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GE IS200VTURH1B Advanced Turbine Protection and Control Board Module for Mark VI Drive Systems

GE IS200VTURH1B Advanced Turbine Protection and Control Board Module for Mark VI Drive Systems

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Brand:GE Fanuc PLC
Item No.:GE IS200VTURH1B
Product Origin:USA
Product Dimensions:210 mm × 160 mm × 34 mm
Product Weight:0.74 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

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The GE IS200VTURH1B is a dedicated turbine control and protection board engineered for the Mark VI automation platform. Serving as a core logic and coordination interface within turbine control cabinets, this module supports critical operational sequencing, protection monitoring, and system-level control stability.

In high-demand gas and steam turbine environments, consistent protection logic and precise response timing are essential. The IS200VTURH1B is built to deliver deterministic performance, fast internal communication handling, and reliable signal processing under continuous-duty conditions. Its rugged construction and optimized circuit architecture ensure long-term stability in vibration-intensive power generation facilities.


Technical Specifications

ParameterSpecification
ModelIS200VTURH1B
Module TypeTurbine Control & Protection Board Module
PlatformMark VI Turbine Control System
Functional RoleTurbine sequencing and protection logic
Power SupplyBackplane powered
InstallationRack-mounted PCB
Dimensions (L × W × H)210 mm × 160 mm × 34 mm
Weight0.74 kg
Operating Temperature0°C to +60°C
Storage Temperature-40°C to +85°C
Humidity Tolerance5–95% non-condensing

Recommended Complementary Modules

For balanced system architecture, the following modules are frequently installed together with the IS200VTURH1B:

  • GE IS200VTCCH1C

  • GE IS200VSVOH1B

  • GE IS200VRTDH1D

  • GE IS200VSPAH1A

  • GE IS200VCMIH1B

These modules collectively manage servo control, signal processing, and communication coordination within the Mark VI control rack.


Popular GE Mark VI Control Boards

Commonly deployed modules in turbine automation systems include:

  • GE IS200DSPXH1D

  • GE IS200TBAIH1C

  • GE IS215UCVEM06A

  • GE IS200VGENH1B

  • GE IS200VCRCH1B

They are widely used in power plants and industrial energy production environments worldwide.


Application Areas

The IS200VTURH1B module is typically applied in:

  • Gas turbine control systems

  • Steam turbine automation platforms

  • Combined-cycle power stations

  • Turbine protection and shutdown systems

  • Industrial cogeneration facilities

Its protection-oriented logic ensures rapid response to abnormal operating conditions, supporting safe and stable turbine performance.


Key Advantages

Integrated Protection Logic
Supports reliable turbine monitoring and protective response functions.

Deterministic Control Execution
Ensures accurate sequencing during start-up, operation, and shutdown phases.

Industrial-Grade Reliability
Designed to withstand thermal variation and cabinet vibration.

Seamless System Compatibility
Fully aligned with Mark VI rack architecture for simplified deployment.

Long Operational Lifecycle
Engineered for continuous 24/7 turbine control applications.


Technical FAQs

1. What is the primary function of the IS200VTURH1B?
It manages turbine control sequencing and protection logic within the Mark VI system.

2. What are its physical dimensions?
210 mm × 160 mm × 34 mm.

3. What is its approximate weight?
Approximately 0.74 kg.

4. How is the module powered?
It receives power via the Mark VI rack backplane.

5. Is it suitable for gas turbine systems?
Yes, it is commonly used in gas turbine automation.

6. Can it operate in steam turbine applications?
Yes, it supports both gas and steam turbine configurations.

7. What temperature range does it support?
0°C to +60°C operating temperature.

8. Is it appropriate for retrofit projects?
Yes, it is widely used for maintenance replacement and modernization programs.

9. Does it require direct field wiring?
No, it interfaces internally through the rack system.

10. Is it built for continuous industrial use?
Yes, it is designed for long-term, mission-critical turbine control environments.


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