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sĞƌϲ džƉ^ZsZ ^ĞƌŝĞƐ Realization of standardized connection DeviceXPlorer ® OPC Server

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Page 1: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

sĞƌ͘ϲ

�džƉ^�Zs�Z�^ĞƌŝĞƐ�

Realization of standardized connection

DeviceXPlorer® OPC Server

Page 2: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

Communica t ion wi th the cont rol

equipment , and data acquis i t i on/

wri t ing of product ion

in format ion .

OPC can absorb vendor-speci f ic communica t ion speci f icat ions and standardize host systems .

OPC Server can communicate wi th cont rol le rs th rough var ious networks such as Ethernet and Ser ia l ,

And protoco ls such as CC-Link IE , Ethernet/IP .

OPC Server

Vendor-spec i f i c commun ica t ion spec i f i ca t ions

Phys ica l i n ter faces(Ser ia l・Ethernet) 23&

Ethernet RS-232C

Ins truct data acquis i t ion/wri t ing

to OPC Server , and moni tor and

cont rol equipment .

OPC Client OPC OPC OPC

DeviceXPlorer®

OPC Server

ERP/MES

SCADA

DCS

Analys i s Product ion/

Qual i ty-

management

OPC Server

(DxpSERVER)

Ideal for multi-vendor systems Standardize equipment with mixed vendors and models

What is OPC Interface standard for software-to-software communication

Vendor specif ic network

Using OPC enab les system development independent of product ion equipment .

There are many sof tware packages that suppor t OPC a l l over the wor ld .

Use in combinat ion makes i t easier to reduce development man-hours and divert assets .

Ϯ

Page 3: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

$16, &

Information model works 2. In format ion model is a def in i t i on of in format ion exchanged between app l icat ions .

By using an in format ion model , complex in format ion can be accura tely exchanged between app l icat ions .

I t i s possib le to share and achieve in teroperabi l i ty beyond the boundar ies of each vendor .

High security communication 3. OPC UA can f lex ib ly respond to secur i ty requi rements tha t var ies in var ious area as a h igh ly

rel iab le indust r ia l communicat ion s tandard.

Enab les select an authen t icat ion/encrypt ion method to protect important data f rom

eavesdropping and spoof ing th reats .

◆ Countermeasures against threats

Threat Measures bu i l t in to OPC UA

Wire tapp ing

Message fabr i cat ion , impersonat ion

Message fa ls i f i cat ion

Message resend

Inva l id message

:

Encrypt ion

S ignature Authent i cat ion

S ignature data ver i f i cat ion

Sequence number ver i f i cat i on

Parameter va l idat ion

:

Emb edde d 23&�'$ OPC C l a s s i c

-DYD

Se r v e r

T a b l e t /

mob i l e

L a p t o p �1(7

&��

23&�8$

D e s k t o p

C o n t r o l l e r 23&�$(

Platform independent

Features

1. Previous OPC C lassic was on ly app l icable to Windows-based systems,

i t enab les to deve lop appl ica t ions for va r ious pla t forms.

The app l ica t ion a rea has been expanding f rom embedded to tablet and mainf rame.

ma i n f r a me s

*D e v i c e XP l o r e r ® OPC Se r v e r p l a n s t o s up p o r t i n t h e f u t u r e .

What is OPC UA International standard “IEC62541” in the industr ial f ield

In format ion is expressed in object-or iented

In format ion def in i t ion can be expanded

Act i v i t i es a re underway to cap i ta l i ze the

s tandard mode ls o f each indus t ry and indus t r i a l

f i e ld as OPC UA in forma t ion mode ls .

Co l labora t ion w i th o ther s tandard iza t ion

organ iza t ions i n p rogress , such as PLCopen

and umat i .

Even complex mu l t i layer s t r uc tu res

can be def i ned as mode led in format i on .

ϯ

Page 4: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

Point

2

Point

3

Step/ Easy Setting

Point

1

230 compatible devices

Increasing connectable models

DxpSERVER supports connect i v i ty to Machine too ls and

EtherNet/IP devices in addi t ion to convent iona l connect i v i ty such

as PLCs, robots , and Barcode readers . A lso i t works as OPC UA

Cl ient and enable to data shar ing wi th other OPC UA server .

Rich function Value bridging & script

Data can be exchanged between devices f rom di f ferent

vendors . Log ic inc luding four ar i thmet ic operat ions

wi th f ixed per iod/event execut ion is a lso possib le .

OPC UA Pub/Sub compatible

OPC UA 1.04 specification compliant

Compared to the convent iona l server / c l i ent

conf igura t ion , communica t ion load can be reduced

and t ime lag can be prevented when connect ing N : N.

DeviceXPlorer® OPC Server

Communication software for device data collection

*Publ isher :Mu lt icast t ransmission of data col lected f rom devices

*Subscr iber :Recceives messages sent by publ i shers

ϰ

①Communication method

Page 5: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

OPC Server

Communication software for device data collection

● Enab le to dynamic change of a d isp lay language ,

such as Japanese , Eng l i sh , Ch inese (Trad i t i ona l

and S imp l i f i ed) and Korean .

● Idea l fo r over seas system pro jec t

Value monitoring

● Check the cur ren t va lue o f the spec i f ied reg i s ter

● Deve lopmen t o f hos t sys tem and co l labora t i on

tes t i n poss ib le w i thou t PLC too l

Tag value simulation

Multil ingual display

①Communication method (Port Setting)

②Model selection (Device Setting)

③Acquisition data address (Tag Setting)

Compatible with old products

Ver .4 Pro jec t f i le( .dxp)

Ver .6 Pro jec t f i le( .dxp)

Ver .5 Pro jec t f i le( .dxp)

● Genera te tag va lues

● S imu la t ion type can be se lec ted

● Idea l fo r debugg ing w i thou t con t ro l equ ipmen t

ϱ

● Old Pro jec t f i l es a re compat ib le w i th Ver .6 .

* Ver .3 se t t i ngs a re conver t i b le fo r Ver .6 w i th

a ded ica ted too l .

Page 6: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

(1)Facility monitoring

● Visual izat ion of equipment in combinat ion with SCADA package and BI tools

● Monitors equipment operat ing status and alarms through screen displays and E-mai l not if icat ions

● The product ion s ite can be grasped in real t ime , and mal funct ions are detected immediately

(2)Production management

● Product ion results are col lected v ia the OPC cl ient and automat ica l ly stored in the database

● Easy data l inkage between d i fferent systems in combinat ion with OPC Spider®

● Downloads product ion inst ruct ions f rom MES/ERP to equipment

Robot PLC Barcode reader

Database

SCADA

B I too l Da tabase

Equ ipment A Equ ipment B Equ ipment C

OPC Sp ider ®

Sho r t e n t h e de ve l opmen t

t e rm o f s y s t em

and r e duc e c os t s

Dev i c eXP lo r e r ® h a s c heck

co n nec t i v i t y w i t h a l o t o f

OPC c l i en t i n t he i n t e r ope r ab i l i t y wo r k s hop ( IOP) .

OPC Server

(DxpSERVER)

OPC Server

(DxpSERVER)

*R�SDJH�� �!!

Cloud

WEB/mobi le

Mon i to r i ng too l

Case Study

Examp l e

SCADA compatible with OPC

・ MC Works64 (Mi tsubish i E lect r ic)

・ GENESIS64 (ICONICS)

・ InTouch/His tor i an (Wonderware)

・ RSView (Rockwel l)

・ WinCC (Siemens)

・ Cimpl ic i ty/iF ix (GE Intel l igent P la t forms)

・ Ci tec t (Schneider Elec tr ic)

・ JoyWatcher (JT Eng ineer ing)

OPC Spider®

Production equipment and host

system data l inkage software

ϲ

Page 7: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

(3)Simple data collection

● Collects analog data such as v ibrat ion and sound in order to predict ive

maintenance of equipment

● DxpLOGGER monitors product ion s ite data accumulat ion and a larms

● E-mai l not i f icat ion when an a larm occurs/recovers

(4)Simulation

● Uses 3DCAD and CAE to real ize equipment s imulat ion by vi rtua l eng ineer ing

● Prevents unexpected accidents by checking robot arm interference and carry ing test

● Shortens start-up t ime through test automat ion

(5)Power monitoring and energy saving

● Monitors and cont ro ls of power consumpt ion in cooperat ion with

energy sav ing support system

● Visual izat ions of energy meter with energy saving support too l and web browsers

● Dist r ibutes the a i r condit ioning operat ing load accord ing to the power usage

Viewer

Energy sav ing sys tem

S imu la tor 3DCAD

Sensor

Database

Ana log da ta

Mob i l e te rm ina l

OPC Ser ver

(DxpSERVER)

PLC

Cloud Serv ice

Rea l i ze eq u i pmen t d a t a c o l l ec t i o n

an d mon i t o r i ng s y s t em

S i mp l e g r a p h v i ewe r

E- ma i l n o t i f i c a t i o n

Re p o r t o u t p u t

*R�SDJH�� �!!

OPC Ser ver

(DxpSERVER)

OPC Ser ver

(DxpSERVER)

Energy sav ing suppor t dev i ces

A i r cond i t ion ing

Examp l e

DxpLOGGER Data logging software

3DCAD

Compatible with OPC

・ iCAD/VPS(Fuj i tsu)

・ DELMIA(Dassau l t Systems)

・ Vmech(Latt ice Technology)

・ 3DCreate(CMS)

ϳ

Page 8: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

DeviceXP lorer®

Data Logger

DeviceGateway®

Br idging product ion site in format ion to host systems and IoT serv ices.

Prov ides data access to equipment in the factory and faci l i t y equipment in the bui ld ing.

Data Access Unit for IoT

Features

Server

DeviceGateway®

Factory

●Operat ion and sett ing by browser

●Accessib le to 160 dev ices

●Var ious IoT Interface

●Data extract ion by event detect ion

IoT Sys tem

(Fac i l i ty V i sua l i za t ion/

Qua l i ty con t r o l/

Preven t i ve ma in tenance)

Benefit

Logging data to CSV or genera l-purpose database accord ing to the cyc l ic or t r igger condit ions .

Uses an OPC Server , i t col lects product ion si te in format ion in real t ime.

Industr ial data col lection software

Cloud

Comput ing

●Data col lect ion up of 65,535 points up to

●Simple graph v iewer (real-t ime/histor ical)

●Automat ic output reports automat ical ly

●Alarm not i f icat ion v ia E-mai l

Database

CSV

Report

E-mai l

Factory

PLC

Viewer

IoT In ter face

OPC UA , MQTT , SQL , FTP , HTTP(S) ,

HULFT IoT , WingArc1s t Mot i onBoard ,

AWS K ines i s , S IEMENS MindSphere

OPC

Se r v e r

OPC

C l i e n t

Features

Cloud

Comput ing

Plant Social in f rast ructure Bui ld ing Other

●Product ion ef f ic iency by c loud comput ing

●PC-less, compact s ize

Benefit

●Easy const ruct ion of data logg ing system

●Reduce deve lopment costs and man-hours

ϴ

DeviceXPlorer® Data Logger OPC

C l i e n t

Introduction of OPC products

Page 9: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

OPC Spider®

Data linkage software for production equipment and host system

FileArk® FA Edition

The data accumulated in the legacy equipment br idge to the host system.

Sends data when the text f i le is updated or request of the host system.

Text f ile and host system l inkage software

Data analys i s

●OPC UA, MQTT convers ion of legacy equipment

In format ion (F i le change detect ion/cyc l ic)

●Easi ly l ink text f i les with host systems

●Convert text data to real-t ime data

CSV

Text data

Appl icat ion

Development screen

IT system

OT system

OPC Spider®

Fi leArk®

Operat ion

moni tor ing

IoT system

Legacy equipment

OPC

Se r v e r

OPC

C l i e n t

MQTT

Features

Features

Cloud

Comput ing

Connects product ion system and host systems without programming .

System l inkage is possib le s imply by arrang ing the component ized icons in order of processing.

●Data l inkage without programming

●GUI for easy to understand ing of processing f low

●Technica l sk i l ls for development not required

●Auto creat ion of specif icat ions

Database

mapping

Benefit

●Real t ime moni tor ing of legacy equipment

●Ut i l i ze asset f i le data in s leeping equipment

Benefit

●Linkage OT system and IT system

●Shorten development term and reduce costs

ϵ

Host system

Page 10: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

PLC(Programmable Logic Controller)

Applicable Devices ( A v a i l a b l e E d i t i o n )

E P : E n t e r p r i s e

A D : A d v a n c e d

S T : S t a n d a r d

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l O t h e r s E P A D S T

M I T S U B I S H I

M E L S E C i Q - R R 1 2 0 / 3 2 / 1 6 / 0 8 / 0 4 B u i l t - i n E t h e r n e t P o r t

R J 7 1 E N 7 1 R J 7 1 C 2 4 ( - R 2 / R 4 )

4��%' - - � �* 3 � � � 6 � -6 ; 4��%' - - � �* 3 � � � 6 � -6 ; 4��%' - - � � /3 � � � 6 � - � � 4��%' - - � � /3 � � � 6 � - � � 4��%' - - � � /3 � �* 4��%' - - � � %5 � � 4��%' - - � � % 7 � � � 1 � 4��%' - - � � % 7 � � � 1 � 4��%' - - � �* ) � � - 7 � 4 - � �07 � � 4 - � �0% � � *; � 6 L P X O D W R U *; �: R U N V � � � 6 L P X O D W R U � *; �: R U N V � � � 6 L P X O D W R U � 4��: &38 � � 3 3& - � � � � 1= �* ) -(7 %

✔ ✔ ✔

M E L S E C i Q - R

( M o t i o n C o n t r o l l e r ) 5� � � � � � � �07 &38 5- � �(1 � �

0(/6(& � L 4 - ) ) ;� 8 � & � B u i l t - i n E t h e r n e t P o r t

M E L S E C - Q

( U n i v e r s a l H i - s p e e d ) Q 2 6 / 1 3 / 0 6 / 0 4 / 0 3 U D V

B u i l t - i n E t h e r n e t P o r t

Q J 7 1 E 7 1 - 1 0 0 / B 2 / B 5

B u i l t - i n U S B P o r t

Q J 7 1 C 2 4 N ( - R 2 / R 4 )

M E L S E C - Q

( U n i v e r s a l )

Q 1 0 0 / 5 0 U D E H , Q 2 6 U D ( E ) H

Q 2 0 / 1 3 / 1 0 / 0 6 / 0 4 / 0 3 U D ( E ) H

Q 0 2 / 0 1 / 0 0 U ( J )

B u i l t - i n E t h e r n e t P o r t

Q J 7 1 E 7 1 - 1 0 0 / B 2 / B 5

B u i l t - i n U S B / S e r i a l P o r t

Q J 7 1 C 2 4 N ( - R 2 / R 4 )

M E L S E C - Q

( P r o c e s s ) 4�� � � � � � � � � �8' 39 4�� � � � � � � � � � 3+

4 - � �( � � - � � � � % � � % � � � B u i l t - i n U S B / S e r i a l P o r t

Q J 7 1 C 2 4 N ( - R 2 / R 4 )

M E L S E C - Q

( R e d u n d a n c y ) 4�� � � � 35+

M E L S E C - Q

( H i g h P e r f o r m a n c e ) 4�� � � � � � �+ � � 4 � � � + �

M E L S E C - Q

( B a s i c M o d e l ) 4�� � � 4 � � � - �

M E L S E C - Q

( C C o n t r o l l e r M o d u l e )

4��'+&&38 -9 4��'&&3 8 4��&&38 -9 �

B u i l t - i n E t h e r n e t P o r t M E L S E C - Q

( M o t i o n C o n t r o l l e r ) 4�� �0 � � 4 � � � ' � 6 � &38 � -6 � � 4�� � ' � 6 � &38 � - 6 � �

0(/6(& - / / � �&3 8 - � 3 � % 7 / � �&3 8 � -3 � / � � � 6 � &38 � -3 �

B u i l t - i n E t h e r n e t P o r t

/ - � �( � � - � � �

B u i l t - i n U S B P o r t

L J 7 1 C 2 4 ( - R 2 )

L 6 A D P - R 2 / R 4

0(/6(& - ) ; ) ;� 6 � 8 � 8 & � * � *& ) ;� � 1 � � 1& � �& � ) ;� � 6 � 1 � 1 & � � � ) ;� � 6 � 1 �

) ;� 8 -(1(7 � - / � ) ;� 8 -(1(7 -$'3

B u i l t - i n S e r i a l P o r t

F X x x - 2 3 2 / 4 8 5 - B D

F X x x - 2 3 2 / 4 8 5 A D P ( - M B )

0(/6(& - 4Q$ 4�$ � 5 � 4�$ 4�$ � 6 � 6 + � � -6 � �

$ � � 6 � - � �4 ( � � � 1 � - 7 $ � � 6 � - � �4 ( � � � 1 � -% � � % �

B u i l t - i n S e r i a l P o r t

A J 7 1 Q C 2 4 ( N ) ( - R 2 / R 4 )

A 1 S J 7 1 Q C 2 4 ( N ) ( - R 2 )

0(/6(& - $ $ �8 � � $ � � 1 � $ � 8 � $ � � 1 � $ � 8 � � 6 � 6 + � � -6 � � $ � � 1 � � 6 � 6 + �

$ - � �( � � � -6 � � $ � � 6 � - � � ( � � � 1 � - 7 $ � � 6 � - � � ( � � � 1 � - % � � % �

B u i l t - i n S e r i a l P o r t

A ( 1 S ) J 7 1 U C 2 4

A J 7 1 C 2 4 - S 8

O M R O N

S Y S M A C - N X * 1 N X 7 0 1 B u i l t - i n E t h e r n e t P o r t

S Y S M A C G a t e w a y * 2

C X - C o m p o l e t * 2

✔ ✔ ✔

S Y S M A C - N J * 1 N J 1 0 1 / 3 0 1 / 5 0 1 B u i l t - i n E t h e r n e t P o r t

C J 1 W - E I P 2 1

S Y S M A C - C J C J 2 H / M , C J 1 G / H / M

B u i l t - i n E t h e r n e t P o r t

C J 1 W - E T N 1 1 / 2 1

C J 1 W - E I P 2 1

B u i l t - i n U S B / S e r i a l P o r t

C J 1 W - S C U 4 2 / 3 2 / 2 2

C J 1 W - S C U 4 1 / 3 1 ( - V 1 )

C J 1 W - S C U 2 1 ( - V 1 )

S Y S M A C - C S C S 1 G / H / D

C S 1 W - E T N 2 1 / 1 1 / 0 1

C S 1 W - E I P 2 1

C S 1 D - E T N 2 1 D

B u i l t - i n U S B / S e r i a l P o r t

C S 1 W - S C U 3 1 / 2 1 ( - V 1 )

C S 1 W - S C B 4 1 / 2 1 ( - V 1 )

S Y S M A C - C P C P 1 E / L ( - E M / E L ) / H

B u i l t - i n E t h e r n e t P o r t

C P 1 W - C l F 4 1 , C P 1 L - E T N

C J 1 W - E T N 2 1 / E I P 2 1

C P 1 W - C I F 1 2 / 1 1 / 0 1

C J 1 W - S C U 4 1 / 3 1 ( - V 1 )

C J 1 W - S C U 2 1 ( - V 1 )

S Y S M A C - C V C V M 1 ( D ) , C V 2 0 0 0

C V 1 0 0 0 / 5 0 0 C V 5 0 0 - E T N 0 1

B u i l t - i n S e r i a l P o r t

C V 5 0 0 - L K 2 0 1

S Y S M A C - C

C 2 0 0 H

C Q M 1 ( H )

C P M 1 / 2

C 2 0 0 0 H / 1 0 0 0 H

B u i l t - i n S e r i a l P o r t

C 5 0 0 - L K 2 0 3 / 2 0 1 / 1 0 3 / 1 0 1

C 2 0 0 H - L K 2 0 2 / 2 0 1 / 1 0 1

C 1 2 0 - L K 2 0 2 / 2 0 1 / 1 0 1

S Y S M A C - N S J N S J B u i l t - i n E t h e r n e t P o r t

N S J W - E T N 2 1

Y O K O G A W A

e - R T 3 R P 7 1 - R B u i l t - i n E t h e r n e t P o r t

L E 1 2 - 1 T

✔ ✔

F A - M 3 V F 3 S P 7 1 - 4 S / N

F 3 S P 7 6 - 7 S / N

B u i l t - i n E t h e r n e t P o r t

F 3 L E 1 2 / 1 1 / 0 1 - 0 T

F A - M 3 R

F 3 S P 6 7 - 6 S , F 3 S P 6 6 - 4 S

F 3 S P 5 9 - 7 S , F 3 S P 5 8 - 6 H / S

F 3 S P 5 3 - 4 H / S , F 3 S P 3 8 - 6 N / S

F 3 S P 3 5 - 5 N , F 3 S P 2 8 - 3 S / N

F 3 S P 2 5 - 2 N , F 3 S P 2 2 - 0 S

F 3 S P 2 1 - 0 N , F 3 S P 0 8 / 0 5 - 0 P

F 3 L E 1 2 - 0 T / 1 T

F 3 L E 1 1 - 0 T / 1 T

F 3 L E 0 1 - 0 T / 1 T / 5 T

F 3 L C 1 2 - 1 F

F 3 L C 1 1 - 2 F / 1 F

F 3 L C 1 1 - 2 N / 1 N

J T E K T

T O Y O P U C - P C 1 0 P C 1 0 P / G ( E )

B u i l t - i n E t h e r n e t P o r t

E N - I / F ( - T ) , F L / E T - n e t - 5

F L / E T - T - V 2 ( H ) , 2 P O R T -

E F R

✔ ✔ ✔

T O Y O P U C - P C 3 J

P C 3 J G - P

P C 3 J ( L / D / M / N M / N F ) - C P U

M U L T I - G W

E N - I / F ( - T ) , F L / E T - n e t - 5

F L / E T - T - V 2 ( H ) , 2 P O R T -

E F R B u i l t - i n C P U P o r t * 3

T O Y O P U C - P C 2 J P C 2 J ( C / S / R )

P C 2 J 1 6 ( R / H / P R / H R )

E N - I / F ( - T ) , F L / E T - n e t - 5

F L / E T - T - V 2 ( H )

ϭϬ

Page 11: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

( A v a i l a b l e E d i t i o n )

E P : E n t e r p r i s e

A D : A d v a n c e d

S T : S t a n d a r d

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l E P A D S T

H I T A C H I

H X * 4 H X - C P 1 S 0 8 ( M ) / H X © - 1 H 1 6 ( M ) B u i l t - i n E t h e r n e t P o r t

✔ ✔ ✔

E H 1 5 0 - E H V E H V - C P U 1 2 8 / 6 4 / 3 2 / 1 6 E H - E T H ( 2 )

B u i l t - i n E t h e r n e t P o r t

H H - 4 0 1 0 / 2 0 0 2 / 1 0 0 2

H - 7 0 2 / 3 0 2 / 2 5 2 L A N - E T H ( 2 )

6+$53

6$7 ( / / , 7 ( � -: - � � �

-: - � � �&8 � � � � � �& 8 � � � � � �& 8 � � � � � � � � � � � � � �-: - � � �&8 � � � � � �& 8 � � � � � �& 8 � � � � � � � � � � � � � �-: - � � �&8 � � � � � �& 8 � � � � �& 8 � � � � � � � � � � � � �-: - � � �&8

-: - � � � � � � 7 � � � �&0 � �

✔ ✔ ✔

6$7 ( / / , 7 ( � -: - � �+ -: - � �& 8+ � + � -: - � �& 8+ � + � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � �-: - � �& 8+ � + � , &8+ � , &8+�

6$7 ( / / , 7 ( � -: - � �+ -: - � �& 8 � � � � �& 8

6$7 ( / / , 7 ( � -: - � � � + -: � � � � � � � � �+ � � � � � � &8+

-: - � �&0 � � � &0 6$7 ( / / , 7 ( � -: - � �+ -: � � � � � � �+

6$7 ( / / , 7 ( � -: - � �+ -: � � � � � � �+

- - E R D U G � = - � � � = - � � � - � � � � � � -

= � � � -

- - E R D U G � = - � � � = - � � � - � � � � � � -

F U J I

0 , &5( ; -6 ; � 6 3+ � � � � 13 �3 8� - � � �+ �

B u i l t - i n E t h e r n e t P o r t

N P 1 L - E T 1 / 2 13 � / -56 � � � � � � � � � � �

✔ ✔ ✔

0 , &5( ; -6 ; � 6 3+ � � � � 13 �3 8 - � �( � � � � � � ( � � � � � � � � � � � � � � � � � �1 3 �3 8� - � � �(

0 , &5( ; -6 ; � 6 3+ � � � � 13 �30 - � � 5 � � � � � ( � � � � � � ( � � � � � � +

0 , &5( ; -6 ; � 6 3+ � � �( ; 13 �36 - � �'

0 , &5( ; -6 ; � 6 3+ � � � 13 �36 - � � � 5 � � � � � � � 5 � � � � � � � � 5 � � � � � �1 3 �36 - � � �

0 , &5( ; -6 ; � 6 3+ � � � 13 �3 + - � � � � � � �

0 , &5( ; - ) � ) � � � ) 38� � �6 � � � � � � 6 � � � � � � 6

) )8� � �% ) )8� � �% 0 , &5( ; - ) � ) � � � ) 38� � �6

0 , &5( ; - ) � ) � � � ) 38� � �6

0 , &5( ; - ) � ) � � ) � � � 6 � 1&� / -(7 � 1&� / -56 � � �

0 , &5( ; - ) � ) � � ) � �

19 � / -56 �

0 , &5( ; - ) � ) � � ) � � B u i l t - i n S e r i a l P o r t

P A N A S O N I C * 5

) 3 �+ ) 3 �+ � & � �( 7 � & � � (3 B u i l t - i n E t h e r n e t P o r t

✔ ✔ ✔

) 3 � ) 3 � B u i l t - i n E t h e r n e t P o r t $) 3 �&& � 6 � � 6 � � 0 � � 0 � � $) 3 �&& 6 �0 �

) 3 � ) 3 � � 6+ � ) 3 � � ( 7 - /$ 1 � � �

) 3 -; ) 3 -; � & � � � � � � � � � 5 � 7 � 3 � ' � ) 3 -; � &20� ) 3 -; � &20� � � � � � � � � � �

) 3 Σ ) 3 Σ $) 3* � � � � � � � � � � �

) 3 �5 ) 3 �5

B u i l t - i n S e r i a l P o r t ) 3 - H ) 3 - H

K E Y E N C E

.9 - � � � � .9 - � � � �

B u i l t - i n E t h e r n e t P o r t .9 -; /( � � � � � � � � � � � � � � � � � � � � � � � � � �. 9 - /( � �9 � ( 3 � � 9 .9 - /( � � � 9 � $ � �

✔ ✔ ✔

.9 - � � � � .9 - � � � � � � � � �

.9 - � � � � .9 - � � � � � � � � �

.9 - � � � � .9 - � � � �

.9 - � � � � .9 - � � � �

.9 - � � � .9 - � � �

.9 � 1 D Q R .9 -1D Q R .9 -1& �(3

E H 1 5 0 E H - C P U 5 4 8 / 5 1 6 / 3 1 6 A

E H - C P U 2 0 8 A / 1 0 4 A E H - E T H ( 2 )

ϭϭ

Page 12: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l (3 $' 67

T O S H I B A

n v ( t y p e 1 , t y p e 1 l i g h t ) P U 8 1 1 , P U M 1 1 / 1 2 / 1 4 E N 8 1 1 / E N 8 2 1

✔ ✔ ✔

V ( S 3 ) S 3 P U 6 5 A / 5 5 A / 4 5 A E N 7 1 1 / 7 2 1 / 7 3 1

E N 7 4 1 / 7 5 1 ( A ) / 7 6 1

V ( S 2 ) S 2 P U 8 2 / 7 2 A / 7 2 D E N 6 1 1 / 6 2 1 / 6 3 1 / 6 4 1

E N 6 5 1 ( A ) / 6 6 1

V ( S 2 T ) P U 6 7 2 T / 6 6 2 T E N 6 1 1 / 6 3 1 / 6 5 1 A

P R O S E C T ( T 3 H ) P U 3 2 5 H / 3 2 6 H E N 3 1 1

P R O S E C T ( T 2 N ) P U 2 3 5 N / 2 4 5 N B u i l t - i n E t h e r n e t P o r t

Y A S K A W A

03� � � � &38 - � � � � � & 3 8 - � � �

B u i l t - i n E t h e r n e t P o r t

2 1 8 I F - 0 1 / 0 2

2 1 8 I F - 0 1 / 0 2

2 1 7 I F - 0 1

✔ ✔ ✔

03� � � � 03� � � �

03� � � � 03� � � � � � 0 3 � � � � � 6 �

03� � � � 03� � � �

03� � � � 03� � � � 7 �0 � � � � , ) - � �

03� � � 03� � � � � 0 3 � � � B u i l t - i n S e r i a l P o r t

03� � � 03� � � � � � , ) $ � � � , )

, ' (& 0 L F U R 6P D U W � �

)&�$ -'� �5. � � ' � �56 � � � � � � � � � � � � � � �) & �$ -'� �. � � ' � � 6 � � � � � � � � � � � � � � � � � � �) & �$ -&� �5 � � ' � & � � � � � � � � � � � � � � � � � � � � �) & �$ -&� �5 � � ' � & � � � � � � � � � � � � � � � � � � � � �) & �$ -&� �5 � � ' � & � �

B u i l t - i n E t h e r n e t P o r t B u i l t - i n S e r i a l P o r t

)&�$ -6 , ) � � � )&�$ -+3& �

✔ ✔ ✔

K O Y O

' L U H F W /2* , & � � � � � '/ � � +� -(&20� � � � '� -'&0 �

✔ ✔

' L U H F W /2* , & � � � � � '/ � � +� -(&20� � � � '� -'&0 �

' L U H F W /2* , & � � � � � � '� - � � � � � ' � - � � � � � ' � - � � � B u i l t - i n E t h e r n e t P o r t

+� -(&20 � ( %& � � � '� -'&0

' L U H F W /2* , & � � � � � � '� - � � � � � ' � - � � � B u i l t - i n S e r i a l P o r t

' L U H F W /2* , & � � � � � � '� - � � � B u i l t - i n S e r i a l P o r t

68 � � 68 - � � � ( � � % � �0 � �0 � �+ B u i l t - i n S e r i a l P o r t

8 - � �'0 � � �

.267 $& � 6 = � � 6= - � � �0 B u i l t - i n S e r i a l P o r t

8 - � �'0 � � �

.267 $& � 6 � � 6* - �% 8 - � �'0

.267 $& � 3 = � � 3= � B u i l t - i n S e r i a l P o r t

.267 $& � 6 - � � � � � � 6 - - � �'' � � � - ' � � 6 - - � � '5 � $ 5 -' 6 - - � �'' � � � - ' � � 6 - - � � '5 -' 6 - - � �'' � -'

B u i l t - i n E t h e r n e t P o r t B u i l t - i n S e r i a l P o r t

7 �. � � 7 �. - 02'%86 7 �+ -(%&� � � B u i l t - i n S e r i a l P o r t

7 �+ -&75 , 2

6$1<2 � '(1 . , 6$1027 , 21 � & � � 60&� � � -$ � % B u i l t - i n E t h e r n e t P o r t ✔ - -

D E L T A

$+� � � � � $+� � � $+� �(1 - �$

B u i l t - i n S e r i a l P o r t ✔ ✔ ✔

'93 -(+ � � '93 -(+� � �

'93(1( � � - 6 / �

'93 -69 � � � � '93 -69 � � �

'93 -6( � � '93 -6(

B u i l t - i n E t h e r n e t P o r t

'93 -0& � � '93 -0&

'93 -(; � � � � '93 -(; � � �

'93 -(6 � � '93 -(6 � � �

'93 -(& � � '93 -(&�

'93 -6; � � '93 -6; � � �

'93 -6$ � � '93 -6$ � � �

'93 -66 � � '93 -66 � � �

'93 -6& � � '93 -6&

'93 -30 � � '93 -30

/6 , 6

;*. ;*. -&38$ � ( � + � 6 � 8

;* / - ()0) ;* / - ()07 � � ✔ ✔ ✔ ;* , ;* , -&388 � + � 6

;*5 ;*5 - &38+ � ) � 7

PLC(Programmable Logic Controller)

Applicable Devices ( A v a i l a b l e E d i t i o n )

E P : E n t e r p r i s e

A D : A d v a n c e d

S T : S t a n d a r d

ϭϮ

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ϭϯ

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l (3 $' 67

�6 &R' H6 \ V � � ( G e n e r a l P C ) B u i l t - i n E t h e r n e t P o r t B u i l t - i n S e r i a l P o r t ✔ ✔ ✔

52&.: (/ /

*XD U G / R J L [ � � � �

� � � � -(1%7 � � � � -(1�7 � �

✔ ✔ ✔

&R Q W U R O / R J L [ � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � �

&RP S D F W / R J L [ � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � � B u i l t - i n E t h e r n e t P o r t

� � � � - / � �( � � � � � - / � �(5 � � � � - / � �( � � � � � -(1%7 ) O H [ / R J L [ � � � � � � � � �

' U L Y H / R J L [ � � � � � � � � � � � � � -(1%7 �

S I E M E N S

6 , 0$ 7 , & � 6 � - � � � �

&38 � � � � � � � � � � - � � 3 1 &38 � � � � � - � � 3 1 &38 � � � � � � ) � - � � 3 1 � '3 &38 � � � � � � ) � - � � 3 1 � '3 B u i l t - i n E t h e r n e t P o r t

✔ ✔ ✔

6 , 0$ 7 , & � 6 � - � � � � &38 � � � � � � � � � � &38 � � � � �& � � � � � & � � � � �&

6 , 0$ 7 , & � 6 � - � � �+ &38 � � � � - �+ � � & 38 � � � � � � � � - �+

&3 � � � - � � � � 6 , 0$ 7 , & � 6 � - � � �

&38 � � � � � ( � &38 � � � � - � � � � � & 38 � � � � - � &38 � � � � - � � � � � 3 1 � '3 � &38 � � � � - � � � � � 3 1 � '3 �

6 , 0$ 7 , & � 6 � - � � � &38 � � � � � � � � � � � � - � � � 3 1 � '3 � &38 � � � � - � � � 3 1 � '3 � &3 � � � - �

6 , 0$ 7 , & � 6 � - � � � &38 � � � &3 � � � - � � �

6 , 0$ 7 , & �: L Q $& : L Q$& � 5 7 ; B u i l t - i n E t h e r n e t P o r t

*( � � - � �

, & � � �&3 8� � � � , & � � � &38 � � � �, & � � �&3 8� � � � , & � � � &38 � � � �, & � � �&3 8� � � � , & � � � &38 � � � �, & � � �&3 8� � � � , & � � � &38 � � � �, & � � �&3 8� � � � , & � � � &38 � � � �, & � � �&3 8� � � � , & � � � &38 � � � �, & � � �&3 8� � � � , & � � � &38 � � � �, & � � �&6 ( � � � � , & � � �&6 ( � � � �, & � � �&6 ( � � � � , & � � �&6 ( � � � �, & � � �&6 ( � � � �

% X L O W - L Q � 6 H U L D O � 3 R U W � 3 R Z H U � V X S S O \ � P R G X O H � ✔ - -

( A v a i l a b l e E d i t i o n )

E P : E n t e r p r i s e

A D : A d v a n c e d

S T : S t a n d a r d

Robot Controller

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l (3 $' 67

K A W A S A K I

& � & R Q W U R O O H U & � & R Q W U R O O H U

B u i l t - i n E t h e r n e t P o r t ✔ ✔ ✔

' � ' � � & R Q W U R O O H U

( � & R Q W U R O O H U

) � & R Q W U R O O H U

6 � 6 � � & R Q W U R O O H U

7 � & R Q W U R O O H U

G X$ U R � ' � & R Q W U R O O H U

G X$ U R � ) � & R Q W U R O O H U

Y A S K A W A R o b o t S i m u l a t o r 0R W R 6 L P (* -95& ✔ ✔ ✔

Y A M A H A 5&;

5&;� � � B u i l t - i n E t h e r n e t P o r t ✔ - - 5&; -6 W X G L R

I A I

$&21 � � $&21 -&% � &*% � &<% � 3 /% � 32% � &$ � & � & * � 3 / �32 � 6 ( � &<

B u i l t - i n S e r i a l P o r t ✔ ✔ ✔ '&21 � � '&21 -&% � &*% � &< % � 3 /% � 32% � &$

3&21 � � 3&21 -&$ � & ) $ � &% � &*% � & ) % � &* ) % � &< % � 3 /% �32% � & � &* � & ) � 3 / � 32 � 6 ( � & <

6&21 � � 6&21 -&% � &*% � &% - ) � &$ � &$ / � &*$ / � &

56( / *

B u i l t - i n S e r i a l P o r t ✔ - -

; -6( / 3 � 4 � 3&7 � 4&7 � 3 ; � 4 ; � 5 � 6 � 5 ; � 6 ; � 5 ;' � 6 ;' �5$ � 6 $ � 5$ ; � 6 $ ; � 5$ ;' � 6 $ ;'

7 7 7 7 $

66( / 66( /

$6( / $6( /

36( / 36( /

06( / 3& � 3* � 3&) � 3* ) � 3& ; � 3* ;

' � ' � � & R Q W U R O O H U

( � & R Q W U R O O H U

) � & R Q W U R O O H U

6 � 6 � � & R Q W U R O O H U

7 � & R Q W U R O O H U

G X$ U R � ' � & R Q W U R O O H U

G X$ U R � ) � & R Q W U R O O H U

Page 14: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

NC(Numerical Control)Machine

Applicable Devices ( A v a i l a b l e E d i t i o n )

E P : E n t e r p r i s e

A D : A d v a n c e d

S T : S t a n d a r d

ϭϰ

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l (3 $' 67

F A N U C

) $18& � &1&

6 H U L H V � � � L � 6 H U L H V � � � � L � 6 H U L H V � � � � L � � � � � L � � � � � � � � L � 6 H U L H V � � � L � � � L � � � L � � B u i l t - i n E t h e r n e t P o r t * 7

B u i l t - i n S e r i a l P o r t

( D P R N T C o n n e c t i o n ) ✔ ✔ ✔

) $18& � 3 R Z H U � 0 D W H � � 3 R ZH U � 0 D W H -' � ) � + 3 R ZH U � 0 D W H - , � �

0 , 7 68% , 6+ , � � �

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( A v a i l a b l e E d i t i o n )

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S T : S t a n d a r d Barcode Reader

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l E P

K E Y E N C E

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I n - S i g h t � , Q - 6 L J K W � 0 L F U R � � � � � � ( = B u i l t - i n E t h e r n e t P o r t ✔ ✔ ✔

V e n d e r S e r i e s C P U E t h e r n e t S e r i a l (3

M I T S U B I S H I R F I D R F - R W 0 0 3 / 0 0 4 / 1 0 3 / 1 0 4 B u i l t - i n E t h e r n e t P o r t ✔

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Sensor, Recorder, Meter, Network switch etc.

Applicable Devices ( A v a i l a b l e E d i t i o n )

E P : E n t e r p r i s e

A D : A d v a n c e d

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✔ - - 0 L F U R V R I W � $ F F H V V

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0 L F U R V R I W � $ F F H V V � ' U L Y H U

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Database

Page 17: DeviceXPlorer OPC Server Catalog 202011 · 2020. 11. 26. · m n a > s _ J > k o r r J > q o j J > d r n J > f r r n F q G J > f s j d r > g r J > u _ O > k ` J > _ u q > i J > q

( A v a i l a b l e E d i t i o n )

E P : E n t e r p r i s e

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Specification

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(Q W H U S U L V H * � $ O O 8Q O L P L W H G 6XSSR U W H G

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3 U R GX F W � 7 \ S H 3 U R Y L G L Q J / L F H Q VH � $F W L Y D W L R Q

3DF NDJH � (+D U GZD U H � . H \ ) 6HQG � &' -5 �PHG L D � D Q G �86% � N H \ $ W W D F K �86% � N H \ � W R � 3&

3DF NDJH � (6R I W ZD U H � .H \ ) 6HQG � &' -5 �PHG L D

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Lineup

Product Type

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