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Configured for discrete field signal processing in VersaMax Micro PLC networks, the GE Fanuc IC200UEX212 (IC200UEX212 Discrete Expansion Unit) provides direct physical/electrical execution for 16 DC inputs and 12 relay outputs.

Hardware Specifications

Parameter Specification
Model IC200UEX212
Brand GE Fanuc Emerson
Origin USA / Various
Weight 0.91 kg (2.00 lbs)
Dimensions 150 mm x 90 mm x 76 mm
Operating Temp 0 to 60 deg C
Power Consumption 8 W input power rating
Total I/O Capacity 28 Discrete I/O Points
Discrete Input Channels 16 points at 24 VDC
Relay Output Channels 12 electromechanical relay outputs
Sensor Auxiliary Power 200 mA at 24 VDC
Relay Resistive Load Rating 2 A at 24 VDC / 240 VAC
Mounting Type 35 mm DIN rail or direct panel mount

Backplane Bus Communication Velocity & I/O Density Scaling

The IC200UEX212 interfaces directly with the main VersaMax controller base, providing expanded I/O density scaling within a compact 150 mm footprint. Internal bus transceiver circuits handle high-speed signal updates to maintain determinism and backplane bus communication velocity across all 28 channels. Onboard logic circuits ensure full firmware flash compatibility, allowing synchronized image-table updates and status diagnostics between the expansion unit and the local CPU interface.

Frequently Asked Questions

Q: What are the continuous load current limits for the output relays on the IC200UEX212?

A: The 12 electromechanical relay outputs support a maximum resistive load rating of 2 A per point at either 24 VDC or 240 VAC line levels.

Q: Does the IC200UEX212 provide auxiliary power distribution for connected field sensors?

A: Yes, the unit includes an onboard auxiliary power supply output capable of sourcing up to 200 mA at 24 VDC to energize external sensing devices.

Field Installation Guidelines

  • Mechanical Panel/DIN Rail Mounting: Secure the module onto a 35 mm DIN rail or mount directly to a metal backpanel using M4 hardware. Maintain at least 50 mm clearance around ventilation slots to ensure unassisted thermal dissipation.
  • Field I/O Terminal Wiring: Terminate 24 VDC input and relay load conductors into the front terminal block assembly. Route inductive AC output wiring in separate wire trunks away from low-voltage DC input lines to prevent cross-talk.
  • System Grounding: Connect the cabinet chassis protective earth conductor directly to the grounding terminal of the unit to ensure surge suppression and electromagnetic immunity.

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