GE

GE IS200PMCIH1AAA6BA00  Mark VIe Power Management Control Module

GE IS200PMCIH1AAA6BA00  Mark VIe Power Management Control Module

Product Overview

The GE IS200PMCIH1AAA6BA00 is a high-reliability Power Management Control Module designed as a critical component of GE’s Mark VIe distributed control system (DCS), specializing in power generation and industrial automation.

Engineered to manage power distribution and control logic in steam and gas turbine applications, this module ensures precise regulation of power supply and system stability in mission-critical environments.

As part of the IS200 Series, the IS200PMCIH1AAA6BA00 integrates seamlessly with other Mark VIe components, such as I/O modules and communication gateways, forming the backbone of turbine control systems in power plants, oil & gas facilities, and heavy manufacturing.

Featuring a rugged industrial design, the GE IS200PMCIH1AAA6BA00 supports redundant power input configurations (24 V DC) and advanced fault detection, ensuring continuous operation during transient power fluctuations.

Its modular architecture allows flexible integration with field devices, while built-in diagnostic tools monitor power quality, voltage levels, and thermal conditions in real time.

The module’s compatibility with GE’s Proficy software suite enables remote configuration and predictive maintenance, reducing downtime and enhancing operational efficiency.

With a wide operating temperature range (-40°C to +85°C) and compliance with industry standards (e.g., IEEE 1131-2), the IS200PMCIH1AAA6BA00 delivers reliable performance in harsh industrial environments, from offshore platforms to thermal power stations.

In automation ecosystems, the IS200PMCIH1AAA6BA00 serves as the power management hub, converting control signals into precise power adjustments for turbine operations.

Its dual-core processing architecture ensures rapid response to load changes, while redundant communication interfaces (Ethernet, RS-485) maintain data integrity in high-noise environments. By combining power regulation with system protection, this module optimizes energy efficiency and safeguards critical equipment from overvoltage, overcurrent, and thermal stress, making it indispensable for industries requiring uninterrupted power generation and distribution.

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