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Device/PLC Connection Manuals About the Device/PLC Connection Manuals Prior to reading these manuals and setting up your device, be sure to read the "Important: Prior to reading the Device/PLC Connection manual" information. Also, be sure to download the "Preface for Trademark Rights, List of Units Supported, How to Read Manuals and Documentation Conventions" PDF file. Furthermore, be sure to keep all manual-related data in a safe, easy-to-find location.

Chapter 2 - PLC-GP Connection 2.10.1 System Structure The following describes the system structure for connecting the GP to Toshiba PLCs. Reference The Cable Diagrams mentioned in the following tables are listed in the section titled "2.10.2 Cable Diagrams". PROSEC EX Series (using CPU unit Link I/F) CPU Cable Diagram GP EX2000 RS-422 (Cable Diagram 1) GP series Connect to the Main Processor module (MPU6620). Note: Areas noted as using RS-422 can also use RS-485 on the PLC side. PROSEC T Series (using CPU unit Link I/F) CPU Link I/F Cable Diagram GP Link Master Module T3, T3H, CPU Link I/Funit RS-422 (Cable Diagram2) T2E CPU Programming Port RS-232C (Cable Diagram4) T2N CPU Link I/Funit RS-422 (Cable Diagram2) RS-232C (Cable Diagram5) T2E CM231E RS-422 (Cable Diagram1) GP Series Connect to the CPU module's computer link port. Note: Areas noted as using RS-422 can also use RS-485 on the PLC side. 2-10-1

Chapter 2 - PLC-GP Connection V Series (using CPU unit Link I/F) CPU Link I/F Cable Diagram GP Link Master Module S3PU45A S3PU65A S2PU32A S2PU72D S3PU55A S2PU22A S2PU72A CPU Link I/Funit RS-422 (Cable Diagram2) GP Series PROVISOR B Series (using CPU unit Link I/F) CPU Link I/F Cable Diagram GP B200CU, B200CUF, B200CURM, B200CUFRM Link Master Module B 2000LM RS-232C (Cable Diagram 3) GP Series Careful! When connecting the GP and B200 Series, setup the Link I/F's Mode Setup/Delimiter to CR. 2-10-2

Chapter 2 - PLC-GP Connection 2.10.2 Cable Diagrams The cable diagrams illustrated below and the cable diagrams recommended by Toshiba may differ; however, using these cables for your PLC operations will not cause any problems. Careful! Ground your PLC s FG terminal according to your country's applicable standard. For details, refer to the corresponding PLC manual.! Important Connect the FG line of the Shield cable to either the GP or PLC, depending on your environment. When using a connector hood and grounding the FG line, be sure to use an electrical conductor. For the RS-232C connection, use a cable length less than 15m. If a communications cable is used, it must be connected to the SG (signal ground). When using RS422 connection, please check the length of the cable with Toshiba PLC's users manual. Cable Diagram 1 (RS-422) When using Digital's RS-422 connector terminal adapter GP070-CN10-0 2-10-3

Chapter 2 - PLC-GP Connection When using Digital's RS-422 Cable, GP230-IS11-0 When making your own cable connections Note: When making your own connections, we recommend using Hitachi Densen's CO-SPEV-SB(A)3P*0.5 cable. When connecting the #9 and #10 pins in the GP Serial I/F, a termination resistance of 100Ω is added between RDA and RDB. Cable Diagram 2 (RS-422) When using Digital's RS-422 connector terminal adapter GP070-CN10-0 2-10-4

Chapter 2 - PLC-GP Connection When using Digital's RS-422 Cable, GP230-IS11-0 When making your own cable connections Note: When making your own connections, we recommend using Hitachi Densen's CO-SPEV-SB(A)3P*0.5 cable. When connecting the #9 and #10 pins in the GP Serial I/F, a termination resistance of 100Ω is added between RDA and RDB. When using RS422 connection, please check the length of the cable with Toshiba PLC's users manual. Cable Diagram 3 (RS-232C) NC 2-10-5

Chapter 2 - PLC-GP Connection Cable Diagram 4 (RS-232C) GP Unit (25P) 2 SD 3 RD 4 RS 5 CS 7 SG 2 RD 3 SD 5 SG 7 RTS 8 CTS PLC (9P) Shield FG Cable Diagram 5 (RS-232C) GP Unit (25P) 2 SD 12 RXD 3 RD 5 TXD 4 RS 6 RTS 5 CS 14 CTS 7 SG 7 SG 8 SG Shield 15 SG FG PLC (15P) 2-10-6

Chapter 2 - PLC-GP Connection 2.10.3 Supported Devices The following describes the range of devices supported by the GP. PROSEC EX Series Setup System Area here. Device Bit Address Word Address Particulars External Input X00000 ~ X0499F XW0000 ~ XW0499 External Output Y00000 ~ Y0499F YW0000 ~ YW0499 Auxilary Relay R00000 ~ R0999F RW0000 ~ RW0999 Link Register (relay) Z00000 ~ Z0999F ZW0000 ~ ZW1999 H/L Timer (contact) T0000 ~ T0499 Counter (contact) C0000 ~ C0499 Timer (current value) T0000 ~ T0499 Counter (current value) C0000 ~ C0499 L/H Data Register D00000 ~ D16383 H/L PROSEC T Series(T3,T3H,T2N,T2E) Setup System Area here. Device Bit Address Word Address Particulars External Input X0000 ~ X511F XW0000 ~ XW511 External Output Y0000 ~ Y511F YW0000 ~ YW511 Internal Relay R0000 ~ R999F RW000 ~ RW999 Special Relay S0000 ~ S255F SW000 ~ SW255 Link Register Relay Z0000 ~ Z999F Link Relay L0000 ~ L255F Timer (contact) T000 ~ T999 Counter (contact) C000 ~ C511 Timer (current value) T000 ~ T999 Counter (current value) C000 ~ C511 Data Register D0000 ~ D8191 Link Register W0000 ~ W2047 File Register F0000 ~ F32767 L/H * 1 Data cannot be written. Note: The Device Range may differ depending on the CPU type. For the details, refer to the Toshiba's PLC manual. 2-10-7

Chapter 2 - PLC-GP Connection V Series Setup System Area here. Device Bit Address Word Address Particulars External Input X00000 ~ X8191FF XW0000 ~ XW8191 External Output Y00000 ~ Y8191F YW0000 ~ YW8191 Auxilary Relay R00000 ~ R4095F RW0000 ~ RW4095 L/H Special Relay S00000 ~ S511F SW000 ~ SW511 Data Register D00000 ~ D4095 Note: The Device Range may differ depending on the CPU type. For the details, refer to the Toshiba's PLC manual.! Important PLC I/O and Controller Internal Memory data is treated as a variable. The variables that the GP unit can handle are as follows. When handling all PLC variables with the GP, use the following variables in the ladder program. Please note that memory variables differ from GP unit s device name. GP Device PLC Controller Memory Name Variable Name X, XW I/O Variable (IQ) Y, YW R, RW Data Register Variable (DW) D S, SW Special Register Variable Details X, XW and Y, YW use the same memory area (hav e the same range). R, RW dev ice and D dev ice use the same area. Designate the R dev ice w hen doing bit w rite from the GP unit. * Although local variables, control global variables and station global variables exist outside of the above-mentioned device, they are not accessible from the GP unit. 2-10-8

Chapter 2 - PLC-GP Connection PROVISOR B Series Device Bit Address Word Address Setup System Area here. Input Relay X000 ~ XF7F XW00 ~ XWF7 Output Relay Y000 ~ YF7F YW00 ~ YWF7 Internal Relay R000 ~ R77F RW00 ~ RW77 Extended Internal Relay-1 G000 ~ GF7F GW00 ~ GWF7 Extended Internal Relay-2 H000 ~ HF7F HW00 ~ HWF7 Special AUX Relay A000 ~ A16F AW00 ~ AW16 Latch Relay L000 ~ L07F LW00 ~ LW07 Shift Register S000 ~ S07F SW00 ~ SW07 Edge Relay E000 ~ E77F EW00 ~ EW77 Timer (contact) T000 ~ T77F TW00 ~ TW77 Counter (contact) C000 ~ C77F CW00 ~ CW77 Timer/Counter (current value) P0000 ~ P77FF P000 ~ P77F Timer/Counter (setup value) V0000 ~ V77FF V000 ~ V77F Generic Register 1 D0000 ~ DF7FF D000 ~ DF7F Generic Register 2 B0000 ~ BF7FF B000 ~ BF7F * 1 Be careful as the Word Address fields differ between the GP screen editing software GP-PRO/PBIII for Windows and the corresponding PLC manual. E.g. Input Relay Particulars L/H PRO-PBIII XW00 ~ XWF7 PLC Manual X00W ~ XF7W STOP When the Input Relay address is setup in a ladder program input field, Set/ Reset cannot be performed from the GP. The same holds true for an address (all devices) setup in an output field. 2-10-9

Chapter 2 - PLC-GP Connection 2.10.4 Environment Setup The following lists Digital's recommended PLC and GP communication settings. PROSEC EX Series Baud Rate 9600 bps Baud Rate 9600 bps Data Length 8 bits Data Bit 8 bits Stop Bit 1 bit Stop Bit 1 bit Parity Bit Odd Parity Bit Odd Data Flow Control GP Setup ER Control Communication Format 4-wire type Main Processor Module/CPU Module Setup Unit No. 1 Station Number 1 PROSEC T Series Baud Rate 19200 bps *2 Baud Rate 19200 bps *2 Data Length 8 bits *2 Data Bit 8 bits *2 Stop Bit 2 bits *2 Stop Bit 2 bits *2 Parity Bit Odd Parity Bit Odd Data Flow Control ER Control Communication Format RS-232C (RS-232C) Communication Format 4-wire type (RS-422) Unit No. 1 Station Number 1 PLC specifications state that when a PROSEC T3 (Ver. 1.4 or lower) is used, data transmission is possible only at speeds of 9600 bps or less. *2 The T2E uses a baud rate of 9600bps, a data length of 8bits and the stop bit is 1(fixed). V Series GP Setup CPU Module Setup Baud Rate 19200 bps Baud Rate 19200 bps Data Length 8 bits Data Bit 8 bits Stop Bit 2 bits Stop Bit 2 bits Parity Bit Odd Parity Bit Odd Data Flow Control GP Setup ER Control Communication Format 4-wire type PLC Setup Unit No. 1 Station Number 1 2-10-10

Chapter 2 - PLC-GP Connection PROVISOR B Series GP Setup Link Master Module Setup Baud Rate 9600 bps Baud Rate 9600 bps Data Length 8 bits Data Bit 8 bits Stop Bit 2 bits Stop Bit 2 bits Parity Bit Even Parity Bit Even Data Flow Control ER Control Communication Format RS-232C Operation Mode Link Mode Unit No. 0 Station Number 0 2-10-11

Chapter 2 - PLC-GP Connection MEMO 2-10-12