IC200UDR001-BA GE Fanuc VersaMax Micro Programmable Logic Controller
IC200UDR001-BA GE Fanuc VersaMax Micro Programmable Logic Controller
IC200UDR001-BA GE Fanuc VersaMax Micro Programmable Logic Controller
/ 3

IC200UDR001-BA GE Fanuc VersaMax Micro Programmable Logic Controller

  • Manufacturer: GE Fanuc

  • Part Number: IC200UDR001-BA

  • Condition:New with Original Package

  • Product Type: Programmable Logic Controllers

  • Country of Origin: USA

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

GE Fanuc IC200UDR001-BA VersaMax Micro Controller

Configured for discrete I/O execution and local logic processing in standalone or networked automation systems, the GE Fanuc IC200UDR001-BA (IC200UDR001 Micro Controller) provides direct physical/electrical execution across industrial machinery platforms. The device executes high-speed logic sequencing via 8 DC input channels and 6 electromechanical relay output channels, interfacing directly with field switches, sensors, and actuators.

Hardware Specifications

Parameter Specification
Model IC200UDR001-BA
Brand GE Fanuc / Emerson
Origin Japan
Weight 0.30 kg (0.66 lbs)
Dimensions 95 mm W x 76 mm D x 90 mm H
Operating Temp 0 deg C to 55 deg C
Power Consumption 13 VA (120/240 VAC nominal)
Input Power Range 120/240 VAC (85-264 VAC line voltage)
Integrated I/O Count 14 Points (8 DC Inputs, 6 Relay Outputs)
Input Signal Voltage 24 VDC Nominal
Output Current Rating 2.0 A per relay contact (continuous)
Logic Memory 9K words logic memory
Register Storage 256 words register memory
Maximum Expansion I/O 126 physical I/O points
Communication Ports 1x RJ-45 Port (RS-232, SNP / SNPX / Modbus RTU Slave)
Logic Scan Execution Rate 1.1 ms per 1K Boolean instructions
Analog Trimmers 2 built-in potentiometers

Backplane Bus Communication Velocity & Network Integration

The unit features engineered backplane bus communication velocity drivers optimized for local expansion modules, enabling deterministic cycle times across connected expansion I/O points up to the 126-point physical limit. Integrated serial hardware handles Modbus RTU Slave, SNP, and SNPX protocols over RS-232, maintaining deterministic firmware flash compatibility during online ladder logic updates via Proficy Machine Edition or VersaPro programming suites.

Frequently Asked Questions

Q: Can expansion I/O modules be hot-swapped during active CPU execution?

A: No. The VersaMax Micro backplane bus does not support hot-swapping under live power. Removing or inserting expansion I/O units while the controller operates can trigger memory corruption, system faults, or physical hardware damage. Power must be isolated prior to physical hardware reconfiguration.

Q: What is the maximum continuous current rating for the relay output channels, and is external suppression required?

A: Relay outputs are rated for 2.0 A per channel continuous at 24 VDC / 240 VAC. Inductive loads such as solenoids or contactor coils require external RC snubbers or flyback diodes installed across the load to prevent contact erosion caused by voltage transients.

Q: How are the integrated analog potentiometers mapped within the controller memory?

A: The two built-in analog potentiometers scale internal register values directly without additional hardware programming, providing manual adjustment ranges mapped into system register memory for field tuning of timers and setpoints.

Field Installation Guidelines

  • Mount the unit on standard 35 mm DIN rails or directly onto a grounded steel backpanel using M4 hardware. Ensure a minimum clearance of 50 mm above and below the chassis for thermal convection airflow.
  • Connect the main protective earth (PE) conductor directly to the dedicated earth terminal on the unit. Ensure a ground wire gauge of at least 2.0 mm sq (14 AWG) with low-impedance bonding.
  • Route low-voltage 24 VDC input wiring and serial communication cabling in cable ducts physically separated from high-voltage 120/240 VAC power input and inductive relay output lines.
  • Ground all RS-232 communication cable shields at a single point at the host end only to avoid ground loops. Ensure all screw-clamp terminal connections are torqued to specified limits (0.5 to 0.6 Nm).
You may also like