IS210DTCIH1A GE

¥999.00

The GE IS210DTCIH1A is a VMEbus terminal board manufactured by General Electric for the Mark VIe distributed control system (DCS). This board is a dedicated Dual Thermocouple and Current Input module, designed to provide high-precision temperature measurement from two independent thermocouples per channel alongside current-based analog inputs for turbine control applications. The GE IS210DTCIH1A enables redundant thermocouple monitoring with dual inputs per measurement point, while also providing 4–20 mA current inputs for pressure, flow, and position transmitters—all within a single module. The “H1A” designation indicates a first-generation dual thermocouple and current input module with robust performance and diagnostic features.

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Description

Key Specifications

Parameter Specification
Thermocouple Input Channels 8 dual-TC channels (16 total thermocouple inputs)
Thermocouple Types Supported J, K, T, E, N, R, S, B — software-selectable
Thermocouple Accuracy ±0.1% of reading + ±0.5 °C (typical)
Cold Junction Compensation Integrated CJC sensors (±0.25 °C accuracy)
Current Input Channels 4 differential analog inputs (4–20 mA, loop-powered)
Current Input Resolution 16-bit ADC
Current Input Accuracy ±0.05% of full scale
Current Input Load 250 Ω (typical)
Dual-Sensor Redundancy Each thermocouple channel supports two independent sensors
Redundancy Logic On-board averagedifferencemaximum, and minimum calculation
Burnout Detection Open-circuit detection for thermocouple faults
Isolation 1500 VDC (I/O-to-backplane)
Diagnostics 500-event fault log with timestamps
Sample Rate 10 Hz (sequential scanning)
Communication I/O Net (dual Ethernet ports for redundancy)
Form Factor 6U VME64x (160 × 233 mm), single-slot width
Indicators Per-channel LED, module health, communication status
Operating Temp 0 °C to +60 °C
Power Draw 12 W (+5 V / +3.3 VDC)
Connectors Front-panel 48-pin terminal block with gold-plated contacts and captive washer screws

Advantages & Distinctive Features

  • Dual-Thermocouple Redundancy: Each channel supports two independent thermocouples for redundant temperature measurement.

  • On-Board Redundancy Logic: Average, difference, maximum, and minimum calculations—reduces processor load.

  • Integrated Current Inputs: 4 dedicated 4–20 mA inputs for pressure, flow, or position transmitters.

  • Integrated Cold Junction Compensation: Dedicated CJC sensors for accurate absolute temperature readings.

  • Burnout Detection: Open-circuit detection for thermocouple faults.

  • Loop-Powered Support: 4–20 mA inputs support loop-powered transmitters (no external power required).

  • High Accuracy: ±0.1% reading + ±0.5 °C for thermocouples; ±0.05% for current inputs.

  • Gold-Plated Captive Washer Terminals: Corrosion-resistant and vibration-proof.

  • Hot-Swappable: No rack power-down for replacement.

  • Direct Retrofit: Replaces older DTCI series boards.


Application Fields

  • Gas Turbines: Exhaust temperature (dual TC), pressure transmitters (4–20 mA)

  • Steam Turbines: Casing temperature (dual TC), pressure transmitters

  • Compressors: Inlet/discharge temperature (dual TC), pressure transmitters

  • Generators: Stator winding temperature, pressure monitoring

  • Critical Temperature Monitoring: Applications requiring redundant TC sensors for safety


Comparison with DTAIH1A and Competitors

Feature GE IS210DTCIH1A GE IS210DTAIH1A Competitor A Competitor B
TC Channels 8 (dual) / 16 inputs 8 (dual) / 16 inputs 8 (single) 8 (dual)
Current Inputs 4 (4–20 mA) None None 4
Voltage Inputs None 4 None None
Redundancy Logic Average/Diff/Max/Min Average/Diff/Max/Min No No
Hot-Swappable Yes Yes No Yes

Selection Guidelines

  • When to choose: Applications requiring redundant TC monitoring with 4–20 mA transmitter inputs.

  • When to choose DTAIH1A instead: Applications requiring voltage inputs (0–10 V, ±10 V) instead of current inputs.

  • Redundancy Logic: Configure average for normal operation; difference for fault detection.

  • TC Configuration: Configure per channel for thermocouple type in Toolbox ST.

  • Current Configuration: Configure 4–20 mA range and scaling in Toolbox ST.

  • Compatibility: Fits all Mark VIe VME64x racks. Requires ControlST v6.0 or higher.


Operational Precautions

  1. Wiring: Follow GE wiring diagrams—correct polarity and shield grounding essential.

  2. Dual-TC Wiring: Ensure both thermocouples are correctly wired per channel.

  3. Current Input Wiring: Ensure correct polarity for 4–20 mA loop connections.

  4. Redundancy Logic Testing: Simulate one TC failure to verify redundancy logic.

  5. Calibration: Factory calibrated—verify against known references during commissioning.

  6. LED Diagnostics: Green = normal; Amber = sensor fault/difference; Red = module fault.

  7. Fault Log: Access 500-event log via Toolbox ST.

  8. Hot-Swap: Remove/insert slowly under power.

  9. Spare Stock: Maintain 1 spare per 3–4 racks.

  10. ESD: Handle by edges with grounded wrist strap.

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