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GE Mark VIe
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Vendor: GE
GE Mark VI IS200VCMIH1BCC Printed Circuit Board
Description The IS200VCMIH1BCC is a bus master controller developed by General Electric (GE) as part of the Mark VI control system. This controller is central to communication within the control system, facilitating seamless interaction between the...Sale price $320.00Regular price $350.00 -
Vendor: GE
GE Mark VI IS200VRTDH1DAB Printed Circuit Board
Description The IS200VRTDH1DAB is a Resistance Temperature Device (RTD) developed by General Electric (GE) as part of the Mark VI control system. The RTD processor board (VRTD) and its associated terminal boards create an integrated system...Sale price $350.00Regular price $370.00 -
Vendor: GE
General Electric IS200VAICH1DAA Analog Input/Output Board
Description The IS200VAICH1DAA is an Analog Input/Output Board developed by General Electric (GE) as part of the Mark VI control system. This versatile board supports both simplex and triple modular redundant (TMR) configurations, making it adaptable...Sale price $290.00Regular price $330.00 -
Vendor: GE
GE Mark VI IS200VSVOH1BDC Turbine Control Module
Description The IS200VSVOH1BDC is a Servo Control Card designed by GE Industrial Systems, specifically for use in servo valve interface applications or with pulse rate (speed) inputs. This card plays a crucial role in the control...Sale price $320.00Regular price $350.00 -
Vendor: GE
GE Mark VI IS200TRLYH1BGF Relay Output Board
Description The IS200TRLYH1BGF is a relay output board developed by General Electric (GE), designed as a crucial component of the Mark VI control system. In these systems, the TRLY board is managed by either the VCCC,...Sale price $300.00Regular price $320.00 -
Vendor: GE
General Electric IS200REBFH1ABA Circuit Board Card
Description: The IS200REBFH1ABA circuit board is designed for specific control functions within the Mark V control system, handling data and signals while integrating seamlessly with other system modules. It plays a critical role in the efficient...Sale price $290.00Regular price $330.00
The GE Mark VIe is a distributed control system (DCS) designed by GE Gas Power for use in gas turbine applications. It's a flexible control system that can be used in a variety of applications, including combined heat and power (CHP), emergency power, fast power, flexible fuel offerings, grid firming, and hydrogen-fueled gas turbines.
Key Features:
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High-speed, Networked I/O: Supports simplex, dual, and triple redundant systems, ensuring reliability and efficiency in data processing.
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Ethernet-based I/O: Facilitates seamless communication with other plant equipment and systems, enhancing interoperability and integration capabilities.
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Modular and Scalable Design: Allows for easy adaptation to various plant sizes and configurations, providing flexibility and cost-effectiveness in implementation.
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Real-time Visualization: Offers real-time monitoring and visualization capabilities, enabling operators to make informed decisions promptly.
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Diverse Application Support: Tailored to support various applications including CHP, emergency power, fast power, flexible fuel offerings, grid firming, and hydrogen-fueled gas turbines, ensuring versatility and adaptability to different operational needs.
The GE Mark VIe commonly employs product naming conventions that utilize alphanumeric codes to designate different components or modules within the system. Here are some examples:
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IS200, IS210, and IS220: These codes likely refer to different series or versions of Input/Output (I/O) modules used within the Mark VIe system. Each series may offer variations in features, specifications, or compatibility.
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DS200-: This prefix is often used for modules related to digital control or signal processing within the Mark VIe system. Examples could include digital signal processors, digital input/output modules, or other digital control components.
These naming conventions help to organize and differentiate various components and modules within the GE Mark VIe system, aiding in configuration, troubleshooting, and maintenance processes.