GE DS200DMCBG1ABA/RR Module

Technical Specifications

 

Feature Details
Type Industrial Module
Part Number DS200DMCBG1ABA/RR
Compatibility GE Mark V and Mark VI turbine control systems
Function Dynamic control and processing
Protection Designed to operate in harsh industrial environments
Installation Internal to the control cabinet
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GE DS200DMCBG1ABA/RR Module

 


 

Brief Product Description

 

The GE DS200DMCBG1ABA/RR is an industrial module designed for use in GE’s Speedtronic Mark V and Mark VI series of turbine control systems. This module serves as a crucial component for dynamic control and data management within the turbine’s control system, ensuring stable and reliable operation of the machinery.

Key Specifications:

  • Type: Industrial Control Module
  • Compatibility: GE Speedtronic Mark V & Mark VI turbine control systems
  • Function: Dynamic control, data processing, and communication
  • Application: Turbine control, power generation

 

Detailed Product Overview

 

In the high-stakes environment of power generation and large industrial processes, every component of a turbine’s control system must function flawlessly. The DS200DMCBG1ABA/RR is one such component. Think of it as a specialized processor that handles the complex, real-time calculations needed to manage a turbine. It processes signals from various sensors—like temperature, pressure, and speed—and sends precise commands to actuators to adjust fuel flow and other critical parameters. This is not just about keeping the turbine running; it’s about optimizing its performance for maximum efficiency and safety.

This module is designed for the rigorous demands of industrial use. Its “RR” designation often implies that it’s a remanufactured part, which is common in the market for legacy industrial controls. This allows for a cost-effective way to maintain older systems that are still in operation. The module’s robust construction ensures it can withstand the vibrations, heat, and electrical noise inherent in a turbine enclosure.


 

Technical Specifications

 

Feature Details
Type Industrial Module
Part Number DS200DMCBG1ABA/RR
Compatibility GE Mark V and Mark VI turbine control systems
Function Dynamic control and processing
Protection Designed to operate in harsh industrial environments
Installation Internal to the control cabinet

 

Key Features and Benefits

 

  • Precision Control: The module provides the processing power and logic necessary for accurate and responsive turbine control, which is essential for managing power output and preventing damage.
  • Reliability: Built to GE’s high industrial standards, it’s a durable and dependable component, reducing the risk of unscheduled downtime.
  • Cost-Effective Maintenance: As a remanufactured (RR) part, it offers a more affordable alternative to a brand-new module, helping to extend the operational life of legacy control systems.

 

Primary Applications

 

The GE DS200DMCBG1ABA/RR is used almost exclusively in the power generation industry. It is an integral part of the control systems for gas and steam turbines, ensuring they operate safely and efficiently. These systems are used in power plants, oil and gas facilities, and other large-scale industrial sites.


 

Related Products

 

When a system uses the GE DS200DMCBG1ABA/RR module, it is typically part of a larger control architecture. Other components in the same system might include:

  • Bently Nevada 3500/65: A machine protection system that works alongside the turbine control system, providing an extra layer of safety by monitoring for vibration and other physical parameters.
  • GE DS200TCIAG1A: A similar type of card or module from the same series that might handle different control or I/O functions.
  • Siemens C98043-A7001-L1-2: A gate driver card for Siemens drives. While from a different manufacturer, it serves a similar purpose of interfacing control logic with high-power components.
  • Rockwell ICS T8151B: A triple-redundant processor module used in safety systems, highlighting the industry’s focus on fail-safe designs, which is a key principle in turbine control as well.