Description
Product Parameters
| Parameter | Specification |
|---|---|
| Brand / Series | GE Mark VIe Speedtronic |
| Model | IS200TTURH1A |
| Total Channels | 16 universal inputs (configurable per channel) |
| Thermocouple Inputs | Up to 16 channels (J, K, T, E, R, S, B) |
| RTD Inputs | Up to 16 channels (Pt100, Ni120, 3-wire or 4-wire) |
| Analog Transducer Inputs | Up to 16 channels (4–20 mA, 0–10 V, ±10 V selectable) |
| Thermocouple Range | ±100 mV |
| RTD Range | 0–400 Ω (Pt100: –200°C to +850°C; Ni120: –60°C to +250°C) |
| Transducer Range | 0–20 mA, 4–20 mA, 0–5 V, 0–10 V, ±10 V |
| RTD Excitation | Programmable 0.5/1.0/2.0 mA |
| Cold-Junction Compensation | Built-in CJC sensor (accuracy ±0.5°C) |
| ADC Resolution | 24-bit delta-sigma (thermocouple/RTD), 16-bit SAR (transducer) |
| Sampling Rate | 4–200 SPS (thermocouple/RTD), 10–500 SPS (transducer) |
| Accuracy (TC) | ±0.1% of reading + ±1°C |
| Accuracy (RTD) | ±0.1% of reading + ±0.3°C |
| Accuracy (Transducer) | ±0.1% FS |
| Lead-Wire Compensation | Automatic (3-wire and 4-wire RTD) |
| Transducer Loop Power | 24 VDC (externally supplied only) |
| Isolation | 1500 VAC (field-to-system) |
| CMRR | >100 dB @ 50/60 Hz |
| Diagnostics | Open-circuit detection, short-circuit detection, CJC fault monitoring, lead-wire imbalance monitoring, over/under-range detection, loop power fault monitoring |
| Status Indication | 16 green LEDs (channel active), 2 red LEDs (diagnostic fault summary) |
| Operating Temperature | –30°C to +65°C |
| Storage Temperature | –55°C to +85°C |
| Mounting | VME rack-mount terminal board with front-panel I/O connectors |
| Backplane Interface | VME64x (A24/A32, D16/D32/D64) |
| EMC Compliance | IEC 61000-4 Level 4 |
Advantages & Key Features
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Universal Input Flexibility: IS200TTURH1A combines thermocouple, RTD, and transducer inputs on a single board, eliminating the need for separate terminal boards for different sensor types.
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Configurable Channel Allocation: Each channel can be independently configured as thermocouple, RTD, or transducer via GE ToolboxST.
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High Channel Density: 16 universal inputs in a single VME slot—double the density of competing modules.
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High-Precision CJC: Built-in CJC sensor with automatic compensation ensures thermocouple measurement accuracy.
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Programmable RTD Excitation: Selectable 0.5/1.0/2.0 mA to optimize for sensor self-heating and cable length.
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Automatic Lead-Wire Compensation: For 3-wire and 4-wire RTDs, eliminating lead-wire resistance errors.
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24-Bit Delta-Sigma Conversion: High-resolution ADC delivers stable, noise-free readings.
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Comprehensive Diagnostics: Open-circuit, short-circuit, CJC fault, lead-wire imbalance, over/under-range, and loop power fault detection per channel.
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Opto-Isolation: 1500 VAC isolation protects the Mark VIe backplane from field wiring faults.
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ToolboxST Integration: Full configuration, calibration, and diagnostics via GE ToolboxST.
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Drop-In Replacement: Direct replacement for earlier GE universal input terminal boards.
Application Fields
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Gas & Steam Turbines (GE Frame 6B/7EA/9E/HA): Exhaust gas temperature (thermocouple), bearing temperature (RTD), fuel gas pressure (4–20 mA), steam pressure (4–20 mA), and valve position feedback (0–10 V).
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Combined Cycle Plants: HRSG superheater temperature (thermocouple), feedwater temperature (RTD), steam drum pressure (4–20 mA), and flow (4–20 mA).
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Compressor Stations: Discharge temperature (thermocouple), bearing temperature (RTD), and suction/discharge pressure (4–20 mA).
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Aeroderivative Turbines: Exhaust temperature (thermocouple), oil temperature (RTD), fuel flow (4–20 mA), and pressure (4–20 mA).
Comparison with Competing Products
| Feature | GE IS200TTURH1A | Competitor A (Universal Input Module) | Competitor B (Separate TC + RTD + Transducer) |
|---|---|---|---|
| Total Inputs | 16 universal | 8 universal | 16 (4 + 4 + 8) |
| Input Types | TC, RTD, mA, V | TC, mA, V | Separate modules required |
| CJC Accuracy | ±0.5°C | ±1.2°C | ±0.5°C |
| RTD Excitation | Programmable | Fixed | Programmable |
| Lead-Wire Compensation | Automatic | Fixed | Automatic |
| Isolation | 1500 VAC | 1000 VAC | 1500 VAC |
| Operating Temp | –30°C to +65°C | 0°C to 50°C | –30°C to +65°C |
Key Advantage: IS200TTURH1A provides 16 universal inputs—double the density of competing universal modules—with flexible TC/RTD/transducer configuration, programmable RTD excitation, automatic lead-wire compensation, and comprehensive diagnostics, making it ideal for applications requiring diverse sensor monitoring.
Selection Guidelines & Recommendations
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Channel Configuration: Determine required mix—configure each channel in GE ToolboxST.
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Input Type: Select thermocouple type, RTD type, or transducer type per channel.
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RTD Excitation: Use 0.5 mA for small sensors or 2.0 mA for long cable runs.
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RTD Wiring: Configure 3-wire or 4-wire per channel.
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Transducer Type: Configure 4–20 mA, 0–10 V, or ±10 V per channel.
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Transducer Loop Power: External 24 VDC supplies required.
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CJC Sensor Placement: Maintain adequate airflow around the CJC sensor.
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Controller Firmware: Requires Mark VIe processor firmware v7.5 or later.
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Wiring Guidelines: Use shielded cables for all sensor connections.
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Spare Strategy: Keep one spare per turbine; lead times 6–10 weeks.
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Retrofit: Direct replacement—regenerate configuration in GE ToolboxST.
Important Cautions
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No Hot-Swap: De-energize rack before insertion/removal.
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Thermocouple Polarity: Reverse connection produces negative readings.
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RTD Polarity: For 3-wire RTDs, ensure leads are correctly connected.
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Transducer Polarity: Observe correct polarity for 4–20 mA loops and voltage inputs.
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CJC Protection: Do not apply conformal coating or tape over the terminal block area.
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Transducer Loop Power: External 24 VDC required.
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Grounding: Connect AGND to Mark VIe system ground at single star point.
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Shield Termination: Ground shields only at cabinet end.
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ESD Handling: Use grounded wrist straps; field repair not possible.
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Lead-Wire Imbalance: Monitor imbalance alerts—investigate wiring mismatches.
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Channel Mapping: With 16 universal channels, verify field wiring maps to correct ToolboxST assignments.
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Input Overload: Sustained transducer input >30 V or >50 mA may damage input circuitry.

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