Siemens A5E32100313 SIMATIC Communication Processor Board
Siemens A5E32100313 SIMATIC Communication Processor Board
Siemens A5E32100313 SIMATIC Communication Processor Board
/ 3

Siemens A5E32100313 SIMATIC Communication Processor Board

  • Manufacturer: Siemens

  • Part Number: A5E32100313

  • Condition:New with Original Package

  • Product Type: Communication Processors

  • Country of Origin: USA

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

Siemens A5E32100313 SIMATIC Communication Processor & User I/O Board

The Siemens A5E32100313, also cataloged as the A5E32100313 Communication Processor / User I/O Board, operates as a dedicated hardware component for high-speed field signal processing and bus interfacing within Siemens PLC and Robicon GH180 drive platforms. Operating across 24 V DC backplane interfaces, the board manages digital and analog I/O communication channels while routing PROFIBUS DP/V1 data links at transmission speeds up to 12 Mbit/s. Diagnostic LEDs mounted on the front panel provide real-time hardware status verification, displaying bus fault states, network parameter mismatches, and operational loop health.

Hardware Specifications

Parameter Specification
Model A5E32100313
Brand Siemens
Origin Germany
Weight 0.92 kg
Dimensions 25.2 x 2.4 x 12.6 cm
Operating Temp -25 deg C to +60 deg C
Power Consumption 24 V DC via backplane
Product Type Communication Processor / User I/O Board
Supported Protocols PROFIBUS DP/V1, RS485
Transmission Rate Up to 12 Mbit/s
Digital I/O Channels 16 Digital Inputs / 16 Digital Outputs
Protection Class IP20

Industrial Control & Communication Attributes

Siemens automation architectures rely on deterministic PROFIBUS DP and EtherNet/IP networks to achieve sub-millisecond communication cycle times across distributed drive stages. The Siemens A5E32100313 interface board integrates dedicated ASIC controllers to optimize backplane bus communication velocity and reduce signal latencies during high-density I/O register exchanges. Firmware flash compatibility within TIA Portal and STEP7 engineering frameworks enables rapid parameter assignment, ensuring precise cycle time synchronization (<0.5 ms) and continuous dynamic data throughput between host PLCs and connected field devices.

Frequently Asked Questions

Q: Does inserting or removing the A5E32100313 board require shutting down backplane power?

A: Yes. Technicians must completely isolate 24 V DC system power before installing or removing the module. Hot-swapping the board damages edge connector contacts and creates immediate bus fault conditions across connected PLC and drive communication channels.

Q: What action should be taken if the yellow/green diagnostic LED indicates a parameter mismatch?

A: A yellow/green LED combination signals an operational parameter conflict between the board firmware and the controller hardware configuration. Technicians must connect via TIA Portal or STEP7 to verify hardware revision levels, Baud rate settings, and memory addresses assigned to the module.

Q: How does cable shield termination affect RS485 and PROFIBUS transmission distances up to 1.2 km?

A: Achieving long-distance communication up to 1.2 km requires shielded twisted-pair cabling grounded at both cable ends using low-impedance DIN-rail shield clamps. Unshielded runs or broken drain wire terminations introduce common-mode noise, forcing transmission rate foldbacks and packet drops.

Field Installation Guidelines

Technicians must strictly adhere to static control protocols before touching the module contacts or exposed circuitry. Mount the IP20-rated enclosure inside a grounded NEMA/IP54 industrial panel to protect sensitive semiconductor components from conductive airborne particulates and moisture.

Align the card guides carefully with the rack slot before sliding the unit firmly into place. Ensure the backplane interface connector seats fully without applying excessive force. Secure all RS485 and PROFIBUS cable shields directly to the cabinet ground bar using conductive cable clamps, maintaining adequate separation between signal wiring and high-voltage power leads to prevent inductive cross-talk.

You may also like