GE IC200PWR002H VersaMax 24 VDC Power Supply Module
Manufacturer: GE Fanuc
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Part Number: IC200PWR002H
Condition:New with Original Package
Product Type: Power Supply Modules
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Country of Origin: USA
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
GE IC200PWR002H VersaMax Supplemental Power Supply Module
Configured for supplemental backplane bus powering in VersaMax I/O platforms, the GE Fanuc IC200PWR002H (IC200PWR002 Supplemental Power Supply) provides direct physical/electrical execution. Engineers mount this hardware module directly on CPU/NIU controllers or booster carriers, where it converts 24 VDC input power into regulated internal voltage rails. By injecting additional current directly into the rack interface, the unit mitigates voltage drops across dense module assemblies and ensures stable signal processing.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | IC200PWR002H |
| Brand | GE Fanuc / Emerson |
| Origin | USA |
| Weight | 0.28 kg |
| Dimensions | 4.9 x 13.34 x 3.9 cm |
| Operating Temp | 0 to 60 deg C |
| Power Consumption | 11 W |
| Nominal Input Voltage | 24 VDC (18 to 30 VDC range) |
| Output Voltages | 5 VDC, 3.3 VDC |
| Total Output Current | 1.5 A maximum |
| Hold-up Time | 10 ms |
| Inrush Current | 20 A at 24 VDC, 25 A at 30 VDC |
| Electrical Protection | Short circuit, overload, reverse polarity |
Backplane Bus Communication Velocity and Firmware Compatibility
The module distributes power directly to the backplane communication bus without interfering with high-speed deterministic networking protocols such as Profinet or EtherNet/IP. While delivering up to 1.5 A total output current across the 5 VDC and 3.3 VDC rails, internal filtering circuits isolate logic logic paths from supply line ripple. This precise power stabilization maintains backplane bus communication velocity and ensures consistent firmware execution across adjacent I/O cards under heavy bus loads.
Frequently Asked Questions
Q: How do installation teams address grounding requirements to avoid power supply instability?
A: Technicians must connect the DC negative (DC-) terminal directly to the frame or cabinet earth ground. Floating DC power configurations cause floating reference potentials, which disrupts internal voltage regulation and exposes backplane logic to common-mode electrical noise.
Q: What are the total current output limitations when balancing 3.3 VDC and 5 VDC loads?
A: The total combined output current must not exceed 1.5 A. While the 3.3 VDC rail draws a maximum of 1.0 A, the available current on the 5 VDC rail equals 1.5 A minus the actual current consumed by the 3.3 VDC bus segment.
Q: Can maintenance personnel replace this module while operating in hazardous locations?
A: Technicians must completely de-energize the local rack and power leads before removing or replacing the module in Class I, Div 2 environments. Disconnecting live terminals under load risks electrical arcing that can ignite surrounding hazardous atmospheric gases.
Field Installation Guidelines
Technicians must install the power supply module vertically inside clean, grounded industrial enclosures. When mounting on a VersaMax booster carrier or main controller base, align the module connectors with the carrier interface slot and press firmly until the mechanical latch engages completely. Secure all terminal block wiring using a calibrated screwdriver, ensuring proper connection to the 24 VDC power source.
Route 24 VDC input power conductors through dedicated wiring raceways separate from AC power lines and high-voltage drive outputs. Maintain a minimum distance of 200 mm between power conduits and sensitive analog signal cables to minimize inductive interference. Before applying primary power, verify that the cabinet earth ground connects directly to the system ground bus bar, providing a low-impedance path for transient surge suppression.