GE Fanuc

GE Fanuc IS200TTURH1CFD Mark VIe Terminal Turbine Board

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  • Manufacturer: GE Fanuc

  • Product No.: IS200TTURH1CFD

  • Product Type: Terminal Turbine Board

  • Product Origin: USA

  • Payment: T/T

  • Weight: 760g

  • Shipping port: Xiamen

  • Warranty: 12 months

The IS200TTURH1CFD is a turbine terminal board from the GE Fanuc Mark VIe series, built for high-reliability industrial control. It provides connection interfaces between the turbine field devices and the Mark VIe controller, ensuring accurate signal communication for temperature, speed, and pressure sensors.

This board supports complex I/O handling while maintaining a compact form factor suitable for various turbine control cabinets.

Key Features

  • Direct terminal interface for turbine instrumentation

  • Works with Mark VIe I/O packs for precise control and diagnostics

  • Screw-type terminals for easy field wiring and maintenance

  • Supports both analog and digital input channels

  • Designed for harsh industrial environments with EMI shielding

Technical Specifications

Parameter Details
Part Number IS200TTURH1CFD
Manufacturer GE Fanuc
Product Type Turbine Terminal I/O Board
Series Mark VIe
Dimensions 33.0 cm x 17.8 cm x 2.5 cm (13.0 x 7.0 x 1.0 inches)
Weight Approximately 1.25 kg (2.75 lbs)
Terminal Type Screw terminals for 2-wire and 3-wire connections
Supported Signals RTDs, thermocouples, 4–20 mA signals, dry contact inputs
Input Channels Multiple analog and digital inputs (16–24 channels)
Connectors Edge connectors for Mark VIe I/O packs
Operating Temperature -30°C to +65°C (-22°F to +149°F)
Mounting DIN-rail or panel mount (horizontal/vertical)
Country of Origin United States (USA)

Application & Compatibility

The IS200TTURH1CFD board interfaces directly with GE’s Mark VIe control system. It supports critical measurements in gas and steam turbines, including:

  • Thermocouple and RTD readings

  • Shaft speed and phase signals

  • Pressure and valve position monitoring

  • Alarm contact and relay status feedback

Its robust design makes it suitable for:

  • Power generation plants

  • Industrial gas turbines

  • Steam turbine automation

  • Combined-cycle control systems

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