Brand:GE Fanuc PLC Item No.:IC200PWR102B Product Origin:USA Product Dimensions:108 × 7.2 × 7.2 mm Product Weight:0.30 kg Payment:T/T, Western Union, Credit Card Goods_stock:15 Shipping Port:Xiamen, China Lead Time:1-3 Days Condition:Brand New And Original Warranty:1 Year Certificate:COO
The GE IC200PWR102B Power Supply Module is a dependable AC-powered solution developed for the VersaMax PLC platform. It provides regulated 5 VDC and expanded 3.3 VDC backplane power to CPUs, Network Interface Units, and I/O modules, ensuring stable performance across a wide range of industrial automation applications.
Designed for maximum installation flexibility, the IC200PWR102B supports both 120 VAC and 240 VAC power systems through a simple jumper configuration. It can function as either the primary station power supply or as a supplemental supply in larger VersaMax installations, making it well suited for scalable automation architectures.
With robust protection features, reliable power regulation, and proven compatibility with the VersaMax product family, the IC200PWR102B remains an excellent choice for OEM equipment, process automation, and industrial control system modernization.
• Designed for GE VersaMax PLC systems, the IC200PWR102B delivers reliable backplane power to CPUs, Network Interface Units (NIUs), and I/O modules, ensuring stable operation in industrial automation environments.
• Ideal for manufacturing automation, packaging equipment, conveyor systems, water and wastewater facilities, machine control, and distributed I/O applications that require dependable AC-powered PLC infrastructure.
• Suitable for both standalone VersaMax control stations and expanded automation systems where additional power capacity is required for high-density module configurations.
• Commonly selected for new equipment installations, system upgrades, and replacement projects where long-term reliability and seamless VersaMax compatibility are essential.
Key Strengths at a Glance
• Accepts both 120 VAC and 240 VAC input through a simple jumper configuration, providing installation flexibility across a wide range of industrial power systems.
• Supplies regulated 5 VDC and expanded 3.3 VDC backplane outputs with a combined maximum output current of 1.5 A, supporting CPUs, NIUs, and multiple I/O modules.
• Can operate either as the primary station power supply or as a supplemental power source when installed on a VersaMax Power Supply Booster Carrier.
• Incorporates built-in overload and short-circuit protection to improve system reliability and safeguard connected automation equipment.
Technical FAQs
1. What type of module is the GE IC200PWR102B?
The IC200PWR102B is a VersaMax AC Power Supply Module designed to provide regulated backplane power for CPUs, NIUs, and I/O modules.
2. Which PLC platform is compatible with the IC200PWR102B?
The module is designed for GE VersaMax PLC and VersaMax distributed I/O systems.
3. What input voltage does the IC200PWR102B support?
It supports 85–132 VAC with the 120 VAC jumper installed or 176–264 VAC for nominal 240 VAC operation.
4. What output voltages are available?
The module provides regulated 5 VDC and expanded 3.3 VDC outputs for the VersaMax backplane.
5. What is the maximum output current?
The total available output current is 1.5 A, including a maximum of 1.0 A on the 3.3 VDC output.
6. Can the IC200PWR102B be used as a supplemental power supply?
Yes. When installed on a VersaMax Power Supply Booster Carrier, it can serve as an auxiliary power source for expanded I/O stations.
7. Does the module provide protection against electrical faults?
Yes. It includes integrated short-circuit and overload protection.
8. What AC frequency range is supported?
The module operates with input frequencies from 47 Hz to 63 Hz.
9. Is jumper configuration required during installation?
Yes. A jumper must be installed for 120 VAC operation and removed for 240 VAC operation.
10. What should be verified before replacing the IC200PWR102B?
Engineers should verify the input voltage selection, jumper position, available backplane current, carrier compatibility, and field wiring before installation.