Skip to content

What are you looking for?


You may also like

GE DS200IMCPG1CCB I/O Power Supply Interface ModuleGE DS200IMCPG1CCB I/O Power Supply Interface ModuleGE DS200IMCPG1CCB I/O Power Supply Interface Module
GE DS200IMCPG1CCB I/O Power Supply Interface Module
GE DS200IMCPG1CCB I/O Power Supply Interface Module
GE DS200IMCPG1CCB I/O Power Supply Interface Module

GE DS200IMCPG1CCB I/O Power Supply Interface Module


Only 10 left - Selling fast

PRODUCT SKU : DS200IMCPG1CCB

PRODUCT TYPE : Power Supply Modules

PRODUCT VENDOR : General Electric


  • 100% Genuine Parts – Risk-Free 30-Day Returns
  • 1-Year Warranty & Expert Support for Every Order

Product Details

Configured for power conversion and I/O interface management in drive control systems, the General Electric DS200IMCPG1CCB (DS200IMCPG1CCB I/O Power Supply Interface Module) provides direct physical/electrical execution of voltage regulation and signal distribution.

Hardware Specifications

Parameter Specification
Model DS200IMCPG1CCB
Brand General Electric
Weight 0.3 kg - 1.5 kg
Dimensions 15.9 cm x 17.8 cm
Operating Temp -10 deg C to +60 deg C
Power Consumption 10 W - 250 W
Input Voltage 100-240 V AC
Output Voltage 5 V DC, 12 V DC, 24 V DC
Output Frequency 0 - 500 kHz

Industrial Control and Drive Systems

The DS200IMCPG1CCB facilitates deterministic operation through advanced I/O density scaling, allowing for complex power distribution across drive control architectures. The module supports firmware flash compatibility, enabling precise adjustment of output parameters and diagnostic reporting. Integrated backplane bus communication velocity allows this module to function within high-speed drive control networks, maintaining stable reference voltages for internal logic circuits. The use of surface mount technology ensures high component density, while integrated thermal management supports operation within demanding industrial temperature ranges.

Frequently Asked Questions (FAQ)

Q: Can this module be installed on a standard DIN-rail?

A: Yes, the module is designed for DIN-rail mounting. Ensure the rail is properly grounded to the cabinet chassis to provide an adequate return path for electromagnetic interference (EMI) shielding.

Q: What are the output voltage capabilities of the module?

A: The module provides regulated outputs of 5 V DC, 12 V DC, and 24 V DC, catering to various control logic and sensing requirements within the drive system.

Field Installation Guidelines

  • Mounting Stability: Secure the module onto the DIN-rail using the provided locking mechanism. Verify that the rail is mounted horizontally and is mechanically rigid to prevent vibration-induced loosening of electrical terminations.
  • Input Wiring: Route AC input wiring (100-240 V AC) through designated wireways, ensuring segregation from low-voltage signal cabling to prevent crosstalk and induced noise.
  • Thermal Clearance: Maintain a minimum clearance of 50 mm above and below the module to facilitate effective heat dissipation. Do not obstruct the airflow path, as the module power rating can reach up to 250 W.
  • Grounding: Terminate the functional earth (FE) connection to the cabinet backplane. A low-impedance ground connection is mandatory for the operation of the internal surge voltage protection circuits and to maintain signal stability across the 500 kHz frequency output range.

Additional Information

  • 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
  • 30-Day Refund Guarantee: Return any in-stock item within 30 days in original, unopened packaging for a full refund (excluding shipping and fees).
  • 12-Month Warranty: Covers defects in materials or workmanship; excludes misuse, normal wear, or unauthorized modifications.
  • Worldwide Shipping: We ship via USPS, UPS, FedEx, and DHL. Delivery times vary by country and may be subject to customs or import fees.
  • Support & Contact: Technical and warranty assistance is available anytime. Contact us here: Contact.
  • Purchase Guidance: Check product specifications and compatibility carefully before ordering to ensure proper application.




Recently Viewed Products

Tech & Buying Guide

Technical Insights, Installation Guides, and Buying Tips
The Shift to Flexible IO Modules in Modern Industrial Automation

The Shift to Flexible IO Modules in Modern Industrial Automation

Traditional control systems rely on dedicated Input Output (IO) cards for industrial automation. Each conventional module processes a single signal type, such as Digital Input (DI), Digital Output (DO), Analog Input (AI), or Analog Output (AO). A standard 16-channel card accepts only one specific channel type across all ports. This inflexible hardware design often creates severe engineering bottlenecks during project execution. Engineers frequently must install entirely new cards to accommodate a single extra sensor. Consequently, late design changes increase control cabinet space requirements and drive up project costs.

Read more
DCS Commissioning Steps in Industrial Automation Projects

DCS Commissioning Steps in Industrial Automation Projects

Commissioning a Distributed Control System (DCS) represents a crucial milestone when deploying modern process automation infrastructure. Field engineers must execute systematic verification steps to transition complex control hardware from static installation to dynamic plant control. Proper commissioning ensures that controllers, I/O modules, network switches, and HMI software operate in strict compliance with engineering design specifications before introducing live process fluids.

Read more
PLC and DCS Control System Spares Strategy: Engineering Guidelines

PLC and DCS Control System Spares Strategy: Engineering Guidelines

Modern factory automation relies on high-speed fiber optic backbones to link distributed control systems across noise-intensive industrial environments. Unlike copper wiring, optical fibers transmit data via light pulses, making them completely immune to electromagnetic interference (EMI). Field engineers must master optical cable joining and fusion splicing techniques to guarantee low-loss data transmission across critical Programmable Logic Controller (PLC) and Distributed Control System (DCS) nodes.

Read more