programmable logic controller · programmable logic controller in modern century in this time more...
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Programmable Logic Controller
QEC25689
Programmable Logic Controller
In modern century in this time more and more company which technological to use, so that everything
become accurate and quicker. Along go forward technological and to the number of appliance of electrics
make we will progressively more amount learning to pursue technology. One of very technology needed by
a company for example is Programmable Logic Controller or PLC. This PLC represent a electrics peripheral
which is good for as control in system network or wear command in course of production. One of brand
from PLC is OMRON, SIEMENS, MATSUSHITA, TOSHIBA, MITSUBISHI, and other.
PLC is represent an equipments control electronic created from result of solidarity of among computer
technology " solid-state " and " traditional sequence controller " . If visible from computer used, PLC is
special purpose group. Computer special purpose is designed special tools to process certain problem, for
example inspection equipment.
Basically PLC have function to replace job from relays mechanic and timer or switch manual. Because
by excellence from micro controller equipments develop hardware, hence PLC can operate arithmetical,
converting data from analogue to digital or on the contrary, and can finish control problem having the
character of complex. To correspond to job circumstance, hence PLC designed to can operate on dusty
industry environment and mount high pollution, with temperature change 0 - 60oC and the dampness
relative at 0% - 95%.
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Programmable Logic Controller
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National Electrical Manufactures Association ( NEMA ) giving the meaning of PLC :
" The electrics equipments operating digital by using " programmable memory" to is depository of
instructions internal in the place of job from equipments having functions specific, like " logic, squence,
timer, counter and mathematic", and to control job from machines or process, through input output
module analogously to digital"
Usually public Name and type of Programmable Logic
OMRON industry, SIEMENS industry, TOSHIBA industry, MITSUBISHI industry, LG industry
For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
Programmable Logic Controller
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O multi fuction
-. Communication Host link (serial Port or LPT )
-. Memory Card -. Analog system
-. Memory Program
-. OMRON production
Click my to Example application
Programmable Logic Controller
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O standart
-. Communication Host link / N : 1
-. Serial Port / LPT / USB / LAN -. Programming Console
-. Analog system
-. Memory Program
-. OMRON production
Click my to Example application
Programmable Logic Controller
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O standart
-. Communication Host link
-. Serial Port / Programmning Console -. Memory Program
-. OMRON production
Click my to Example application
Programmable Logic Controller
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Introduction
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O standart
-. Communication internal
-. Memory Program -. OMRON production
Programmable Logic Controller
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Introduction
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PLC Basic
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Programming
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O standart
-. Communication Host link
-. Serial Port -. Memory Program
-. SIEMENS production
Programmable Logic Controller
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O standart
-. Communication Host link
-. Serial Port -. Memory Program
-. TOSHIBA production
Programmable Logic Controller
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O standart
-. Communication Host link / N : 1
-. LPT / LAN / USB -. Memory Program
-. MITSUBISHI production
Programmable Logic Controller
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For examples name of product :
CJ1
CVM
ZEN
CPM
S7-200
T1-40
FX-3U
AL6
SPESIFICATION
-. I / O multi fuction
-. Communication Host link / N : 1
-. LAN -. Analog system
-. Memory Program
-. LG production
Programmable Logic Controller
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CONTROL SYSTEM
Word control often we hear in everyday discussion. Word control here can be interpreted " arranging",
and if us narrow again meaning usage of word control in electrics technique is an equipments group or
equipments used to arrange function machine to specify the machine behavior is matching with the one
which wanted. System having ability to start, arranging and riffing process to get output matching with
the one which wanted to be referred as " Control Systems ". And in general a control systems to
represent an corps equipments of electric / electronic, equipments of mechanic, or equipments of other
electrics which used to guarantee stability, smooth transition and accuration a process also . Every
control systems have three fundamental element, that is : input, process, and output. In general input
come from transducer. This Transducer is an appliance able to change physical amount become electrics
sign. Some example of shares among others can in the form of : push bottom, mini circuit breaker,
censor, contactor, etc.
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This transducer deliver information concerning measured amount. Process in this control systems can in
the form of network control by using equipments of stringed up control electrics. And there is also using
equipments of control with program system which can innovated or more popular referred by the name
of PLC (Programmable Logic Controller). At control with program system of which can innovated, control
program kept in a memory unit and enable or can change program which have been written previously,
that is by program repeat is matching with the one which wanted. Duty from part of process is to
process data coming from input and then as its result in the form of effect (output). Sign coming from
part of this process in the form of electrics sign which is then wear to activate equipments of output
like : motor, solenoid, lamp, spillway, etc. By using equipments of this output can earn to change
electrics amount into physical amount.
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Open Loop Closed Loop
Click options to configuration, if you are not understanding
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Control of Open Loop to represent a process in system of which input variable will have an in with
yielded output. Picture following diagram block system of loop open, which possible can assist you in
comprehending the control systems. If us see from diagram block, at control systems of loop open here
no given information to equipments of control coming from equipments of output ( controlled variable),
ignorable so that correctly what is wanted output as according to desire or not. Especially in the event
of trouble from outside able to influence output. Therefore at this system will happened big enough
mistake because of corrective inexistence.
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Open Loop Closed Loop
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Control of Closed Loop is a process of which controlled variable is continually censored then compared
to reference amount. As for controlled variable can in the form of result of measurement like for
example measurement of temperature, dampness, mechanic position, speed of rotation, etc. Then
result of baited by mentioned measurement of inversion to comparator. This comparator can in the form
of equipments of mechanic, electrics / electronic, or pneumatic. At this comparator appliance between
reference amount with censor sign coming from controlled to be variable to be compared to, and as its
result mistake sign. This error sign its result can be negative or positive, mathematically this mistake
sign like use under equation.
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Open Loop Closed Loop
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PLC ( PROGRAMMABLE LOGIC CONTROLLER ) is an equipments of created
control from result of solidarity between technology of computer " solid ‐ state" and is " traditional of controller
sequence " manual control. Peculiarly PLC is purpose special that is special designed computer to operate a
certain problem related to controller or problem work process or machine in the industry. According To NEMA
( National Electrical Manufactures Association ) giving congeniality of PLC that is " an equipments of electrics
operating digital by using memory programmable to be is depository of internal instructions in the place of
activity of equipments having specific function, examples : logic, sequence, timer, counter, and mathematic, to
control of process or machines, passing input module of output analogously is ‐ digital ".
As for advantage by using PLC is :
1. Cheaper of expense compared to control system using many relay ( manual control ).
2. Easier in programing and earn to easily altered its system network.
3. More peaceful is , practical , and rely on from network of control manual.
4. Having principle like computer.
5. Easier in tracing network trouble of control made.
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Prinsip of PLC :
Principle work from PLC in general is to accept sign analogous of equipments of external Input which in
the form of : push bottom, overload, censor, etc. sign this Analogous by input module will be altered to
become sign ‐ digital. At system to be controlled to have sign or throb in every and input of output,
good in the form of sign analogous and also digital sign. This digital sign will be processed by unit of
product especial is " Central Processing Unit ( CPU ), as according to command of program which have
been specified or program at memory. Here after CPU will take decision ‐ decision which later will be
carried over by module of Output still in the form of sign digital. Module of Output will change digital
sign become analogous sign. This sign analogous move relay ‐ or relay of contactor, representing
equipments of external output.
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware PLC have three component
1. Part Of Input—Output ( I /O ).
2. Processor.
3. Programming of Devices.
Type of PLC
MODULAR COMPACT
Click bottom for look picture……..
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware this PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware this PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware this PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware this PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware this PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Hardware PLC
Hardware basically by a PLC is same with hardware owned by Personal Computer ( PC ). However
owning difference in division of unit. In hardware this PLC have three component
1. Part Of Input—Output ( I /O ). >>>> picture
2. Processor. >>>> picture
3. Programming of Devices. >>>> picture
Type of PLC
MODULAR COMPACT
Programmable Logic Controller
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Part of PLC have shares function which each other is interconnected. As for every shares have the
function :
1. Interface Function (click here)
2. Central Processor Unit (click here)
3. Programming Devices (click here)
4. Power supply (click here)
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CENTRAL PROCESSOR UNIT
“ Processor “ representing punch line of PLC which processing and saving all sent program ( download ) into PLC. Processed is Program to be adapted for situation of input and another. Kinds of function of processor for example : ]] Especial Process Unit ]] User Program of Memory ]] Variable Data of Memory ]] Image Tables
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PROGRAMMING DEVICE
" Programming of Devices " representing is hardware the than functioning PLC to include, to editing,
modifying and monitoring existing program in PLC memory, so that PLC can be operated as according to
program control which have memory. This tables represent kinds of programing devices used by OMRON.
Kinds of Programming Devices is
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POWER SUPPLY UNIT Power is often referred also power supply, functioning as supply of peripheral of PLC. All peripheral of PLC always require the source of tension used to move or operate used PLC processor. As for big the so small used tension depended from PLC type wear. Because most of all PLC type require voltage supply, as according to type and requirement of PLC which utility. Generally supply used for the processor of this big PLC of tension for example : • Power supply for INPUT is DC with 12V or 24V. • Power supply for OUTPUT is DC or AC with 12V, 24V, 120V, 230V. Big and the so small used power Input goodness and or Output depended from type and type of PLC. Because every PLC always vary depended from requirement of user.
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INTERFACE FUNCTION
A. Input ( click here )
Input module ( I ) functioning to convert analogous sign into digital sign which accepted by equipments of external input. This digital Input sign will be processed by processor.
B. Output ( click here )
Output module ( O ) functioning to convert digital sign to analogous sign which than product of process or machine with pass contactors / relay.
Pictures wiring……….
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INTERFACE FUNCTION
A. Input
Input module ( I ) functioning to convert analogous sign into digital sign which accepted by equipments of external input. This digital Input sign will be processed by processor.
B. Output ( click here )
Output module ( O ) functioning to convert digital sign to analogous sign which than product of process or machine with pass contactors / relay.
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INTERFACE FUNCTION
A. Input ( click here )
Input module ( I ) functioning to convert analogous sign into digital sign which accepted by equipments of external input. This digital Input sign will be processed by processor.
B. Output
Output module ( O ) functioning to convert digital sign to analogous sign which than product of process or machine with pass contactors / relay.
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PROGRAMMING LANGUAGE
Before compiling program for the operation of PLC AT processing control or system, have to know and
memorize programming language of PLC to use of. PLC cannot be used if do not be entered an
instruction program. Command of program or command which have been made by a programmer if
included into PLC have to use programming language of PLC.
With this basic Ianguage a programmer can communicate direct with PLC, and also can arrange the
way of activity PLC to matching with the one which wanted. As for programming language of PLC
referred " Relay Ladder Logic " which must know and memorized to start from :
1. MNEMONIC CODE (click here)
2. LADDER DIAGRAM (for intermediate)
3. FUNCTION PLAN of BLOCK (for expert)
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PROGRAMMING LANGUAGE
Mnemonic Code
Code Mnemonic represent common and simple elementary command used by PLC. In writing of code mnemonic have hand in glove link with made diagram ladder. If including program to PLC by using Programming of Console, code mnemonic shall in advance its ism. If wrong code mnemonic hence diagram ladder even also will become wrongly, so also divertingly so that PLC cannot be operated. Command of this Mnemonic code is always used if the PLC use programming of console. As for command type Mnemonic code in simple program and represent the core of base from programming of system control. Type of Mnemonic Code is :
1. Elementary Command. (click here)
Elementary command is most important command and often used in writing code of mnemonic
and also always surely every program of control system use PLC.
2. Continues Command. (click here)
Command of continuation is to represent used command at certain program and its usage use
symbol of type of FUN (....). This Command have the character of certain program, like to: timer,
comparator, and mathematic.
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Kinds of Elementary Command is
1. LOAD or LD (click look mean)
2. NOT (click look mean)
3. AND (click look mean)
4. OR (click look mean)
5. OUT (click look mean)
6. END (click look mean)
Is meaning……..
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Command of LOAD which often shortened with LD is a prefix of logic line or
block. If in its function manual network equal to input form contact NO
( Normally Open ) or input / push bottom / censor.
Kinds of Elementary Command is
1. LOAD or LD
2. NOT (click look mean)
3. AND (click look mean)
4. OR (click look mean)
5. OUT (click look mean)
6. END (click look mean)
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Command of NOT is command of reverse ( inverts ) input or meaning not or having
the character of closed. If in its function manual network is equal to an input
form contact NC ( Normally Close ).
Kinds of Elementary Command is
1. LOAD or LD (click look mean)
2. NOT
3. AND (click look mean)
4. OR (click look mean)
5. OUT (click look mean)
6. END (click look mean)
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Command of OUT is final of command diagram one line or representing ending from one
command. If in its function manual network represent final go to coil contactor
Kinds of Elementary Command is
1. LOAD or LD (click look mean)
2. NOT (click look mean)
3. AND (click look mean)
4. OR (click look mean)
5. OUT
6. END (click look mean)
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Command of AND is command used to connect marked with lines meaning “and”.
If in its function manual network is parallel two or more than an input, including
NO and or NC.
Kinds of Elementary Command is
1. LOAD or LD (click look mean)
2. NOT (click look mean)
3. AND
4. OR (click look mean)
5. OUT (click look mean)
6. END (click look mean)
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Command of OR is command used to connect parallel meaning or. If in its function manual
network represent contact assist parallel two or more than an input, including NO and or NC.
Kinds of Elementary Command is
1. LOAD or LD (click look mean)
2. NOT (click look mean)
3. AND (click look mean)
4. OR
5. OUT (click look mean)
6. END (click look mean)
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Command of END ( 01 ) is command used to mark program have or admission filling of
program have is “ final ”. If final of admission filling of program don't give command of END
( 01 ), program assumed is unfinished ( instruction end no ) and PLC cannot be operated.
Program write using FUN 01.
Kinds of Elementary Command is
1. LOAD or LD (click look mean)
2. NOT (click look mean)
3. AND (click look mean)
4. OR (click look mean)
5. OUT (click look mean)
6. END
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Kinds of Continues Command is
1. TIM or TIMH(15)(click look mean)
2. CNT and CNTR(12)(click look mean)
3. KEEP(11)(click look mean)
4. IL(02) and ILC(03)(click look mean)
5. DIFU(13) and DIFD(14)(click look mean)
6. SFT(10)(click look mean)
Is meaning……..
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Kinds of Continues Command is
1. TIM or TIMH(15)(click look mean)
2. CNT and CNTR(12)(click look mean)
3. KEEP(11)(click look mean)
4. IL(02) and ILC(O3)(click look mean)
5. DIFU(13) and DIFD(14)(click look mean)
6. SFT(10)(click look mean)
TIM or TIMH(15) are decrementing ON-delay timer instructions which require a TC number and a set value (SV). Any timer can used to control the interval timers, which are used to activate interrupt routines.
Any one TC number cannot be defined twice, i.e., once it has been used as the definer in any of the timer or
counter instructions, it cannot be used again. Once defined, TC numbers can be used as many times as required as operands in instructions other than timer and counter instructions.
DESCRIPTIONS
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Kinds of Continues Command is
1. TIM or TIMH(15)(click look mean)
2. CNT and CNTR(12)(click look mean)
3. KEEP(11)(click look mean)
4. IL(02) and ILC(O3)(click look mean)
5. DIFU(13) and DIFD(14)(click look mean)
6. SFT(10)(click look mean)
CNT is a decrementing counter instruction and CNTR(12) is a reversible counter instruction. Both require a TC number and a SV. Both are also connected to multiple instruction lines which serve as an input signals and a reset. CTBL(63), INT(89), and PRV(62) are used to manage the high-speed counter. INT(89) is also used to stop pulse output. Any one TC number cannot be defined twice, i.e., once it has been used as the definer in any of the timer or counter instructions, it cannot be used again. Once defined, TC numbers can be used as many times as required as operands in instructions other than timer and counter instructions.
DESCRIPTIONS
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Kinds of Continues Command is
1. TIM or TIMH(15)(click look mean)
2. CNT and CNTR(12)(click look mean)
3. KEEP(11)(click look mean)
4. IL(02) and ILC(O3)(click look mean)
5. DIFU(13) and DIFD(14)(click look mean)
6. SFT(10)(click look mean)
KEEP(11) is used to maintain the status of the designated bit based on two execution conditions. These execution conditions are labeled S and R. S is the set input; R, the reset input. KEEP(11) operates like a latching relay that is set by S and reset by R.
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Kinds of Continues Command is
1. TIM or TIMH(15)(click look mean)
2. CNT and CNTR(12)(click look mean)
3. KEEP(11)(click look mean)
4. IL(02) and ILC(O3)(click look mean)
5. DIFU(13) and DIFD(14)(click look mean)
6. SFT(10)(click look mean)
IL(02) and ILC(03) do not necessarily have to be used in pairs. IL(02) can be used several times in a row, with each IL(02) creating an interlocked section through the next ILC(03). ILC(03) cannot be used unless there is at least one IL(02) between it and any previous ILC(03).
DESCRIPTIONS
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Kinds of Continues Command is
1. TIM or TIMH(15)(click look mean)
2. CNT and CNTR(12)(click look mean)
3. KEEP(11)(click look mean)
4. IL(02) and ILC(O3)(click look mean)
5. DIFU(13) and DIFD(14)(click look mean)
6. SFT(10)(click look mean)
DIFU(13) and DIFD(14) are used to turn the designated bit ON for one cycle only.
DESCRIPTIONS
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Kinds of Continues Command is
1. TIM or TIMH(15)(click look mean)
2. CNT and CNTR(12)(click look mean)
3. KEEP(11)(click look mean)
4. IL(02) and ILC(O3)(click look mean)
5. DIFU(13) and DIFD(14)(click look mean)
6. SFT(10)(click look mean)
SFT(10) is controlled by three execution conditions, I, P, and R. If SFT(10) is executed and 1) execution condition P is ON and was OFF the last execution, 2) R is OFF, then execution condition I is shifted into the rightmost bit of a
Shift Register defined between St and E, i.e., if I is ON, a 1 is shifted into the register if I is OFF, a 0 is shifted in. When I is shifted into the register, all bits previously in the register are shifted to the left and the leftmost bit of the register is lost.
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A timer is activated when its execution condition goes ON and is reset (to SV) when the execution condition goes OFF. Once activated, TIM measures in units of 0.1 second from the SV. If the execution condition remains ON long enough for TIM to time down to zero, the Completion Flag for the TC number used will turn ON and will remain ON until TIM is reset (i.e., until its execution condition is goes OFF). The following figure illustrates the relationship between the execution condition for TIM and the Completion Flag assigned to it.
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CNT is used to count down from SV when the execution condition on the count pulse, CP, goes from OFF to ON, i.e., the present value (PV) will be decremented by one whenever CNT is executed with an ON execution condition for CP and the execution condition was OFF for the last execution. If the execution condition has not changed or has changed from ON to OFF, the PV of CNT will not be changed. The Completion Flag for a counter is turned ON when the PV reaches zero and will remain ON until the counter is reset.
CNT is reset with a reset input, R. When R goes from OFF to ON, the PV is reset to SV. The PV will not be decremented while R is ON. Counting down from SV will begin again when R goes OFF. The PV for CNT will not be reset in interlocked program sections or by power interruptions.
Changes in execution conditions, the Completion Flag, and the PV are illustrated below. PV line height is meant only to indicate changes in the PV.
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When S turns ON, the designated bit will go ON and stay ON until reset, regardless of whether S stays ON or goes OFF. When R turns ON, the designated bit will go OFF and stay OFF until reset, regardless of whether R stays ON or goes OFF. The relationship between execution conditions and KEEP(11) bit status is shown below.
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IL(02) is always used in conjunction with ILC(03) to create interlocks. Interlocks are used to enable branching in the same way as can be achieved with TR bits, but treatment of instructions between IL(02) and ILC(03) differs from that with TR bits when the execution condition for IL(02) is OFF. If the execution condition of IL(02) is ON, the program will be executed as written, with an ON execution condition used to start each instruction line from the point where IL(02) is located through the next ILC(03).
IL(02) if ON
Instructions normal condition
ILC(03) based of Instruction
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Whenever executed, DIFU(13) compares its current execution with the previous execution condition. If the previous execution condition was OFF and the current one is ON, DIFU(13) will turn ON the designated bit. If the previous execution condition was ON and the current execution condition is either ON or OFF, DIFU(13) will either turn the designated bit OFF or leave it OFF (i.e., if the designated bit is already OFF). The designated bit will thus never be ON for longer than one cycle, assuming it is executed each cycle (see Precautions, below).
Whenever executed, DIFD(14) compares its current execution with the previous execution condition. If the previous execution condition was ON and the current one is OFF, DIFD(14) will turn ON the designated bit. If the previous execution condition was OFF and the current execution condition is either ON or OFF, DIFD(14) will either turn the designated bit OFF or leave it OFF. The designated bit will thus never be ON for longer than one cycle, assuming it is executed each cycle
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Programming Console
Devices Programming model is console very easy in usage and is practical, because after input
program to PLC, this console easily released and then to kept. So that to every PLC earn is directly
filled in program according to desire. This matter facilitate in including program to every wanted PLC
but link have to be more between program content which is one with the other program in a control
systems. For the detection of mistake of program also must be done every unit of PLC. Weakness of
this console used to filled in programming language ( Mnemonic Code ) not ladder diagram. Mnemonic
Code is code of programming language had by meaningful PLC network control system. So that
expected to know in front programming language to be used as according to control. Because this
programming language ( Mnemonic Code ) in the form of letter / article so that more difficult in its
understanding , if compared to in the form of Ladder Diagram.
1. Using Programming Console (click here) 6. Buzzer Operation (click here)
2. Operating Mode (click here) 7. Entering Program (click here)
3. Connecting the Programming Console (click here) 8. Inserting Program (click here)
4. First Access to System (click here) 9. Delete Program (click here)
5. Clearing Memory in Programming Console (click here)
Click here Look picture Programming Console
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Programming Console
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1 2
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1. Using Programming Console
Once the Programming Console has been connected, its mode switch can be used to change the CPM1A’s
operating mode. The mode display ( < PROGRAM >, < MONITOR >, or < RUN > ) will appear on the
Programming Console screen.
No key operations can be performed while the mode display is displayed on the Programming
Console screen. Press CLR to clear the display so that key operations can be performed.
If the SHIFT Key is pressed while the mode switch is turned, the original display will remain on the
Programming Console’s screen and the mode display won’t appear.
The CPM1A or CPM2A will enter RUN mode automatically if a Programming Console isn’t connected
when the CPM1A or CPM2A is turned on.
Click Here Look Picture
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2. Operating Mode
PROGRAM Mode The mode program isn’t executed in PROGRAM mode. Use PROGRAM mode to create and edit the program, clear memory, or check the program for errors. MONITOR Mode The mode program is executed in MONITOR mode and I/O is refreshed just as it is in RUN mode. Use MONITOR mode to test system operations, such as monitoring mode operating status, force-setting and resetting I/O bits, changing the SV/PV of timers and counters, changing word data, and online editing. RUN Mode This is the mode normal operating mode. The mode operating status can be monitored from a Programming Device, but bits can’t be force-set/force-reset and the SV/PV of timers and counters can’t be changed.
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3. Connecting Programming Console
Connect the Programming Console’s connecting cable to the PLC peripheral port, as shown below.
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4. First Access to The System
To gain access to the PC’s programming functions, you must first enter the password. The password prevents unauthorized access to the program. The PC prompts you for a password when PC power is turned on or, if PC power is already on, after the Programming Console has been connected to the PC. To gain access to the system when the “Password!” message appears, press CLR and then MONTR. Then press CLR to clear the display.
If the Programming Console is connected to the PC when PC power is already on, the first display below will indicate the mode the PC was in before the Programming Console was connected. Ensure that the PC is in PROGRAM mode before you enter the password. When the password is entered, the PC will shift to the mode set on the mode switch, causing PC operation to begin if the mode is set to RUN or MONITOR. The mode can be changed to RUN or MONITOR with the mode switch after entering the password.
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5. Clearing Memory
This operation is used to clear all or part of the Program Memory and data areas, as well as the contents of the Programming Console’s memory. This operation is possible in PROGRAM mode only.
Before beginning to program for the first time or when installing a new program, clear all areas.
The following procedure is used to clear memory completely, including the program, all data areas.
1. Bring up the initial display by pressing the CLR Key repeatedly.
2. Press the SET, NOT, and then the RESET Key to begin the operation
.
3. Press the MONITOR Key to clear memory completely.
4. Press the CLR again if complete and new display.
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6. Buzzer Operation
This operation is used to turn ON and OFF the buzzer that sounds when Programming Console keys
are pressed. This buzzer will also sound whenever an error occurs during PC operation. Buzzer
operation for errors is not affected by this setting.
This operation is possible in any mode.
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6. Buzzer Operation ( continues )
Follow the procedure below to turn the key-input buzzer on and off.
1. Press the CLR, SHIFT, and then the CLR Key to bring up the mode display. In this case the PC is in PROGRAM mode and the buzzer is ON.
2. Press the SHIFT and then the 1 Key to turn OFF the buzzer.
3. Press the SHIFT and then the 1 Key again to turn the buzzer back ON.
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7. Entering Program
This operation is used enter or edit programs. It is possible in PROGRAM mode only.
The same procedure is used to either input a program for the first time or to change a program that
already exists. In either case, the current contents of Program Memory is overwritten.
The program shown in the following diagram will be entered to demonstrate this operation.
1. Press the CLR Key to bring up the initial display.
2. Specify the address where the program will begin.
3. Input the address where the program will begin and press the Down Arrow Key. It is not necessary to input leading zeroes.
4. Input the first instruction and operand.
5. Press the WRITE Key to write the instruction to Program Memory. The next program address will be
displayed.
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8. Inserting Instruction
This operation is used to insert instructions from the program. It is possible in PROGRAM
mode only.
To demonstrate this operation, an IR 00105 NO condition will be inserted at program address 00206,as shown in the following instruction
1. Press the CLR Key to bring up the initial display.
2. Input the address where the NO condition will be inserted and press the Down Arrow Key. It is not
necessary to input leading zeroes.
3. Input the new instruction and press the INS Key.
4. Press the Down Arrow Key to insert the new instruction.
Next
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8. Inserting Instruction
This operation is used to insert instructions from the program. It is possible in PROGRAM
mode only.
To demonstrate this operation, an IR 00105 NO condition will be inserted at program address 00206, as shown in the following instruction
1. Press the CLR Key to bring up the initial display.
2. Input the address where the NO condition will be inserted and press the Down Arrow Key. It is not
necessary to input leading zeroes.
3. Input the new instruction and press the INS Key.
4. Press the Down Arrow Key to insert the new instruction.
Next
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9. Deleting Instruction
This operation is used to delete instructions from the program. It is possible in PROGRAM
mode only.
To demonstrate this operation, an IR 00103 NO condition will be deleted from address 00205 , as shown in the following instruction
1. Press the CLR Key to bring up the initial display.
2. Input the address where the NO condition will be deleted and press the Down Arrow Key. It is not necessary to input leading zeroes.
3. Press the DEL Key.
4. Press the Down Arrow Key to delete the specified instruction.
If the instruction has more operands, the operands will be deleted automatically with the instruction.
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9. Deleting Instruction
This operation is used to delete instructions from the program. It is possible in PROGRAM
mode only.
To demonstrate this operation, an IR 00103 NO condition will be deleted from address 00205 , as shown in the following instruction
1. Press the CLR Key to bring up the initial display.
2. Input the address where the NO condition will be deleted and press the Down Arrow Key. It is not necessary to input leading zeroes.
3. Press the DEL Key.
4. Press the Down Arrow Key to delete the specified instruction.
If the instruction has more operands, the operands will be deleted automatically with the instruction.
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Some examples :
#. Basic instruction
#. Seri and Parallel Instruction
#. Function Instruction
#. Application 1
#. Application 2
#. Application 3
Examples…………...
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Some examples :
#. Basic instruction
#. Seri and Parallel Instruction
#. Function Instruction
#. Application 1
#. Application 2
#. Application 3
Examples…………...
4/27/2009 www.totok-nur-alif.blogspot.com
S0
S1
K1
K1
K1
13
14
1
3
LAMPU
A1
A2
L
N
11
12
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Some examples :
#. Basic instruction
#. Seri and Parallel Instruction
#. Function Instruction
#. Application 1
#. Application 2
#. Application 3
5/3/2009 www.totok-nur-alif.blogspot.com
S0
S1
K1
K1
K1
13
14
1
3
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L
N
11
12 K2
13
14
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PLC Basic
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Programming
Console
Examples
Wiring
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Some examples :
#. Basic instruction
#. Seri and Parallel Instruction
#. Function Instruction
#. Application 1
#. Application 2
#. Application 3
ADDRESS INSTRUCTION DATA
0000 LD 000.00
0001 OR 200.00
0002 AND NOT 000.01
0003 OUT 200.00
0004 LD 200.00
0005 OUT 100.01
0006 END (01) ---
Wiring Use Console
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Some examples :
#. Basic instruction
#. Seri and Parallel Instruction
#. Function Instruction
#. Application 1
#. Application 2
#. Application 3
ADDRESS INSTRUCTION DATA
0000 LD NOT 000.00
0001 AND 000.01
0002 LD 200.01
0003 AND 200.00
0004 OR LD -----
0005 OUT 200.00
0006 LD 200.00
0007 OUT 100.00
0008 END (01) ---
Wiring Use Console
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Some examples :
#. Basic instruction
#. Seri and Parallel Instruction
#. Function Instruction
#. Application 1
#. Application 2
#. Application 3
0 OR
AND
OUT
LD
0 LD
0
0 0 0
1
1
2
2
1 NOT
2 0
0 0
0 0 0
0
0 0 0
0 0 0
0
OUT
FUN
00000
NOP 00000
WRITE
00000
LD 00000
00001 NOP 00000
00001 OR 02000
00002 NOP 00000
00002 AND NOT 00001
00003 NOP 00000
00003
OUT 02000
00004 NOP 00000
00004
LD 02000
00005
NOP 00000
WRITE
WRITE
WRITE
WRITE
WRITE
WRITE
00005 OUT 01000
00006
NOP 00000
00006 END -----
00007 NOP 00000
Mnemonic Code Ladder Diagram
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Some examples :
#. Basic instruction
#. Seri and Parallel Instruction
#. Function Instruction
#. Application 1
#. Application 2
#. Application 3
0
OR
AND
OUT
LD
0 LD
0
0 0 0
0
2
2
2
1
0 1
0 0
0 0 2
0
0 0 0
0
0 0
0
FUN
00000
NOP 00000
WRITE
00000 LD 00000
00001 NOP 00000
00001 OR 00001
00002
NOP 00000
00002 LD 02001
00003 NOP 00000
00003
AND 02000
00004 NOP 00000
00004 OR LD -----
00005
NOP 00000
WRITE
WRITE
WRITE
WRITE
WRITE
WRITE
00005 LD 02000
00006 NOP 00000
00006 OUT 01000
00007 NOP 00000
AND
NOT
LD
LD
00007
OUT 01000
00008 NOP 00000
00008
END ------
OUT 1 0
0 1
WRITE
00009 NOP 00000
WRITE
Mnemonic Code Ladder Diagram
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
NEXT
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
1. Power Supply Input Terminals Connect the power supply (100 to 240 VAC or 24 VDC) to these terminals.
2. Functional Ground Terminal ( ) Be sure to ground this terminal (AC-type PCs only) to enhance immunity to noise and reduce the risk of electric
shock. 3. Protective Ground Terminal ( ) Be sure to ground this terminal to reduce the risk of electric shock. 4. External Power Supply Terminals CPM2A PCs are equipped with these 24-VDC power output terminals to supply power to input devices. (AC-type
PCs only.) 5. Input Terminals Connects the CPU Unit to external input devices. 6. Output Terminals Connects the CPU Unit to external output devices.
7. PC Status Indicators These indicators show the operating status of the PC, as shown in the following table.
NEXT
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
8. Input Indicators The input indicators are lit when the corresponding input terminal is ON. The indicators are lit during I/O
refreshing. When a fatal error occurs, the input indicators change as follows:
Note
a) When interrupt inputs are used in interrupt input mode, the indicator may not light
even when the interrupt condition is met if the input is not ON long enough.
b) When high-speed counters are used, the input indicator may not light if the input pulse is too fast.
9. Output Indicators The output indicators are lit when the corresponding output terminal is ON.The indicators are lit during I/O
refreshing. When pulse outputs are being used, the indicator will remain lit continuously while the pulses are
being output.
10.Analog Controls Turn these controls to change the analog settings (0 to 200) in IR 250 and IR 251.
11.Peripheral Port Connects the PC to a Programming Device (including Programming Consoles), host computer, or standard
external device.
NEXT
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
13.Communications Switch This switch selects whether the Peripheral port and RS-232C port will use the communications settings in the PC
Setup or the standard settings.
Note
This switch’s setting has no effect on communications with a Programming Console connected to the
Peripheral port. It affects the RS-232C port.
14.Battery
This battery backs up memory in the CPU Unit and is connected when the Unit is shipped. 15.Expansion Connector Connects the PC’s CPU Unit to an Expansion I/O Unit or Expansion Unit(Analog I/O Unit, Temperature Sensor
Unit, or CompoBus/S I/O Link Unit). Up to 3 Expansion Units or Expansion I/O Units can be connected to a CPU
Unit.
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
Grounding Be sure to ground the earth terminal to less than 100 Ω in order to protect against electric shock and incorrect operation from electrical noise. Be sure to use a wire of at least 1.25 mm2 for grounding.
Removing the Terminal Block The terminal block on the PLC CPU Unit can be removed. Use the following procedure.
The terminal blocks on the Expansion Units and Expansion I/O Units cannot be removed.
1. Loosen the black screws at the ends of the terminal block as shown in the following diagram.
2. Lift the terminal block off the CPU Unit.
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
Power Supply Wire a separate circuit for the PLC’s power supply circuit so that there isn’t a voltage drop from the inrush current that flows when other equipment is turned on. When several PLC are being used, it is recommended to wire the PCs on separate circuits to prevent a voltage drop from the inrush current or incorrect operation of the circuit breaker. Use twisted power supply wires to prevent noise from the power supply lines. Adding a 1:1 isolating transformer reduces electrical noise even further. Considering the possibility of voltage drops and the allowable current, be sure to use thick power lines.
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
Input ( I ) Wire the inputs to the PLC Unit and Expansion I/O Units as shown in the following diagrams. Use crimp terminals or solid wires (not stranded wire) to connect to the PC. The power supply output terminals can be used with CPU Units with AC power supplies.
Input Configuration The following diagrams show the input configurations.
Programmable Logic Controller
Home
Introduction
Control System
PLC Basic
Part of PLC
Programming
Console
Examples
Wiring
Copyright reserved by Totok Nur Alif,S.Pd. Best viewed in 1280 x 800 by IE5+ For problems or questions regarding this scientific contact Email : totok_na @ yahoo.com
Wiring and Connection This section provides basic information on wiring the Power Supply Unit and Expansion I/O Unit, and on connecting
Peripheral Devices. >>. General Precautions for Wiring. >>. Ground Wiring. >>. Power Supply Wiring. >>. Input ( I ) Wiring. >>. Output ( O ) Wiring.
Output ( O ) Wire the outputs to the PLC Unit and Expansion I/O Units as shown in the following diagrams. Use crimp terminals or solid wires (not stranded wire) to connect to the PC. The power supply output terminals can be used with CPU Units with AC power supplies.
Output Configuration The following diagrams show the output configurations.