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Configured for rack-to-rack backplane signal transmission in VersaMax PLC platforms, the GE Fanuc IC200CBL600 (IC200CBL600 Rack Expansion Cable) provides direct physical execution between a primary controller rack and one expansion receiver module.

Hardware Specifications

Parameter Specification
Model IC200CBL600
Brand GE Fanuc Emerson
Origin USA / Various
Weight 1.36 kg (3.00 lbs)
Dimensions 1.0 meter length
Operating Temp 0 to 60 deg C
Power Consumption Passive physical conductor (0 W internal power draw)
Cable Type Single-ended shielded expansion cable
Jacket Color Black
Expansion Capacity 1 Expansion Receiver Module
Relative Humidity 5 to 95% non-condensing
Storage Temp -40 to 85 deg C
Shock Resistance 15 G rating

Backplane Bus Communication Velocity & Network Integrity

The IC200CBL600 shielded expansion cable extends the high-speed local VersaMax backplane bus across multi-rack physical assemblies without degrading data throughput or bus communication velocity. Built-in high-density braided shielding suppresses electromagnetic interference (EMI) and signal crosstalk, maintaining deterministic instruction cycle execution and firmware flash compatibility across connected CPU and expansion receiver interfaces.

Frequently Asked Questions

Q: What expansion capacity limits apply when connecting the IC200CBL600 to a VersaMax system?

A: The IC200CBL600 cable is specifically constructed to interface a main CPU rack or local expansion point with a single expansion receiver module over a maximum distance of 1.0 meter.

Q: How does the cable construction protect high-speed backplane signals against industrial environment interference?

A: The cable utilizes an integrated continuous braid shield beneath a heavy-duty black outer jacket, providing full mechanical protection rated to 15 G shock resistance along with high-attenuation shielding against field noise.

Field Installation Guidelines

  • Connector Seat and Strain Relief: Secure the cable connector fully into the designated expansion port on the VersaMax base unit. Ensure the strain relief hardware is anchored to prevent physical pull on internal connector pins.
  • Routing and Separation: Route the expansion cable inside dedicated low-voltage wiring troughs, keeping a minimum clearance of 100 mm from AC power mains, motor drives, and heavy inductive load wiring.
  • Shield Grounding: Verify that the shield terminal drains automatically through the mating VersaMax receiver/CPU chassis earth path. Ensure the mounting DIN rail or panel plate is properly connected to main protective earth.

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