IP 20 distributed inputs/outputs Advantys STB. Catalog January

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1 IP 0 distributed inputs/outputs Catalog January 0

2 Contents Distributed I/O Solution Open and Modular System b Presentation, description pages to 8 b Dimensions, references page 9 Network Interface Modules Selection guide pages 0 and b Presentation, description, characteristics pages to b References, dimensions pages to 7 Power Distribution Modules b Presentation, description, characteristics pages 8 and 9 b References, dimensions pages 0 and Digital Input/Output Modules Selection guide pages to b Presentation, description, characteristics pages to 9 b References, dimensions pages 0 and b Wiring pages to Analog Input/Output Modules Selection guide pages and b Presentation, description, characteristics pages to 9 b References, dimensions pages 0 and b Wiring pages and Application-specific Modules b Parallel Interface for TeSys U-Line Applications pages and b Counter module v Presentation, description, characteristics pages to 9 v References, dimensions, wiring pages 0 and

3 Configuration Software b Presentation page b Functions pages to b References page Phaseo Regulated Power Supplies b Presentation pages and 8 b Characteristics pages 9 and 0 b Combinations of Phaseo power supplies with STB modules page b References, dimensions page Services b Automation product certifications pages and b Power requirements page b Product reference index page

4 Presentation Open and Modular System Presentation To meet the needs of machine manufacturers and users, automation architectures have been decentralized while delivering performance comparable to centralized systems. The distributed I/O system is an open, modular input/output system and makes it possible to design automation islands managed by a master controller via a bus or communication network. These islands can be used to connect: b Motor-starters, starter-controllers b Variable speed drives b Magelis operator interface terminals on Modbus b Or many other validated third-party product via the CANopen bus (Festo valves, IP 7 FTB distributed I/O, etc.) Installed as close to the machine as possible, these islands help reduce the time and cost of wiring sensors and actuators, while increasing system availability. The island components are electronic modules mounted on one or more DIN rails. These clusters of modules, known as segments, carry a bus from beginning to end of each island. The island bus provides power distribution, signal sensing, and power management to all compatible modules, in the form of a wiring management system. The I/O family can be divided into groups of modules: b The standard range: a comprehensive offer with configurable parameters b The basic range: an extension of the standard range, a low-cost option but with fewer functions and non-configurable modules Standard and basic modules can be combined on the same island, although mixing modules in this way does lead to certain operational restrictions, see page. These ranges comprise: b Network interface modules b Digital I/O modules (c V & a/0 V) b Analog I/O modules b Counter module b Module for TeSys U-Line starter-controllers b Relay modules (c V coil and c V or a /0 V contact) Sensor and actuator power distribution modules are available for these modules, simplifying the wiring. The sensors and actuators are connected to the I/O modules via removable screwor spring-type connectors. Built-in mechanisms make it possible to remove and replace (hot swap) modules when the system is powered on (provided that standard network interface modules are used). The distributed I/O system features a protection rating of IP 0. For installations in production workshops, the distributed I/O system must be incorporated in protective housings with at least an IP rating (in compliance with IEC 090 or NEMA 0 standards). See page. Each module has a default configuration making the island operational as soon as it is powered on. However, in order to benefit from the various features of the standard modules, use the Advantys configuration software to configure the system to meet user requirements. This software also allows you to define reflex actions in the output modules, thereby avoiding processing by the island master (see pages to ).

5 Presentation (continued), composition Open and Modular System Presentation (continued) The table below sets out the main features of the standard and basic ranges: I/O modules Network Interface Modules Power modules Basic Standard Basic Standard Basic Standard See page Max. no. of I/O modules to 8 Removable connectors Keying pin Hot swapping supported () 7 Separate power supply to sensors and actuators () () 8 Built-in electronic protection Status LEDs Compatible with all types of network interface module Extension segment Removable memory Local HMI on Modbus (Magelis) Default configuration function Configurable with Advantys software Configurable I/O parameters Built-in reflex functions Advanced diagnostics Internal software update (firmware) Available function Non available function Non relevant function Composition A typical island is composed of standard or basic I/O modules of various widths: 0." (.9mm), 0.7" (8.mm) and.09 (7.8mm). The I/O modules, used in conjunction with the DIN rail, network interface modules NIM and power distribution modules PDM, as well as other accessories, convey a bus which distributes various required power supplies to each module (). An island including to 7 segments comprises: b STBNpp Network Interface Module NIM This module manages communications on the island bus. It acts as a gateway for exchanges with the fieldbus or network master. Seven network protocols are offered: Ethernet TCP/IP (standard only), CANopen, Modbus Plus (standard only), Fipio (standard only), INTERBUS, Profibus DP and DeviceNet. b or more STB PDT Power Distribution Modules PDM. They provide the VDC or /0 VAC field power required for the sensors and actuators, thereby simplifying connections b Digital I/O modules with DC power (STB DD) or AC power (STB DA) b Analog I/O modules using current or voltage: STB App b STB EHC counter modules b Application-specific modules for controlling TeSys U-Line starter-controllers Standard and basic modules can be combined on the same island. Additional modules (with standard range) are available for the various architectures proposed below (see page ): b STB XBE p00 EOS and BOS bus extension modules for multisegment structures (up to extension segments) b STB XCA bus extension cables b STB XBE 00 CANopen extension module for integrating validated standard CANopen devices () Requires the standard Network Interface Module NIM. () Requires the standard Power Distribution Module PDM. () Each module (with the exception of the network interface module NIM ) requires a base and one or more specific connectors.

6 Description Open and Modular System Description of standard : primary segment In the example above, the primary segment comprises: STB Npp: Network Interface Module NIM. It is placed at the beginning of the primary segment. Each island must have one NIM module only. STB PDT 00: Power Distribution Module PDM. It is installed immediately to the right of the NIM and provides a /0 V power to the I/O modules requiring AC power. STB DAp: digital I/O modules with AC power. STB PDT 00: Power Distribution Module PDM. It is installed after all the a /0 V I/O modules. It provides c V to the I/O modules requiring DC power. STB AVp and STB ACp: analog I/O modules requiring DC power. They are installed after the PDM module. STB XMP 00: bus termination (). v STB CPS : auxiliary power supply c V/c V logic. It is an additional power supply to the built-in V power supply of the Network Interface Module NIM.q : primary segment with extension segments 7 7 max. 9. ft. ( m) with max. I/O modules The island bus can support the primary segment with as many as six extension segments. These segments comprise: STB Npp: Network Interface Module NIM. It is placed at the beginning of the primary segment. Each island must have one NIM module only. STB PDT p00: PDM power distribution module (c V or a /0 V). It is installed immediately to the right of the NIM and provides c V or a /0 V power according to the type of I/O modules located on the right. STB AVp, STB ACp, STB DDp, STB DAp and STB DRp: I/O modules requiring DC power or digital modules requiring AC power. They are placed to the immediate right of the PDM. STB XBE 000: EOS bus extension module: It is always installed in the farthest right slot in the primary or extension segment, and is used to extend the island bus to another segment. STB XBE 00: BOS bus extension module: It is installed at the beginning of each extension segment. STB XMP 00: island bus termination (). 7 STB XCA 00p: island bus extension cables. v STB CPS : auxiliary power supply c V/c V logic. It is an additional power supply to the built-in V power supply of the Network Interface Module NIM and the BOS bus extension module. q () Supplied with the corresponding NIM network interface module. q Available Q, 00.

7 Description (continued) Open and Modular System Description of standard (continued) with application-specific modules, and devices max. modules at 00 Kbit/s The island bus can support: b Standard Schneider validated CANopen devices. They are installed at the end of the island with up to standard CANopen devices (). These devices may reduce the maximum island length to. m (baud rate dependent). The island bus comprises: STB Npp: Network Interface Module NIM STB PDT 00: c V Power Distribution Module PDM. It is installed immediately to the right of the NIM and provides c V power to the I/O modules requiring DC power STB EHC 00: -channel counter module STB AVp and STB ACp: analog I/O modules STB EPI : module for TeSys U-Line starter-controllers STB XBE 000: EOS bus extension module. It is always installed in the farthest right slot in the primary or extension segment, and is used to extend the island bus to another segment. 7 STB XBE 00: BOS bus extension module. It is installed at the beginning of the extension segment. 8 STB XBE 00: CANopen extension module (max. devices per island) 9 FTB CN: Advantys FTB IP 7 monobloc I/O splitter boxes q 0FTX DPTL: CANopen bus line terminator (with 0 Ω resistance) STB XCA 00p: island bus extension cables User supplied cable v STB CPS : auxiliary power supply c V/c V logic. It is an additional power supply to the built-in V power supply of the Network Interface Module NIM and the BOS bus extension module. q CANopen extension module The CANopen extension module STB XBE 00 can be used to connect external CANopen devices. Any Schneider validated CANopen device must necessarily be installed at the end of the segment. The CANopen devices can be: b Advantys FTB monobloc I/O splitter boxes q b ATV variable speed drives b Festo CPV-CO electropneumatic valves To connect other external CANopen products we recommend that you contact Schneider Electric to check the behavior of these products in an STB island. Note : The number of I/O modules and CANopen devices depends on the type of NIM and the device type. Certain complex devices reduce the maximum number of modules and devices from to 7. q Available Q, 00. 7

8 Description (continued), combinations, dimensions Open and Modular System Description of basic Basic : single segment max. I/O modules In the example above, the single segment comprises: STB Npp: Network Interface Module NIM. It is placed at the beginning of the primary segment. Each island must have one NIM module only. STB PDT 0: Power Distribution Module PDM. It is installed immediately to the right of the NIM and provides a /0 V power to the I/O modules requiring AC power. STB DAp: digital I/O modules with AC power. STB PDT 0: Power Distribution Module PDM. It is installed after all the a /0 V I/O modules. It provides c V to the I/O modules requiring DC power. STB AVp and STB ACp: analog I/O modules requiring DC power. They are installed after the PDM module. STB XMP 00: bus termination. The basic network interface module can be used to create islands with a single segment comprising a maximum of I/O modules (as compared with a maximum of I/O modules for the standard module). Dimensions STB XBE 000/00/00, STB CPS.7" (70) 0.9" (). () A with STB XBE 00 module.7" () with STB XBE 00 and STB CPS modules (.7" (0).7" (9).9" (7) 0.7" (8.) Dual Dimensions inches mm 8

9 References Open and Modular System STB XBE 000 STB XBE 00 References Description Reference Weight Network Interface Modules NIM See page (Includes the island bus terminator) Power Distribution Modules PDM See page 9 Digital I/O modules See page 0 Analog I/O modules See page 8 Parallel interfaces Tego Power applications See page TeSys U-Line applications See page Counter module See page 9 Description Use with standard STB Reference Weight EOS bus extension module Installed at the end of the segment (except for the last segment on the island) STBXBE000 BOS bus extension module Installed at the beginning of STBXBE00 each extension segment CANopen bus extension module Optionally installed at the end STBXBE00 of the last segment to connect standard CANopen devices Description Use Reference Weight Auxiliary power supply c V/c V. A () Additional power supply for logic power to the I/O modules STBCPS STB XBE 00 STB CPS Separate parts Description Use for module Reference Weight I/O base Width 0.7" (8. mm) Description -pin removable connectors for c V -pin removable connectors Use for STB XBE 000 STBXBA STB XBE 00 STBXBA STB XBE 00 STBXBA STB CPS STBXBA Type Sold in lots of Reference Weight STB XBE 00 Screw-type 0 STBXTS0 Spring-type 0 STBXTS0 STB XBE 00 Screw-type 0 STBXTS Spring-type 0 STBXTS Keying pins Modules 0 STBXMP7700 Removable connectors 9 STBXMP7800 Usercustomizable label sheets () Screwdriver slotted. mm Customization of modules and boxes Screw-type removable connectors Fully insulated chrome vanadium steel sheets STBXMP700 STBXTT00 Description Length Reference Weight Island bus extension cables 0. m STBXCA00.0 m STBXCA00. m STBXCA m STBXCA00.0 m STBXCA00 () Auxiliary power supply in additional to the built-in V power supply of the Network Interface Module NIM and the BOS bus extension module. () A template for the user-customizable label sheets is supplied with the documentation mini-cd-rom. STB XBA p00 9

10 Selection guide Network Interface Modules Applications Data exchange between master PLC and I/O modules Bus or network type Ethernet TCP/IP Network CANopen Bus Bus or network nature Industrial LAN CAN field bus Structure Physical interface 0 BASE-T ISO 98 Access method CSMA-CD CSMA-MA, multimaster Baud rate 0 Mbit/s 0 Kbit/s Mbit/s depending on bus length Medium Shielded dual twisted pair via Ethernet ConneXium cabling system Shielded dual twisted pair Configuration Number of devices () max. per segment, unlimited with switches 7 slaves Maximum length 0 ft. (00 m) according to 80. standard 80 ft. (000 m) with ConneXium cabling system From 98. ft. (0 m) ( Mbit/s) to 0 ft. (,000 m) (0 Kbit/s) Network interface module features Number of I/O modules per island () Standard NIM: max. modules on primary segment and max. extension segments Power supply voltage VDC not isolated (9. 0 V) Standard NIM: max. modules on primary segment and max. extension segments Basic NIM: max. modules on primary segment Logic power supply Provides VDC logic power to all the I/O modules of an island (00 ma) Services used CANopen devices supported max. devices () - Embedded Web (configuration, diagnostics, and access to variables) - TCP/IP Modbus - SNMP agent - Process Data Object (PDO) - Service Data Object (SDO) - Special function Object - Network management (NMT) Type of NIM module Standard STB NIP STB NCO Basic () STB NCO 00 Pages () One island corresponds to device on the bus or the network. () Depending on the nature of the CANopen devices, this maximum number may be limited to 7. () Does not support the CANopen bus extension module (for external CANopen products). Does not allow hot swapping of I/O modules. 0

11 0 Data exchange between master PLC and I/O modules Modbus Plus Network Fipio Bus INTERBUS Bus Profibus DP Bus DeviceNet Network Industrial LAN compliant with the Modbus Plus standard Open industrial field bus INTERBUS industrial field bus compliant with the FIP standard (Generation ) Industrial field bus (Profibus DP V.0) Modbus Plus standard FIP standard isolated RS 8 RS 8 Token passing Bus managed by bus arbitrator Generation master/slave Master/slave CSMA-CD Network compliant with v..0 of the Open DeviceNet Vendor Assoc. (ODVA) Mbit/s Mbit/s 00 Kbit/s 9. Kbit/s Mbit/s, 0 or 00 Kbit/s Twisted pair Shielded twisted pair Shielded twisted pair Shielded twisted pair Twisted pair per segment for all segments per segment max. 8 for all segments max. slaves with max. bus terminal blocks slaves slaves 7 ft. (0 m) per segment 90 ft. (800 m) with repeaters Standard NIM: max. modules on primary segment and max. extension segments 80 ft. (000 m) per segment ft. (00 m) per bus segment between stations 99 ft. (.8 km) for the bus between stations ft. (0 m) for the installation bus 9 ft. (00 m) (9. Kbit/s), 77 ft. (800 m) with repeaters, ft. (00 m) ( Mbit/s), ft. (800 m) with repeaters 9 ft. (00 m) Standard NIM: max. modules on primary segment and max. extension segments Basic NIM: max. modules on primary segment max. devices () - Global data - Peer-to-peer - Peer Cop - Periodic I/O exchanges - Peer-to-peer messages - Use of standard profiles FRD/FSD/FED - Data process implicit exchange - Logical addressing - Diagnostics - Slave configuration - Configuration control - Read/write Slave I/O data - DeviceNet Object (Class ID) - Connection Object (Class ID) - Island Bus Object (Class ID0) STB NMP STB NFP STB NIB STB NDP STB NDN STB NIB 00 STB NDP 00 STB NDN 00

12 Presentation Network Interface Modules Presentation The STB Npp and STB Npp 00 network interface modules, located at the beginning of each island, are gateways for exchanging data between the network or bus master PLC and the automation island. They also enable the configuration of parameters and addressing of installation devices. These settings are stored in the module s internal RAM or Flash memory. Optionally, they can be saved to the STB XMP 0 removable memory card ( Kb). Fieldbus or network master External c V power supply HMI terminal on Modbus (Magelis XBT range, see page ) Network Interface Module NIM Power Distribution Module PDM I/O modules 7 Second STB island 8 Slave PLC 9 Bus terminator 0Parallel interface module for TeSys U-Line starter-controller Advantys FTB splitter box (or CANopen device) q The offer comprises 7 standard and basic network interface modules, each one dedicated to a specific network or bus: Network or bus Standard network interface Basic network interface module NIM module NIM Ethernet network STB NIP CANopen bus STB NCO STB NCO 00 Modbus Plus network STB NMP Fipio bus STB NFP INTERBUS bus STB NIB STB NIB 00 Profibus DP bus STB NDP STB NDP 00 DeviceNet network STB NDN STB NDN 00 Power supply for network interface modules Network interface modules are powered by an external c V power supply. They convert this power to c V to provide logic power to the I/O modules. Logic power for the I/O modules in each extension segment is provided by that segment's STB XBE 00 BOS module. See page. This built-in V power supply provides up to. A current. This current can be increased by the addition in the segment (primary, extension) of the auxiliary power supply CPS providing up to. A current (see page 9). q Available Q, 00.

13 Description Network Interface Modules (excluding basic module) 7 Description Network interface modules (except for the INTERBUS STB NIB /00 module) The front panel features the following: A connector used to connect the island to the fieldbus. Two rotary node addressing selectors on the bus or the network. An external c V power connector for the removable screw-type (STB XTS 0) or spring-type (STB XTS 0) connector. A display block with LEDs for the various island states on the bus: power, communication, send/receive data, errors, etc. Locking screw securing the STB Npp module to the DIN rail. A slot for an STB XMP 0 removable memory card (excluding basic module). 7 Standard module: cover accessing the port used to connect an island setup and configuration PC or an HMI terminal (read/write data), and the Reset button (). Can also be used to update the firmware for the network interface module. Basic module: cover accessing the port used to connect a PC (for updating the firmware for the network interface module only) and the Reset button (). INTERBUS STB NIB /00 network interface module It is identical to the network interface modules described above except for the INTERBUS connector. (excluding basic module) The front panel features the following: A 9-pin SUB-D male connector used to connect the input bus cable. A 9-pin SUB-D female connector used to connect the output bus cable. An external c V power connector for the removable screw-type (STB XTS 0) or spring-type (STB XTS 0) connector. A display block with LEDs for the various island states on the bus: power, communication, send/receive data, errors, etc. Locking screw securing the STB Npp module to the DIN rail. A slot for an STB XMP 0 removable memory card (excluding basic module). 7 - Standard module cover accessing the port used to connect an island setup and configuration PC or an HMI terminal (read/write data), and the Reset button (). Can also be used to update the firmware for the network interface module. - Basic module: cover accessing the port used to connect a PC (for updating the firmware for the network interface module only) and the Reset button (). 7 Network interface modules are supplied with a documentation mini-cd-rom and the STB XMP 00 bus terminator and are mounted directly on DIN rails. () Pressing the Reset button requires the power to be switched off and then on again.

14 Characteristics Network Interface Modules Characteristics Type of network interface module STB NIP NCO NCO 00 NMP NFP Range Standard Standard Basic Standard Standard Network or bus Ethernet CANopen Modbus Plus Fipio Compliance with bus or network standards IEEE 80. CIA DS-0 modbus.org EN 070, Vol, Parts -, -, -, -, - and 7- Power supply voltage c V not isolated Input current ma Voltage limits c V 9. 0 Output voltage to the island logic bus c. V ± 0. % Output current rating A. at c V Output impedance mω < 0 to 00 khz Isolation None () Immunity to electromagnetic disturbance (EMC) Yes, according to IEC - Connector type To bus or network RJ female 9-pin SUB-D male 9-pin SUB-D female Max. number of addressable I/O modules Number of segments supported RS port (configuration and dialog) HE, 8-pin female HE, 8-pin female Per island () HE, 8-pin female Primary Extension max. max. max. 9-pin SUB-D male Type of STB network interface module NIB NIB 00 NDP NDP 00 NDN NDN 00 Range Standard Basic Standard Basic Standard Basic Network or bus INTERBus Profibus DP DeviceNet Compliance with bus or network standards INTERBus Club DIN 9, Parts and Open DeviceNet Vendors Assoc. Power supply voltage c V not isolated Input current ma Voltage limits c V 9. 0 Output voltage to the island logic bus c. V ± 0. % Output current rating A. at c V Output impedance mω < 0 to 00 khz y 0 < 0 to 00 khz Isolation None Immunity to electromagnetic disturbance (EMC) Yes, according to IEC - Connector type To bus or network Input: 9-pin SUB-D male Output: 9-pin SUB-D female 9-pin SUB-D female Max. number of addressable I/O modules Number of segments supported RS port (configuration and dialog) HE, 8-pin female () HE, 8-pin female y 0 < 0 to 00 khz y 0 -pin male connector () HE, 8-pin female Per island Primary Extension max. max. max. () Connection for updating firmware only. () Use a c V SELV (Safety Extra Low Voltage) external power supply. ()

15 References Network Interface Modules Network interface modules () Description Range Power supply voltage Reference Weight Ethernet network Standard c V STBNIP 0.0 CANopen bus Standard c V STBNCO 0. Basic c V STBNCO00 0. Modbus Plus network Standard c V STBNMP 0. Fipio bus Standard c V STBNFP 0. INTERBUS Bus Standard c V STBNIB 0. Basic c V STBNIB00 0. Profibus DP bus Standard c V STBNDP 0.0 STB NIP STB NCO /00 Basic c V STBNDP DeviceNet network Standard c V STBNDN 0.0 Basic c V STBNDN Separate parts Description Use Sold in lots of Reference Weight Kb removable memory card () Application backup memory for standard network interface module STBXMP0 External c V power supply (SELV) Removable connectors for c V power supply (-pin) See page 9 Screw-type 0 STBXTS Spring-type 0 STBXTS STB NMP STB NFP DeviceNet removable connectors (-pin) Screw-type STBXTS Spring-type STBXTS Configuration software () Dedicated Advantys configuration software Magelis XBT terminal connection cable () (length. m) XBT N0/NU00 display units XBT H/HM display units XBT P/E/PM terminals XBT F graphic terminals RS C connection cable XBT Gp0 graphic terminals HE 8-pin/SUB-D 9-pin () Configuration PC (length m) See page XBTZ STBXCA00 Replacement parts Description Use Reference Weight Bus terminator STBXMP00 () All network interface modules are supplied with a English documentation on mini-cd-rom and bus terminators (STB XMP 00). () With standard network interface modules only. STB NIB /00 STB NDN /00

16 References (continued) Network Interface Modules 90 NTW 000 pp Connection accessories Ethernet network Description Fitted at both ends Length ft. (m) Straight shielded twisted pair cable for connecting hubs and switches RJ connectors to connect data terminal equipment (DTE) Reference Weight. () 90NTW0000U. () 90NTW0000U 9. () 90NTW000U. (0) 90NTW0000U (80) 90NTW00080U Modbus Plus network Description Use Reference Weight 9-pin SUB-D male connector Connection of the Modbus Plus connector ASMBKT08 AS MBKT 08 Modbus Plus junction box IP 0 device for T connections 990NAD IP unit for T connections, supports RJ connector on front panel 990NAD IP 0 T connector with RJ connectors for Modbus Plus cable and one 9 pin SUB-D connector for auxiliary devices 70XTS Description Use Length Reference Weight From To Modbus Plus drop IP 0 IP (0.) 70MCI000 cables 70 XTS XTS T connector T connector.8 () 70MCI00 STB NMP network interface module 9.8 () 70MCI00.8 (0) 70MCI NAD (.) 990NAD0 0.0 junction box 9. () 990NAD0 0.0 Fipio bus Description Use Characteristics Reference Weight Female connectors (9-pin SUB-D) On STB NFP network interface module Black poly carbonate IP 0 TSXFPACC 0.00 Zamak TSXFPACC Bus connection unit Junction for main cable Black poly carbonate IP 0 TSXFPACC 0.0 TSX FP ACC Zamak IP TSXFPACC 0.0 Drop cables 8 mm, shielded twisted pairs 0 Ω For standard environments 8 (00) TSXFPCC (00) TSXFPCC TSX FP ACC TSX FP ACC

17 References (continued) dimensions Network Interface Modules Connection accessories (continued) INTERBUS bus Description Use Length ft. (m) Installation bus cables Junction interface Prefitted cables to connect network interface modules NIM To connect inter-station bus to installation bus Reference Weight 0. ft. (0.0) 70MCI BNO700 Inter-station bus cables 8 ft. (00) TSXIBSCA00 ft. (00) TSXIBSCA00 Profibus DP bus Description Use Length Reference Weight Connectors for STB NDP Bus terminator 90NAD90 network interface module Intermediate connection 90NAD90 Intermediate connection 90NAD90 with terminal port Profibus DP connection cables 8 ft. (00) TSXPBSCA00 ft. (00) TSXPBSCA00 DeviceNet network Description Use Type Reference Weight Female -pin connectors Dimensions STB Npp /00 For STB NDN network interface module Screw-type STBXTS Spring-type STBXTS.7 (70).0 (8.).7 (). ().7 (0) Dual Dimensions inches mm 7

18 Presentation Power Distribution Modules Presentation The STB PDT p00 standard Power Distribution Modules PDM provide power for the I/O module sensors and actuators () via the sensor bus and the actuator bus. a /0 V a /0 V IN OUT IN OUT c V a /0 V Two standard power distribution modules are available for the distributed I/O: b The STB PDT 00 module is dedicated to providing power to the I/O module sensors and actuators requiring a c V power supply. b The STB PDT 00 module is dedicated to providing power to the I/O module sensors and actuators requiring a a /0 V power supply. The STB PDT p0 basic Power Distribution Modules PDM provide power for the I/O module sensors and actuators () via the same bus. a /0 V a /0 V IN/OUT IN/OUT c V Two basic power distribution modules are available for the distributed I/O: b The STB PDT 0 module is dedicated to providing power to the I/O module sensors and actuators requiring a c V power supply. b The STB PDT 0 module is dedicated to providing power to the I/O module sensors and actuators requiring a a /0 V power supply. Choice of Power Distribution Module determined by I/O modules Power distribution module Voltage STB I/O modules STB bus Digital Analog Application Inputs Outputs Relay Inputs Outputs outputs specific extension modules STB PDT 00 c V DDI 0 DDI 0 DDI 0 DDI DDI DDO 00 DDO 0 DDO 0 DDO 00 DDO DDO 0 DRC 0 DRA 90 AVI 70 ACI 0 ART 000 AVI AVI 7 ACI AVO 0 ACO 0 AVO AVO ACO EPI EPI EHC 00 XBE 000 XBE 00 STB PDT 00 a V DAI 0 DAO 80 a 0 V DAI 70 DAO 80 STB PDT 0 c V DDI 0 DDI 0 DDI 0 DDI DDI DDO 00 DDO 0 DDO 0 DDO 00 DDO DDO 0 DRC 0 DRA 90 AVI 70 ACI 0 ART 000 AVI AVI 7 ACI AVO 0 ACO 0 AVO AVO ACO EPI EPI EHC 00 STB PDT 0 a V DAI 0 DAO 80 a 0 V DAI 70 DAO 80 () One power distribution module can supply power to both digital and analog I/O modules simultaneously. 8

19 Description, characteristics Power Distribution Modules 7 8 (STB PDT p00 standard module only) (STB PDT p00 standard module only) Description The front panel of the PDT p00 power distribution modules features: A location for a customizable label A display block with display LEDs (STB PDT 00/00 standard module only):: - IN LED on: the sensor bus power supply is present - OUT LED on: the actuator bus power supply is present A color-coded module identification stripe (red for a /0 V, blue for c V) A connector for removable screw-type connectors (STB XTS 0) or spring-type connectors (STB XTS 0) used to connect: v the sensor power supply for STB PDT 00/00 standard modules v the sensor/actuator power supply for STB PDT 0/0 basic modules A connector for removable screw-type connectors (STB XTS 0) or spring-type connectors (STB XTS 0) used to connect the actuator power supply (STB PDT 00/00 standard module only) To be ordered separately: An STB XBA 00 mounting base, width 0.7" (8. mm) This base features: 7 A location for a customizable label 8 A captive grounding screw Characteristics Type of module STB PDT 00 STB PDT 00 STB PDT 0 STB PDT 0 Range Standard Basic Power supply voltage V c () a /0 c a /0 Maximum current For inputs A at 0 C. at 0 C For outputs A 8 at 0 C at 0 C at 0 C. at 0 C 0 at 0 C at 0 C For inputs/outputs A at 0 C. at 0 C Sensor/actuator bus voltage range V c () a 8... () c a 8... Hot swapping supported No Nominal consumption ma 0 on c V logic power supply Reverse polarity protection Yes, on the actuator bus Yes, on the actuator bus Built-in overcurrent protection For inputs By A time-delayed fuse () For outputs By 0 A time-delayed fuse () By A time-delayed fuse () Max. current on the grounding terminal A 0 for minutes Voltage-detect thresholds IN/OUT LED turns on u c V ± V > a 70 V ± V IN/OUT LED turns off < c V ± V < a 0 V ± V Mounting base STB XBA 00 width 0.7" (8. mm) () Use a c V safety extra low voltage (SELV) external power supply. () DC power supplies may be shared or separate, or shared with the c V power supply of the network interface module. () AC power supplies for a given distribution module from a three-phase transformer must be connected at the same phase. () Fuse supplied with the PDT power distribution module. Can be replaced with the STB XMP 00 fuse kit. 9

20 References Power Distribution Modules References Power distribution modules Type of power supply Voltage Type Reference Weight c V Standard STBPDT Basic STBPDT0 0.0 a /0 V Standard STBPDT Basic STBPDT0 0.9 Separate parts Description Use for Sold in lots of Reference Mounting base (width 8. mm) Mounting of STB PDT p00 power supply modules on DIN rails Weight STBXBA STB XBA 00 STB PDT 00 Field wiring connectors ( points) Screw-type 0 STBXTS Spring-type 0 STBXTS Keying pins Distribution modules 0 STBXMP7700 User-customizable label sheets () Customization of modules and bases STBXMP700 STB XTS 0 STB XTS 0 Grounding kit Grounding for shielded cables, with parts bar ( m) and lateral supports STBXSP000 Terminals for grounding kit Cables (width. mm ) 0 STBXSP00 Cables (width mm ) 0 STBXSP00 Screwdriver slotted. mm Screw-type removable connectors STBXTT00 Phaseo regulated, single-phase switching power supplies Output voltage Input voltage Nominal Nominal Reference mains 7... Hz power current Weight c V V W...0 A See page STB XSP 000 STB XSP 00/00 Replacement parts Description Reference Weight Fuses A (lot of ) and 0 A (lot of ) STBXMP00 Keying pins () Field wiring connectors (sold in lots of ) STBXMP780 () A template for the user-customizable label sheets is supplied with the documentation mini-cd-rom. () Supplied with STB XTS 0 screw-type connectors and STB XTS 0 spring-type connectors. 0

21 Dimensions Power Distribution Modules Dimensions STB PDT 00/00 and 0/0.7 (70). ().7.0 () (8.).0 (7.) INPUT OUTPUT +.0 (77) 0.7 (8.) 0. () Dual Dimensions inches mm

22 Selection guide Digital Input/Output Modules Applications Digital input modules For direct current Voltage VDC Number of channels Inputs Default logic Sink Configurable logic Yes () No Type (IEC/EN -) Type Type + Sensor type -wire + ground -wire Response time Off-to-on 0 0. ms input filter time On-to-off 0. ms input filter time 9 0. ms input filter time. 0. ms input filter time. ms.8 ms Filter time constant 0... ms 0... ms ms Field wiring connectors Two connectors (-point): screw-type STB XTS 00 or spring-type STB XTS 00 Base STB XBA 000 Power Distribution Modules PDM () Voltage VDC Part number STB PDT 00/0 Isolation Field-to-bus 00 VDC for minute Channel-to-channel Protection against Reverse polarity Yes Short-circuit and overload Yes, time-lag fuse on the Power Distribution Module PDM Sensor/actuator power Electronic short-circuit protection (SCP) Module range Standard Basic Module number STB DDI 0 STB DDI 0 STB DDI Page 0 () Adjustable with STB SPU 000 configuration software. () Each voltage group requires its own Power Distribution Module PDM.

23 0 Digital input modules For direct current For alternating current VDC VAC 0 VAC Sink Yes () No Yes () Type -wire -wire -wire + ground. ms. ms. line cycles.7 ms.7 ms. line cycles ms ms Two connectors (-point): screw-type STB XTS 00 or spring-type STB XTS 00 Two connectors (-point): screw-type STB XTS 0 or spring-type STB XTS 0 STB XBA 000 STB XBA 000 VDC VAC 0 VAC STB PDT 00/0 STB PDT 00/0 00 VDC for minute 780 VAC for minute Yes Yes, A time-lag fuse on the Power Distribution Module PDM Electronic short-circuit protection (SCP) Standard Basic Standard STB DDI 0 STB DDI STB DAI 0 STB DAI 70 0

24 Selection guide (continued) Digital Input/Output Modules Applications Digital output modules For direct current (transistor) Voltage VDC Number of channels Inputs Default logic Source Configurable logic Yes No Load current (per channel) 0. A A 0. A 0. A Response time Off-to-on 0 0. A load 0 µs 0 0. A load 0 0. A load On-to-off 7 0. A load 70 µs A load A load Default setting User-configurable setting () Manual resetting Fallback modes User-configurable setting () Both channels to 0 Field wiring connectors Two connectors (-point): screw-type STB XTS 00 or spring-type STB XTS 00 Base STB XBA 000 Power Distribution Modules PDM () Voltage VDC Reference STB PDT 00/0 Isolation Field-to-bus 00 VDC for minute Channel-to-channel 00 VDC for minute Protection against Reverse polarity Yes Short-circuit and overload Yes () () Yes () Power supply Electronic overcurrent protection (OCP) Module range Standard Basic Module type STB DDO 00 STB DDO 0 STB DDO 0 STB DDO Page 0 () With STB SPU 000 configuration software. () Each voltage group requires its own Power Distribution Module PDM. () Built-in time-lag fuses on the Power Distribution Module PDM. () Recommended user-supplied. A time-lag fuses on each channel.

25 Digital output modules For direct current (transistor) For alternating current (triac) For direct/alternating current (relay) VDC /0 VAC VDC (relay contact) /0 VDC (relay contact) form C (N O/N C) relays form A/B relays Source Yes No 0. A 0. A A at 0 C A at 0 C A per contact 7 A per contact 7 0. A load 0 µs at a resistive load of 0 ma 9 0. A load 900 µs at a resistive load of 0 ma 0 ms. ms 0 ms 0. ms.7 ms 0 ms User-configurable setting () Manual resetting User-configurable setting () Manual resetting User-configurable setting () Both channels to 0 User-configurable setting () Two connectors (-point): screw-type STB XTS 00 or spring-type STB XTS 00 Two connectors (-point): screw-type STB XTS 0 or spring-type STB XTS 0 STB XBA 000 STB XBA 000 STB XBA 000 VDC /0 VAC VDC (relay coil) STB PDT 00/0 STB PDT 00/0 STB PDT 00/0 00 VDC for minute 780 VAC for minute 780 VAC for minute 00 VAC for minute Yes Yes () Electronic overcurrent protection (OCP) Standard Basic Standard STB DDO 00 STB DDO 0 STB DAO 80 STB DRC 0 STB DRA 90 0

26 Presentation, description Digital Input/Output Modules Presentation The STB digital input/output modules consist of input modules, output modules and relay output modules. The standard digital I/O offering is defined as follows: b digital input modules: v one -channel module, one -channel module, and one -channel module with VDC voltage v one -channel module with VAC voltage v one -channel module with 0 VAC voltage b digital output modules: v two -channel modules with VDC voltage v one -channel module, and one -channel module with VDC voltage v one -channel module with /0 VAC voltage b relay output modules: v one - form C relay outputs v one - form A/B relay outputs The basic digital I/O offering is defined as follows: b digital input modules: v one -channel module, and one -channel module with VDC voltage b digital output modules: v one -channel module, and one -channel module with VDC voltage Description The front panel of a typical digital input/output module features: A location for a user-customizable label A display block (standard module only) showing: v the state of the module (RDY, ERR with standard module, RDY with basic module) v the state of each channel (INp or OUTp) A color-coded module identification stripe Two receptacles for field-wiring connectors To be ordered separately: b I/O bases.9, 8. or 8. mm wide, depending on the model of I/O module (STB XBA 000/000/000). These bases feature a location for the user-customizable label. b Removable screw terminal ( or -channel) STB XTS 0/00 or removable spring terminal ( or -channel) STB XTS 0/00. b Mechanical keying pin to insert between: v the I/O module and this I/O base: STB XMP 7700 v the field wiring connector and this I/O module: STB XMP 7800 to ensure that the I/O module, I/O base and field wiring connector are properly matched b User-customizable label sheets: STB XMP 700

27 Characteristics Digital Input/Output Modules Characteristics of digital input modules Type of input module STB DDI 0 STB DDI 0 STB DDI STB DDI 0 STB DDI Logic bus current VDC ma () Requires the Advantys configuration software. () Standard module: 0 A fuse. Basic module: A fuse. STB DAI 0 Range Standard Basic Standard Basic Standard Number of input channels Input nominal values Voltage V DC AC (0/0 Hz) Type (IEC/EN -) Type Type + Type Type Type Typical input VDC ma Input logic Default Positive on each channel User-configurable setting () Positive or negative, selection by channel Input response time Off-to-on ms 0. input filter time On-to-off ms 0. input filter time 0. input filter 0. input filter time Positive or negative, selection by channel.... line cycles line cycles Input limit values Frequency Hz 7 to At state Voltage V...0 DC...0 DC 7... AC STB DAI 70 0 AC (0/0 Hz) 9... AC Current ma min.. min. min. min. At state 0 Voltage V - + DC AC AC Current ma max.. max. 0. max. max. Input voltage values Permanent voltage V 0 DC AC AC Absolute maximum voltage V DC for. ms, decaying pulse 00 AC for cycle 00 AC for cycle Hot swapping supported Yes No Yes No Yes Reverse polarity protection Yes Isolation Field-to-bus V 000 DC 00 DC for minute 780 AC for minute for minute Channel-to-channel V Input protection Resistor-limited Current supplied to field device Electronic short-circuit protection (SCP) ma 00 per channel 0 per channel 0 max. Input filtering Default ms max. User-configurable setting () ms Tolerance ms ±0. ±0. I/O base STB XBA 000 STB XBA 000 Power Distribution Module PDM requirement Voltage V DC /0 AC Model STB PDT 00/0 STB PDT 00/0 Power protection Time-lag fuse on the PDM () 7

28 Characteristics (continued) Digital Input/Output Modules Characteristics of digital output modules Type of output module STB DDO 00 STB DDO 0 STB DDO 0 STB DDO STB DDO 00 STB DDO 0 STB DAO 80 Range Standard Basic Standard Basic Standard Number of output channels Output nominal values Voltage V DC /0 AC Current/channel A C Output logic Default Source for each channel User-configurable setting () () () () Output voltage values Permanent voltage V DC 0... AC Absolute maximum voltage V DC for. ms, decaying voltage pulse () Response time Off-to-on 0 0. A load On-to-off 7 0. A load 0 µs 0 0. A load 70 µs A load 0 0. A load A load 7 0. A load 9 0. A load 0 0. A load A load Hot swapping supported Yes No Yes No Yes Reverse polarity protection Yes Isolation Field-to-bus V 00 DC for minute 780 VAC for minute Channel-to-channel V 00 DC for minute Output protection (internal) Electronic overcurrent protection (OCP) () Output resets On-state leakage current ma 0 VDC max. Reset mode configurable with standard output modules and tripping data transmitted to network interface module NIM. Automatic fault recovery on basic output 0 VDC max. Maximum surge current 00 µs (no more than six/minute) 00 µs (no more than six/minute) 0 ms 0. ms 0 VDC 0 VAC 00 µs (no more than six/minute) 00 µs (no more 00 µs (no more than six/minute) 00 µs (no more than six/minute) Maximum load Capacitance µf 0 Inductance 0. Hz switch frequency L = 0./I x F () Minimum load current ma Short-circuit Electronic protection Per group ( channels per group) Feedback Per channel per channel, or per group ( channels per group) Fault recovery response Default setting Channel latched off requires user reset User-configurable setting () () () () Fallback modes User-configurable setting () (7) No (7) No (7) Fallback states Default Both channels to 0 All channels to 0 0 ( cycle) 0 ( cycles) Both channels to 0 I/O base STB XBA 000 STB XBA 000 Power Distribution Module PDM requirement Voltage V DC or 0 AC Model STB PDT 00/0 STB PDT 00/0 Power protection Time-lag fuse on the PDM (8) (9) Time-lag fuse on the PDM (8) Logic bus current VDC ma () Requires the Advantys configuration software. () Source or sink, selection by channel, () 00 AC for 0 s, 00 AC for cycle. () Transient voltage by Varistance and RC. () L = load inductance (H), I = load current (A), F = switch frequency (Hz). () Manual or automatic resetting. (7) Hold last value, go to a predefined value (0 or ) on one or more channels. (8) Standard modules: 0 A fuse, basic modules: A fuse. (9) Recommended user-supplied. A time-lag fuses on each channel. 8

29 Characteristics (continued) Digital Input/Output Modules Characteristics of relay output modules Type of output module STB DRC 0 STB DRA 90 Range Standard Number of channels relay outputs (form C, NO/NC contact pairs) relay outputs (form A/B, NO/NC contact pairs) Output nominal values Voltage V DC, /0 AC Current per contact VDC A 7 0 VAC A 7 Limit voltage values Permanent voltage V 0 DC, 0 0 AC Response time Off-to-on ms. 0 On-to-off ms.7 0 Switching capability VA 00 (resistive load) 00 (resistive load) Relay contact life Mechanical 0 operations Hot swapping supported Electrical 0 operations (resistive max. voltage and current) Yes Isolation Field-to-bus V 780 AC for minute Channel-to-channel V 00 AC for minute Bus-to-actuator bus V 00 DC for minute Output surge protection (internal) Yes, by GMOV (00 V rms, 8 VDC, 00 Joules 0 µs, 0. W max.) () Maximum surge current/relay A 0 capacitive t = 0 ms Minimum load current ma 0 Fault recovery response Shorted relay latched off, requires user reset Fallback modes User-configurable setting () Hold last predefined value on each channel Fallback states Default coils de-energized (when the fallback mode is predefined) Output logic Default Positive on both channels User-configurable setting () Positive or negative by channel I/O base STB XBA 000 STB XBA 000 Power Distribution Module PDM requirement Coil voltage V DC Model STB PDT 00/0 Coil protection 0 A time-lag fuse on PDM Logic bus current VDC ma 0 70 () For a higher protection, an RC circuit, a free-wheel diode or a GMOV peak limiter circuit, appropriate to the voltage, must be mounted in parallel across the terminals of each actuator. () Requires the Advantys configuration software. 9

30 References Digital Input/Output Modules References Standard digital input modules Input voltage Modularity (no. of channels) Compliance Reference IEC/EN - Weight VDC (sink) Type STBDDI0 0.0 (sink) Type + STBDDI0 0. (sink) Type STBDDI0 0. VAC Type STBDAI VAC Type STBDAI70 0. Basic digital input modules Input voltage Modularity (no. of channels) Compliance Reference IEC/EN - Weight VDC (sink) Type + STBDDI 0. (sink) Type STBDDI 0. Standard digital output modules STB XBA 000 STB DDI 0 STB DDO 00 Output voltage Output current Modularity (no. of channels) Compliance Reference IEC/EN - Weight VDC 0. A (source) Yes STBDDO00 0. A (source) Yes STBDDO A (source) Yes STBDDO0 0.0 (source) Yes STBDDO00 0. /0 VAC A Yes STBDAO80 0. Basic digital output modules Output voltage Output current Modularity (no. of channels) Compliance Reference IEC/EN - Weight VDC 0. A (source) Yes STBDDO 0.0 (source) Yes STBDDO0 0. Standard relay output modules Output voltage Output current Modularity (no. of channels) Compliance Reference IEC/EN - Weight VDC or /0 VAC A Yes STBDRC A Yes STBDRA Separate parts Description Base width inches (mm) For I/O modules Reference Weight I/O bases 0. (.9) STB DDI STB DDO STBXBA STB XBA 000 STB DRC (8.) STB DAI STB DAO STB DRC STBXBA (8.) STB DRA STBXBA Description Characteristics Type For I/O modules Reference Weight Field wiring connectors (sold in lots of 0) contacts Screw-type STB DDI STB DDO Spring-type STB DDI STB DDO STBXTS STBXTS contacts Screw-type STB DAI STB DAO STB DRC STB DRA STBXTS Spring-type STB DAI STB DAO STB DRC STB DRA STBXTS Description Use for Sold in lots of Reference Weight Keying pins Modules 0 STBXMP7700 I/O connectors 9 STBXMP7800 User-customizable label sheets () I/O bases and modules STBXMP700 STB XBA 000 STB DRA 90 () A template for the user-customizable label sheets is supplied with the documentation mini-cd-rom. 0

31 Dimensions, wiring Digital Input/Output Modules Dimensions Side view STB DDI/DDO pp0 STB DDI/DDO pp STB DAI ppp0/dao 80 STB DRC 0 STB DRA 90.7 (70) (). () A A A ().7 () B B B.0 (8.).7 (9).97 (7.) 0. (.9) 0.7 (8.) () STB XBA 000/000/000 I/O bases () STB XTS p0/p0 connectors Wiring Digital input modules STB DDI 0 STB DDI 0/ STB DDI 0/. (8.) Dual Dimensions inches mm Sensor + IN A Sensor Sensor + + IN IN A Sensor Sensor Sensor A Sensor or B Sensor Sensor + + IN IN B Sensor Sensor Sensor B STB DAI 0 STB DAI 70 A A Sensor L N IN Sensor L N IN or B or B Sensor Sensor

32 Wiring (continued) Digital Input/Output Modules Wiring (continued) Digital output modules for direct current STB DDO 00 Actuator () + 0. A A or B Actuator () STB DDO 0 Two field actuators receiving field power from external VDC power supply instead of the PDM Two two-wire actuators wired to use field power from the power distribution module Actuator () + or. A A B Actuator () A B Actuator (). A Actuator () + VDC STB DDO 0/ STB DDO 00/0 Actuator Actuator Actuator Actuator A B Actuator Actuator Actuator Actuator Actuator Actuator A B () Actuator protected by external fuse (depending on use). () Actuator protected by fuse on power distribution module (0 A fuse with STB PDT 00/00 or A fuse with STB PDT 0/0).

33 Wiring (continued) Digital Input/Output Modules Wiring (continued) Digital output modules for alternating current STB DAO 80 Actuator () PE L N 0. A A 0 V A or B Actuator () A 0 V Digital output modules for direct/alternating current (relay) STB DRC 0 STB DRA 90 Actuator Actuator A 0 V A Actuator Actuator 7 A 0 V 7 A 0 V A A 0 V Actuator Actuator N P /0 VAC B 7 A 0 V Actuator 7 A 0 V Actuator N P /0 VAC B () Actuator protected by external fuse (depending on use). () Actuator protected by fuse on power distribution module (0 A fuse with STB PDT 00/00 or A fuse with STB PDT 0/0).

34 Selection guide Analog Input/Output Modules Applications Analog input modules For voltage For current Number of channels inputs Range V 0 0 V 0 0 ma 0 ma Resolution bits + sign 9 bits + sign 0 bits bits 0 bits Load current/channel (outputs) Response time.0 ms for both channels Acquisition period Update time Field wiring connector 0 ms for both channels Two STB XTS 00 (-channel) screw-type connectors or two STB XTS 00 (-channel) spring-type connectors Base STB XBA 000 Power Distribution Modules PDM () Voltage VDC Part numbers STB PDT 00/0 Isolation Field-to-bus 00 VDC for minute Channel-to-channel 0 VDC (when sensor voltage is separate from logic bus voltage) Fallback states Protection against Reverse polarity Yes Short circuit and overload Sensor power Yes, time-lag fuse on the Power Distribution Module PDM Electronic short-circuit protection (SCP) Range Standard Basic Standard Basic Module number STB AVI 70 STB AVI 7 STB AVI STB ACI 0 STB ACI Page 9 () One Power Distribution Module PDM is required per voltage group. () Hold last value: reset to 0 V on both channels; go to a predefined value (between 0 V and full scale) on each channel.

35 0 Analog output modules For multirange For voltage For current inputs outputs Thermocouple B, E, J, K, R, S and T RTD Pt 00, Pt 000, Ni 00, Ni 000, Cu 0 ± 80 mv V V, V 0 0 V 0 0 ma 0 ma bits + sign 9 bits + sign bits or bits + sign 0 bits bits 0 bits ma 0 ma.0 ms plus settling time both channels ms (depending on the range) 0 ms for both channels ms for both channels Two STB XTS 00 (-channel) screw-type connectors or two STB XTS 00 (-channel) spring-type connectors STB XBA 000 VDC STB PDT 00/0 00 VAC for minute 00 VDC for minute 0 VDC (when actuator voltage is separate from logic bus voltage) 0 V on channels () 0 V on channels () ma on channels Yes Yes, time-lag fuse on the Power Distribution Module PDM Recommended user-supplied. A time-lag fuses on each channel Yes, time-lag fuse on the Power Distribution Module PDM Standard Basic Standard Basic Standard Basic STB ART 000 STB AVO STB AVO 0 STB AVO STB ACO 0 STB ACO 9

36 Presentation, description Analog Input/Output Modules Presentation The STB analog inputs allow the acquisition of various analog values encountered in industrial applications. The STB analog outputs are used to control analog field devices such as variable speed drives, proportional control valves, etc. The standard analog I/O offering is defined as follows: b analog input modules: v one with ± 0 V, single-ended analog input channels v one with x 0 0 ma, single-ended analog input channels v one with thermocouple, RTD or mv channels b analog output modules: v one with single-ended analog output channels configurable for 0 0 V or ± 0 V v one with single-ended analog current output channels at 0 0 ma The basic analog I/O offering is defined as follows: b analog input modules: v one with x 0 0 V, single-ended analog input channels v one with ± 0 V, single-ended analog input channels v one with x 0 ma, single-ended analog input channels b analog output modules: v one with x 0 0 V, single-ended analog current output channels v one with ± 0 V, single-ended analog current output channels v one with single-ended analog output channels at 0 ma Description The front panel of a typical analog input/output module features: A location for a user-customizable label A display block showing the state of the module (RDY, ERR with standard module, RDY with basic module) A color-coded module identification stripe Two receptacles for field-wiring connectors To be ordered separately: b I/O base width 0." (.9 mm) STB XBA 000. The base features a location for the user-customizable label. b Removable screw terminal (-point) STB XTS 00 or removable spring terminal (-point) STB XTS 00. b Use of the grounding kit for connecting the cable shielding is compulsory. The grounding kit can also be used to secure cables in installations subject to severe vibration: STB XSP 000 grounding kit, STB XSP 00 connectors for cable widths. to mm or STB XSP 00 connectors for cable widths to mm. b Mechanical keying pin to insert between: v the I/O module and this I/O base: STB XMP 7700 v the field wiring connector and this I/O module: STB XMP 7800 to ensure that the I/O module, I/O base and field wiring connector are properly matched b User-customizable label sheets: STB XMP 700

37 Characteristics Analog Input/Output Modules Characteristics of analog input modules Type of input module STB AVI 7 AVI 70 AVI ACI 0 ACI ART 000 Type Basic Standard Basic Standard Basic Standard Number of input channels single-ended analog input channels analog input channels individually configurable for RTD, TC or mv operation Range ±0V 0 0 V 0 0 ma () 0 ma Pt 00, Pt 000, Ni 00, Ni 000 and Cu 0, or -wire RTD B, E, J, K, R, S and T thermocouples ± 80 mv Resolution bits 9 + sign + sign sign Maximum input (without damage) 0 VDC ma, 0 VDC ± 7. VDC Response time ms for both channels See page 8 for details Hot swapping supported Return data format Depends on NIM () IEC Yes Depends on NIM () Yes Depends on NIM () Update time ms 0 for both channels See page 8 for details Input filter Single low-pass filter at a nominal Hz Integral linearity ± 0.% of full scale, typical ±0.% of full scale ±0.% of full scale Differential linearity Monotonic Input impedance Ω 00 K y 00 Yes See page 8 for details Current supplied to field device 00 ma per channel (electronic short-circuit protection SCP) Source impedance kω max. Absolute accuracy ± 0.7% of full C ± 0.% of full C See page 8 for details Temperature drift ± 0.0% of full scale/ C See page 8 for details Isolation Field-to-bus V 00 DC for minute 00 AC for minute Field-to-sensor bus V 0 DC rms (when sensor bus is not used for field power) Addressing requirement words words ( data word ( words per per channel) channel) I/O base STB XBA 000 PDM requirement Voltage V DC words words ( data word ( words per per channel) channel) words ( data word per channel) words ( per channel + for cold-junction compensation) Model STB PDT 00/0 Logic bus current VDC ma 0 () If the STB ACI 0 module is configured with the STB SPU 000 software, a zero offset can be set, e.g. 0 ma. () Basic NIM modules do not support hot swapping of input/output modules. 7

38 Characteristics (continued) Analog Input/Output Modules Detailed characteristics of STB ART 000 analog input module Thermocouple range B E J K R S T Temperature unit C or F ( C by default) Nominal values C F Data resolution Increments of 0. C or F Broken wire detection Monitored independently on each channel Typical conversion times With internal cold-junction compensation With external cold-junction compensation Accuracy (thermocouple errors not included) With internal cold-junction compensation With external cold-junction compensation With internal cold-junction compensation With external cold-junction compensation ms ms 0 Hz 0 Hz 0 Hz 0 C C ±. ±. ±. ± ±. ±. 0 C C ±.8 ±.8 ± 7.0 ±. ±. ±.0 C C 0 C C 77 F F ± 8.8 ± 8.8 ± 9.8 ± 7. ±.8 ± 7.8 ± 0 F F ±. ±. ±. ± 9.9 ± 7. ± 9 77 F F 0 F F ±.8 Temperature probe range Pt 00 Pt 000 Ni 00 Ni 000 Cu 0 Type, or -wire (-wire by default) Temperature unit C or F ( C by default) Nominal values IEC C -00 to +80 (by default) -0 to F -8 to + (by default) -7 to US/JIS C F Data resolution Increments of 0. C or F Broken wire detection Monitored independently on each channel Max. wiring resistance -wire Ω 0 (IEC/US/JIS) 00 (IEC/US/JIS) or -wire Ω 0 (IEC/US/JIS) 00 (IEC/US/JIS) Typical conversion times Accuracy ( RTD errors not included) -wire ms 0 Hz 0 Hz or -wire ms 0 Hz 0 C internal C ± ± C external C ± ± 77 F internal F ±. ±. 77 F external F ±. ±. ± mv range Range of the scale mv ± 80 ( ) Data resolution Increments of 0.0 mv Typical conversion times ms 0 Hz 0 Hz Input impedance MΩ 0 typical C/77 F internal ± 0.% of full ambient C/77 F external ± 0.% of full ambient temperature 8

39 Characteristics (continued) Analog Input/Output Modules Characteristics of analog output modules Type of output module STB AVO AVO AVO 0 ACO ACO 0 Type Basic Standard Basic Standard Number of output channels single-ended analog output channels Range ± 0 V V V ± 0 V... 0 ma ma () Resolution bits 9 + sign 0 + sign 0 Maximum output current/channel ma max. 0 Response time ms plus settling time both channels Return data format IEC Update time ms for channels Typical conversion times µs 900 to ± 0.% of final value Short-circuit protection on the outputs Integral linearity Differential linearity Yes ± 0.% of full scale typical Monotonic Absolute accuracy ± 0.% of full C Temperature drift ± 0.0% of full scale/ C Isolation Field-to-bus V 00 DC for minute Field-to-actuator bus V rms 0 DC (when actuator bus is not used for field power) Fallback states Default setting V 0 V on channels ma on channels User-configurable setting () Hold last value; force to a user-specified state Drop to minimum output (0 ma) Hold last value; force to a user- specified state Fallback mode Predefined User configurable Predefined User configurable Addressing requirement output data words output data words and non-contiguous input data bytes (for status diagnostic modules and channels) output data words output data words plus for the power-down state configurable parameter I/O base STB XBA 000 PDM requirement Voltage V DC Model STB PDT 00/0 Logic bus current VDC ma 80 () If the STB ACI 0 module is configured with the STB SPU 000 software, a zero offset can be set, e.g. 0 ma. () Requires the Advantys configuration software. 9

40 References Analog Input/Output Modules STB AVI 70 STB AVO 0 STB XBA 000 STB XSP 000 STB XSP 00/00 References Standard analog input modules Input current Modularity (no. of channels) Compliance Reference IEC/EN - () A template for the user-customizable label sheets is supplied with the documentation mini-cd-rom. Weight ± 0 V Yes STBAVI ma Yes STBACI0 0. Thermocouple, RTD, ±80mV Yes STBART000 Basic analog input modules Input current Modularity (no. of channels) Compliance Reference IEC/EN - Weight V Yes STBAVI V Yes STBAVI 0. 0mA Yes STBACI Standard analog output modules Output current Modularity (no. of channels) Compliance Reference IEC/EN - Weight V or ± 0 V Yes STBAVO ma Yes STBACO0 0.7 Basic analog output modules Output current Modularity (no. of channels) Compliance Reference IEC/EN - Weight V Yes STBAVO V Yes STBAVO 0. 0mA Yes STBACO Separate parts Description Base width For I/O Reference Weight STB AVO 0 modules I/O base 0." (.9 mm) STB AVI STB ACI STB ART STB AVO STB ACO STBXBA Description Type For I/O modules Field wiring connectors ( points) Screw-type Spring-type STB AVI STB ACI STB ART STB AVO STB ACO STB AVI STB ACI STB ART STB AVO STB ACO Sold in lots of Description Use for Sold in lots of Grounding kit Grounding for shielded cables, with parts: bar ( m) and lateral supports Terminals for grounding kit Reference Weight 0 STBXTS STBXTS Reference Weight STBXSP000 Cables (width... mm ) 0 STBXSP00 Cables (width... mm ) 0 STBXSP00 Keying pins Modules 0 STBXMP7700 I/O connectors 9 STBXMP7800 Usercustomizable label sheets () I/O bases and modules STBXMP700 0

41 Dimensions Analog Input/Output Modules Dimensions STB AVI/ACI/ART/AVO/ACO.7" (70) ()." () A ().7" ().0" (8.) B.7" (9) 9.7" (7.) 0." (.9) Dual Dimensions inches mm () STB XBA 000 I/O base. () STB XTS 00/00 connectors.

42 Wiring Analog Input/Output Modules Wiring Analog input/output modules STB AVI 70 Two isolated analog sensors VDC from island sensor bus-to-power analog field devices Sensor Sensor + VDC U U + + () () A B Sensor Sensor VDC U 0 V VDC U 0 V + + () () A B STB ACI 0 Two isolated analog sensors VDC from island sensor bus-to-power analog field devices Two analog sensors required a supply loop Sensor Sensor + VDC I I + + () () A B Sensor Sensor VDC I 0 V VDC I 0 V + + () () A B Sensor Sensor + + Drawing in progress () I I A B STB ART 000 Wiring of -wire and -wire RTD Wiring of -wire RTD Sensor -wire Sensor -wire U U () () A B Sensor -wire Sensor -wire U U () () A B () Use of STB XSP 000 grounding kit with STB XSP 00/00 terminals is compulsory.

43 Wiring (continued) Analog Input/Output Modules Wiring (continued) STB ART 000 (continued) Wiring of -wire RTD in high noise operating environments Wiring of -wire thermocouple and mv sensor Sensor -wire Sensor -wire U U () () () () A B Sensor -wire thermocouple Sensor (mv) Tc U + () - () A B STB AVO 0 Two isolated analog actuators VDC from island actuator bus-to-power analog field devices + VDC Actuator + U Actuator + U () () A B c V Actuator + U 0 V c V Actuator + U 0 V () () A B STB ACO 0 Two isolated analog actuators VDC from island actuator bus-to-power analog field devices Actuator + c V I () A Actuator I + () A Actuator + c V I () B Actuator c V + I 0 V B () Use of STB XSP 000 grounding kit with STB XSP 00/00 terminals is compulsory. () Double-shielded cable.

44 Presentation, description, dimensions Parallel Interface for TeSys U-Line Applications Presentation The STB EPI parallel interface is a component of the distributed I/O system designed for the remote connection of TeSys U-Line starter-controllers ( inputs and 8 outputs). Presentation of U-Line starter-controllers The TeSys U-Line starter-controller is a direct motor-starter which performs the following functions: b Protects and controls single phase or -phase motors: v disconnecting power v short circuit and overcurrent protection v thermal overload protection v power switching b Application control: v protection alarms, application monitoring (amount of time in use, number of faults, motor current values, etc.) v log Components of a U-Line starter combined with an STB EPI module () The starter-controller functions are performed by a click-lock adjustment that removes the need for cables; b on a power base b a c V control unit (LUC B/D/C/M ppbl) for 0. to A motors b a parallel link communication module (LUF C00) b options (additional contacts, inverter blocks) Each of the channels of the STB EPI application-specific module features: b outputs (starter control and reverse direction control) b inputs (circuit-breaker status, contactor status, and direction feedback) () TeSys U-Line components: consult our catalog Starters and basic TeSys U-Line equipment. Description The STB EPI parallel interface features: A display block with LEDs for the various states of the starter-controllers A location for a user-customizable label A color-coded module identification stripe (black) A selection switch used to view each motor-starter state RJ connectors for connecting U-Line starter-controllers To be ordered separately: STB XBA 000 base width.0" (8. mm). Includes a location for user-customizable labels. Dimensions STB EPI.7 (70).7 (0) 0.9 ().7 (). ().0 (8.) Dual Dimensions inches mm

45 Characteristics, references Parallel Interface for TeSys U-Line Applications Characteristics Type of module STB EPI Hot swapping supported Yes Connection Via RJ connectors Power supply Via STB PDT 00/0 c V power distribution module Protection Via STB PDT 00/0 power distribution module fuse Consumption On c V logic bus ma max. 0 On c V sensor bus ma max. 00 On c V actuator bus ma min. 0 (with all 8 outputs at state 0), 80 ma per output at state (max. 0 ma for 0 ms) Characteristics of inputs Number of inputs Nominal values Voltage c V Limit values At state Voltage V...0 Current ma min. At state 0 Voltage V Current ma max. 0. Protection Resistor-limited Characteristics of outputs Number of outputs 8 Rated power voltage c V Starter-controller compatibility TeSys U-Line A (LUB base) and A (LUB base). TeSys bases can be fitted with one of the following c V control units: - standard LUCAppBL - advanced LUCBppBL, LUCCppBL and LUCDppBL - multifunction LUCAppBL Short circuit and overload protection Yes, per channel References Parallel interface for TeSys U-Line starter-controllers Power supply type Voltage Reference Weight c V STBEPI 0. Separate parts Description Use Sold in lots of Reference Weight Base.0" (8. mm) Keying pins User-customizable label sheets () Application-specific module mounted on DIN rail For application-specific module Customization of modules and bases STBXBA STBXMP7700 STBXMP700 STB XBA 000 STB EPI Description Use Length Reference Weight Connection cables An RJ connector at each end Linking the STB EPI module to the U-Line starter-controller 0. m LU9R0 0.0 m LU9R0 0.0 m 90NTW0000 m LU9R0 0. m 90NTW0000 m 90NTW000 () A template for the user-customizable label sheets is supplied with the documentation mini-cd-rom

46 Presentation, description Counter Module Presentation Following operations all require counting parts or events, grouping objects, controlling incoming and outgoing data streams, as well as measuring lengths or positions. The STB EHC 00 counter module performs these functions for an automation island (controlled by a master connected to the island) with a maximum counting frequency of 0 khz. The STB EHC 00 module, with counting channel, accepts as input typical c V sensors: proximity sensors, photo-electric detectors, incremental encoders or mechanical contacts (). As output, the module features digital c V 0. A outputs. The Advantys configuration software is used to select one of the six functions the module can perform. () The counting frequency is limited to 00 Hz with mechanical contacts. Description The front panel of the STB EHC 00 counter module features: A display block with 8 display LEDs: v RDY LED: module is operational v FLT LED: steady: module fault; blinking: c V power distribution fault or output short-circuit (depending on pattern) v OUT or OUT LEDs: output or active (steady) or short-circuit (blinking) v IN A, IN B, RST and EN LEDs: status of input channels Location for user-customizable labels Color-coded module identification stripe (black) A connector for an STB XTS 0 removable spring-type 8-pin connector (must be ordered separately) To be ordered separately: b STB XBA 000 base width.0" (8. mm). Includes a location for user-customizable labels. b STB XTS 0 removable connector with 8-pin Use of the grounding kit for connecting the cable shielding is recommended (compulsory for 0 khz counting): STB XSP 000 grounding kit STB XSP 00 connectors for cable widths. to mm or STB XSP 00 connectors for cable widths to mm

47 Functions Counter Module Operation Counter channel block diagram IN A and IN B counting inputs EN and RST auxiliary inputs Counter block Output function block Output function block Output for c V 0. A counters OUT and OUT High threshold Low threshold Compare block Island bus master Counter status Compare status Counter and capture values Depending on the counting function used (see functional characteristics page 7), the I/O for the STB EHC 00 module are allocated to: b Input IN A, connected to a sensor. b Inputs IN B, EN and RST, connected to a sensor or activated by the master via the field bus. The -bit counter value is compared to the two threshold values (configured with the configuration software) and is used to activate the two OUT and OUT outputs, without requiring processing by the bus master controller. Reports such as the counting value or the two status bits (counter status, compare status) are sent to the bus master controller. 7

48 Characteristics Counter Module Functional characteristics Configurable functions Number of the configurable functions (using the Advantys configuration software) Frequency meter Count events Measure time periods Down counting Loop (modulo) counting Up/down counting OUT and OUT output functions This function measures the frequency received on the IN A input. This frequency is always expressed in Hz (number of pulses per second), with a precision of Hz. Also measures the speed in Units per second. The number of points to be received on the IN A input, corresponding to one unit, must be defined from one up to. The maximum frequency on the IN A input is 0 khz in both cases (without filtering). Response time: < 0. s (frequency /0 khz), < s (frequency 0. khz). This function provides the value of the number of pulses received on the IN A input during a selectable time unit. The time unit is configurable: 0.s, s, 0 s or minute. The IN B input can be used to reset the internal time basis which provides the time unit. The maximum number of pulses counted during a time unit is up to. The minimum pulse duration on the IN A input is 0 µs (without filtering). Response time: < 0. ms. Measures the elapsed time during an event or between two events (on IN A input) according to the selectable time base of 0 µs, 00 µs or ms. The maximum event duration is 0.,., or. seconds, respectively. The maximum frequency on the IN A input is 00 Hz. Response time: < 0. ms. The IN B input starts or restarts the counter by resetting the set point value defined by the high threshold value. When the counter is running, any pulse received on the IN A input decreases the counter. The counter stops when it reaches 0. The maximum set point value is. The maximum frequency on the IN A input is 0 khz (without filtering). Response time: < 0. ms. The IN B input starts or restarts the counter by resetting the set point value to 0. The IN B input also triggers the capture of the previous counting value before the counter is reset to 0. When the counter is running, any pulse received on the IN A input increases the counter. The counter turns back to zero automatically when the pulse number received equals the module defined by the high threshold value. The maximum modulo value is. The maximum frequency on the IN A input is 0 khz (without filtering). Response time: < 0. ms. The RST input starts or restarts the counter by resetting the preset value. When the counter is running, counting increases or decreases according to the pulses received on the IN A and IN B inputs (default settings: IN A increases the counter and IN B decreases the counter). By configuration: v the IN B input can define the counting direction of the pulses received on IN A v the IN A and IN B inputs can receive the signals of an incremental encoder. The counter value is limited to 0 as low limit and to as high limit. Response time: < ms According to requirements, each of the counting module s two outputs can be configured for one of the following operating modes: v No direct action: the counter status and status words are processed by the island master. v The output is activated when the counter value is less than the low threshold v The output is activated when the counter value is between the low threshold and the high threshold v The output is activated when the counter value is greater than the high threshold v A pulse is generated on the output when the low threshold is exceeded (when counting down) v A pulse is generated on the output when the low threshold is exceeded (when counting up) v A pulse is generated on the output when the high threshold is exceeded (when counting down) v A pulse is generated on the output when the high threshold is exceeded (when counting up) v The output is activated when the counter is in RUN mode (only available when counting down) v The output is activated when the counter is in STOP mode v The output is activated when the capture value is less than the low threshold (only available for the modulo function) v The output is activated when the capture value is between the low threshold and the high threshold (only available for the modulo function) 8

49 Characteristics (continued) Counter Module Characteristics Electrical characteristics Type of module STB EHC 00 Frequency on counting inputs khz channel max. 0 Hot swapping supported Yes Mounting base STB XBA 000 PDM (power distribution module) required Voltage provided V Reference STB PDT 00/0 Consumption on the logic c V ma 0 typical, 00 max. bus Isolation Between island bus and I/O c V 00 Characteristics of inputs Input type Counting inputs (IN A and IN B) Auxiliary inputs (EN and RST) Nominal values Voltage c V (limits 9. 0 V) Current ma Limit values At state c 0 V, minimum ma current (at c V) At state 0 c - V, maximum. ma current Logic Sink Filter time Analog µs. Digital ms None (max. count 0 khz) () 0.0 (max. count khz).0 (max. count 00 khz) Characteristics of outputs Output type OUT and OUT outputs Rated power voltage c V (limits 9. 0 V) Nominal current A 0. ( A per module) Logic Positive (by default), positive on or channels, negative on or channels (configurable) Response time See functional characteristics, page 7 Leakage current At state 0 ma max. 0. Voltage drop At state V max. Max. load inductance Henry 0. at Hz, or L = 0./I x F where L: load inductance, I: load-in current, and F: switching frequency Short-circuit and overload Type per channel protection Default fallback positions Default Configured By current limiter (. A typical/. A max.) and electronic tripping (manual or automatic reset) Set to 0 state for both channels Maintain at the hold last value, set to state 0 or for each channel () Use of STB XSP 000 grounding kit with STB XSP 00/00 terminals is compulsory. 9

50 References, dimensions, Counter Module References Description Input type Reference Weight Counter module channel 0 khz / wire c V detectors Incremental encoder c V Mechanical contacts STBEHC00 Separate parts Description Use for Sold in lots of Reference Weight Base.0" (8. mm) Module mounted on DIN rail STBXBA000 Removable connector 8-pin spring-type STBXTS0 STB XBA 000 STB EHC 00 Grounding kit () Terminals for grounding kit Grounding for shielded cables, with parts bar ( m) and lateral supports STBXSP000 Cable widths. to mm 0 STBXSP00 Cable widths to mm 0 STBXSP00 Keying pins Counter module 0 STBXMP7700 User-customizable label sheets () Customization of modules and bases STBXMP700 () Use of STB XSP 000 grounding kit with STB XSP 00/00 terminals is recommended (compulsory for 0 khz counting). () A template for the user-customizable label sheets is supplied with the documentation mini-cd-rom. STB XSP 000 STB XSP 00/00 Dimensions STB EHC 00.7 (70).7 (0).7 (). () 0.9 ().97 (7.).7 (9)

51 Wiring Counter Module Wiring Connection to STB XTS 0 removable terminal block for 8 spring-loaded terminals + IN () () IN + Input IN A Input IN B Output OUT Input EN Input RST Output OUT Nota : The c V power supplies for the sensors and actuators are provided by the STB PDT 00 power distribution module via the sensor and actuator buses of the island. () Use of STB XSP 000 grounding kit is recommended (compulsory for 0 khz counting).

52 Presentation Configuration Software Presentation The configuration process of the standard system () includes the following steps: b If necessary, configure all the standard I/O modules for (digital, analog, and application-specific). Each modules has a default configuration. b Configure the reflex functions handled at the island level (with the standard digital and analog I/O modules). These settings are defined using the STB SPU 000 dedicated Advantys configuration software. This program also allows you to: b Optimize island performance by giving a priority assignment to processing for certain modules. b Assign mandatory modules (modules whose presence and correct operation are required for the island to operate correctly). b Declare in the island, the external CANopen devices (such as Advantys FTB IP7 monobloc I/O splitter boxes, Festo CPV-CO electropneumatic valves, other CANopen V.0 devices validated by Schneider Electric. b Check the configuration for compliance and power consumption. User interface The main screen of the configuration software gives access to all the available tools in an ergonomic, easy-to-use fashion. 7 8 This main screen provides a general view comprising several windows and toolbars that can be moved about the screen: Menu bar, giving access to all functions Toolbar containing icons used for direct access to editors and the most frequently used functions Application browser, for browsing the various islands and segments of each island Main window for viewing islands and segments. By selecting a module, you can access the following editors: v Module Editor v Reflex Action Editor v Power supply and memory resource analysis v Overview of the I/O image v Diagnostics The last two items are available only if the island is online. Catalog browser for all the components, sorted by category (networks, power supply, digital I/O, etc.) Power supply and memory resource analysis window 7 Log window displaying the results of operations performed by the configuration software during a work session on an island 8 Status bar () Basic modules cannot be configured (default parameters are used).

53 Functions Configuration Software Functions Module Editor The editor gives access to tabs, depending on the way in which the island is connected to the network or fieldbus: General, Properties, I/O Image and Diagnostics. General tab This read-only tab (island online or offline), provides general information and displays the key technical characteristics of the selected module. CANopen bus interface NIM module STB ACO0 module with analog output channels STB NCO CANopen bus interface module Properties tab This tab, accessible when the island is offline, contains the operating settings for the selected module, some of which can be changed by the user. Among other things, you can: b Select the display format for parameters: decimal or hexadecimal. Identify a module as mandatory. That module is then designated as critical for island operations. If the module fails or is not present, the island will no longer be operational (it will stop). b Declare the scanning priority for the digital input modules. This allows you to assign more frequent scanning to up to 0 modules per island, so that they will be considered as fast modules. b Configure the module. The configurable items (cells with white bacrounds) depend on the type of I/O module. Depending on the type of module, the main parameters are: v user label assignment: free text field, max. 0 characters v digital input modules: filter time and choice of positive or negative logic for each channel v digital output modules, the behavior upon short-circuit or overload (manual or automatic reset), the choice of positive or negative logic for each channel, the default fallback position for each channel (0 or state) v analog input modules, with the offset and scaling for each channel v analog output modules, with the refresh rate and the default fallback position (hold the value or assume a predefined value) for each channel v application-specific modules for TeSys U-Line motor-starters, the choice of positive or negative logic for each channel, the behavior upon short-circuit or overload (manual or automatic reset), and the default fallback position for each channel (0 or state) v counter module, the definition of the counting function and its operation, see page v network interface modules, the amount of memory reserved for data exchanges with the Operator Terminal (directly connected to the network interface module). This data is also accessible by the island's master device. If an island has a CANopen extension, a parameter allows you to define the address of the last standard CANopen device connected to the island. Online help for the selected module can be displayed to show the limits and operating values of these parameters.

54 Functions (continued) Configuration Software Functions (continued) I/O Image tab This tab, accessible when the island is online, provides a table with data concerning the: b Input/output modules comprising the island (values and state of each module). b Operator Terminal connected to the network interface module. The length of this field (defined in the Properties tab of the network interface module) equals the maximum total size of the image table, less the words occupied by the image of the I/O modules. The total size of the I/O image table depends on the type of the network interface module. These I/O images can be displayed in two views: b Field bus or network view: each protocol transfers its data in a specific format. b Internal island bus view: the Modbus protocol is used. Diagnostics tab This tab allows the user to perform diagnostics for the island connected to the PC terminal where the Advantys Configuration Software resides. Analysis of the island s memory and power resources At any time during the configuration process, you can consult the following information as a percentage: b The power consumption at various voltages: v c V logic provided by the STB Np network interface module, v c V logic provided by the STB XBE 00 BOS extension module, v c V logic provided by the STB CPS auxiliary power supply, v c V provided by the STB PDT 00/0 power distribution module(s), v a /0 V provided by the STB PDT 00/0 power distribution module(s), b The usage of the memory integrated in the network interface module: v image field for inputs and outputs, v settings field for the island configuration data and reflex functions, v field dedicated to operator dialog. Downloading configuration data The software enables bi-directional transfer of configuration data: b From the PC to the RAM and Flash memory of the island network interface module in order to make the island operational. If the network interface module includes the STB XMP 0 KB removable memory card, data is written to the card, providing a backup. b From the NIM interface module to the PC. Importing/exporting EDS files When the island includes standard CANopen devices, you must use the software to import the description of those devices contained in the EDS files into the catalog database. Conversely, those descriptions may be exported to the master in the case of a CANopen, Profibus DP, INTERBUS or DeviceNet bus. Printing The Printing mode allows you to select the islands and topics to be printed. You can also print to a file in PDF or RTF format.

55 Functions (continued), references Configuration Software Functions (continued) Reflex Functions Editor For applications requiring short response times (< ms), the Configuration Software allows you to create reflex functions that work directly on the island output modules, thereby freeing the island master from parsing and processing them. These reflex functions can be associated with priority I/O modules to ensure the reliability of the response time. An island can call up to 0 reflex functions. These functions are created from blocks whose inputs are activated by digital or analog input channels and whose results activate a digital or analog output channel. You can nest two reflex functions. Reflex types and function blocks Various types of function blocks are available: Boolean logic function blocks: XOR block, AND blocks with inputs and output Timer/monostable blocks: when working, when idle, upon activation, and upon deactivation enable operational input operational input operational input AND output enable timer trigger reset delay-to-start timer time unit x terminal count output Rising/falling edge counting function blocks: on rising or falling edge, from 0 to, Compare function blocks on signed integers (-,78 to,77): i <, i >, < i >, i < and i > enable count input counter direction reset falling-edge counter counter preset output enable operational input outside-the-window compare threshold +/- threshold +/- output Digital Latch function blocks: on state 0 or or on rising or falling edge, memorize state 0 or Analog Latch function blocks: on state 0 or or on rising or falling edge, memorize the signed integer (0 to,) or unsigned integer (-,78 to,77) enable latch trigger operational input digital latch on falling edge output enable latch trigger analog input high-level analog latch output References The multilingual Configuration Software is compatible with the following operating systems: Windows 98 (second edition SE), Windows NT.0 (service pack u ), Windows 000 (service pack u ) and Windows XP. It includes online help () and is provided with an STB XCA 00 cable to connect the NIM to the PC (length m). Description Use Reference Weight Advantys Configuration Software Single workstation STBSPU000 Replacement parts Cable to connect the PC to the network interface module NIM Length m STBXCA00 STB SPU 000 () Multilingual: English, French, German, Spanish and Italian.

56 Presentation Phaseo Regulated Power Supplies ABL7 power supplies The ABL7 range of power supplies is designed to provide the DC voltage required by the control circuits of automation system equipment. Split into three sizes, this range meets all the needs encountered in industrial, commercial and residential applications. Single-phase or -phase (), of the electronic switch mode type, they provide a quality of output which is suitable for the loads supplied and compatible with the mains supply available in the equipment. Clear guidelines are given on selecting protection devices which are often used with them, thus providing a comprehensive solution which can be used in total safety. Phaseo switch mode power supplies These switch mode power supplies are totally electronic and regulated. The use of electronics makes it possible to significantly improve the performance of these power supplies which offer: b compact size b integrated overload, short-circuit, overvoltage and undervoltage protection b a very wide range of permissible input voltages, without any adjustment required b a high degree of output voltage stability b good performance b LED indicators on the front panel / A power supply A power supply 0 A power supply Phaseo power supplies are available in single-phase and -phase versions (). They deliver a voltage which is precise to %, whatever the load and whatever the type of supply, within a range of 8 to V for single-phase, or 0 to 0 V for -phase. Conforming to IEC standards and UL and CSA certified, they are suitable for universal use. The inclusion of overload and short-circuit protection makes downstream protection unnecessary if discrimination is not required. ABL7 RE and ABL7 RP supplies are also equipped with an output undervoltage control which causes the product to trip if the output voltage drops below 9 V, in order to ensure that the voltage delivered is always usable by the actuators being supplied. All the products are fitted with an output voltage adjustment potentiometer to compensate for any line voltage drops in installations with long cable runs. Most of our power supplies are designed for direct mounting on and 7 mm 7 rails. The single-phase power supplies referenced in this catalog are specially adapted to tie-up with the modules (Network Interface Modules and Power Distribution Modules): b Universal single-phase supplies ABL7RE: v power between 8 W ( A) and 0 W (0 A) v compact size v for all machine equipment b suitable for use in automation system environments based on any Modicon platforms requiring a c V supply. b Universal single-phase supplies ABL7RP: v power between 0 W ( A) and 0 W (0 A) v output voltage available: c, and 8 V v input filter (PFC) for commercial and residential environments (conforming to standard EN 000--) v two operating modes possible for handling of overload and short-circuit faults: - AUTO mode which provides automatic restarting of the power supply on elimination of the fault - MANU mode which requires manual resetting of the power supply to restart. Resetting is achieved by switching off the power supply. () For -phase power supplies, consult our catalog Automation and control - Interfaces, I/O splitter boxes and power supplies. For other Phaseo power supplies, refer to the Square D Digest, page -, or to catalog 80CT000R/0.

57 Presentation (continued) Phaseo Regulated Power Supplies Using c V b Using c V enables so-called protection installations (PELV) to be built. Using PELV is a measure designed to protect people from direct and indirect contact. Measures relating to these installations are defined in publication NF C -0 and in standard IEC --. b The application of these measures to the electrical equipment in machines is defined in standard NF EN 00- and requires: v that the voltage used is below 0 V DC in dry environments and below 0 V in damp environments, v the connection of one side of the PELV circuit, or one point of the source, to the equipotential protection circuit associated with higher voltages, v the use of switch gear and control gear on which measures have been taken to ensure safety separation between power circuits and control circuits. b A safety separation is necessary between power circuits and control circuits in PELV circuits. Its aim is to warn of the appearance of dangerous voltages in c V safety circuits. b The reference standards involved are: v IEC 8-- and EN 8-- (safety transformers), v IEC (coordination of isolation). Telemecanique power supplies meet these requirements. b Moreover, to ensure that these products will operate correctly in relation to the demands of their reinforced isolation, it is recommended that they be mounted and wired as indicated below: v they should be placed on a grounded mounting plate or rail, v they should be connected using flexible cables, with a maximum of two wires per connection, and tightened to the nominal torque, v conductors of the correct insulation class must be used. b If the DC circuit is not connected to an equipotential protection conductor, an earth leakage detector will indicate any accidental insulation faults. Operating voltage b The permissible tolerances for the operating voltage are listed in publications IEC - and DIN 90. b For nominal voltage Un = c V, the extreme operating values are from -% to +0% of Un, whatever the supply fluctuations in the range -0% to +% (defined by standard IEC 8) and load variations in the range 0-00% of In. All Telemecanique c V power supplies are designed to provide a voltage within this range. b It may be necessary to use a voltage measurement relay to detect when the normal voltage limits are being exceeded and to deal with the consequences of this. 7

58 Selection Phaseo Regulated Power Supplies Selection of power supplies The characteristics to be taken into account when selecting a power supply are: b The required output voltage and current. b The supply voltage available in the installation. This may however result in several products being selected as suitable. Other selection criteria must therefore be taken into account. There are possible power supply options for modules: b Option : a single power supply for the network interface module, sensors and actuators. Advantages: simple and low-cost. b Option : power supplies, for the network interface module and for the sensors/actuators. Advantage: separation of the bus and fieldbus. b Option : power supplies, for the network interface module, for the sensors and for the actuators. Advantage: suitable for applications demanding minimum interference at the inputs See power supply combination table on page ). The quality of the power supply The Phaseo range is the ideal solution because it ensures precision to % of the output voltage, whatever the load current and the input voltage. In addition, the wide input voltage range of Phaseo power supplies allows them to be connected to all supplies within the nominal range, without any adjustment required. The Phaseo RP family can also be connected to c 0 and 0 V supply. Harmonic pollution (power factor) The current drawn by a power supply is not sinusoidal. This leads to the existence of harmonic currents which pollute the supply voltage. European standard EN limits the harmonic currents produced by power supplies. This standard covers all devices between 7 W and 000 W, drawing up to A per phase, and connected directly to the power supply. Devices connected downstream of a private, low voltage, general transformer are therefore excluded. Regulated switch mode supplies always produce harmonic currents; a filter circuit (Power Factor Correction or PFC) must therefore be added to comply with standard EN Phaseo ABL7RP power supplies conform to standard EN and can therefore be connected directly to public power supplies. Electromagnetic compatibility Levels of conducted and radiated emissions are defined in standards EN 0 and EN 0. All products in the Phaseo range have class B certification and can be used without any restrictions due to their low emissions. Behavior in the event of short-circuits Phaseo power supplies are equipped with an electronic protection device. This protection device resets itself automatically on elimination of the fault (around second for ABL7RE/RP), which avoids having to take any action or change a fuse. In addition, the Phaseo ABL7RP ranges allow the user to select the reset mode in the event of a fault: b in the AUTO position, resetting is automatic, b in the MANU position, resetting occurs after elimination of the fault and after switching the power off and back on. This feature allows Phaseo ABL7RP power supplies to be used in installations where the risks associated with untimely restarting are significant. Selection of reset mode Reset mode is selected by the microswitch on the front panel of the product. 8

59 Characteristics Phaseo Regulated Power Supplies Technical characteristics Type of power supply ABL7RE ABL7RP Approvals UL, CSA, TÜV, CTick, CE Conforming to standards Input circuit Safety UL 08, CSA. no. 90 EMC EN 008-, IEC (EN 008-) Low frequency harmonic currents EN LED indication Orange LED Orange LED Input voltages Rated values V a 00 0 a 00 0, c 0 0 compatible () Permissible values V a 8 single-phase a 8, c 00 0 compatible () Permissible frequencies Hz 7 Efficiency at nominal load > 8% Output circuit Current consumption Ue = 0 V A 0.7 A (8 W)/0.9 A (7 W). A (0 W)/. A (0 W) Ue = 0 V A. A (8 W)/.7 A (7 W). A (0 W)/. A (0 W) Current at switch-on A < 0 Power factor 0. approx approx. LED indication Green LED Green LED Nominal output voltage (U out) V c, and 8 Nominal output current A ///0 //0 Accuracy Output voltage Adjustable from 00 to 0 % Line and load regulation ± % Residual ripple - interference mv < 00 (peak-peak) Micro-breaks Holding time at I max and Ve min ms > 0 > 0 Temporary overloads Protection against () Compatible input voltage, not indicated on the product. 0. A (0 W)/0. A (7 W)/0.7 A (0 W) 0.7 A ( W)/. A (0 W) 0.78 A (0 W)/0.87 A (7 W) /.9 A (0 W).9 A ( W)/.78 A (0 W) Permissible inrush current See page 0 (U out >9V) Short-circuits Permanent/automatic restart Permanent/automatic restart or restart after switching off mains power Overload. In Overvoltage Tripping if U >. Un Undervoltage Tripping if U < 0.8 Un Operational and environmental characteristics Connections Input AWG (mm)² Output AWG (mm²) Tightening torque Ambient conditions - # ( x. + ground) - # ( x. + ground), multiple output, depending on model lb-in. (0.) (N m) Storage temperature F ( C) - to +8 (- + 70) Operating temperature F ( C) - to +0 (0 + 0) derating as from F (0 C), mounted vertically Max. relative humidity 9% without condensation Degree of protection IP 0 conforming to IEC 09 Vibrations Conforming to EN - Vertical Operating position MTBF at 0 C > 00,000 h Connections Series Possible Parallel Possible, max. temperature F (0 C) Dielectric Input/output 000 V/0 and 0 Hz minute strength Input/ground 000 V/0 and 0 Hz minute Output/ground (and output/output) 00 V/0 and 0 Hz minute Input fuse incorporated Yes, internal, not replaceable Disturbance EN 008- Conducted EN 0/EN 0 cl.b Radiated EN 0/EN 0 cl.b Immunity IEC (generic) Electrostatic discharge EN ( kv contact/8 kv air) Electromagnetic EN lev. (0 V/m) Conducted interference EN lev. ( kv), EN 000--, EN lev., EN lev. Mains interference EN (voltage drops and cuts) 9

60 Characteristics (continued) Phaseo Regulated Power Supplies P/Pn (%) Derating The ambient temperature is a determining factor which limits the power that an electronic power supply can deliver continuously. If the temperature around the electronic components is too high, their life will be significantly reduced. Conversely, a power supply can deliver more than its nominal power if the ambient temperature remains largely below the rated operating temperature. The rated ambient temperature for Phaseo power supplies is 0 C. Above this, derating is necessary up to a maximum temperature of 0 C. The adjacent graph shows the power P (in relation to the nominal power Pn) which the power supply can deliver continuously, according to the ambient temperature (in a vertical position). Derating should be considered in extreme operating conditions: b Intensive operation (output current permanently close to the nominal current, combined with a high ambient temperature). b Output voltage set above V (to compensate for line voltage drops, for example). b Parallel connection to increase the total power (0) (0) (0) (0) (0) (0) (0) (70) Maximum operational temperature ( C) General rules to be complied with Intensive operation See derating on above graph. Example for ABL7RE: v without derating, from 0 C to 0 C, v derating of nominal current by %, per additional C, up to 0 C. Rise in output The nominal power is fixed. Increasing the output voltage means that the current delivered must be reduced. Parallel connection to increase the power The total power is equal to the sum of the power of the power supplies used, but the maximum ambient temperature for operation is 0 C. To improve heat dissipation, the power supplies must not be in contact with each other. In all cases, there must be adequate convection round the products to ensure easier cooling. There must be a clear space of 0 mm above and below Phaseo power supplies and of mm at the sides. Load limit Temporary overloads T (ms) 0 8 I out I out:(0...00%) 9 V 0,. x In In,. x In In I I out 0,.,.,.,.,.,7.7,8.8 x x In In ABL7RE and ABL7RP power supplies: protection of the power supply line Type of mains supply a V single-phase a 0 V single-phase Thermal-magnetic gg fuse Thermal-magnetic circuit-protectors circuit-protectors Type of protection GB C0N GB C0N gg fuse ABL7RE0 GB pb07 MG7 () A GB DB0 MG7 () A ABL7RE0 GB pb07 MG7 () A GB DB0 MG8 () A ABL7RE0 GB pb08 MG8 () A GB DB07 MG8 () A ABL7RE0 GB pb MG7 () A GB DB08 MG () A ABL7RP0 GB pb07 MG7 () A GB DB07 MG7 () A ABL7RP0 GB pb07 MG7 () A GB DB07 MG () A ABL7RP0 GB pb09 MG9 () A GB DB07 MG () A () UL listed circuit protector. 0

61 Combinations, references, dimensions Phaseo Regulated Power Supplies Combinations of Phaseo single-phase power supplies with STB modules Type of modules Installation for with Network interface module NIM STB Npp /00 BOS bus extension module STB XBE 00 Auxiliary power supply STB CPS power supply ABL7RP0 (0 A) Power distribution module PDM STB PDT 00/0 () Sensors Actuators power supplies ABL7RE/RP0 ( A) ABL7RP0 (0 A) power supplies ABL7RE/RP0 ( A) ABL7RE/RP0 ABL7RP0 ( A) (0 A) () STB PDT 0 basic PDM, installation only with or power supplies. If the nominal current values for Phaseo power supplies are exceeded, multiple power supplies can be used to power NIM, BOS, CPS and PDT modules in accordance with the above rules (, or power supplies). Note: b c V power supply. The input current is: v Network Interface Module NIM STB Npp: 0. A v BOS bus extension module STB XBE 00: 0. A v Auxiliary power supply STB CPS : 0. A b Power Distribution Modules. The maximum current is: v STB PDT 00 for sensors: 0 C,. 0 C v STB PDT 00 for actuators: 8 0 C, 0 C v STB PDT 0 for sensors/actuators: 0 C,. 0 C b ABL 7RE power supply: built-in auto-protect with auto-reset b ABL 7RP power supply: built-in auto-protect with auto-reset or manual reset. EN compliant. References () ABL7RE0 ABL7RP0 ABL7RE single-phase regulated switch mode power supplies Input voltage 7... Hz V Output voltage Nominal power Nominal current Auto-protect reset c V W A a 00 0 single-phase wide range V Conforming to standard EN Reference Weight 8 auto no ABL7RE auto no ABL7RE auto no ABL7RE auto no ABL7RE0.00 ABL 7RP single-phase regulated switch mode power supplies Input voltage 7... Hz Output Nominal Nominal Auto-protect voltage power current reset a single-phase wide range c () c V W A Conforming to standard EN Reference Weight 7 auto/man yes ABL7RP auto/man yes ABL7RP auto/man yes ABL7RP0.00 () For other Phaseo power supplies, refer to Square D Digest, page -, or catalog 80CT000R/0. () Compatible input voltage, not indicated on the product. Dimensions ABL7REpp/ABL 7RPpp Common side view Mounting on and 7 mm rails ABL7RE0/0 ABL7RP0 ABL7RE0 ABL7RP0 ABL7RE0 ABL7RP0.7 (0).7 (0).7 (0).7 (0).0 (7). (). ()

62 Technical information 0 Automation products certifications In some countries, certification of certain electrical components is enforced by law. A standard conformity certificate is then issued by the official organization. Each certified product must carry approval symbols when enforced. Use on board merchant navy vessels generally requires prior approval (= certification) of an electrical device by certain marine classification authorities. Key Certification body Country CSA Canadian Standards Association Canada C-Tick Australian Communication Authority Australia UL Underwriters Laboratories USA Key Classification authority Country ABS American Bureau of Shipping USA BV Bureau Veritas France DNV Det Norske Veritas Norway GL Germanischer Lloyd Germany GOST Institut de recherche Scientifique Gost Standardt C.I.S., Russia LR Lloyd's Register United-Kingdom RINA Registro Italiano Navale Italy RMRS Register of Shipping C.I.S. The table below shows the situation as of the for certifications obtained or pending from organizations for base PLCs. An overview of certificates for Telemecanique products is available on our Internet web site: Product certifications Certifications C-Tick Certified Hazardous Pending certification UL CSA ACA SIMTARS GOST locations Class Div () USA Canada Australia Australia CEI, Russia US FM ConneXium () Lexium MHD/BPH Magelis ipc Magelis XBT-F/FC Magelis XBT-G/H/P/E/HM/PM Momentum Premium PL7 CSA Unity CSA Quantum Concept FM Unity FM TBX Telefast TSX Micro TSX/PMX 7 à 07 Twido () Twin Line () Hazardous locations: CSA. no., certified products are suitable for use in Class I, division, groups A, B, C and D or non-hazardous locations only. () Depending on the product, consult our Regional Sales Office. () culus north-american certification (Canada and US). Local certifications BG Germany TSX DPZ 0DA safety module (TSX Micro) TSX PAY /8 safety modules (Premium) AS-Interface Europe TSX SAZ 0 master module (TSX Micro) TSX SAY 00/000 master modules (Premium) TBX SAP 0 Fipio bus/as-interface bus gateway

63 Technical information 0 Automation products certifications Community regulations Marine classification Marine classification des authorities Certified Pending certification ABS BV DNV GL LR RINA RMRS USA France Norway Germany Unit.-Kingdom Italiy C.I.S. ConneXium () Lexium MHD/BPH Magelis ipc Magelis XBT-F/FC Magelis XBT-H/P/E/HM/PM Momentum Premium PL7 Unity () Quantum Concept Unity () TBX Telefast TSX Micro TSX/PMX 7 à 07 Twido Twin Line () Depending on the product, consult our Regional Sales Office.. () Request for Marine certifications forecast th quarter 00. Community regulations European directives The opening of European markets implies a harmonization of regulations in the various European Union member states. European Directives are documents used to remove obstacles to the free movement of goods and their application is compulsory in all states of the European Union. Member states are obliged to transcribe each Directive into their national legislation and, at the same time, to withdraw any conflicting regulations. The Directives, particularly those of a technical nature with which we are concerned, only set objectives, called general requirements. The manufacturer must take all necessary measures to ensure that his products conform to the requirements of each Directive relating to his equipment. As a general rule, the manufacturer affirms that his product conforms to the necessary requirements of the Directive(s) by applying the e label to his product. e marking is applied to Telemecanique products where relevant. The significance of e marking b e marking on a product means that the manufacturer certifies that his product conforms to the relevant European Directives ; it is necessary in order that a product which is subject to a Directive(s) can be marketed and freely moved within the European Union. b e marking is intended solely for the national authorities responsible for market regulation. d For electrical equipment, only conformity of the product to standards indicates that it is suitable for use, and only a guarantee by a recognised manufacturer can ensure a high level of quality. One or more Directives, as appropriate, may apply to our products, in particular : b The Low Voltage Directive 7//EEC amended by Directive 9/8/EEC : e marking under the terms of this Directive is compulsory as of January 997. b The Electromagnetic Compatibility Directive 89//EEC, amended by Directives 9//EEC and 9/8/EEC : e marking on the products covered by this Directive has been compulsory since January 99. The system designer must use devices external to the SCADA to protect against active faults, which are not indicated and are judjed to be dangerous to the application. This may require solutions from various different technologies such as mechanical, electromechanical, pneumatic or hydraulic devices (for example, directly wiring a limit switch and emergency stop switches to the coil of a movement control contactor).

64 Power consumption document Power Consumption The c V power supply for the I/O modules is provided by the following modules: v "NIM" network interface module placed at the beginning of the primary segment v "BOS" extension bus module placed at the beginning of each extension segment v CPS auxiliary power supply module, to be placed in the primary or extension segment The "NIM", "BOS" and "CPS" modules use their c V power supply to deliver a maximum current of 00 ma at a voltage of c V. On the basis of the total number of modules in each segment (primary and extension), the power consumption per segment must be calculated to ensure that the current demanded by the I/O modules does not exceed the current supplied by the "NIM" network interface module or the "BOS" bus extension module.if yes, add CPS auxiliary power supply module in this segment. Procedure : For each segment b In the "Number" column indicate the required number of I/O modules for each reference. b In the "Total" column calculate the total current based on that number. b In box enter the grand total of all these values (ma). b The grand total in box must be less than or equal to 00 ma, box. If no, add CPS auxiliary power supply module, box Segment I/O module reference Base to be used Field wiring connectors () Power distribution module PDM Number of I/O modules per segment Consumption in ma at c V Per Total I/O module Digital inputs Digital outputs Analog inputs Analog outputs STB DDI 0 XBA 000 XTS p00 PDT 00/0 0 STB DDI 0 XBA 000 XTS p00 PDT 00/0 0 STB DDI XBA 000 XTS p00 PDT 00/0 0 STB DDI 0 XBA 000 XTS p00 PDT 00/0 70 STB DDI XBA 000 XTS p00 PDT 00/0 70 STB DAI 0 XBA 000 XTS p00 PDT 00/0 0 STB DAI 70 XBA 000 XTS p00 PDT 00/0 0 STB DDO 00 XBA 000 XTS p00 PDT 00/0 0 STB DDO 0 XBA 000 XTS p00 PDT 00/0 0 STB DDO 0 XBA 000 XTS p00 PDT 00/0 80 STB DDO XBA 000 XTS p00 PDT 00/0 80 STB DDO 00 XBA 000 XTS p00 PDT 00/0 90 STB DDO 0 XBA 000 XTS p00 PDT 00/0 90 STB DAO 80 XBA 000 XTS p0 PDT 00/0 70 STB DRC 0 XBA 000 XTS p0 PDT 00/0 0 STB DRA 90 XBA 000 XTS p0 PDT 00/0 0 STB AVI 70 XBA 000 XTS p00 PDT 00/0 0 STB AVI 7 XBA 000 XTS p00 PDT 00/0 0 STB AVI XBA 000 XTS p00 PDT 00/0 0 STB ACI 0 XBA 000 XTS p00 PDT 00/0 0 STB ACI XBA 000 XTS p00 PDT 00/0 0 STB ART 000 XBA 000 XTS p00 PDT 00/0 00 STB AVO 0 XBA 000 XTS p00 PDT 00/0 80 STB AVO XBA 000 XTS p00 PDT 00/0 80 STB AVO XBA 000 XTS p00 PDT 00/0 80 STB ACO 0 XBA 000 XTS p00 PDT 00/0 80 STB ACO XBA 000 XTS p00 PDT 00/0 80 Application-s pecific modules STB EPI XBA 000 PDT 00/0 0 STB EPI XBA 000 PDT 00/0 0 STB EHC 00 XBA 000 XTS 0 PDT 00/0 0 Consumption per segment Total consumption per segment NIM Network Interface Modules TCP/IP Ethernet STB NIP Primary segment 00 ma CANopen STB NCO STB NCO 00 Modbus Plus STB NMP Fipio STB NFP INTERBUS STB NIB STB NIB 00 Profibus DP STB NDP STB NDP 00 DeviceNet STB NDN STB NDN 00 BOS bus extention module STB XBE 00 Extension segment 00 ma CPS auxiliary power supply STB CPS Primary or extension segment 00 ma () For screw-type connector replace p with, for spring-type connector replace with.

65 Product reference index 0 70BNO MCI MCI MCI MCI MCI MCI XTS NAD NAD NAD NTW NTW NTW NTW NTW NTW NTW NTW NAD NAD NAD NAD ABL7RE ABL7RE ABL7RE ABL7RE ABL7RE ABL7RP ABL7RP ABL7RP ABL7RP ASMBKT LU9R LU9R LU9R STBACI STBACI STBACO STBACO STBART STBAVI STBAVI STBAVI STBAVO STBAVO STBAVO STBCPS STBDAI STBDAI STBDAO STBDDI STBDDI STBDDI STBDDI STBDDI STBDDO STBDDO STBDDO STBDDO STBDDO STBDDO STBDRA STBDRC STBEHC STBEPI STBNCO STBNCO STBNDN STBNDN STBNDP STBNDP STBNFP STBNIB STBNIB STBNIP STBNMP STBPDT STBPDT STBPDT STBPDT STBSPU STBSUS STBSUS STBXBA STBXBA STBXBA STBXBA STBXBA STBXBA STBXBA STBXBA STBXBA STBXBA STBXBA STBXBE STBXBE STBXBE STBXCA STBXCA STBXCA STBXCA STBXCA STBXCA STBXCA STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXMP STBXSP STBXSP STBXSP STBXSP STBXSP STBXSP STBXSP STBXSP STBXSP STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTS STBXTT STBXTT TSXFPACC TSXFPACC TSXFPACC TSXFPACC TSXFPCC TSXFPCC TSXFPCC TSXIBSCA TSXIBSCA TSXPBSCA TSXPBSCA XBTZ

66

67

68 The efficiency of Telemecanique branded solutions Used in combination, Telemecanique products provide quality solutions, meeting all your Automation & Control applications requirements. Networks & communication Operator dialog Software tools Motion control Interfaces & I/O Automation Motor control Detection Power supplies Mounting systems A worldwide presence Constantly available b More than 000 points of sale in 0 countries. b You can be sure to find the range of products that are right for you and which complies fully with the standards in the country where they are used. Technical assistance wherever you are b Our technicians are at your disposal to assist you in finding the optimum solution for your particular needs. b Schneider Electric provides you with all necessary technical assistance, throughout the world. ART Schneider Electric USA 800 Highway East Knightdale, NC SquareD ( ) Schneider Electric Canada 9 Waterman Avenue, MB Y Toronto, Ontario Simply Smart! MKTED00EN-US 00 Schneider Electric All Rights Reserved 0/00 MKTED00EN-US

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