobsThe following information applies when a radio receiver is connected to the system.

NOTE: You cannot set the system with a keyfob if there is a fault condition.

To Full Set the system (5804 Keyfob):

Press the ON button on the keyfob (Fullsetting will commence as per keypadprocedure).

NOTE: To cancel the setting during theexit time, press the OFF button.

To Unset the system:

Press the OFF button on the keyfob. (Thesystem unsets with a double beep).

Setting with Keyfobs

Begin FullSet Procedure

Unset/Cancel

Begin PartSet Procedure

Begin NightSet Procedure

To Full Set the system (KTC805 Keyfob):

Press button 1 on the keyfob (Full setting willcommence as per keypad procedure).

NOTE: To cancel the setting during the exittime, press button 2.

To Unset the system:

Press button 2 on the keyfob. (The systemunsets with a double beep).

5804 Keyfob

KTC805 Keyfob

SOS

SOS

Begin FullSet Procedure(Button 1)

Begin PartSet Procedure(Button 3)

Unset/Cancel(Button 2)

Begin NightSet Procedure(Button 4)

Pressing enter omits the condition for one set period only. Pressing escape returns to the previous banner.When setting the system with an overriden fault or tamper condition, the display indicates the overriden func-tion in place of the set mode by showing the omit message as detailed in the omit menu function. The Overridecondition is logged, and will last for one set period only. When all the groups that are affected by the overridecondition become unset, the override status is cleared. An override restore is logged at unset.

If, during a setting attempt, there are conditions that haven’t restored and cannot be overriden, then the systemwill not set. If the user presses escape or two minutes without button presses elapses, the display shows theReset required banner, as detailed above, then returns to the main banner.

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Galaxy 2 Series Installation/Programming ManualSetting with Keyfobs (cont’d)

Full Set

Unset

Part Set

Night Set

LED1

LED2

LED3

Table 16. TCB800m Button Combinations (Alpha Protocol only)

TCB800m Keyfob

This keyfob can be configured in two modes:

Alpha Protocol (default)

When the keyfob is setup for Alpha mode, compatibility iswith RF Portal part number C079 and V1.4 panel softwareonly.

The keyfob has a ‘rolling code’ encryption for enhancedsecurity (compatible in the UK for DD243 compliant sys-tems).

V2 protocol.

When the keyfob is setup for V2 mode, compatibility is withRF Portal part numbers C077 or C079 and any panel soft-ware version.

TCB800m Keyfob

Changing the Protocol

1. Open the casing by inserting a small screwdriver into the space in the casing.

2. Push with the screwdriver whilst levering upwards, and the front casing will release.

3. To change to V2: Whilst inserting the battery, press buttons [Part Set] and [Unset].

4. To change to Alpha: Whilst inserting the battery, press buttons [Unset] and [Full Set]

5. The LED’s relating to the buttons pressed will illuminate for 3 seconds to confirm the change ofprotocol.

6. The new protocol is retained in the memory, and is not affected by the user changing the battery.

THEN

&

&

ButtonCombinations

Function LED (s) Comments

Full SetWhen a button or combination buttonis pressed, the relevant LED's flashwhile waiting for a result to bereturned from the panel.

If a successful result is received therelevant LED's stay on for 3 seconds.

If an unsuccessful result is returned therelevant LED's stop flashing and turnoff.

For the Unset all command, if there isa reset required, the LED's will pulseslowly as shown.

Unset all

Part set

Panic (holdbutton for 3seconds)

Night Set

Stop LED's

This command tells the panel to returna fail in order to turn the LED's off.This helps to save battery life. Used tostop the reset required indication.

Ask for Status Returns Panel Set Status (seeGalaxy Panel Status Table)

Hold button for 3 seconds. Ask forStatus

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Galaxy 2 Series Installation/Programming Manual Setting with Keyfobs (cont’d)

Galaxy PanelStatus (Groups

disabled)

Galaxy Panel Status(Groups enabled)

LED (s) Comments

Full Set All groups Full Set LED's flash while waiting for a resultto be returned. If a successful result isreceived by TCB the LED stays onfor 3 seconds. If an unsuccessful resultis returned the LED stops flashing andgoes off.

Unset All groups Unset

Part Set or NightSet

All groups Part Set orNight Set

N/A Groups in differentstates

Setting in progress Setting in progress Stops flashing with all LED's off

Reset required Reset required Reset required

Table17. Galaxy Panel Status (Alpha Protocol only)

The TCB800m keyfob also provides LED indications of basic system status and signal confimation (see table17 below).

Table 18. TCB800m Button Combinations (V2 Protocol only)

&

ButtonCombinations

Function LED (s) Comments

Full Set

Unset all

Part set

Panic Hold button for 3 seconds

Night Set

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To Full Set the system (Mk 7 keyprox):

Hold keytag or card in front of prox symbolfor three seconds. (Full setting will com-mence as per keypad procedure).

NOTE: To cancel the setting during the exittime, hold keytag briefly in front ofprox symbol.

To Unset the system (Mk 7 keyprox):

Hold keytag briefly in front of prox symbol.(The system unsets with a double beep).

Setting and Unsetting with Keytags or CardsThe following information applies to systems fitted with a keyprox.

6160 Keyprox only: You cannot set the system with a keytag or card if there is a fault condition.

Mk7 Keyprox only: Keytags and cards allow setting and unsetting with group choice.

To Full Set the system (6160 keyprox):

Hold keytag or card in front of prox symbol forthree seconds. (Full setting will commence ).

NOTE: To cancel the setting during the exittime, hold keytag briefly in front ofprox symbol.

To Unset the system (6160 keyprox):

Hold keytag briefly in front of prox symbol.(The system unsets with a double beep).

ARMED

READY Keytag

Keytag or card presented toprox reader to set and/orunset the system

Setting with Keytags/Cards

Setting With MAXsIf using a MAX3 to set the system, the setting procedure is the same as when setting with a keyprox. Settingcountdown, open zones and faults will be displayed on the keypad with the same address as the MAX3.

1 2 3 A

4 5 6 B

7 8 9 ent

* 0 # esc

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Text ProgrammingCertain functions on the Galaxy 2 Series can be set up with text descriptors or names. When one of these isedited the keypad will initially show the name that is currently programmed. The A and B keys can be used tomove the edit cursor right and left in the name. Pressing the * key will delete the character to the left of thecursor and move the cursor one position to the left (Left Delete). Pressing the # key will delete the characterat the cursor (Right Delete).

Pressing any of the numeric digit keys will enter character input mode, allowing a new character to be enteredat the cursor position. If there is any space to the right of the name, a new character will be inserted. If thereis no more space, new characters will overwrite existing characters.

There is a list of characters associated with each digit key, as shown in the following table. Pressing the samekey multiple times scrolls through the list until the correct character appears on the keypad. So, for example,to insert the letter R the 7 key would be pressed three times. The behaviour of the B key changes whilecharacter input mode is active. Instead of moving the cursor to the left, it displays the previous character inthe list. If a digit key is pressed too often by mistake this feature can be used to avoid having to cycle roundthe list to get back to the correct character.

Character input mode can finish in a number of ways:

· After two seconds without a key press the text entry will finish automatically and the cursor will move tothe next position.

· A different digit key can be pressed. This will finish the first character input and begin character input atthe next position.

· The A key can be pressed. This is useful to avoid waiting for two seconds for the current characterentry to expire when the same digit key is to be used for the next character.

When the edit is complete, pressing the ent key will save the new name. Pressing the esc key cancels the editwithout saving any changes to the name.

Table 19. Text Characters

Text Programming

Key Output

1 & - 1 @ ' / ( ) full stop, comma, # * +

2 A, B, C, Ä, Å, Æ 2, a, b, c, ä, å, æ

3 D, E, F, 3, d, e, f

4 G, H, I, 4, g,h, i

5 J, K, L, 5, j, k, l

6 M, N, O, Ö, ø, 6, m, n, o, ö

7 P, Q, R, S, 7, p, q, r, s

8 T, U, V, Ü, 8, t, u, v, ü

9 W, X, Y, Z, 9, w, x, y, z

0 <space> or 0

ent Save string entry and exit

esc Cancels the edit without saving changes

* Delete character to left of cursor

# Delete character at the cursor

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Additional Functions

Code TampersWhen enabled (see Option 51, Parameter 14 = Lockouts), when 10 wrong codes are entered in succes-sion, the keypad is locked. The lockout lasts for two minutes. After a further 10 wrong code entries, a tamperis logged and a signal is given. The keypad is again locked out for two minutes.

NOTE: RF fobs can still operate.

Conversely, if a wrong tag is presented to a keyprox or an invalid RF fob is activated for a similar number ofattempts, the prox and receiver devices are locked out, but the keypads still operate.

If five wrong codes are entered from a keypad, followed by five wrong codes on a keyprox, both devices arelocked for two minutes.

After a further 10 wrong code entries, a tamper condition is logged and a signal is given. Both devices will belocked out for two minutes.

Hot KeysThree hot key functions are available on the keypads, by pressing a combination of two buttons. These func-tions mimic the Panic, Fire and Assistance zone types.

On the RS485 keypads the following combination is used:

Fire: * & 8

Panic: * & 2

Assistance: * & 5

On the ECP keypads the following combination is used:

Fire: 3 & #

Panic: * & #

Assistance: 1 & *

Additional Functions

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SECTION 7: MENU OPTIONS

Menu 10 - Setting Options

Option 11 - Omit ZonesThis option allows zones to be temporarily removed (omitted) from the system. Once a zone has been omittedit does not generate an alarm condition. The omit status of the zone can be toggled on and off using the # key.

The omitted zones are reinstated automatically when the system is unset or manually when the zone omitoption is disabled.

Option 12 - Timed SetThis option, when entered, initiates a timed full set.

Option 13 - Part SetThis option, when entered, initiates a timed part set.

Option 14 - Night SetThis option, when entered, initiates a timed night set.

Option 15 - ChimeThe Chime option allows the user to switch the chime facility on or off. Any zones that have the chime attributeenabled momentarily operate Entry/Exit Horns when opened; two short tones are emitted.

1 = Chime Mode

This option turns the chime function on or off.

2 = Chime Zones

Selecting this option allows the user with appropriate access to scroll through all the zones that the user hasaccess to, and toggle the Chime status on or off, by pressing the # key.

Setting Options

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09:04 SAT 01 JAN09:04 SAT 01 JAN09:04 SAT 01 JAN09:04 SAT 01 JAN09:04 SAT 01 JANFull Set usr 04Full Set usr 04Full Set usr 04Full Set usr 04Full Set usr 04

09:51 SAT 01 JAN09:51 SAT 01 JAN09:51 SAT 01 JAN09:51 SAT 01 JAN09:51 SAT 01 JANLOUNGELOUNGELOUNGELOUNGELOUNGE

09:04:06 200509:04:06 200509:04:06 200509:04:06 200509:04:06 2005Full Set G12--Full Set G12--Full Set G12--Full Set G12--Full Set G12--

Additional Info with # Key

Menu 20 - Display Options

Option 21 - Zone StatusThis option shows the status of each zone on the system one at a time. The scroll keys scroll along the zonelist. For each zone, the zone type and its open/close/tamper status are displayed. If the # key is pressed, theresistance reading for that zone is displayed, if hard-wired, or the last recorded signal strength if it is RF (fromRF Portal on RS485 line only). There are two readings, one from each receiver, eg. 10/10.

NOTE: 5800 series detectors will not show signal strength.

Option 22 - View LogThe log is a 384 event capacity log which stores all the mandatory and optional events as required byEN50131-1.

If group mode is enabled (refer to option 63 = OPTIONS), users are given group choice of group in ViewLog. The available groups are displayed for selection. Press the number of the groups to be displayed, the Nbelow the selected group changes to a flashing Y. Press * to enable all groups simultaneously. When all therequired groups are selected press the ent key to access the log; only the events in the selected groups aredisplayed.

The most recent event is displayed first. The user can scroll through events with single presses of the scrollbuttons. Holding the buttons down will scroll the log by one full day. While this is happening, the date is dis-played and scrolls at one-second intervals.

The typical display for each event is as follows;

Standard Display

Display Options

NOTE: During any set period, if a particular event constantly repeats, only the first three occurences arelogged. The counter is reset when the panel rearms or is unset.

09:51 SAT 01 JAN09:51 SAT 01 JAN09:51 SAT 01 JAN09:51 SAT 01 JAN09:51 SAT 01 JAN1021+1021+1021+1021+1021+ IntruderIntruderIntruderIntruderIntruder

Event time Date

EventSource

EventType

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Galaxy 2 Series Installation/Programming Manual Display Options (cont’d)

Option 23 - System VersionThis option shows the panel type and software version.

Option 24 - Print

NOTE: A serial printer must be connected to the program header on the Galaxy 2 Series PCB.

This option allows the user to print out the event log.

NOTE: The system programming can only be printed by an engineer in menu option 57.

A master code can also print out the users. There are four sub-menus:

1 = Codes

Only Master codes and engineers can print the information contained in this option. Information printed con-sists of: user number and name, level and group assigned.

2 = Zones

This sub-option prints out information for all zones on the system.

3 = Event Log

This option prints all events in the log.

4 = All

This option prints all information contained in options 1,2 and 3.

Pressing ent on each of the selected items will begin printing the required information. Pressing esc during thisdisplay will cancel the print function.

Option 26 - TraceThis option provides a record of the most recent alarm activation. The Trace option records the details of thesetting and unsetting of the system immediately before and after the alarm activation and the first five eventsoccurring during the alarm activation. This information is maintained in the trace until the next alarm activation.On entering the option pressing the A and B keys steps through each of the seven trace entries.

Pressing the # key while viewing the Trace option displays additional information about certain events — userevents reveal the keypad, user level and current group; alarm events reveal the zone descriptor if pro-grammed.

Group ModeIf group mode is enabled (refer to option 63 = OPTIONS), there is a separate trace for the most recentalarm activation in each of the groups. On selecting the Trace option, a user with group choice (refer to option42 = USERS) can view the trace of the assigning groups; press the number of the group to be displayed —the N below the selected group changes to a Y — and then press the ent key.

If more than one group is selected, or the user does not have group choice, then the trace for the group withthe most recent alarm activation is displayed.

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Menu 30 - Test Options

Option 31 - Walk TestMenu option 31 allows a selection of zones or a single zone to be put on walk test.

NOTE: Zones programmed with the following functions remain active during the walk test:24 hours, PA, PA silent, Fire, Tamper, Batt Fail, AC Fail, Assistance, Bell Fail, PSU Fault.

Menu Option 31 has two settings:

1 = Test All Zones

This option initiates a walk test that includes all zones that have the omit attribute enabled (refer to option 52 =PROGRAM ZONES). When selected, the walk test starts immediately. The message NO ENTRIES isdisplayed if all zones are non-omittable when selecting All Zones. Non-omittable zones are not included in thistest and remain active throughout the test.

2 = Selected Zones

This test option allows the user to select any zones, irrespective of function type, for walk testing. As manyzones as necessary may be added to the list before starting the test. Press the key to include all groups inthe Walk Test. On entering this option the details of the first zone are displayed. Each zone required for testcan be selected using the A or B keys or by entering the zone number. Press the # to toggle the test status ofeach zone in the Walk Test: the test status of the zone changes to TEST if it is included in the test and# = TEST if it is not. When all the required zones have been selected, press the ent key to start the WalkTest.

Once the Walk Test has started, opening a zone activates outputs programmed as Entry/Exit Horn. If asingle zone is open, the keypad displays the address and function of the zone. If multiple zones are open, thenthe keypad indicates how many zones are open; the open zones can be viewed by pressing the A or B keys.

While the walk test is active the message WALK TEST ACTIVE / ESC to abort is displayed; press the #key to view all zones that have been walk tested so far. To return to the Walk Test press the # key again.

NOTE: RF zones will also record the signal strength in reduced gain mode.

Ending the Walk Test

To terminate the walk test, press the esc key. The test will terminate automatically if no zones are activated for20 minutes.

The results of the test can be viewed by accessing the event log (refer to option 22 = DISPLAY LOG).

Option 32 - Output TestMenu option 32 allows each of the output function types to be scrolled through and toggled on/off by pressingthe ent key. If a user has activated the output test, they can only turn on the bells and strobe. No other outputtypes can be selected by the user. Refer to 53 = Outputs for a full description of each output function.

Test Options

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Table 20. User Attributes

Menu 40 - Modify Options

Option 41 - Time/DateThis option has two sub-options:

A = Time

Selection of this sub-option allows a new time to be entered. The time must be a valid four-digit number in the24 hour format (HH:MM). When setting the time, on pressing the last digit, the seconds will be set to 00.

B = Date

Selection of this sub-option allows a new date to be entered. The date must be a valid six-digit number in theday/month/year format (DD/MM/YY).

Option 42 - UsersThis option has one sub-option:

1 = Users

When 1 = Users is selected the following typical information is displayed on the keypad:

Modify Options

Option 1 allows scrolling through all the system users. Pressing the ent key at any point will enter into a list ofsub options for that user. The engineer code cannot access the options for user codes. Similarly, user codescannot access the options for the engineer code.

blank = No prox tag/radio fob assigned

m = prox tag assigned

r = radio fob assigned

+ = prox tag/radio fob assigned

Group mode ( * = group choice)

User No User Name

0101010101 User 1User 1User 1User 1User 1 *1234*1234*1234*1234*1234User (L2)User (L2)User (L2)User (L2)User (L2) mmmmm

User Type

= no pin assigned

= pin assigned

1 = PIN 4-6 digits

2 = Type Template 0-3

3 = Groups On/Off for each group * Modifier gives the user group choice

4 = Name 6 characters Entered in SMS text format

5 = RF Fob Self learn

6 = Prox Tag Self learn

7 = Duress 0 = Off, 1 = On

8 = MAX Function1 = Access Only2 = Unset Only3 = Set & Unset

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* 0 = No Access1 = Access sub-menu 1 only2 = Access sub-menu 1 & 2

Yes* Only if set by engineer

The engineer always has access to all menu options. However, in the codes menu the engineer can only editthe engineer’s PIN code.

Table 21. User Types

Modify Options (cont’d)

2 = Type

This attribute shows the type of user and the level of access for each. There are four sub-options:

0 = Cleaner (L2)1 = Users (L2)2 = Manager (L2)3 = Master (L3)

User Types

A user type is assigned to every user on the system. The type dictates what functions a user can access.

Each user has the following selectable attributes:

Attribu te Op tion Assig n ed Attribu tes

Tem p late N am e C lean er (L 2) U ser (L2) M anag er (L 2) M aster (L 3) In sta lle r

Resto re A la rm s Yes/No No Yes Yes Yes Yes

Resto re Faults Yes/No No No Yes Yes Yes

Resto re Tam pers Yes/No No No No Yes Yes

S et A ccess Yes/No Yes Yes Yes Yes Yes

Unset A ccess Yes/No Yes Yes Yes Yes Yes*

E nab le Leve l 3 Yes/No No Yes Yes Yes Yes

C hange own C ode Yes/No No Yes Yes Yes Yes

C hange o ther C odes Yes/No No No No Yes No

C hange S M S num bers Yes/No No No No Yes Yes

C him e A ccess 0 , 1 , 2* 0 1 2 2 2

Om it Zones Yes/No No Yes Yes Yes Yes

Override P revent S et Yes/No No No Yes Yes Yes

Tim e & D a te Yes/No No No Yes Yes Yes

1 = Pin

The PIN identifies each user to the Galaxy 2 Series panel and permits the user to operate the system. Thisoption allows a PIN to be assigned to a user or an existing PIN to be modified. The PIN must be a four, fiveor six digit number that is unique to the system. If a duplicate PIN is assigned, the message DUPLICATEENTRY is displayed; the PIN is not assigned to the user. As each digit is entered it appears on the lower lineof the display. Pressing the * key erases the last digit displayed. When the correct PIN has been assigned,press the ent key to accept the programming.

If the engineer PIN code has a # assigned, then the engineer can gain access by entering his PIN code twice,without requiring user authorisation via menu 48. The first entry of the PIN code will generate a tamper alarmon the keypad.

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3 = Groups

This attribute determines the system groups that the user has access to and operational control over. Thisattribute is only available when the groups option is enabled, see Option 63.1.

Access to the common group is not required as this arms and disarms automatically.

A modifier can be assigned to the groups. If the * is selected and displayed , then the user will have a choiceat the point of setting and unsetting, of which groups of their assigned groups are to be affected.

4 = Name

This attribute allows a six-character user name to be entered in SMS text format.

5 = RF Fob

This attribute allows users to be assigned to RF fobs. See Adding Keyfobs.

6 = Prox Tag

This attribute allows users to be assigned to prox tags/cards. See Adding Keytags or Cards.

7 = Duress

This attribute allows the current user code to be assigned to a Duress code. There is no limit to the number ofcodes that can be assigned as Duress Codes.

8 = MAX Function

This attribute allows users to be assigned a max function.

1 = Access OnlyThis attribute allows a user to gain door access by use of a keytag or card in front of a MAX reader.

2 = Unset OnlyThis attribute allows a user to unset the system by use of a keytag or card in front of a MAX reader.

3 = Set and UnsetThis attribute allows a user to set and unset the system by use of a keytag or card in front of a MAXreader.

Modify Options (cont’d)

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Galaxy 2 Series Installation/Programming ManualModify Options (cont’d)

Adding Keyfobs (ECP)

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 5 = RF Fobs.

4. Press * (AUTO) to self-learn the keyfob on to system.

5. Display says awaiting fob.

6. Press the four buttons on the keyfob simultaneously on the keyfob (receiver may give a triple beep at thispoint).

7. Press and release any single button on the keyfob when prompted.

8. The keyfob is now learned on to the system.

Adding Keyfobs (RS485)

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 5 = RF Fobs.

4. Press * (AUTO) to self-learn the keyfob on to system.

5. Display says awaiting fob.

6. Press one button on the keyfob.

7. The keyfob is now learned on to the system.

Removing Keyfobs

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 5 = RF Fobs.

4. To delete a keyfob for a user press the <B key for each digit on the fob

Adding Keytags or Cards - MAX3

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 6 = Prox Tags.

4. Type in the serial number printed on the MAX keytag/card.

5. Press enter to save and exit.

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Adding Keytags or Cards - Mk7 485 Keyprox only

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 6 = Prox Tags.

4. Press A & 1 together to self-learn keytag/card on to system.

NOTE: When pressing A & 1, make sure keytag or card is kept away from prox symbol or else the numberwill be misread.

5. Hold card/keytag in front of prox symbol to add it in.

6. The number should be displayed.

7. Wait for double beep then remove keytag/card.

8. Press enter to save and exit.

NOTE: If at any time a triple beep is heard, the learn procedure has failed.

Adding Keytags or Cards - 6160 Keyprox only

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 5 = RF Fobs.

4. Press * (AUTO) to self-learn keytag/card on to system.

5. Display says awaiting fob.

6. Hold card/keytag in front of LED’s to add it in.

7. Ignore request to press a button (this is for RF fobs).

8. The keytag/card has been successfully added.

NOTE: If at any time a triple beep is heard, the learn procedure has failed.

Removing Keytags or Cards - Mk7 485 Keyprox/MAX3 only

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 6 = Prox Tags.

4. The Serial number is displayed.

5. Press the B key until all digits are deleted from screen.

6. Press enter to save and exit.

Removing Keytags or Cards - ECP 6160 Tags only

1. Enter menu 42.1 = Users.Users.

2. Select a user.

3. Select option 5 = RF Fobs.

4. The Serial number is displayed.

5. Press the B key until all digits are deleted from screen.

6. Press enter to save and exit.

Modify Options (cont’d)

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Option 47 - Remote Access

1 = Service

This option allows a user to initiate a call to the remote service centre or authorize a call in from the remoteservicing centre. On entering the menu, the user can select which communication device is used.

1 = Telecoms

4 = Ethernet

5 = GSM (2–44+ only)

Upon selecting the device, the user can select which communication mode is used.

0 = Direct AccessThis enables a five minute window where the panel will accept an incoming call for the remote servicingsoftware.

1 = Start Call OutThis immediately initiates an outgoing call to the number pre-programmed in menu 56.1.12 or 56.5.12.

Option 44 - Mobile NosThe Galaxy 2 Series can send SMS messages to users on up to three separate phone numbers to alert them ofsystem events.

This option allows users to set up or alter the mobile phone numbers and the types of messages sent. Thereare three sub-options, one for each phone:

1 = Call 1

2 = Call 2

3 = Call 3

Each of these options has a further sub-menu as follows:

1 = Mobile Number

The mobile number can be up to 20 digits long.

2 = Message Type

This menu allows the types of events that are sent via SMS to be selected. There are four options as follows:

1 = Alarm Events2 = Alarm & Set3 = Alarm & Fault4 = All EventsThese selections can be different for each mobile.

44 - Mobile Nos

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Galaxy 2 Series Installation/Programming Manual 48 - Level 3 Access

4 = Auto Service (engineer access only)

This option allows an automatically initiated remote servicing call to the remote servicing centre.

1 = Mode

This selects the mode of automatic remote servicing connections.

0 = OffIn this mode the panel will not automatically initiate a remote servicing call. This is the defaultsetting.

1 = PSTNIn this mode the panel automatically initiates a remote servicing call via the on-board modem to thetelephone number programmed in menu 561.12 on the date and time programmed in menu 56.7.11.

2 = GSM (2–44+ only)In this mode the panel automatically initiates a remote servicing call via the GSM module to thetelephone number programmed in menu 561.12 on the date and time programmed in menu 56.7.11.

3 = EthernetIn this mode the panel automatically initiates a remote servicing call via the Ethernet module to theIP address programmed in menu 56.4.3.2.2.1 on the date programmed in menu 56.7.11.

Option 48 - Level 3 AccessThis option is a command which allows a normal user to authorize access for an engineer/master. This isalways required for an engineer code. It is also required to authorize access for a Master code, if the system isset up this way by parameter 16. Authorization will be granted for five minutes. The engineer code must beentered within this time. Two sub-options are available:

0 = Disabled

This is always the option shown first.

1 = Enabled

Authorization is granted for five minutes.

Upon leaving engineering mode, the engineer’s code can regain access for up to 30 minutes, before manualauthorisation is required again via menu 48.

NOTE: During the 30 minute window, a user cannot disable engineer access.

If the engineer PIN code has a # assigned, then the engineer can gain access by entering his PIN code twice.The first entry of the PIN code will generate a tamper alarm on the keypad.

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Menu 50 - Engineer 1 Options

Option 51 - ParametersThis option allows the engineer to modify the settings for the system functions. Options can be selected usingthe A or B keys or by entering the two digit parameter number and pressing the ent key. The selected optionscan then be programmed by typing the new value directly or by using the A key to increase or the B key todecrease the values assigned to the parameter; pressing the ent key accepts the new value and returns to theprevious menu level.

NOTE: If the system is split into groups, certain parameters will have a different setting for each group.

The following table lists the System Parameters.

51 - Parameters

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Table 22. System Parameters

51 - Parameters (cont’d)

Parameter Values Defaults

01=Bell Time 01-30 minutes 15 minutes02=Bell Delay 0=Off. 1=On - 10 min. 0 = Off04=Exit Time 00 - 99 Seconds. 00=Infinite time/final contact. 3005=Entry Time 00 - 99 seconds. 3006=Part set exit 0=Silent 1=Keypad only 2=Keypad & Speaker 1 = Keypad07=Intruder Resets 0=User 1=Remote 1 = Remote08=Exit Terminate 0=No 1=Full set only 2=Full and part set only 3=All set modes 0 = No09=Zone lockout Alarms per set period, 0-9 Events 0 = No Lockout10=Horn Volume 00-31 1011=Audible power fault 0=No 1=Yes (AC fail after 1 hour, Batt low immediate) 1 = Yes

12=Banner

1=Top Line2=Bottom Line programmed as for SMS3=Show on Set 0=Off (Blank display when set) 1=On (Display normal banner when set)

BlankBlank

1 = On

13=Hot keys 1=Mode (0=Off, 1=On, 2=On+ Keyfob panic)2=Audible Panic (0=No, 1=Yes)

0 = Off0 = No

14=Lockouts 0=Off 1=Keypad 2=Fob and Tag 3=All 3 = All15=SPK Mode LS Output 0 = Switch DC 1 = Speaker Driver 1 = SPK Driver

16=Master Code Selects access authorization required1=Always authorized 2=Temp authorized (via menu 48) 1 = Always

17=Restart 1=Enter performs a reboot, After warning.2=Enter loads the factory default programming. -

18=Stop Set Sub options selectable. Each is stop set on/off1=AC Fail, 2=Batt fault, 3=RF Jam, 4=Tel Line fault 1 = AC Fail

19=Part Bells 0=No 1=Yes 1 = Yes20=Night Bells 0=No 1=Yes 1 = Yes21=Reset Manager Enter to reset manager code to default, after warning -

22=Technistore 1=Mode: 0=Off, 1=On (In parallel to other resets)2=Version (000-255) 0 = Off

23=Alerts 1=Audible and visible 2=Audible only 3=Visible only 1 = Aud & Vis

24=Exit/Entry 1 = Exit Alarm: 0=Disabled, 1=Enabled2 = Entry Deviation: 0=No, 1=Yes (Default for EN50131-1)

0 = Disabled1 = Yes

25=Easy set 0=No 1=Yes 0 = No26=Sup. Entry 0=No 1=Yes 0 = No27 = Fail Set Time 00 (0-99), Can be assigned a different value for Groups 1 - 4 0 = disabled28 = Fail set Info 0 = User Info, 1 = Group Info 0 = User Info

46=Zone resistance

3 Sub options:1=Zone config, 0=NC, 1=Double Balance, 2=EOL2=EOL resistor, (1 - 99) X 100 Ohms, 100 ohm intervals3=Contact Res, (1 - 99) X 100 Ohms, 100 ohm intervals

1 = Doub Bal10 (1000)10 (1000)

47=Set confirm 0=Off 1=Strobe (for 2 seconds). 2=Strobe and Bell (for 2 seconds when set terminates). 0 = Off

50=RF Options 1=RF Fob unset: 0=Disable fobs, 1=Unset anytime, 2=After Entry.2=Supervision (0=2.0 hrs, 1=3.6 hrs, 2=8.4 hrs)3=Audible Jam4=Audible Supervision5=Audible RF Low BatFor 3, 4, 5 0=No 1=Yes6 = RF Check 0=No 1=Yes

1 = Anytime0 = 2 hrs

0 = No

1 = Yes

55=DD243 1=Confirm Time (00-60) minutes, 0=Full set period

2=Confirm Mode 0=Disabled 1=Before Entry (No portable ACE) 2=Except Entry (With portable ACE) 3=Always Confirm (Non DD243)

3=Restrict Keypad 0=No 1=During Entry 2=Never Unset

4=Restart Time 0=No 1=If first Zn Repeats

5=Reduced Resets. 0=Off 1=On Unconfirmed

6=Re-arm mode 0=On Confirm 1=On Bell Timeout

7=Entry T/O Conf. 0=No 1=Yes

8=Exit ZN conf. 0=Before Entry 1=Except entry

9=Entry clears conf. 0=Reset Count 1=Keep Count

30

2 = Except Entry

1 = During Entry

0 = No

1 = On Unconfirmed

0 = On Conf.

0 = No

0 = Before Entry

1 = Keep Count

59 = Part Set Tone 0=Disabled, 1= Enabled 0 = Disabled70 = Max Cause 000 - 255 alarm cause codes 0 = disabled72 = 0V Det delay 0 = No, 1 = Yes 0 = No

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01 = Bell Time

This is the amount of time that the sounders/bells activate after an alarm condition has occured. The durationof the output is programmable within the range 01-30 minutes; the default is 15.

02 = Bell Delay

This parameter, when set to On, delays the operation of the bell for 10 minutes following an intruder alarm.

04 = Exit time

This is the amount of time that the user has to exit the premises after initiating a Full Set procedure. The ExitTime is programmable within the range 00 - 99 seconds. If Final Contact is required then enter 00. Thesystem will only set when a final exit zone is activated after the exit timer has started (infinite exit time).

This parameter can be assigned a different value for each group, when groups are enabled.

05 = Entry Time

This is the amount of time that the user has to enter the premises and Unset the system. The Entry Time isprogrammable within the range 00 - 99 seconds. The Entry Time is initiated by opening a zone programmed asFinal Exit.

This parameter can be assigned a different value for each group, when groups are enabled.

06 = Part Set Exit

This parameter allows the Part Set exit timer to be silent, audible through the keypad, or, audible through thekeypad and internal sounder. Night Set will always have a silent exit timer but this option will affect the NightSet comfort tone (confirmation of set) and fault warnings given at the end of the Exit Time. All possible optionsare shown in the following three tables.

PART SET EXIT W ARNING – 51 06 0 SILENT

EXIT TONE FAULT TONE FAULT TONE AT END OF EXIT TIME

COMFORT TONE

Part Set None None Keypad only Keypad only Night Set None None Keypad only Keypad only

Table 23. Part Set Exit Warning - Silent

PART SET EXIT W ARNING – 51 06 1 KEYPAD BUZZER ONLY

EXIT TONE FAULT TONE FAULT TONE AT END OF EXIT TIME

COMFORT TONE

Part Set Keypad only Keypad only Keypad only Keypad only Night Set None None Keypad only Keypad only

Table 24. Part Set Exit Warning – Buzzer Only

PART SET EXIT W ARNING – 51 06 2 KEYPAD BUZZER AND INTERNAL SOUNDER

EXIT TONE FAULT TONE FAULT TONE AT END OF EXIT TIME

COMFORT TONE

Part Set Both Both Both Both Night Set None None Both Both

Table 25. Part Set Exit Warning – Buzzer & Internal sounder

51 - Parameters (cont’d)

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07 = Intruder Resets

This parameter dictates what type of reset is required for a signalled intruder alarm. There are two settings:

0. User

This setting allows any user programmed with the following user types: user, manager, master, to reset a fullintruder alarm.

1. Remote (default)

This setting requires an engineer or remote reset for a signalled intruder alarm. If this option is selected on asystem where confirmed alarms are used, then the reset level required for an unconfirmed alarm can be re-duced to user, if required, in parameter 51.55.5. This is the default setting for DD243 compliant systems.

08 = Exit Terminate

If Exit Terminate is enabled for Full, Part or Night Set, exit times for the selected mode will be set to infinity.For Full Set this overrides the value programmed in the Exit Time option (Option 04=Exit Time).

Setting of the system is terminated when a Push Set zone is opened during the exit time. There is a five seconddelay between the closing of the Push Set zone and the setting of the system to allow entry route detectors tosettle.

NOTE: The operation (opening and closing) of Push Set zones has no effect on the system exceptduring the setting procedure.

The settings for Exit Terminate are:

0. No

1. Full set only

2. Full and part set only

3. All set modes

09 = Zone Lockout

This parameter determines the number of times a zone can activate during a set period before it is omittedfrom the system. Each re-activation can only occur when the panel has re-armed. See menu 51.55.6=Parameters.DD243.Re-arm mode. The counter is reset when the panel is unset.

0 (0 - 9) Events.

0 = No lockout (default)

10 = Horn Volume

This parameter sets the volume of the entry/exit horn via the loudspeaker. The range is 00-31. Setting thevolume to 00 makes it silent. Alarm tones are not affected by the volume control.

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11 = Audible Power Fault

This parameter has two settings:

0. No

1. Yes (AC fail, Batt low).

When set to 1 (Yes) an alert indication is given at the keypad (see parameter 23).

NOTE: A Batt low/missing event will not be indicated immediately but will take up to four minutes beforebeing indicated on the keypad.

Visual indication is always given on keypads. These indications are signalled to the ARC after the time pro-grammed in menu 56.7.04=Comms.Parameters.Power Delay. No audible indication is given when thesystem is set.

NOTE: When set to 0 (No) no audible indication is given. It is only visible on keypad.

12 = Banner

This parameter has three settings:

1. Top Line

2. Bottom Line

3. Show on Set

0 = Off (Blank display when Set)

1 = On (Display normal banner when set)

The Day Mode Banner display on keypads can be altered. The top and bottom row can be edited separatelywith descriptors of up to 16 characters. Each number key on the keypad is assigned several characters thatare accessed by pressing the key repeatedly until the desired character appears on the screen.

For a full description of how to use the text function, refer to Text Programming.

13 = Hot Keys

This parameter has two settings:

1. Mode

0 = Off

1 = On

2 = On + Keyfob panic

2. Audible panic

0 = NO

1 = Yes

When the mode is set to On this option permits Assistance, Fire and Panic facilities to operate via a double-push on the keypad buttons. The button combinations vary depending on keypad type and are detailed inGeneral Menu Operation, Hot Keys.

When set to On + Keyfob panic, the panic function is extended to the keyfob.5804 keyfob: the lower two buttons are pressed simultaneously.TC805HF keyfob: the first and third buttons (marked SOS) are pressed simultaneously.TCB800m keyfob: the first and third buttons (Full set and Part set ) are pressed simultaneously.

51 - Parameters (cont’d)

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Assistance:Keypad displays assistance message with fast pulse tone, and assistance outputs/comms trig. areactivated.

Fire: Keypad displays fire message with slow pulse tone and fire output/comms trig are activated.

Panic: PA is indicated and a constant tone emits and PA/outputs/comms trig are activated.

NOTE: When groups are enabled, hotkey operation occurs in the common group (group four).

14 = Lockouts

This parameter has four settings:

0. Off

1. Keypad

2. Fob and Tag

3. All

When option 1 is selected, the keypad is locked out if 10 PIN codes are entered simultaneously without avalid PIN code being entered, this does not include the # key. The keypad, and any keypads that have beenused for invalid PIN code entry, are by-passed from the system for two minutes.

Keypad tamper lockout is indicated on the keypad display. After 20 attempts, a tamper is logged and an eventis signalled. When option 2 or 3 are selected the same rules apply to wireless fobs and prox tags.

15 = SPK Mode

This function selects whether the LS (loudspeaker) terminal acts as a speaker driver or a normal switchedoutput. There are two settings.

0. Switch DC

1. SPK Driver

NOTE: Never connect a speaker to this terminal when the mode is set to Switch DC.

16 = Master Code

This parameter selects if access authorization is required. There are two settings:

1. Always authorized

2. Temp authorized

This setting operates via Option 48 = Level 3 access.

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17 = Restart

This parameter has two sub-options:

1. Restart

The Restart option configures any modules that have been added to the system but gives an alarm if there areany tampers open or if any modules are reported as missing. The message WARNING!!! ent = RESTARTSYS. is displayed. Press the ent key to restart the system.

2. Load Defaults

This parameter re-configures the system without the need to remove and reconnect the power. The systemdisplays a WARNING!!! ent=DEFAULT, press the ent key to reconfigure the system. The keypad displaybecomes blank for a few seconds, then displays the message Loading Defaults. When configuration iscomplete the banner returns to the normal display (day mode).

NOTE: After restart, there is a 30 minute window when the engineer’s code can still access the menu. Afterthis time, user authorisation will be required.

NOTE: Outputs are momentarily reset during the restart. If the system has a communications requirement,put it on test before using the restart.

18 = Stop Set

This parameter has four sub-options. Each is stop set On/Off

0 = Off – System can be set with condition present.

1 = On – Condition must be cleared before setting.

1. AC Fail

This option prevents setting of the system if there is a mains fail condition.

2. Batt Fault

This option prevents setting of the system if there is a low battery condition.

3. RF Jam

This option selects whether or not the system can be set while there is an RF Jam (interference condition)present.

4. TEL Line Fault

When set to on a telephone line fault prevents setting.

NOTE: The above Fails (AC, Batt, RF Jam and Tel Line) must first be detected by the panel before thesystem is prevented from setting.

19 = Part Bells

This option determines whether the External Bell and Strobe outputs activate during an alarm condition whenthe system is Part Set.

0. No

1. Yes (default)

NOTE: Internal sounders always sound.

51 - Parameters (cont’d)

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20 = Night Bells

This option determines whether the External Bell and Strobe outputs activate during an alarm condition whenthe system is Night Set.

0. No

1. Yes (default)

Note: Internal sounders always sound.

21 = Reset Manager

This parameter must only be used if the Master Manager code is lost or must be replaced. On selecting theReset MGR parameter, a warning message is displayed: WARNING!!! ENT=Code Change; press theent key to erase current code and reset it to the default of 1234.

22 = Technistore

A user code can cancel an alarm activation but a Technistore reset number must be entered to restore thesystem. This parameter has two options:

1. Mode

0 = Off

1 = On (in parallel to other resets)

2. Version 000 (0-255)

The engineer can program the Technistore Version number with a valid range of 000 - 255.

23 = Alerts

This parameter has three settings and dictates how alert indications are presented to the user.

1. Audible and Visible

2. Audible Only

3. Visible Only

Alert indications are given in the unset state only. Audible alerts are given on keypad buzzers and internalspeakers.

Visible alerts are given on the keypad display only.

24 = Exit/Entry

This parameter has two options:

1. Exit Alarm

If enabled, the following zone responses will activate an alarm during the exit time or setting:Intruders, Audible panic, Silent panic, Fire, Tamper, Event Types, Assistance, 24 hour, Intruder low, Intruderhigh, User code tamper, Zone tamper.

An exit alarm will contribute to a confirmed alarm if it is the correct type of alarm e.g. intruder.

All the groups initiated with the setting routine should set on the activation of an exit alarm.

Exit alarm funcionality is programmable per group. Only zones in groups programmed for exit alarm shouldactivate an exit alarm.

51 - Parameters (cont’d)

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2. Entry Deviation

This option has two settings:

0 = No

1 = Yes (default)

If set to 0 (Entry Deviation not permitted), deviation from an entry route during entry or supplementary entryperiods will result in a Full Alarm Condition.

An entry route is defined as zones programmed as 01 (final) and 02 (exit).

Entry Deviation permitted (1) means that external bells/communications/triggers will be withheld until the entrytime expires. Entering a valid code before a full alarm condition prevents communication and triggers fromactivating.

This option defaults to 1 - required by DD243, EN50131-1

25 = Easy Set

This parameter has two settings:

0. No (default)

1. Yes

When set to Yes (enabled), this option allows users to (Full, Part or Night) set the system without entering auser code. Instead, users set the system by pressing the A> or <B Keys. A valid user code is still required tounset the system.

When set to No (disabled), a user code must be entered before setting.

NOTE: Easy Set can only be used when there are no faults controlled by the Stop Set override parameter.

26 = Supplementary Entry

This parameter has two settings:

0. No

1. Yes

When set to No (disabled) an alarm condition occurs if the system has not been unset at the end of the entrytime.

When set to Yes (enabled) an internal only alarm occurs if the system has not been unset at the end of theentry time (Trigger, External Bell and Strobe do not activate). The internal alarm will run for 30 seconds. A fullalarm will occur if the system has not been unset at the end of this time.

27 = Fail Set Time

This parameter determines the period of time, following the start of the setting procedure, before the Fail toSet outputs activate. The programmable range is 0–99 seconds; Assigning a value of 00 (default) disables theFail to Set operation.

NOTE: The Fail to Set time should be at a minimum 5 seconds longer than the Exit Time (option 51.04),to allow for the setting period to expire.

This parameter can be assigned a different value for each group.

51 - Parameters (cont’d)

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28 = Fail Set Info

If enabled, this parameter allows SIA levels 0 and 1 to send the user number or the group to the ARC follow-ing a Fail to Set event.

46 = Zone Resistance

This parameter has 3 options:

1. Zone Config

The zones on the Galaxy 2 Series function as Normally Closed, Double Balanced, End of Line. This sets theconfiguration for all hardwire zones on the system, including expanders. See Section 5: Hardware—Zones,for wiring instructions for each configuration. This option defaults to (1) Double Balanced.

0. Normally Closed

1. Double Balanced

2. End of Line

2. EOL Resistor

This selects the resistor value for the end of line (EOL) resistor used in EOL double balance zone configura-tions. Normally this should be 1000 ohms. The value entered is in hundreds of ohms, 01 = 100 ohms,99 = 9900 ohms.

3. Contact Res

As for EOL Resistor but for Contact resistor.

47 = Set confirm

This parameter gives an external indication when the system has set. There are three options:

0. Off

1. Strobe (flashes for two seconds)

2. Strobe & Bell (indication for two seconds when set terminates)

50 = RF Options

This parameter has six options:

1. RF Fob Unset

This option assigns the operation of the keyfobs.

0 = Disable fobs

1 = Unset anytime (default)

2 = After Entry

2. Supervision

If no signal is received from each RF detector within this time window, a supervision alarm is generated.

0 = 2.0 hours (default)

1 = 3.6 hours

2 = 8.4 hours

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3. Audible Jam

This parameter suppresses alert indications for audible jam faults and has two settings:

0 = No (always silent). This is the default.

1 = Yes (follows alert programming in parameter 23)

4. Audible Supervision

This parameter assigns the indication for supervision loss and has two options:

0 = No (always silent).This is the default

1 = Yes (follows alert programming in parameter 23)

5. Audible RF Low Bat

This parameter assigns the indication for RF low bat faults and has two options:

0 = No (always silent). This is the default.

1 = Yes (follows alert programming in parameter 23)

6. RF Check

The RF Check is a means of warning the user that the system is unable to determine the status of the detector.There are two options:

0 = No

This option disables the checking of the RF Stop Set (see Section 8, RF Stop Set).

1 = Yes

This option enables the checking of the RF stop set.

55 = DD243

The options of this parameter allow the confirmed alarm reporting operation to be modified to tailor thesystem to requirements of DD243: 2002, depending on the type of installation. The default options should beused in all installations where portable fobs are used to unset.

1. Confirm time

0 - 60 minutes, 0 = Full set period

2. Confirm Mode

This dictates if and when a sequentially confirmed alarm report can be generated. A sequentially confirmedalarm means that two separate alarm zones must be activated during the set period within the confirmed alarmtime window. The option has four settings:

0 = Disabled

No confirmed alarm signals will be generated

1 = Before Entry (No Portable ACE)

This option means that confirmed alarms can occur during the set state until a Final Exit type zone isactivated and the entry timer started. From that point on, no confirmed alarms can be generated until auser unsets then sets the system again.

2 = Except Entry (With Portable ACE). This is the default.

This option means that confirmed alarms can be generated during the set state except during the entrydelay period. If a Final Exit type zone starts the entry timer, and then an Entry timeout occurs, the con-firmed alarm functionality will come back into operation after the timeout has occurred.

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3 = Always Confirm (Non DD243)

This option means that confirmed alarms can be generated by alarms activated at any time during the setstate.

3. Restrict keypad

This option can be used to prevent keypads from unsetting the system under normal conditions. This can beused to force users to always unset by keyfobs (portable ACE), to comply with DD243:2002.

This option has three settings:

0 = No

Keypads can always unset the system.

1 = During Entry (default)

The keypad can unset the system at any time, except during the normal entry time. This option could beused to ensure users are always using their keyfobs but does not lock them out completely when a keyfobis lost or damaged.

2 = Never Unset

The keypad can never unset the system. Unsetting can only be performed by a keyfob, proximity tag orcard.

NOTE: If the panel becomes locked by accidental selection of this option, the panel can be forceunset by the following procedure:

(a) Remove all power from the system.

(b) Open the panel lid tamper.

(c) Re-apply power.

The system will power up unset in a tamper condition.

4. Restart time

This option has two settings:

0 = No (default)

1 = If 1st Zn Rpt.

When this option is set to 1 (If 1st Zn Rpt.), the confirm timer will be restarted whenever the first to alarm zoneis opened again within the confirm time window. When set to 0 (No), the confirm timer will continue running asbefore and will not restart.

5. Reduced Resets

This option allows users to reset the system if there has not been a confirmed alarm signalled.There are twosettings:

0 = Off

This setting makes any alarm follow the reset level in parameter 51.7.

1 = On Unconfirmed (default)

This setting allows the user to reset an unconfirmed alarm, even if parameter 51.7 is set to require aremote reset.

6. Re-arm mode

This option dictates at what point the re-arm occurs when activated zones are being by-passed and signalledto the monitoring station. There are two settings:

51 - Parameters (cont’d)

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0 = On Confirm (default)

By-passed zones will send a by-pass signal at the end of the confirm time window.

1 = On Bell Timeout

By-passed zones will send a by-pass signal at the end of the bell time.

7. Entry T/O Confirm

This option determines whether an Entry Timeout alarm will contribute to a confirmed alarm. There are twosettings:

0 = No (default)

1 = Yes

When set to 1 (Yes), a timeout alarm will contribute to a confirmed alarm. When set to 0 (No), a timeoutalarm will only cause an unconfirmed alarm. It will not be counted as either the first or second contributionto a confirmed alarm.

This must be set to 0, for DD243:2002 compliance.

8. Exit ZN conf.

0 = Before Entry (default)

1 = Except Entry

9. Entry clears conf.

This options selects whether a single (unconfirmed) alarm activation is remembered for the purposes of confir-mation, after an entry door is open. This option has two settings:

0 = Reset Count

In this case, the confirmed alarm counter is reset to 0 as soon as an entry door is opened.

1 = Keep Count (default)

In this case, the confirmed alarm counter is maintained. If there is one alarm activation before the entrydoor is opened, and then another activation after the entry delay expires, a confirmed alarm condition willbe generated, provided that both activations occur within the confirm time window.

59 = Part Set Tone

The Part Set Tone, when enabled, will cause a different tone when performing a part set. The duration of thetone is two seconds on and 100 milliseconds off approximately for the Mk7 keypad only.

NOTE: The ECP keypad has a different tone.

This option is programmable per group. If one group is programmed for part tone and the other is not, thepart set tone takes precedence over the full set tone.

70 = Max Cause

This option defines the range of valid cause codes, as agreed with the Alarm Receiving Centre. When thisfunction is enabled, a cause code must be entered by the user when a reset of the system is required.

This parameter can be disabled by setting the alarm cause code to 000 (default).

72 = 0V Det Delay

When enabled, this parameter delays the indication of open zones at the start of a set sequence whilst the 0VDetector Reset output (53.1.08) is active; this includes keypad text and sounders.

If there are no outputs programmed as 0V Detector Reset then there will be no delay at the start of the set.

51 - Parameters (cont’d)

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Galaxy 2 Series Installation/Programming Manual 52 - Zones

Option 52 - ZonesZones are programmed in menu 52. Each zone has a set of attributes as shown in the following table:

Selecting Zones

On entering the option, the first zone on the system is displayed; the zone address, function and group as-signed are displayed on the top line, the descriptor is displayed on the bottom line.

From the display of the first zone, any zone on the system can be displayed by pressing the A or B keys or byentering the address of a specific zone.

The zone is selected for programming by pressing the ent key; the first zone programming attribute 1=Func-tion is displayed.

Attributes

The attributes can be stepped through by pressing the A or B keys or directly selected by pressing the at-tribute number (1–6). Once the required attribute is on display, press the ent key to gain access for modifica-tion.

Once the attribute has been assigned press the ent key to save the programming and return to the attributeselection level.

Attributes Description

1 Function Assigns Zone Type2 Descriptor SMS text - 16 characters max. alpha-numeric description3 Soak Test Zone monitored for 14 days max.4 Omit enable When enabled zone can be by-passed by authorized user5 RF options Zone set up with a wireless detector6 Groups Assigns a zone to a single group on the system

Note: Groups only appear if the Groups option is enabled (refer to option 63.1)

Table 27. Zone Functions and Descriptions

Table 26. Zone attributes

Zone Function Description

0 Not Active For use in Part set. Zone is not active in alarms but tampers are monitored.

1 Final Activation whilst set initiates the timed entry procedure. Activation during setting may terminate settingdepending on programming.

2 Exit Intruder zone which is inactive during the setting and timed unsetting procedures.

3 Intruder Causes an instant intruder alarm when set.

4 24 Hours As an intruder zone but permanently active.

8 Push Set Terminates a setting procedure.

9 Keyswitch Transition to open initiates setting. Transition to closed causes unset. Simulates level 2 user.

13 PA Activates a PA alarm.

14 PA Silent Activates a silent PA alarm.

17 Link Has no alarm function but can be used to activate links.

18 Spare Renders all function of a particular zone inactive, including tampers, RF supervision and RF Low battery.

19 Fire Activates a fire alarm.

20 Tamper Activates a tamper condition (both the physical alarm state and physical tamper state of the zone result inthe same tamper activation).

23 Batt Fail Causes an APS fault condition.

25 AC Fail Causes a PPS fault.

41 Low Intr Low priority intruder zone.

42 High Intr High priority intruder zone.

43 PSU Fault Power Supply Unit fail zone type.

53 Secondary Entry As Exit function but changes to entry upon the force omitting of a Final zone, as per the requirements ofDD243.

54 Assistance Activates an Assistance alarm.

55 Bell Fail Causes a bell fault condition

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1 = Function

This option allows the function of the zone to be selected. The zone can be assigned a different function foreach set mode (full, part and night set) to allow maximum flexibility. For instance, the zone can be pro-grammed with the ‘Intruder’ function in Full and Part Set, but programmed as ‘Not Active’ in Night Set.

On selecting this option, the main zone function is selectable using the cursor keys, or by direct entry of thecode number for the zone type.

Pressing the ent key will apply the selected function to all set modes and then give the option of selecting adifferent function for the Part Set mode. Pressing the # key instead, will only save the function for the Full Setmode, and then display the Part Set function. Again, the function is selected using the cursor keys or directcode entry.

If no change is required for Part or Night Set modes, the esc key can be pressed to exit the zone functionoption. Pressing the ent key will save the function and then give the option of selecting a different function forthe Night Set mode.

Select the night set function and press the ent key or the esc key to cancel.

NOTES:

1. If the main function is a 24hr function (panic, fire, tamper or keyswitch etc) then the part set and nightset function cannot be altered separately. The zone must maintain the same function throughout.

2. In the unset mode, the zone function will be the same as that set for Full set.

3. The # key can be used to view each of the modes without reprogramming.

10081008100810081008 Full SetFull SetFull SetFull SetFull Set03=Intruder03=Intruder03=Intruder03=Intruder03=Intruder

10081008100810081008 Part SetPart SetPart SetPart SetPart Set01=Final01=Final01=Final01=Final01=Final

10081008100810081008 Night SetNight SetNight SetNight SetNight Set00=Not Active00=Not Active00=Not Active00=Not Active00=Not Active

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Galaxy 2 Series Installation/Programming Manual 52 - Zones (cont’d)

2 = Descriptor

Each zone can be assigned with an alpha-numeric description of up to 16 characters (see Table 16, TextCharacters). The descriptor is assembled from the character set in this table. On selecting the Descriptorattribute, the currently assigned descriptor (blank by default) is displayed on the top line. Each of the keys onthe keypad, when pressed, offers a choice of character on the bottom line. Press the key repeatedly to choosea character. A two-second delay accepts the character and the flashing cursor moves on. Press and holddown the * key to delete all the characters to the left or highlight a character and press the # key to delete asingle character.

For a full description of how to use this function, refer to Text Programming.

3 = Soak Test

Soak test. This option allows the zone to be placed in a test mode for the programmed number of days (maxi-mum 14). If the zone is activated when it would normally have caused an alarm, then a soak event is recordedin the log and no alarm is generated. The soak test days will be reset to the start. If no activations occur eachday, then the number of days are decreased by one, each day at midnight. If the counter reaches 0 days, thenthe zone is reinstated fully into the system and normal alarm operation is resumed.

4 = Omit Enable

If the omit attribute is set to 1 = Enabled, a user with the appropriate authorization can manually omit a zonefrom the system. It has no bearing on the force omit for re-arm/re-instatement. Manually omitted zones areomitted for one set period only.

5 = RF Options

These options allow the zone to be set up with a wireless detector.

There are seven options selectable with this attribute:

1. Serial number

This allows the detector’s unique serial number to be entered by typing the number or by using the auto-learnfunction. To use the auto-learn, press * and when prompted, activate the detector’s tamper switch. On learn-ing, the signal strength is displayed.

2. Loop number

On 5800 series detectors, this selects the loop input to be used on this zone.

3. Supervision

This enables or disables supervision of the wireless detector.

4. Auto reset

The Auto reset function can be enabled to force the zone to automatically close after five seconds, if no closesignal is received from the transmitter. This will be useful on certain installations.

5. Last signal

This shows the strength of the last signal received from this detector for V2 peripherals; 5800 series detectorswill not show that signal strength.

6. Lowest signal

Lowest Signal will show the lowest signal strength received from that device since records were reset in menu61. This is for V2 peripherals only; 5800 series detectors will not show this signal strength.

NOTE: If two receivers are fitted, both signals will be shown. If only one receiver is fitted, the reading forthat receiver only will be shown. The receiver not fitted will show a reading of 0, eg. 9/0.

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Galaxy 2 Series Installation/Programming Manual52 - Zones (cont’d)

7. Ack Module

This option determines how the Alarm Panel Allocates primary responsibility to Rf Modules for Acknowledg-ing Rf messages (generally fixed location Rf devices).

0 = Automatic.

This is the default option. The Alarm panel allocates primary responsibility for Acknowledging the Rfdevice to the Rf Portal having the best RSSI (signal strength).

1 = RF Module 4

This option Forces the Panel to allocate primary responsibility for Acknowledging the Rf device to RfPortal 4. The panel will only re-allocate primary responsibility in the event that Rf Module 4 fails for anyreason.

2 = RF Module 5

This option Forces the Panel to allocate primary responsibility for Acknowledging the Rf device to Rfmodule 5. The panel will only re-allocate primary responsibility in the event that Rf Module 5 fails forany reason.

6 = Groups

This option selects the group that a zone belongs to. The zone will always default to group 1, but can be set towork under any group.

Zone Functions and Descriptions

00 Not Active

The zone is not active in alarms but tampers are monitored.

01 Final

Zones programmed as Final initiate the unsetting procedure and terminate the setting procedure.

NOTE: The setting procedure can only terminate if the Exit Time (Parameter 51.04) is set to zero.

Opening the Final zone when the system or group is set starts the entry timer; opening and then closing theFinal zone during the exit procedure sets the system or assigned groups, providing all the zones are closed.The opening (+) and closing (–) of Final zones during the setting and unsetting procedures are recorded in theevent log.

Opening a Final zone during the set procedure is only reported during settling.

02 Exit

Zones that protect the entry and exit routes are programmed as Exit. During the setting and unsetting proce-dures Exit zones have a non-alarm operation. If the Exit zone is activated while the system is set - without theunsetting of the group being initiated - an Intruder alarm condition is activated.

Opening a Exit zone during the set procedure is only reported during settling.

03 Intruder

The Intruder function is inactive when the system is unset. When the system is set, activation of an Intruderzone causes a full alarm activation that requires to be reset with an authorized code.

04 24 Hours

As an intruder zone but permanently active.

NOTE: In the unset state, a 24 hour alarm is signalled. In the set state, an intruder alarm is signalled.

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08 Push Set

This zone function is used to terminate the setting routine. The system sets when the Push Set zone, usually apush button, is activated. The Entry/Exit Horn stops immediately the button is pressed; the system sets afterfive seconds, allowing the doors to settle to the closed state. The Push Set zone remains inactive until the nextsetting routine.

Only a Push Set zone in the common area will cause all setting areas to set, otherwise it will only set in thearea it is in. This will leave the other setting areas to continue setting until a Push Set zone in their areaactivates.

The Push Set zone is 1kΩ going to 2kΩ - refer to Figure 9 (Keyswitch/Push-Set Zone Wiring) for wiringdetails.

Activating a Push Set zone during the set procedure is only reported during settling.

NOTE: For this type of zone function to operate, Parameter 51.08, Exit Terminate, has to be set.

09 Keyswitch

The Keyswitch function allows a zone to be used as an on/off switch for the system or assigned groups.Operating a Keyswitch zone when the system is unset starts the timed full setting routine, therefore the exittime is applicable. The system sets when the exit time expires or a Final or Push Set is activated.

If the system is set, operating a Keyswitch immediately unsets the assigned groups; there is no entry timecountdown.

The Keyswitch operation is as follows: 1kΩ to 2kΩ sets the system; 2kΩ to 1kΩ unsets the system.

NOTE: The activated zones are not displayed on the keypad when a Keyswitch is used to reset the alarm.

Keyswitch operation with groups enabledWhen groups are enabled, a keyswitch zone will set and unset only the group that it is programmed to.However, if the keyswitch is programmed to the common group (group four), then it will set and unsetthe groups in the common group map (see Option 63.1.2).

13 PA

The PA (Personal Attack) function is continuously operational. Activation of this zone type overrides the BellDelay parameter and causes an instant full alarm condition that requires to be reset with an authorised usercode.

14 PA Silent

The PA Silent function is identical to the PA function, with the exception that there is no audible or visualindication of the activation; that is, no bells or strobes are activated. Only the PA output (normally channel 2on the digital communicator) signals the alarm. The activation (+) and restoral (–) of PA Silent zones isrecorded in the event log.

17 Link

This has no alarm function but can be used to activate links.

18 Spare

The Spare function allows any zones that are not being used to be ignored by the system; the resistancereadings from the circuit - including the tamper conditions - do not activate an alarm condition.

NOTE: It is recommended that all unused zones are programmed as Spare and that a 1kΩ 1% resistor isconnected across each of these zones.

52 - Zones (cont’d)

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Galaxy 2 Series Installation/Programming Manual52 - Zones (cont’d)

19 Fire

The Fire function is continuously operational. When activated, a FIRE zone overrides the Bell Delay pa-rameter and activates an instant alarm (Bell, Strobe and Fire). The keypad buzzer and control panel hornoutput, if fitted, emit an interrupted tone (one second on, 0.5 seconds OFF), easily distinguishable from allother alarm conditions. Any valid code entry cancels the Fire activation.

20 Tamper

The Tamper function is continuously operational. When a Tamper zone is activated (1kΩ to 2kΩ), a tamperalarm is generated; this requires to be reset by an authorised user code. If a tamper condition (open or shortcircuit) occurs, a tamper alarm is also generated.

23 Batt Fail

This function is used to monitor the voltage of a back-up battery connected to a power supply. It causes anAux. Power Supply fault condition.

25 AC Fail

This function is used to monitor a remote power supply. In the event of a power failure the AC Fail zone isactivated; the activation (+) and de-activation (–) of the zone is recorded in the event log.

41 Low Intr

This zone type assigns a low priority to a zone in the event of an intruder alarm. It operates identically to anormal intruder zone except that an activation is logged as low priority in the event log, and is signalled to theARC as BL when using SIA format.

42 High Intr

This zone type assigns a high priority to a zone in the event of an intruder alarm. It operates identically to anormal intruder zone except that an activation is logged as high priority in the event log, and is signalled as BFwhen using SIA format.

43 PSU Fault

This zone type triggers a general fault output and logs a PSU fault in the event log. The fault is signalled to theARC as YP when using SIA format and 314 when using CID format.

53 Secondary Entry

As exit function but changes to entry upon the force omitting of a final zone.

54 Assistance

This function activates a “personal assistance required” alarm in both set and unset conditions. Bells andsounders are activated and an assistance message is signalled.

55 Bell Fail

This function causes a bell fault condition.

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Option 53 - OutputsThis option allows the operation of all the system outputs to be programmed. Outputs numbered 0001 to0008 are the outputs from the trigger header. Outputs numbered 1001 to 1004 are the standard outputs onthe main PCB. Outputs on expansion modules are shown if fitted. Each output has a sub menu containingattributes as shown:

1. Function

Assigns the output function that activates the output.

2. Polarity

This selects if the output is normally off (positive) or normally on (negative). Positive means that the outputis 12V going to 0V when activated. Negative means that the output is 0V going to 12V when activated.

3. Groups

For output types where groups are programmable, this selects the groups that an output responds to. Anoutput can respond to 1, 2, 3 or 4 groups.

NOTE: Reflex means that the output stays on until the condition clears.Latch means that the output stays on until a valid user logs on (PIN or card).Latch* means that these outputs are latched but can be forced off by bell delay, bell time or confirmtimeouts.Pulse means that the output stays on for five seconds and then switches off again.

4. RF Options

Option not available at present.

Selecting Outputs

On entering the option, the first output on the system is displayed; the output address, function and mode aredisplayed on the top line, the polarity and assigned groups are displayed on the bottom line.

From the display of the first output, any output on the system can be displayed by pressing the A or B keys orby entering the address of a specific output.

The output is selected for programming by pressing the ent key; the first output programming attribute1= Function is displayed.

00=Not Used

This function is used to designate outputs that are not being used on the system.

01=Bell (Latch)

The Bells output is activated on a full alarm event when the system is set. This output is subject to the BellTime and Bell Delay parameters.

02=Strobe (Latch)

The Strobe output is activated on a full alarm event during the set state. This output is subject to the BellDelay. The Strobe output follows the Bell Time, but latches on after the last rearm.

03=Panic (Latch)

The PA output is activated whenever any of the PA zone types activate. It latches on and remains active until avalid code, with the appropriate reset level, is entered.

53 - Outputs

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04=Intruder (Latch)

The Intruder output is activated on a full alarm event during the set state.

05=Tamper (Latch)

The Tamper output is activated whenever a circuit tamper or lid tamper occurs. The output is not subject torearm: it latches on and remains active until a valid code, with the appropriate System Reset level, is entered.

06=24 Hour

The 24 Hour output is activated whenever a 24 Hour zone is activated. The output is not subject to rearm: itlatches on and remains active until a valid code, with the appropriate System Reset level, is entered.

08=0V Detector Reset (Pulse)

The 0V Detector Reset (Pulse) output is used to power detectors that require a momentary power inter-ruption to reset them, for example, break glass or vibration detectors. This output reverses its polarity(changes from 0V to 12V) for the period of the Pulse output mode when the setting procedure has beeninitiated. The output should only be assigned to one group.

NOTE: When installing detectors that require to be powered from a OV Detector Reset output, connectthe positive lead of the detector to the 12V terminal of a power supply and the negative lead to OVDetector Output output terminal. Do not change the Output Polarity to 1=Neg: it must remainas positive polarity.

09=Set (Reflex)

The Set output is activated when the assigned groups on the system are set. This output is a Reflex outputand follows the set and unset status of the groups.

11=Comms Test (Pulse)

This output activates any time a test signal is sent to the Alarm Receiving Centre.

14=AC Fail (Reflex)

The AC Fail output indicates the status of the a.c. (mains) power supply. The output activates when the a.c.supply fails or an AC Fail zone is activated. The output is reset when the a.c. supply is restored or the ACFail zone is closed. This output is subject to Parameter 56.7.4=Comms.Parameters.Power Delay.

15=Low Batt (Reflex)

The Low Batt output activates whenever the control unit stand-by battery falls below 10.5V or a Low Battzone is activated. The output is restored when the voltage rises above 10.5V or the Low Batt zone is closed.

16=Fire (Latch)

The Fire output is activated whenever a Fire zone is activated. It latches on and remains active until a validcode (level 2 or above) is entered.

53 - Outputs (cont’d)

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20=Confirm (Latch)

The Confirm output is activated when there have been activations on two separate zones: the second activa-tion must occur within the Confirm Time Window. The zones do not have to be in the same group. Confirmoutputs will switch off when all groups which have been in alarm are unset.

NOTE: The Confirm output is used to give positive identification that a genuine intruder alarm condition hasoccurred and to minimise the possibility of false alarm activations.

32=Omit (Reflex)

The Omit output is activated as soon as a zone is omitted from the system. The activation can be initiatedmanually by omitting a zone at 11 = OMIT ZONES or by force omit at rearm. Response to either is control-led by Option 56.7.06 = Comms.Parameters.Omit Sig.

44=Abort (Pulse)

The Abort output is activated when a valid code is entered to unset the system following an intruder alarm.The output stays on for one minute and then switches off.

45=Unset (Pulse)

The Unset output is activated each time the system (or group) is unset.

51=Link (Reflex)

Activates when link zone is activated see 52.1

66=RF Jam (Reflex)

The RF Jam output is activated whenever any of the RF RIO’s configured onto the system detect a significantlevel of interference to cause radio jamming.

67=RF Supervision Fail (Reflex)

The RF Supervision Fail output is activated whenever there is a supervision failure from any one of thesupervised RF detectors configured onto the system. That is, when the system has received no signals (includ-ing periodic check-in signals) whatsoever, from a particular detector within the programmed supervisionperiod.

68=Assistance (Latch)

Keypad assistance hot key activation or assistance zone.

70=Any Set (Reflex)

Activated when system is Full Set, Part Set or Night Set.

71=Bell Fail (Reflex)

Activates when bell fail zone is activated see Option 52.1

72=RF TX Low Battery (Reflex)

The RF TX Low Battery output is activated whenever an RF detector sends a low battery condition to anRF receiver. There is a default delay period of 100 hours before the output is activated.

53 - Outputs (cont’d)

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73=Fail to Set

The Fail Set is activated if the system (or assigned groups) fails to set within the time assigned in parameter27=Fail to Set – refer to option 51=PARAMETERS.

76=Fault (Reflex)

This output will activate any time there is a fault condition present on the panel and will clear when all the faultconditions have cleared.

The following fault types will activate the fault output:

Line fail (any module), ARC comms fail (any module), RF jam, RF low battery, RF supervision failure, Bell fail(from a bell fail zone), AC fail (panel, AC zone or power supply), Battery fail (panel, battery zone or powersupply).

SMS signalling faults will not activate the fault outputs.

53 - Outputs (cont’d)

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Option 56 - CommsThe Communications option is used to control the Galaxy 2 Series system signalling and has six submenusbroken down as follows:

1 = Telecoms

4 = Ethernet

5 = GSM

6 = HW Priority

7 = Parameters

8 = 2-Way Voice

NOTE: The account number, format/triggers, autotest, access period and access mode are shared betweenthe Telecom/GSM and Ethernet.

Telecom/GSM

These sub-sections set up the parameters for the built-in dialler modem and the GSM Module. Most of theprogramming options are shared between both sections and can be modified from either one, except wherenoted.

56 - Comms

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1 = Telecom, 5 = GSM01 = Format 1 = DTMF

(Default)1 = Channels 1-8 1 = Function

2 = Not used3 = Not used4 = Groups

2 = Fixed Reports

2 = SIA

1 = Low Bat Ch9

2 = Invert Open/Close

3 = Send Restores

0 = No1 = Yes (Default)

0 = No (Default)1 = Yes

0 = On Unset (Default)2 = Sys Restore

1 = Triggers (see Trigger Events table)

3 = Contact ID 1 = Triggers (see Trigger Events table)

02 = Telephone No. 1

03 = Account No. 6 digits Max.

04 = Receiver 1 = Alternate (Default)2 = Dual

20 digits Max

05 = Telephone No. 2 20 digits Max

06 = Dial Type (PSTN only)

1 = Tone (Default)2 = Pulse

07 = Autotest 1 = Intervals 0 - 99 hours (Default = 24 Hrs)

08 = Engineer Test

09 = No. of Rings 00-15 (Default = 15) 15 = Ans Mach defeat

10 = Line Fail 0 = No1 = Yes 1 = Debounce Time (Default = 60 seconds)

12 = Remote Access1 = Access Period

3 = Callback No.

17 = SMS Paging 1 = Mobile Nos.

4 = Downloader ID (8 digit password)

1 = Mobile No.2 = Event Type (see SMS Event Type table )3 = Group Map

2 = Centre No. (separate for GSM and PSTN)

3 = Format

1 = TAP (Default)2 = UCP (SMS)3 = UCP (Numeric)

4 = Site ID (16 character text)

Telephone No.

1 = Mobile 1

2 = Mobile 2 As per Mobile 1

3 = Mobile 3 As per Mobile 1

0 = Full (Default)1 = When Unset2 = No Unsetting

11 = Fail to Comm 0 - 244 seconds (Default = 120)

5 = UCP Operation 1 = Call Input2 = Call Input Sup3 = SMS Message

SIA Level 0 (0-3)

2 = Access Mode 1 = Direct Access2 = Manager Authorise

Figure 36. Telecom/GSM Programming Structure

56 - Comms (cont’d)

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01 FormatThe communicator provides three signalling formats:

• DTMF

• SIA

• Contact ID

Once the format has been selected, the alarm and event triggers that the panel will transmit to the ARCs, maybe programmed.

1 = DTMF (Dual tone Multiple Frequency)

DTMF is the fast format. When DTMF format is selected, the operation of the dialler is similar to that of ahardwired 8-channel communicator.

Programming Channels

On selecting DTMF, the keypad displays 1 = Channels 1 – 8. All eight channels can be individually pro-grammed. To access the Channels option press the ent key; the programming details of the first channel aredisplayed. Select the required channel using the A and B keys or by entering the channel number directly andpress the ent key.

1 = Channels 1-8

Each channel can be programmed with the following attributes:

1 = FunctionAny of the system output functions (see option 53 = Outputs) can be assigned to each of the channels1 – 8. Channel 3 defaults to output function 04 = INTRUDER. Channel 5 defaults to 32=OMIT.Channel 7 defaults to 20 = CONFIRM. All other channels default to 0 = NOT USED. Select therequired output function using the A and B keys or by entering the function number directly. Once therequired function is displayed, press the ent key to assign the function to the selected channel. Forexample, a PA function programmed on channel 2 results in a PA code to be transmitted on channel 2 tothe ARC when there is a PA alarm activation.

2 = Not used3 = Not used

56 - Comms (cont’d)

.

ChannelPolarity

Channel Output Function

Groups assignedCH3 INTRUDER LCH3 INTRUDER LCH3 INTRUDER LCH3 INTRUDER LCH3 INTRUDER LPOSPOSPOSPOSPOS 12341234123412341234

Mode (Latch)

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4 = GroupsNOTE: The Groups attribute is only available if groups have been enabled on the system (refer to

Option 63 = OPTIONS) and is also dependent upon the programmed output function forthe channel.

The Group attribute allows the channel to be assigned to the groups on the system; a channel can beassigned to more than one group. The channel will only trigger when an event occurs on one of thegroups assigned to the channel. All channels default to all groups on the system.

On selecting the Groups attribute, the groups that the channel is currently assigned to are displayed.Press the relevant number keys to toggle the status of the group and press the ent key: if the groupnumber is displayed on the top line, then the group is assigned to the channel; if a dash (–) appears inplace of the group number, the group has been removed from the channel.

2 = Fixed Reports

1 = Low Bat Ch9This option enables panel low bat condition signalling. In high speed format, this is transmitted asa code 8 in channel 9

2 = Invert Open/CloseWhen enabled, set signals report a code 4 signal on channel 4. If disabled, unset signals report acode 2 signal on channel 4 (DTMF only).

3 = Send RestoresThis option determines when intruder restore signals are transmitted to the monitoring station (fastformat only).

0 = on unset

1 = syst restore

If set to 0, the restore signal is sent, after an alarm condition during a set state, when a user codeis entered to unset the system, or at the end of the confirm time window if an unconfirmed alarmhas occured.

If set to 1, the restore signal is sent after an alarm condition during a set state, when the system isfully reset.

This option affects high speed format only.

This option defaults to 0 and is required by DD243.

56 - Comms (cont’d)

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2 = SIA (Security Industry Association)

The SIA format provides a highly detailed protocol that transmits detailed information including zone descrip-tions to a PC loaded with suitable software or to a SIA compatible receiver. The SIA format is capable oftransmitting over 70 different Galaxy 2 Series events (refer to Appendix A for further details).

On selecting the SIA format, the keypad prompts for the required SIA level to be entered, there are 4 SIAlevels available:

• 0 (default) - Basic event information with 4-digit account number.

• 1 - as level 0 plus 6 digit accounts

• 2 - as level 1 but with event modifiers

• 3 - as level 2 but with text descriptions

1 = Triggers

When the SIA level has been selected press the ent key. The keypad displays the first trigger event and it’sOn/Off status (see the following table for the list of available triggers, and Appendix A for the events which arecontrolled by each trigger). The triggers control the events, which are transmitted. If the trigger is set to On,any events logged, which are controlled by the trigger will be transmitted. If the trigger is set to Off, the eventscontrolled by the trigger will not be transmitted. Step through the trigger events using the A and B keys.

Table 28. Trigger Events

3 = Contact ID

Contact ID format is a protocol which transmits point identification information to an Alarm Receiving Centrethat is capable of receiving the Galaxy 2 Series variant of contact ID.

The menu structure and programming of the options are identical to the SIA format. Refer to 2 = SIA forprogramming details.

56 - Comms (cont’d)

oN tnevEreggirT oN tnevEreggirT

1 cinaP 11 lecnaC/teseR

2 redurtnI 31 sutatScelE

3 sruoH42 41 sutatSmetsyS

6 eriF 51 stluaFmetsyS

8 timO 91 stluaFFR

9 repmaT 02 ecnatsissA

01 tesnU/teS

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02 Telephone No.1Telephone number 1 must be entered. This is the main telephone number that the alarms are signalled to. Upto 20 digits may be entered, including control modifiers. The control modifiers are entered using the and #keys:

Pause (for two seconds before dialling the next digit). Multiple entries can be made, for example,entering gives a six second pause.

# Dial tone detect (wait for new dial tone). Each dial tone detect lasts for 15 seconds. Multiple entries canbe made, for example, entering ## gives a 30 second dial tone detect. If a new dial tone is not detected in thistime, then the dialling attempt is aborted. This is counted as a fail to communicate.

The B key is used to erase an existing telephone number. Each press deletes the last digit displayed.

Note on dial Attempts

After a dialling sequence the panel waits 25 seconds from the last digit dialled, for a kiss-on tone. If nothing isreceived in that time, the call will be considered a fault call and that attempt terminated. Between redial at-tempts, the panel will go back on hook for a minimum of five seconds and a maximum of 10. The system willattempt to send the alarm signal calls for two minutes before generating a comms fail fault condition. The panelwill continue to send a message for a total of four minutes before giving up.

The B key is used to erase an existing telephone number. Each press deletes the last digit displayed.

03 Account No.This is the site identifier. A unique account number must be entered, this can be up to a maximum of 6 digitsalthough 4 digits is the standard.

The B key is used to erase an existing number. Each press deletes the last digit displayed.

04 ReceiverThe transmission destination can be set to one of two modes:

1 = Alternate

If alternate mode has been enabled using two phone numbers, then each call attempt will alternate betweenTelephone Number 1 and Telephone Number 2. A comms fail condition will still occur 2 minutes after theinitial dial attempt, regardless of how many attempts have been made to each number.

2 = Dual

Reports to both numbers programmed in Telephone Number 1 and Telephone Number 2. The alarm mustbe transmitted to both numbers.

05 Telephone No.2A second telephone number is available to support Dual and Alternate dialling to a second destinationreceiver. The programming is identical to Telephone Number 1.

The B key is used to erase an existing number. Each press deletes the last digit displayed.

56 - Comms (cont’d)

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Table 29. Panel Operation

sgnirfooN noitarepOlenaP00 sllacgnimocnisrewsnarevenlenaP

41-10 srewsnalenapehterofebsgnirforebmunehtslauqeyrtnE

51 edomtaefedenihcamrewsnA

09 No. of RingsThis option determines the number of rings before the dialler modem answers an incoming call; the program-mable range is 00 – 15. The following table shows the panel operation.

06 Dial Type

NOTE: This is a PSTN option only.

The transmission mode can be selected from two types:

1. Tone (also known as “DTMF Dial”) this is much quicker at dialling than the Pulse option.

2. Pulse (also known as “Rotary” or “Loop Disconnect”) is universal, however, an increasing number ofexchanges now provide the Tone (DTMF Dial) option.

NOTE: If unsure of the type of exchange that the panel is connected to, leave as Pulse dialling.

07 AutotestAn engineer test can be automatically transmitted to the Monitoring Station at programmed intervals, in orderto indicate alarm transmission path integrity.

1 = Intervals

This option determines the period between engineer test transmissions. The programmable range is 0 – 99hours. The default is 24 hours.

NOTES:

1. If the Test Interval is 0 the Autotest is disabled.

2. The first test will happen at a time equal to half the programmed interval from when the option wasprogrammed, or whenever there is a cold power-up of the panel.

08 Engineer TestAn engineer test can be sent to the alarm destination once the Account Number and the Telephone Number1 have been entered, to ensure that the station is receiving transmissions sent from the Telecom module.

On selecting this option a warning message is displayed on the keypad, WARNING!!! ENT = SENDTEST. Press the ent key to send the engineer test.

The test attempts to transmit for two minutes. If the transmission is unsuccessful a COMM FAIL event islogged.

NOTE: Activation of an engineer test will send a test signal via all Galaxy 2 Series communication modules.

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If set to answer machine defeat (15), the Galaxy 2 Series only picks up the line if the download PC dials in,hanging up after one ring, then redials within 30 seconds.

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10 = Line FailThis option has two settings:

0 = No

When set to No there is no internal alarm or indication in the event of a telephone line fail condition.

1 = Yes

If this option is set to Yes, a line fail condition will cause a fault condition. An alert indication is given in theunset state. A Line Fail condition does not exist until 30 seconds after loss of line voltage. A line fault indicationwill then be given within 10 seconds if the debounce time is set to zero. However, this delay can be increasedto between 1 and 60 minutes by altering the debounce time. This is to cope with expected performance levelsof different telephone networks.

On selecting 1 = Yes a further sub-option becomes available:

1 = Debounce Time

The debounce time determines the response time before a line fail condition registers. It can be set from 0-60minutes.

The audible indication of the line fail is cancelled by the entry of a valid user code but the Line Fail displayremains until 30 seconds after the Line Fail condition is restored.

The communicator still attempts to dial out in the event of an alarm, even if a Line Fail condition has beendetected.

NOTE: If two comms paths are programmed (eg PSTN and GSM), a LINE FAIL condition on one pathwill be signalled using the other path.

11 = Fail to CommThis option sets the comms fail time window. This is defaulted to 120 seconds. If the panel does not receive avalid kiss-off signal from the Alarm receiver in this time, a Comms fail condition will occur, to indicate that themessage did not get through to the receiver. The panel will continue to attempt to send the signal for a furtherperiod equal to the programmed window before giving up on that signal altogether.

The programmable range for Fail to Comm is 0 to 244 seconds.

12 Remote AccessThis option defines when and how remote servicing will operate. The options are described as follows.

1 = Access Period

This option determines under what conditions the remote site can be accessed by the remote operator. Thereare three modes:

0 = Full

Access available at any time.

1 = When Unset

Access only when all the groups are unset.

2 = No Unsetting

Remote servicing software can gain access to system when set but cannot unset the system remotely.

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2 = Access Mode

This option determines what authorisation is required for remote service connection. There are two options:

1 = Direct Access

This permits access anytime. The remote centre can dial directly to the panel and gain access. If a call-backnumber is programmed in option 3, then connection must be made by the call back procedure.

2 = Manager Authorise

This requires the user to authorise the remote servicing call via menu 47. The panel will not answer an incom-ing call without authorisation.

3 = Callback No.

Remote servicing software requests the Galaxy 2 Series to call back the programmed telephone number.

4 = Downloader ID

This option specifies an eight-digit ID number for panels communicating via the remote servicing software.This option defaults to 99999999. This is a security number and cannot be viewed at the keypad.

17 = SMS PagingAs a secondary alarm notification to keyholders, facility for sending SMS messages to a maximum of 3 mobilephones, is incorporated. This comms format will only transmit once any Primary signalling programmed, hassuccessfully completed or has finished all redial attempts.

The panel dials the message centre number and leaves a message for each of the mobile phone numbersprogrammed, according to the selected event type groups.

If a call is being made to an SMS centre number and a new event occurs which needs to be sent to the mainalarm reporting station, the call to the SMS centre number will be completed normally before the primarynumber is dialled.

The following table lists the event types for this option:

Table 30. Event Types

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epyT stnevE1 stnevemralA2 teSdnamralA3 tluaFdnamralA4 stnevEllA

For each of the above events, the full text event log entry for each event, including the additional info display, issent as an SMS message. Note that for alarm activations, only the first two alarm activations in each setperiod will be sent. This will be reset at rearm.

If a kiss-off is not received, the system redials for two minutes. These redials are within 5-10 seconds of theprevious call. There is no comms fail fault condition generated if the calls are not successful, but an SMS failevent is logged.

Where SMS has been programmed to send via both the PSTN and GSM modules, the panel will always tryand send using the GSM module. The PSTN module will be backup only.

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1 = Mobile Nos

1 = Mobile 1

This selects the first mobile user.

1 = Mobile NumberThis is a 20 digit telephone number and is the mobile phone number of the recipient of the message.

2 = Event TypeRefer to Table 27. Event types.

3 = Group MapThis option selects the system group or area from which messages will be sent.

2 = Mobile 2

As per mobile 1.

3 = Mobile 3

As per mobile 1.

2 = Centre No

This is a 20 digit telephone number and is the phone number of the SMS centre. This number is provided bythe SMS service provider and will be different for the PSTN line and GSM Module.

3 = Format (PSTN only)

This option allows message formats to be tailored for the message centre being used. The information shouldbe obtained from the SMS service provider. The following formats are used:

1 = TAP

This is the standard format for the UK. It sends the event log message in full for each event.

2 = UCP (SMS)

This is the format for alpha pagers. It sends the event log message in full for each event.

3 = UCP (Numeric)

This is the format for numeric pagers. It sends the contact ID format message for each event. The layout is asfollows:

ssss/r/ccc/gggg/dd?

ssss = Account number in numeric format.

r = Event activation or restoral. 0 = activation, 1 = restoral.

ccc = Contact ID code.

gggg = Group map showing group numbers 1234. Any missing group replaced with 0, eg 1034 (group 2missing).

dd? = This is the data accompanying the event. For example, user, zone, peripheral etc. This can vary inlength.

4 = Site ID

This is a 16 character alphanumeric string and is used to identify the panel/site sending the message. If theformat is UCP (numeric), then the site ID is numeric. Only the first four characters are sent out.

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5 = UCP Operation

This option specifies the coding of UCP SMS operation both from the panel and the replies from the SMSmessage centre.

1 = Call Input

This option sets part of the SMS operation message from the panel to the SMS message centre to be 01(default value).

2 = Call Input sup

This option sets part of the SMS operation message from the panel to the SMS message centre to be 03.

3 = SMS Message

This option sets part of the SMS operation message from the panel to the SMS message centre to be 30.

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4 = Ethernet

Figure 37. Ethernet Programming Structure

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4 = Ethernet

01= Module Config

1 = IP Address2 = Site Name3 = Gateway IP4 = Network Mask

02 = Alarm Reporting

1 = Format 1 = SIA (0-3) 1 = Trigger

2 = Microtech

2 = Primary IP 1 = IP Address2 = Port No.

3 = Secondary IP 1 = IP Address2 = Port No.

4 = Account No.

5 = Receiver 1 = Alternate2 = Dual

7 = Heartbeat 1 = Interval

8 = Protocol 0 = UDP1 = TCP

03 = Remote Access

1 = Access Period 1 = Full2 = When Unset3 = No Unsetting

04 = Autotest

2 = Mode 1 = Direct access2 = Mgr Authorize 1 = Call Back IP1 1 = IP Address

2 = Port No.

3 = Call Back IP3 1 = IP Address2 = Port No.

4 = Call Back IP4 1 = IP Address2 = Port No.

5 = Call Back IP5 1 = IP Address2 = Port No.

2 = Call Back IP2 1 = IP Address2 = Port No.

1 = Interval

05 = Engineer Test

06 = Fail to Comm

07 = Line Fail 1 = Network 0 = Off1 = Available

2 = Signal Path 1 = Primary2 = Secondary3 = Alarm Mon.4 = Any5 = All

09 = Encrypt 1 = Alarm Report 0 = Off1 = On

2 = Remote Access 0 = Off1 = On

4 = Alarm Mon. 0 = Off1 = On

1 = Trigger

6 = Alarm Mon. 1 = Triggers2 = Account3 = IP4 = Port No.

30 (0-60) mins

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The Ethernet module allows the Galaxy control panel to communicate over Ethernet local and wide areanetworks, using both UDP and TCP Ethernet protocols. The Ethernet module supports both alarm signallingand remote servicing. Features included in the Ethernet module communications are data encryption and pathsupervision between the Ethernet module and alarm receiving applications.

01 = Module ConfigEach Ethernet module is pre-programmed with a unique MAC address, which identifies the module on thenetwork. However in order for the module to communicate with other applications an IP address should beassigned to the unit. The information programmed in this section is required for other applications on thenetwork to recognise the Ethernet module.

1 = IP Address

This is the IP address of the Ethernet module. This must be a unique, static IP address. The address will be inthe form XXX.XXX.XXX.XXX. The dot separator will be automatically added after each sequence of threenumbers or can be manually added by pressing the * key.

An example of a valid IP address is 192.0.1.152.

This address should be provided by your IT administrator

2 = Site Name

This option is not used at this time

3 = Gateway IP

When using the Ethernet module over a wide area network the IP address of the gateway router connected tothe Ethernet local area network must be entered in this field. The format of this address is identical to the IPaddress of the Ethernet module.

This information should be supplied by the IT administrator

4 = Network Mask

The network mask identifies the class of network being used. This field masks off the parts of the gateway IPaddress which, are common and not required for specific identification of the Ethernet module.

This information should be supplied by the IT administrator.

02 = Alarm ReportingThis option allows selection of the alarm signalling format used to transmit the events. This option also controlsthe types of events which are sent.

1 = Format

This is the signalling format of the receiver and has the following two formats:

1 = SIA (0-3) Security Industries Association

The SIA format can be programmed between levels 0 and 3 and provides a protocol that transmits detailedinformation including textual descriptors, to a SIA compatible receiver or PC loaded with suitable receiversoftware.

The SIA format is capable of transmitting the Galaxy events indicated in Appendix A of this manual.

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On selecting the SIA format, the keypad prompts for the required SIA level to be entered, there are four SIAlevels available:

• Level 0 (default) – basic event information with 4 digit account numbers

• 1 – as level 0 plus 6 digit account numbers

• 2 – as level 1 but with event modifiers

• 3 – as level 2 but with text descriptors

1 = TriggersWhen the SIA level has been selected press the ent key. The keypad displays the first trigger event andit’s On/Off status (see table 25 for the list of available triggers, and Appendix A for the events which arecontrolled by each trigger). The triggers control the events which are transmitted. If the trigger is set toOn, any events logged, which are controlled by the trigger will be transmitted. If the trigger is set to Off,the events controlled by the trigger will not be transmitted. Step through the trigger events using the Aand B keys.

2 = Microtech

Microtech format is a protocol that transmits detailed point id information to a PC, which has the GalaxyAlarm Monitoring application installed and running.

The level of information supplied is similar to SIA level 3.

The menu structure and programming of the options are identical to the SIA format. Refer 1=SIA for pro-gramming details. The Microtech format is for ethernet only.

2 = Primary IP

The Primary IP defines the receiver destination details for the primary alarm transmission path. The destinationis made up of an IP address and a port number. To programme the IP address press ent. If groups are ena-bled the information programmed for the primary IP and port numbers is automatically copied to all groups.

1 = IP Address

Enter the IP address of the primary receiver. The address will be in the form XXX.XXX.XXX.XXX. The dotseparator will be automatically added after each sequence of three numbers or can be manually added bypressing the * key. To save the address and return to the previous menu level press ent. To programme theport number of the primary destination receiver press either 2 or A, then press ent.

NOTE: This number must be programmed and is the IP address used for all system wide events.

2 = Port No.

To erase any previously programmed numbers press the B key. Enter the port number of the primary destina-tion receiver. The default value is 10002. Press ent to save the programmed number.

3 = Secondary IP

The Ethernet module supports signalling to more than one receiver destination. The Secondary IP defines thereceiver destination details for the secondary alarm transmission path. The destination is made up of an IPaddress and a port number. To programme the IP address press ent.

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1 = IP Addresss

Enter the IP address of the secondary receiver. The address will be in the form XXX.XXX.XXX.XXX. Thedot separator will be automatically added after each sequence of three numbers or can be manually added bypressing the * key. To save the address and return to the previous menu level press ent. To programme theport number of the secondary destination receiver press either 2 or A, then press ent.

2 = Port No.

To erase any previously programmed numbers press the B key. Enter the port number of the secondarydestination receiver. The default value is 10002. Press ent to save the programmed number.

4 = Account No.

The account number identifies the Galaxy system to the receiver when signals are transmitted. Every signaltransmitted contains the account number. The account number should be between 4 and 6 digits long. Afterentering the account number press ent to save and return to the previous menu level.

5 = Receiver

This option determines the paths, which will be used for alarm signalling.

1 = Alternate

If selected the Primary IP destination is used to signal alarms. If1=Alternate is selected and a Secondary IP is programmed the Secondary IP destination will be used in theevent of a failure to the Primary IP. A Fail to Comm will be logged against the Primary alarm transmission path.

2 = Dual

If selected and if a secondary IP is programmed events are sent to both the primary and secondary IP destina-tions.

6 = Alarm Monitoring

This option provides a further alarm transmission path specifically for events being sent to the Galaxy AlarmMonitoring application.

The keypad displays the first trigger event and it’s On/Off status (see table 25 for the list of available triggers,and Appendix B for the events which are controlled by each trigger). The triggers control the events, whichare transmitted. If the trigger is set to On, any events logged, which are controlled by the trigger will be trans-mitted. If the trigger is set to Off, the events controlled by the trigger will not be transmitted. Step through thetrigger events using the A and B keys.

1 = Triggers

Press the ent key to display the first trigger event; the keypad shows the trigger, the trigger status and thegroups assigned.

To modify the trigger event select the required event using the A and B keys and press the ent key. The1=Status option is then displayed. If the status requires to be modified press the ent key.

2 = Account No.

This option is required to assign a unique account number to the events signalled to Alarm Monitoring. Thisdata must be entered before any events are sent to Alarm Monitoring via this option. The account number canbe a maximum of 6 digits. Press the ent key to save the programming and return to the previous menu level.

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3 = IP Address

To programme a new or modify the Alarm Monitoring IP address use the B key to erase any existing pro-gramming and enter the new IP address to which the events are to be sent. Press ent to save the new addressand return to the previous menu level.

4 = Port No.

To programme a new port number use the B key to erase any existing programming and enter the new portnumber. Press the ent key to save the new address and return to the previous menu.

7 = Heartbeat

The Ethernet module supports path supervision to ensure the alarm transmission paths are available to transmitevent when required. This option, if programmed, determines the frequency when the alarm transmission pathsare checked.

1 = Interval

Enter the interval within which a path supervision signal (heartbeat) must be received from each alarm trans-mission path (refer option 56.4.7.2 Line Fail – Signalling Path). If a heartbeat is not received within the pro-grammed interval a line fail condition will be activated in the panel. The Line Fail event will indicate which pathhas failed (Primary, Secondary or Alarm Monitoring). The default interval is 30 minutes.

8 = Protocol

The Ethernet module is capable if signalling using either TCP (Transmission Control Protocol) or UDP (Uni-versal Datagram Protocol).

If encryption is required for alarm signalling the UDP protocol should be selected.

0 = UDP

When this option is selected all alarm signalling from the Ethernet module will use the UDP format.

1 = TCP

When this option is selected all alarm signalling from the Ethernet module will use the TCP format.

03 = Remote AccessThe Ethernet module supports remote servicing of the Galaxy 2 Series alarm panel. The programming optionsin this section control when remote access can be granted and whether access is initiated from the panel or theRemote Servicing software.

1 = Access Period

This option determines under what conditions the remote site can be accessed by the remote operator. Thereare three modes:

0 = Full

Access available at any time.

1 = When Unset

Access only when all the groups are unset.

2 = No Unsetting

Remote Servicing software can gain access to system when set but cannot unset the system remotely.

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2 = Mode

This option determines what authorization is required for remote service connection. There are two options:

1 = Direct Access

This permits access anytime. The remote centre can dial directly to the panel and gain access. If a call-backnumber is programmed, then connection must be made by the call back procedure.

2 = Manager Authorize

This requires the user to authorize the remote servicing call via menu 47. The panel will not answer an incom-ing call without authorization.

The manager instructs the Galaxy panel to initiate a connection to the Remote Servicing software by selectingone of the call back IP addresses programmed into the system.

1 = Call Back IP 1-5There are 5 possible IP address/Port number destinations, which can be programmed for RemoteServicing access. This allows communication with up to five different Remote Servicing locations.

1 = IP Address

Enter the IP addressof the PC running the Remote Servicing software.

2 = Port No.

Enter the port number allocated to the PC running the Remote Servicing software.

04 = AutotestAn engineer test can be automatically transmitted to the receiving station at programmed intervals.

1 = Interval

This option determines the period between automatic engineer test transmissions. The programmable range is0-99 hours. The default is 24 hours.

05 = Engineer TestAn engineer test can be sent on each of the transmission paths once the appropriate IP address/port no, andaccount numbers have been programmed into the system. This allows the installation engineer to ensure thatthe receiving station is correctly receiving the events from the Ethernet module.

On selecting this option a warning message is displayed on the keypad, WARNING!!! ENT=SEND TEST.Press the ent key to send the engineer test.

06 = Fail to CommThis option determines the number of unsuccessful communication attempts before the COMM FAIL mes-sage is recorded in the event log.

NOTE: Clearing a comms fail on the Ethernet can take up to 50 seconds after viewing the fault.

When an event is to be transmitted to the monitoring station, the Ethernet module attempts to initiate a sessionwith the destination receiver for each programmed transmission path. If the programmed number of attempts isreached a Fail to Comm message will be logged.

NOTE: If the receiver option is programmed as Dual then a successful transmission must be made to bothprimary and secondary to be considered a successful transmission.

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07 = Line FailThe line fail option controls which Ethernet connections are monitored. The Ethernet module can be pro-grammed to monitor both the network availability and the programmed transmission paths between theEthernet module and receiver applications.

1 = Network

This option monitors the connection between the Ethernet module and the local network.

0 = Off

If programmed to off, the connection between the Ethernet module and local network will not be monitored. Ifthe local network is not available or the Ethernet module is disconnected, no line fail will be indicated.

1 = Available

If programmed as available then the connection between the Ethernet module and the local Ethernet networkis monitored. If the Ethernet module is disconnected from the network or the local network is not available aLine Fail event will be activated at the panel. The Line Fail event logged will indicate that the Line Fail was asa result of a network failure.

2 = Signal Path

This option determines which signalling paths, will be monitored by the Ethernet module. Monitoring isachieved by transmission of a path supervision signal (heartbeat) between the receiver application and theEthernet module. The Ethernet module must receive a path supervision signal at least as often as the frequencyprogrammed in option 56.4.2.7 (Alarm Reporting Heartbeat). If the signal is not received a line fail conditionwill become present. The line fail event will indicate the path which failed and the destination IP address of thatpath.

Options are available to select specific paths or all paths.

1 = Primary

When selected the Ethernet module will only monitor the primary transmission path. All other transmissionpaths will not be monitored.

2 = Secondary

When selected the Ethernet module will only monitor the secondary transmission path. All other transmissionpaths will not be monitored.

3 = Alarm Mon.

When selected the Ethernet module will only monitor the Alarm Mon. transmission path. All other transmissionpaths will not be monitored.

4 = Any

When selected the Ethernet module monitors all transmission paths. If a supervision failure is detected in anyof the paths a line fail condition will be activated.

5 = All

When selected the Ethernet module monitors all transmission paths. If a supervision failure is detected in all ofthe paths a line fail condition will be activated.

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09 = EncryptThe Ethernet module supports a high level 128bit encryption algorithm for all communication options. Thisoption allows encryption to be enabled/disabled for each of the communication options.

1 = Alarm Report

This option controls encryption for the Primary and Secondary alarm transmission paths. Default is disabled.

0 = Off

If selected encryption is disabled for the Primary and Secondary alarm transmission paths.

1 = On

If selected encryption is enabled for the Primary and Secondary alarm transmission paths. In order for data tobe received when this option is selected the receiver must support decryption.

2 = Remote Access

This option controls encryption for the remote servicing sessions. Default is disabled.

0 = Off

If selected encryption is disabled for the remote servicing sessions.

1 = On

If selected encryption is enabled for the remote servicing sessions. In order for data to be received when thisoption is selected the receiver must support decryption.

4 = Alarm Mon.

This option controls encryption for the Alarm Monitoring alarm transmission paths. Default is disabled.

0 = Off

If selected encryption is disabled for the Alarm Monitoring alarm transmission paths.

1 = On

If selected encryption is enabled for the Alarm Monitoring alarm transmission paths. In order for data to bereceived when this option is selected the receiver must support decryption.

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6 = HW Priority

This option has three sub-options:

1 = Telecoms (Default Setting = 1)

4 = Ethernet (Default Setting = 0)

5 = GSM (Default Setting = 0)

Upon selecting any of these sub options, the engineer is able to select a priority level for that particular deviceof 0-2. The priority settings has the following meaning:

0 = This module does not send alarm information. It can only be used for remote servicing.1 = This module always send alarm signals, dependant on the alarm reporting programming set up in themodules own menu.2 = This module will only signal if there is a fault condition on all modules with priority 1.

In this way, you can only set up two out of three modules with Priority 1 which means that they both signal allevents. More likely, you set up one module with priority 1, and another module with Priority 2 (or vice versa).That way the module with priority 2 does not dial unless there is a fault on the module with priority 1.The hardware in use will switch as soon as there is a fault condition on the main hardware path. It will alsoswitch after all redial attempts have failed on the main path.

NOTE: When the Ethernet is used as the main hardware path with Telecom or GSM as a backup signallingpath or vice versa, the signalling format for both Telecom and Ethernet must be programmed forSIA. This is the common format between both paths.

The Alarm Monitoring option of the Ethernet module, option 56.4.2.6, is constantly active even when theEthernet module is used as backup and setup for hardware priority 2.

7 = Parameters

This menu option has 14 sub-options as follows:

01 = Abort Delay

This is the time that the bells must sound, after an entry timeout alarm, before alarm signalling can occur. Thetime is programmable within the range 00-99 seconds. The default is 30 seconds.

02 = PA Delay

This parameter determines the delay between the activation of a full alarm and signalling to the ARC. The PADelay is programmable within the range 00-60 seconds. The default is 00 seconds.

03 = Fire Delay

This parameter determines the delay between the activation of a fire alarm and the signalling to an ARC. TheFire Delay is programmable within the range 00-60 seconds. The default is 00 seconds.

04 = Power Delay

This parameter determines the delay between the activation of AC Fail outputs following a mains failure toallow the power to return before signalling the fault. The Power Delay is programmable within the range00-600 minutes. The default is 60 minutes.

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05 = Part Intruder

This parameter determines under which set conditions the panel communicates following Alarm, Abort, Veri-fied Alarm, Tamper and Set/Unset. There are four options:

0. Full

1. Full & Part

2. Full & Night

3. All (Full, Part and Night) (Default)

This parameter does not affect any other signals.

NOTE: Set outputs only respond to Full Set conditions.The Any Set output will respond to Full, Part orNight Set conditions.

06 = Omit Sig.

This parameter has two options:

0. Force Omit (default)

When set to 0 this option only signals automatic force omits.

1. All Zn Omit

When set to 1 this option signals all omits to the ARC including manual omits.

07 = CS Handshake

This parameter signals handshake tones from the ARC and has three options:

0. UK (default)

1. Belgian

2. Paris

08 = Pre-Dial Flash

This parameter flashes the line to clear it before dialling the ARC and has two options:

0 = No

1 = Yes

09 = STU Return

This parameter determines the return path signalling function of the STU header and has two options:

0 = Off

1 = Intruder Restore

When set to 1, intruder alarms are reset.

10 = STU Line Fail

This parameter determines the line fail monitoring for the STU and has two options:

0 = No (default)

1 = Yes

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11 = Remote Date

This parameter allows the panel to be programmed to initiate a remote servicing call automatically on a pre-determined date and time. It will dial out on the appropriate comms module as dictated in 56.6 HW priority.There are two options:

1 = Call Date

The date is in the format DD/MM/YY

2 = Call Time

The time is in the format HH:MM

12 = System ID

This option allows a 16-character identification number to be entered to allow the system to be uniquelyidentified to remote servicing software.

13 = Account Group

It is possible to have a number of groups bound by the same Account Number (an Account Group). Thismeans that one CL signal is not sent until all the groups within the Account Group are set. Individual groupswithin the Account Group will not send a CL signal. The groups within the Account Group are identified by astarred ( ) Account Number, for example, 2112.

When the Account Group is fully set, the identifier of the CL message is 999 to identify it as an Account Groupthat has set.

For unset, each group that is part of the Account Group can report individually that it is open.

NOTE: Account Groups only operate for SIA signalling and are dependent upon programming of the CommsSet Map (Option 63.1.3).

14 = Send AC+BATT

When enabled, this parameter allows the panel to send a SIA event when the battery is low and there is amains power failure. When the event is sent, the Power Delay time set in parameter 56.7.04 stops immedi-ately.

8 = 2-Way Voice (2–44+ Only)

This menu option has three sub-options:

1 = Listen in

This option allows an operator to listen to the audio on site after the panel sends an alarm signal to the ARC.

1 = Intruder

When set to Yes this option enables listen-in after an intruder or entry timeout transmission.

2 = Confirm

When set to Yes this option enables listen-in after a confirm transmission.

3 = Others

When set to Yes this option enables listen-in after a Fire, PA audible, PA silent or Assistance transmission.

56 - Comms (cont’d)

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2 = ARC Tel Nos

This option selects which receiver no’s can operate with the listen-in function.

1 = Tel No1

2 = Tel No2

3 = Dial in

This option allows a user to dial-in and enter a PIN code to operate the 2-way voice function. See Menu 42.1(User 99)

1 = Mode

This option, when set to Yes, enables this function.

Option 57 - System PrintThis option allows the engineer to print out the system programming and diagnostic information. On enteringthis option, the user is asked to confirm printing by pressing enter. Pressing enter at this point will print thesystem programming via the program header to a serial printer. Pressing escape at that same point or duringprinting, will abort the print command The sub-options are:

01 = System Info

02 = User Codes

03 = Parameters

04 = Zones

05 = Outputs

06 = Telecom

07 = Ethernet

08 = Groups

09 = Keypad Groups

10 = MAX

11 = Diagnostics

12 = Event Log

13 = All

57 - System Print

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Galaxy 2 Series Installation/Programming Manual58 - Keypad Groups

Option 58 - Keypad GroupsThe keypad groups association enables keypads to be assigned/programmed to a group. This allows keypadsto respond to events on assigned groups.

The group programming affects the keypad display, buzzer and user access.

The user restriction operates in such a way that access is given to the groups which are common to bothkeypad and user.

58 = Keypad groups

This option allows up to four keypads (0, 1, 2 & 3 ) to be assigned to a group or groups. The menu structureis 0=keypad 0; 1=keypad 1; 2=keypad 2; 3=keypad 3. When Keypad Groups is selected the follow-ing window is displayed on the keypad;

NOTE: If a keypad is not present on the system the message Device not present is displayed.

0=Keypad 0

This option allows keypad 0 to be associated with a maximum of three groups. The following display appearson the keypad window:

[ent] to Select [ent] to Select [ent] to Select [ent] to Select [ent] to Select 0=keypad 0 0=keypad 0 0=keypad 0 0=keypad 0 0=keypad 0

Groups >*123 Groups >*123 Groups >*123 Groups >*123 Groups >*123 >*123 >*123 >*123 >*123 >*123

User Restriction

If no * is assigned to the keypad, then all groups that a user has access to can be accessed by the user withthat keypad, provided there is at least one common group between the user and any keypad. Adding a * tothe keypad’s group map will prevent access to any group that is not common to the keypad and the user.

Setting/ Unsetting with Keypad Group Association

The privilege to set/part set/night set is only given to the groups enabled for that particular keypad.

Keypad Buzzer

If there is an alarm/exit tone/entry tone in a group, it will only give a display and sound in the keypads associ-ated with that particular group.

To disassociate keypad 0 from, for example, group 1, press the number 1 on the display and the number isreplaced by a blank on the bottom row.

Groups >*123 Groups >*123 Groups >*123 Groups >*123 Groups >*123 >*_23 >*_23 >*_23 >*_23 >*_23

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Menu 60 - Engineer 2 Options

Option 61 - DiagnosticsThis option allows the engineer to interrogate the system, providing valuable information on the operationalstatus of the Galaxy 2 Series and connected peripherals. The Galaxy polls each peripheral and reports thesuccessful communications during this period as a percentage.

There are eight sub-options. On selecting each of the sub options, the display shows the first of that type ofperipheral that is configured to the system. The scroll keys can be used to view additional peripherals of thattype if more than one is present.

1 = Keypads

This gives the module type, address and the communication level between the Galaxy 2 series panel and thekeypads.

2 = Zone RIO’s

This gives the module type, address and the communication level between the Galaxy 2 Series panel and thezone RIO’s.

3 = RF Modules

This gives the module type, address and the communication level between the Galaxy 2 Series panel and theRF Transceivers. In addition, pressing the # key gives two more screens; the RF noise level along with themaximum noise level.

NOTE: 5800 series receivers do not give the above information.

4 = Prox Readers

This gives the module type, address and the communication level between the Galaxy 2 Series panel and theprox readers.

5 = PSU’s

This gives the module type, address and the communication level between the Galaxy 2 Series panel and theSPSU’s.

6 = Reset Max/Min

This sub-option allows the engineer to clear all the saved max/min information used in the diagnostics of thePSU, Zones (hardwire and wireless) and the max noise level on the receivers. The message WARNING!!!ent=RESET is displayed on the keypad before the reset takes place.

7 = GSM

This gives the module type, address and communication level between the Galaxy 2 Series panel and theGSM module.

8 = Ethernet

This gives the module type and communication level between the Galaxy 2 Series panel and the Ethernetmodule.

61 - Diagnostics

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The Galaxy 2 Series polls each module 32 times every second and reports the successful communicationsduring this period as a percentage. This is calculated by the ratio of successful poll responses received fromeach module. Typical figures are:

• 70% and above - satisfactory communication level

• 50 - 69% - Module requires monitoring

• 49% and below - remedial action required

Option 62 - Full TestThis menu option allows the engineer to test the bells and signalling on a busy occupied site. This is achievedby simulating a full set but only making one or two zones active. The rest of the zones in the intruder systemare omitted for the duration of the test.

On entering the option, the engineer is presented with a display to choose a zone for the test. The first zonethat the user has access to is shown on the top row and the cursor keys can scroll through all the zones.

1025 Intruder1025 Intruder1025 Intruder1025 Intruder1025 IntruderENT=STARTENT=STARTENT=STARTENT=STARTENT=START

Top row alternates with descriptor

Pressing enter will select the zone shown for test.

The system will then ask for a second confirm zone. The cursor key selects yes or no.

2nd Confirm Zone2nd Confirm Zone2nd Confirm Zone2nd Confirm Zone2nd Confirm ZoneA=Yes B=NOA=Yes B=NOA=Yes B=NOA=Yes B=NOA=Yes B=NO

If Yes is selected, the system will allow the user to select a second zone in the same way as the first. If theengineer selects No or when the second zone is selected, the system omits all other intruder system zones andsets instantly (no exit delay). All signalling and sounder activations will be as per a full set. The system is unsetin the normal manner.

62 - Full Test

Table 31. Diagnostic Module Information

For each peripheral, the following information is displayed where available:

Module Metric

Module Type Address % Comms Noise Level Max Noise Level

Keypads

Expanders

Transceivers

Prox

PSU's

GSM

Ethernet

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1 = Groups

There are three sub-options:

1 = Group Mode

This option enables group mode. When enabled, each group on the system will behave as an independentarea that can be separately set and unset. There are two settings:

0 = Disabled

1 = Enabled

If a group mode is switched off, the system will behave as though all zones, users and outputs are in group 1.

63 - Options

Option 63 - OptionsThis menu option allows the Galaxy 2 Series to be divided into group subsystems and also allows the MAXproximity access control readers to be integrated into the system. :

Figure 38. Options Menu Structure

Options

1 = Groups 1 = Group Mode 0 = Disabled1 = Enabled

2 = Common Group

3 = Comms Set Map

2 = MAX 1 = MAX Mode 0 = Disabled1 = Enabled

2 = MAX Address

3 = MAX Parameters 1 = Descriptor * = delete last character# = delete current characterA/B = move to character/wordent = assign character/wordesc = leave menu without saving

1 = On-line2 = Stand-alone

2 = Relay Duration 1 - 60 seconds (default = 05).

3 = Open Timeout 0 - 60 seconds (default = 10).

4 = LED on set 0 = Off1 = On

5 = Report DF 0 = On-set1 = Always

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2 = Common Group

Group 4 is intended to be a group that will cover a common access area (such as an entrance foyer). Thisgroup will set and unset automatically depending on the state of the other individual areas. When all the otherindividual areas are set, the common group will set along with the last group. As soon as any of the individualgroups are unset, the common group will unset. In order to determine which individual groups need to be setbefore the common group sets, the group map in this option can be programmed. The screen is as shownbelow. Pressing the appropriate group number toggles the group status between Y and N. A Y under a groupnumber means that that individual group needs to be set before the common group can set.

3 = Comms Set Map

This option selects which groups must be set before intruder communication can be enabled. This means eitherfull set, night set or part set. The screen should appear as follows:

This option only affects Set, Intruder, Confirm, Omit, Abort and the appropriate restore signals. All othersignalling is not part of the Intruder comms system.

Programming of the Comms Set Map affects Account Group operation (Option 56.7.13). There are threepossible settings:

1. Comms set map set to NNNN. Four CL events are sent regardless of the programming of account group.

2. Comms set map set to YYYY, account group set to on. One CL event sent with group modifier (999).

3. Comms set map set to YYYY, account group set to off. One CL event sent but with no group modifier.

GROUPS 123GROUPS 123GROUPS 123GROUPS 123GROUPS 123Set YNNSet YNNSet YNNSet YNNSet YNN

GROUPS 1234GROUPS 1234GROUPS 1234GROUPS 1234GROUPS 1234Set NNNNSet NNNNSet NNNNSet NNNNSet NNNN

63 - Options (cont’d)

Notes on Group Operation

Certain functions have different settings for each group. The operation concerned is detailed below.

Bell Time

The bell time for common bell output is limited to the maximum time programmed. That means, if an alarm hasoccurred on group 1 and after 80% of the bell time has elapsed, an alarm occurs in group 2, the bells onlycontinue to run for the remaining 20% of the bell time.

Entry and Exit times

Entry and exit times will always be individual to each group. The exit time can be terminated for all groups bya final zone or exit terminator in the common group except when any group in the common group map hasinfinite exit time. The last group to enter the settling state will be prevented from setting until the common areacompletes its own settling period.

Upon entering a PIN code, group choice is given if any of the user’s areas are not in alarm or entry. If one ofthose areas is in entry or alarm, then those groups in entry or alarm will be unset automatically.

If the user belongs to a group that is not part of the common group map, then their PIN code will have noeffect on the common area.

Either each individual group will need to have its own entry door, or the keypad will be situated in the commonarea. In the later case, entry to the individual group areas, is prevented until the group is unset, in order tocomply with DD243.

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2 = MAX

This option is used to program the Galaxy MAX3 access control readers. The MAX3 can be fully integratedinto the system, communicating on the AB lines and fully utilising the facilities of the Galaxy control panel. If theMAX3 is programmed as a standalone module, it is completely separate from the Galaxy; the panel does notmonitor the module or share any of the facilities or options with it.

On selecting the MAX option, 1 = MAX Mode is displayed; press the ent key to select this function.

1 = MAX Mode

This option is used to allow the MAX modules and the prox readers within keyproxes to be programmed(default is 1 = Enabled). The option also enables the Max function to be programmed. When enabled, theoptions that are eligible for MAX programming are made available throughout the menu, otherwise they donot appear or appear as Option not Available.

NOTE: If the MAX Mode is disabled following programming of MAX3 readers no further programming,including assigning next MAX3 cards and fobs, is possible until the mode is enabled. This includesprox readers on keyproxes.

2 = MAX Address

The address and the on-line or standalone status of the MAX Modules are assigned and modified using thisoption. On selecting MAX Address the Galaxy searches for the MAX with the highest address. On locatingthe MAX, the keypad prompts for the TYPE of MAX to be assigned:

1 = On-Line The MAX is fully integrated with the Galaxy system and communicates via the AB line,sharing system resources and facilities

2 = Standalone The MAX operates as an entirely independent unit. The Galaxy does not monitor the MAXfor alarms, tampers or power failure.

The MAX can then be readdressed. The keypad displays the current address of the MAX and the range ofvalid addresses. All MAX modules default to address 8 counting down to 3. It is recommended that theMAX module is readressed as 0.

Enter the new MAX address and press the ent key; the Galaxy then reprograms the address of the MAX.

When the reprogramming is complete the MAX bleeps and the display returns to MAX Address.

63 - Options (cont’d)

3 = MAX Parameters

This option defines the individual operational features of each of the registered MAX modules. On selectingthis option the first MAX parameter, 1 = Descriptor is displayed. Use the A or B keys to move to the re-quired parameter and press the ent key.

MAX AddressMAX AddressMAX AddressMAX AddressMAX Address0 (0-3)*0 (0-3)*0 (0-3)*0 (0-3)*0 (0-3)*Current Address

Available Addresses

Prox reader presenton system at currentaddress

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1 = Descriptor

This option is used to assign a name of up to 12 characters to the MAX module (see Table 16, Text Char-acters). The descriptor is assembled from the character set in this table. On selecting the Descriptor at-tribute, the currently assigned descriptor (blank by default) is displayed on the top line. Each of the keys onthe keypad, when pressed, offers a choice of character on the bottom line. Press the key repeatedly to choosea character. A two-second delay accepts the character and the flashing cursor moves on. Press and holddown the * key to delete all the characters to the left or highlight a character and press the # key to delete asingle character.

For a full description of how to use this function, refer to Text Programming.

When complete, press the esc key to save the programming.

2 = Relay Duration

This is the period, following the user card swipe, that the MAX relay is activated allowing a door strike to beunlocked and the door to be opened without creating an alarm. The MAX relay de-activates as soon as thedoor contact opens or the Open Timeout occurs.

On entering the Relay Duration parameter, the current value is displayed; assign the required time within therange 01 – 60 seconds, the default time is 5 seconds. Press the ent key to save the programming and returnto the previous menu level.

NOTE: Pressing the A key increases the time by one second increments, the B key decreases the time in onesecond decrements.

3 = Open Timeout

This is the period following the user card swipe that the door can remain open when gaining access. If thedoor remains open longer than the period assigned to the Open Timeout, then an alarm occurs.

NOTE: If the Open Timeout is programmed as 0 seconds, then the door can remain open indefinitelywithout resulting in an alarm being activated.

On entering the Open Timeout parameter, the current value is displayed; assign the required time within therange 00 – 60 seconds, the default time is 10 seconds. Press the ent key to save the programming and returnto the previous menu level.

NOTE: Pressing the A key increases the time by one second increments, the B key decreases the time in onesecond decrements.

4 = LED on Set

This option determines whether the LED’s on the MAX module illuminate or not when the system sets. Thedefault is Off.

5 = Report DF

This option determines when a door forced alarm is signalled. There are two options:

0 = On-Set

A door forced alarm is signalled when the system sets only. This is the default setting.

1 = Always

A door forced alarm is signalled whether the system is set or unset.

63 - Options (cont’d)

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SECTION 8: RF HINTS AND TIPS

How to Install RFThe system works with the current 5800 receivers on ECP and/or the RF Portal on RS485. A maximum oftwo RF receivers can be fitted to the system (two on the ECP bus, two on the RS485 bus or one on eachbus), to support up to 44 zones. The two RF receivers are in addition to the prox keypads. All programmingis local in the panel. Up to 23 RF fobs and 23 prox tags/cards can be added to the system.

NOTE: If using RF receivers on the ECP bus in High Security mode, only 8 RF fobs can be added to thepanel

RF ZonesTo ease installation, there is a built-in signal strength reading for each Alpha or V2 protocol detector. This isviewable from the keypad, in walk test (option 31), in display zones (option 21) and from program zones(option 52).

All RF device handling is done in the Control panel. No device processing takes place at the receiver. Thisallow all transmitting devices to signal to the alarm panel via the nearest available receiver (Roaming) as perthe 5882 system, but including Rolling Code fobs.

RF Stop SetThere is a facility to prevent setting if any of the supervised peripherals have not sent a supervision signal withinthe previous 20 minutes. An indication will only be given if RF Check is enabled (see menu51.50.6= Parameters.RF Options.RF Check) The devices involved are indicated to the user at the time ofstarting the setting procedure. This condition is not a fault. The 2HR supervision fail is a fault. This stop-set ismerely a warning to the user that the system cannot determine the status of the detector.

NOTE: This function only checks zones with RF supervision enabled (see menu 52.5.3=Zones.RFOptions.Supervision)

RF DiagnosticsFacilities are provided to allow the panel to record and pass the following information to the remote servicingsoftware for remote diagnostics.

1. Minimum signal strength for each detector from each receiver.

2. Current signal strength for each detector from each receiver.

3. Maximum background noise for each receiver.

4. Current background noise for each receiver.

5. Transmitter battery status.

NOTE: Point 5 is only applicable to 5800 series receivers.

RF Hints & Tips

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SECTION 9: FINAL COMMISSIONING

Final system TestBefore leaving the system to the user, or after any maintenance visits, it is important that the following checksare carried out.

1. Walk test on all zones using menu 31.

2. Communication test via menu 32 or “Full Test” via menu 62.

3. Escape out of engineer’s mode and check that all modules are configured onto the system.

User InformationFill in the zone information at the back of the user guide and inform the user as to which optional functions areavailable or not.

Final Commissioning

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SECTION 10: REMOTE SERVICINGThe Galaxy 2 Series control panel can be remotely and/or locally serviced by a Personal computer (PC). Thisis accomplished when the Remote Servicing Pack is installed on the PC. Remote servicing is controlled inmenu options 56.01 and 56.12.

Telephone Line Set-UpThe control panel has an on-board modem. This allows remote servicing of the control panel without the needfor a separate comms module.

Alternatively, the GSM Module or Ethernet can be used for remote servicing when a land line is not available.

Direct Wire Set-UpAlternatively, the PC can be connected directly to a single Galaxy 2 Series control panel, via the ProgramHeader and used to locally service the site. A special lead (part number A228) is required.

Remote ProgrammingAll programming with this software can be done remotely from a PC. The following functions can also becarried out:

• the panel can operate with all user functions.

• the event log can be viewed.

• routine remote inspection can be carried out. Some diagnostic information can be uploaded from thecontrol panel to the PC to allow remote site servicing.

Remote Servicing

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SECTION 11: FLASH UPGRADEThe software that runs the Galaxy 2 Series is stored in “flash memory”, rather than traditional prom chips. Ifrequired, the software can be upgraded to a newer version using the flash programming kit, part numberA221. The kit comprises of a windows application which runs on a PC, and the flash programming lead whichconnects the Galaxy 2 Series PCB to the PC comm port. The actual software upgrade file for the Galaxy 2Series will be supplied separately, as required by Honeywell Security.

Flash Upgrade

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SECTION 12: PRINTER CONNECTIONThe Galaxy 2 Series can print system detail directly to a serial printer. In order to do this a printer lead isrequired (part number A228) to connect between the program header on the Galaxy 2 Series PCB and theprinter.

The printer must have the following settings:

• Baud Rate: 1200

• Parity: None

• Stop Bits: 1

• Data Bits: 8

• Start Bits: 1

When this has been set up, system information can be printed as per menu options 24 and 57.

Printer Connection

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SECTION 13: BELL-BOX CONNECTIONSThe terminal connections for various bell-box models are shown below:

Lyntech Ltd. - 120 LED/120 lexon

Elmdene Rapier 3000, 4000, 5000, 6000; Prima 100, 200,300,400,500 600; Starlight 020

CQR Security - Sigma, Cequera, Plus and Ultima

Ventcroft Security - Vision, Classic, and Spirit

Flashguard - Xtra

Intellisense AG3

NOTE: Where 2 connections are specified for the bell box connection a 0 ohm link must be made betweenthe 2 terminals on the bell box PCB.

Bell-Box Connections

2 Series Terminals BELL + 12V 0V T

Bell box Terminals +H -R -H RTN -ST

2 Series Terminals BELL + 12V 0V T

Bell box Terminals HOLD OFF+VE

SIRENTRIG

HOLD OFF-VE

A/T RETSIG

STROBETRIG

2 Series Terminals BELL + 12V 0V T

Bell box TerminalsHOLD OFF

+VE,STB +VE

TRIG - HOLD OFF-VE RTN STB -

2 Series Terminals BELL + 12V 0V T

Bell box Terminals SUPPLY +STROBE + TRIGGER TAMP OUT SUPPLY - STROB -

2 Series Terminals BELL + 12V 0V T

Bell box Terminals V + S - V - TR ST -

2 Series Terminals BELL + 12V 0V T

Bell box Terminals HOLD + TRG HOLD- TAMP R STRB

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SECTION 14: EVENT LOG LISTEVENT DESCRIPTION

+ AC AC zone activated- AC AC zone closed+ AC> AC zone signalled- AC> AC zone closed signalled+ AC+BAT Mains and battery fault+ ASSIST Assistance zone activation- ASSIST Assistance zone closedAUTO TST Automatic comms test+ AUXFUSE Aux fuse blown- AUXFUSE Panel Aux fuse fault cleared+ BAT MIS Panel Battery disconnected- BAT MIS Panel Battery reconnected+ BATTERY Remote PSU battery low (zone)- BATTERY Remote PSU battery low cleared (zone)+ BELFUSE Bell fuse Blown- BELFUSE Bell fuse fault cleared+ BELLFLT Bell fault zone activated- BELLFLT Bell fault clearedCANCEL Alarm cancelled by userCAUSE Alarm CauseCODE CHG User codes editedCOM FAIL Signalling failedCOM RST Signalling restoredCOMM TST Engineer signalling testCONFIRM Confirmed alarm activation+ CU AC Panel Mains fault- CU AC Panel Mains reinstated+ CU AC> Mains loss signalled- CU AC> Mains restored signalled+ CU BATT Control Unit battery fail- CU BATT Control Unit battery fault restoredDEFAULTS Panel defaults loaded+DEVIATE Deviation from programmed entry routeDOOR PROP MAX - Door left open+ DURESS Duress Condition activated- DURESS Duress condition clearedEASY SET Easy set by user+ ENG CDE Engineer Mode accessed non EN50+ ENT T/O Entry Timeout alarm- ENT T/O Entry Timeout alarm cancelled+ ENT T/O> Entry Timeout alarm signalled- ENT T/O> Entry Timeout alarm cancel signalledFAIL SET Fail to SetFBAT ACK Fob low battery acknowledged+ FIRE Fire zone activated- FIRE Fire zone closed+ FIRE> Fire zone signalled- FIRE> Fire zone closed signalled

Event Log List

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EVENT DESCRIPTION

+ FOB BAT Fob battery low- FOB BAT Fob battery fault clearedFOB DEL RF fob automatically deletedFULL SET System full setFULL TST Full test activated+ HI INT High priority intruder zone+ INT> Intruder signalled- INT> Intruder restore signalled+ INTRU Intruder zone activated- INTRU Intruder zone closed+ JAM Jam condition detected- JAM Jam condition cleared+ JAM> Jam condition signalled+ LINK Link zone activated- LINK Link zone closedLINE FLT Phone line faultLINE RST Phone line restored+ LO INT Low Priority Intruder zoneLOCKOUT Lockout due to wrong codes+MAX ALM MAX alarm - door forced+ MISSING System module missing- MISSING System module reinstatedNGHT SET System Night setOLD S/W Attempt made to add Ethernet Module with old software to system (<V2.04)+ OMIT Zone omitted- OMIT Zone unomitted+ OVERRDE Override of system faults- OVERRDE Fault override cancelledPART SET System Part set+ PA Panic zone activated- PA Panic zone closed+ PA> Panic zone signalled- PA> Panic zone closed signalledPA RESET PA Reset+ PA SIL Silent Panic zone activated- PA SIL Silent Panic zone closed+ PASIL> Silent Panic zone activation signalled- PASIL> Silent Panic zone closed signalledPOWER ON Panel Power On+ PROGRAM Program mode enterd- PROGRAM Program mode exited+ PSU BAT Smart PSU battery low- PSU BAT Smart PSU battery Low cleared+ PSU FUSE Smart PSU fuse blown- PSU FUSE Smart PSU fuse fault cleared+ PSU AC Remote PSU Mains fault- PSU AC Remote PSU mains reinstated+ PSU AC> Remote PSU Mains fault signalled- PSU AC> Remote PSU Mains reinstated+ PSU FLT Power Supply Unit fail zone type- PSU FLT Power Supply Unit fail zone type restore

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EVENT DESCRIPTION

REARM Rearm of system has occured+ REMOTE Remote servicing started- REMOTE Remote servicing endedRESET System resetRESTART Panel restarted+ RF BATT Wireless detector battery low- RF BATT Wireless detector battery low cleared+ RF BATT> Wireless detector battery fault signalled+ RFCHOV RF check override- RFCHOV RF check override restore+ RF OVRR RF low battery override- RF OVRR RF low battery override restoreSOAK TST Zone soak test activation+ STU FLT External Comms Fault- STU FLT External Comms Fault cleared+ SUPERV Detector supervision fault- SUPERV Detector Supervision cleared+ SV OVER RF Supervision fail override- SV OVER RF Supervision fail override restoreSYS SET System setSYSUNSET System unset+ TAMPER Tamper condition activated- TAMPER Tamper condition clearedTIM/DATE Time/Date adjusted+ USR TMP Tamper due to wrong code-USR TMP Tamper due to wrong code clearedUNSET System unsetWALKTST- Walk test endedWALKTST+ Walk test startedWDOG RST System rebootZONE TST Zone tested+ 24 HR 24 HR zone activated- 24 HR 24 HR zone closed

TEST END

Event Log List (cont’d)

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Galaxy 2 Series Installation/Programming ManualSpecifications

SECTION 15: SPECIFICATIONS

Table 32. Panel Specifications

Panel Specifications 2-44+ 2-20

Physical

Plastic Box-3 mm polycarb(with mains transformer and PCB installed)

Width: 300 mmHeight: 250 mmDepth: 100 mmWeight: 1.7 kg

Width: 300 mmHeight: 250 mmDepth: 100 mmWeight: 1.7 kg

Metal Box-1.2 mm steel(with mains transformer and PCB installed)

Width: 370 mmHeight: 320 mmDepth: 85 mmWeight: 4.5 kg

Width: 300 mmHeight: 255 mmDepth: 115 mmWeight: 3.9 kg

Electrical

Panel Current ConsumptionPSU TypeMains InputBack-up Battery

Max recharge timeOperating temperature

PSU Max total load

Grade 2 RatingOutput voltageMax continuous ripple voltage

Individual 12 V outputs:Bell+12VBoth Aux+combinedTrigger Header+12V

Switched Outputs:Trigger Header OutputsBell Trigger 1003Strobe Trigger 1004Trig Output 1001

Speaker Output:Speaker output 1002

Fuses:Mains

Battery (F1)Aux (F2)Bell (F3)

100 mA (max)A230 V ac (+10% -15%)Up to 7.2Ahr 12 V SealedLead-Acid (plastic encl.)

Up to 17Ahr 12 V SealedLead-Acid (metal encl.)<72 hours-100 C to +400 C

1.4 A (nominal temp. andmains supply)

1 ANominal +12 V0.5 V at max. load

500 mA max500 mA max100 mA max

Can sink 30 mA eachCan sink 500 mA maxCan sink 500 mA maxCan sink 30 mA max

8 to 32 ohms or 100 mA inswitched DC mode

500 mA, 20 mm anti-surge(IEC 127)1 A, 20 mm anti-surge500 mA, 20 mm anti-surge500 mA, 20 mm anti-surge

70 mA (max)A230 V ac (+10% -15%) @ 50HzUp to 7.2Ahr 12 V Sealed Lead-Acid(plastic encl.)

Up to 12Ahr 12 V SealedLead-Acid (metal encl.)<72 hours-100 C to +400 C

1.0 A (nominal temp. and mains supply)

600 mANominal +12 V0.5 V at max. load

500 mA max500 mA max100 mA max

Can sink 30 mA eachCan sink 500 mA maxCan sink 500 mA maxCan sink 30 mA max

8 to 32 ohms or 100 mA in switched DCmode

200 mA, 20 mm anti-surge (IEC 127)1 A, 20 mm anti-surge500 mA, 20 mm anti-surge500 mA, 20 mm anti-surge

CodesDigits availableCode lengthTotal variations per code

0 - 94 - 6 digits106 + 105 + 104 = 1,110,000

0 - 94 - 6 digits106 + 105 + 104 = 1,110,000

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Galaxy 2 Series Installation/Programming Manual Specifications (cont’d)

Table 33. Peripheral Current Consumption

PERIPHERAL QUIESCENTCURRENT (mA)

MAXIMUM ALARMCURRENT (mA)

Mk 7 Keypad 70 90

Mk 7 Keyprox 90 130

RIO 30

Power RIO/Power Unit 70

RF Portal 50

6160 Keypad 52

6160 Keyprox 72

6160 RF Keypad 73

5800 RF Receiver 60

ECP Expander 25

GSM Module 10

Ethernet 155

MAX Reader 30

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136

Galaxy 2 Series Installation/Programming ManualApprovals

SECTION 16: COMPLIANCE AND APPROVALSThe Galaxy 2 Series is compliant with the relevant parts of the following standards:

• 99/05/EC R&TTE Directive

• EN50130-5:1998 Alarm systems. Environmental test methods

It is a condition of the product’s approval that the installation complies with the following:

EN50131 ComplianceThis product meets the requirements of TS50131-3: 2003 and is suitable for use in systems designed tocomply with PD6662:2004 and EN50131-1:2004.

Security Grade - 2Environmental Class - IIAlarm Transmission System - 2 (options A, B, C & X)Power Supply Type - A

This product is also suitable for use in alarm systems designed to comply with EN50131-1:1997.

Security Grade - 2Environmental Class - IIAlarm Transmission System - D2, T2, A2, I0, S0Power Supply Type - A

Public Switched Telephone Network (PSTN) ApprovalThe equipment has been approved to Council Decision 98/482/EC for Pan -European single terminal connec-tion to the Public Switched Telephone Network (PSTN). However due to differences between the individualPSTNs provided in different countries the approval does not, of itself, give an unconditional assurance ofsuccessful operation on every PSTN network termination point.

In the event of problems contact the equipment supplier in the first instance.

The Galaxy 2 Series is designed to interwork with the following networks:

Austria France Italy Norway United Kingdom

Belgium Greece Liechtenstein Portugal

Denmark Iceland Luxembourg Spain

Finland Ireland The Netherlands Sweden

NOTE: Contact the equipment supplier before using the Galaxy 2 Series on any network not listed.

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137

Galaxy 2 Series Installation/Programming Manual

HONEYWELL SECURITY LIMITED WARRANTYHoneywell Security, and its divisions, subsidiaries and affiliates (“Seller”), 165 Eileen Way, Syosset, NewYork, 11791, warrants its products to be in conformance with its own plans and specifications and to be freefrom defects in materials and workmanship under normal use and service for 24 months from the date stampcontrol on the product. Seller’s obligation shall be limited to repairing or replacing, at its option, free of chargefor materials or labour, any product that is proved not in compliance with Seller’s specifications or provesdefective in materials or workmanship under normal use and service. Seller shall have no obligation under thisLimited Warranty or otherwise if the product is altered or improperly repaired or serviced by anyone otherthan Honeywell factory service. For warranty service, return product transportation prepaid to:

Honeywell Security, 6 Aston Fields Road, Whitehouse Industrial Estate, Runcorn, Cheshire WA73DL

THERE ARE NO WARRANTIES, EXPRESS OR IMPLIED, OF MERCHANTABILITY, OR FITNESSFOR A PARTICULAR PURPOSE OR OTHERWISE, WHICH EXTEND BEYOND THE DESCRIP-TION ON THE FACE HERE OF. IN NO CASE SHALL SELLER BE LIABLE TO ANYONE FORANY CONSEQUENTIAL OR INCIDENTAL DAMAGES FOR BREACH OF THIS OR ANY OTHERWARRANTY, EXPRESS OR IMPLIED, OR UPON ANY OTHER BASIS OF LIABILITY WHATSO-EVER, EVEN IF THE LOSS OR DAMAGE IS CAUSED BY THE SELLER’S OWN NEGLIGENCEOR FAULT.

Seller does not represent that the products it sells may not be compromised or circumvented; that the prod-ucts will prevent any personal injury or property loss by burglary, robbery, fire or otherwise; or that the prod-ucts will in all cases provide adequate warning or protection. Customer understands that a properly installedand maintained alarm may only reduce the risk of a burglary, robbery, fire or other events occurring withoutproviding an alarm, but it is not insurance or a guarantee that such will not occur or that there will be no per-sonal injury or property loss as a result.

CONSEQUENTLY, SELLER SHALL HAVE NO LIABILITY FOR ANY PERSONAL INJURY, PROP-ERTY DAMAGE OR OTHER LOSS BASED ON A CLAIM THE PRODUCT FAILED TO GIVEWARNING. HOWEVER, IF SELLER IS HELD LIABLE, WHETHER DIRECTLY OR INDIRECTLY,FOR ANY LOSS OR DAMAGE ARISING UNDER THIS LIMITED WARRANTY OR OTHERWISE,REGARDLESS OF CAUSE OR ORIGIN, SELLER’S MAXIMUM LIABILITY SHALL NOT IN ANYCASE EXCEED THE PURCHASE PRICE OF THE PRODUCT, WHICH SHALL BE THE COMPLETEAND EXCLUSIVE REMEDY AGAINST SELLER.

This warranty replaces any previous warranties and is the only warranty made by Seller on this product. Noincrease or alteration, written or verbal, of the obligations of this Limited Warranty is authorized.

Honeywell Security

Newhouse Industrial Estate

Motherwell

Lanarkshire

ML1 5SB

UK

Warranty

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Galaxy 2 Series Installation/Programming Manual

A-1

Appendix A: Point ID Comms Triggers

Comms Triggers

Menu Trigger Name Events Controlled CID Code SIA Code 01 Panic Silent Panic Zone - Hotkey

Audible Panic Zone - Hotkey Duress Code

122 123 121

HA, HR PA, PR HA, HR

02 Intruder Intruder Zone High Priority Intruder Zone Low Priority Intruder Zone Exit Zone Entry Timeout Confirm

130 130 130 130 134 139

*BA, BR BF, BR BL, BR BA, BR BA, BR BV

03 24 Hour 24 hour Zone Door Forced Door Prop Link Zone

135 423 426 150

BA, BR DF DT RO, RC

06 Fire Fire Zone Fire Hotkey

110 110

FA, FR FA, FR

08 Omit Zone manual omit Zone force omit

573 573

BB BB

09 Tamper Zone tamper set Zone tamper unset Panel lid tamper (0003) Module lid tamper Bell tamper (0004) Aux tamper Missing Module Keypad (Code) tamper

137 137 137 145 137 137 145 461

TA, TR TA, TR TA, TR TA, TR TA, TR TA, TR TA, TR JA, TR

10 Set/Unset Fail to Set Full Set (Areas Off) Part Set Night Set Rearm Full Unset Part or night unset

454 R401 R441 R441 463 E401 E441

CI CL CG CG CP OP OG

11 Reset/Cancel Abort (unset from Alarm) Alarm Cause Reset Reset (PA)

406 - 313 465

BC AC OR OR

13 Elec Status Low Battery (0001) Battery fail (0001) Battery missing (0001) Mains loss (0002) Mains and battery fault Fuse fail (Any)

302 302 302 301 - 300

YT, YR YT, YR YT, YR AT, AR YL YP, YQ

14 System Status Downloader Access exit Manual Comms Test Periodic Comms Test Walk Test Active Engineer Entry Engineer Exit

412 601 602 607 627 627

RS RX RP TS, TE LB LX

15 System Faults Line Fault Comms Fail PSU Fault Bell Fail (Zone)

351 350 314 320

LT, LR YC, no restoreYP, YQ YA,YH

19 RF Faults RF Jam RF Low Battery RF Supervision**

344 384 381

XQ, XH XT, XR See note

20 Assistance Assistance Hotkey 101 QA, QR Always on Listen-in to follow 606 LF * Note : For listen-in events after alarms a SIA listen-in block is sent. **Note : There is no specific code for RF supervision failure. The Trouble codes that are associated with

the usage of the transmitter should be used:

Trouble Code Transmitter Usage BT Burglary zone trouble FT Fire zone trouble PT Panic zone trouble MT Medical zone trouble QT Emergency zone trouble UT Trouble on zone of unknown type

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Galaxy 2 Series Installation/Programming Manual

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Honeywell Security (UK 64)Newhouse Industrial EstateMotherwellLanarkshireML1 5SBUK

© Copyright Honeywell SecurityII1-0132 Rev 1.0