IS220PTCCH1A GE

¥999.00

The IS220PTCCH1A is a high-precision thermocouple input module manufactured by GE Energy (now part of Baker Hughes) as part of the Mark VIe series distributed control system. This module provides dedicated temperature measurement for turbine control applications, converting thermocouple signals (millivolt levels) into digital temperature values for the control processor. The IS220PTCCH1A is designed for critical high-temperature monitoring applications including exhaust gas temperature (EGT), turbine inlet temperature, combustion chamber monitoring, and flue gas temperature measurement. It offers exceptional accuracy, high channel density, cold junction compensation (CJC), and advanced diagnostics, making it an essential component for turbine thermal monitoring and protection systems.

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Description

Product Parameters

Parameter Specification
Model IS220PTCCH1A
Manufacturer GE Energy / Baker Hughes
Platform Mark VIe
Bus Interface PCI Express (PCIe) via backplane
Input Channels 16 thermocouple inputs (differential)
Thermocouple Types Type J, K, T, E, R, S, B, N (software configurable)
Measurement Range Type K: -200°C to +1372°C; Type R/S: 0°C to +1768°C; Type B: +200°C to +1820°C
Resolution 0.01°C
Accuracy ±0.05% of reading or ±0.3°C (whichever is greater)
Cold Junction Compensation Yes (internal CJC sensor, ±0.1°C accuracy)
Sampling Rate 10 Hz per channel (configurable)
Input Impedance > 10 MΩ
Common-Mode Rejection > 100 dB at 50/60 Hz
Normal-Mode Rejection > 60 dB at 50/60 Hz
Isolation 1500 V (channel-to-backplane)
Open-Circuit Detection Yes (per channel, with selectable pull-up/down)
Hot-Swap Support Yes
LED Indicators Power, Status (RUN/FAIL), Channel Activity (per group), Diagnostic Alert
Operating Temperature -30°C to +65°C
Storage Temperature -40°C to +85°C
Humidity 5% to 95% (non-condensing)
Power Consumption +5 VDC @ 2.2 A
Dimensions Standard Mark VIe module form factor
Weight Approx. 0.55 kg
MTBF > 180,000 hours

Advantages and Key Features

  • High Channel Density – The IS220PTCCH1A provides 16 thermocouple input channels in a single module, significantly reducing the number of modules required for large turbine applications with extensive thermocouple monitoring (e.g., 24+ EGT thermocouples).

  • Multiple Thermocouple Type Support – Supports Type J, K, T, E, R, S, B, and N thermocouples, making the IS220PTCCH1A compatible with all common thermocouple sensors used in GE turbine applications.

  • High Accuracy – ±0.05% or ±0.3°C accuracy ensures precise temperature measurement for critical turbine protection and performance monitoring.

  • High Resolution – 0.01°C resolution enables detection of subtle temperature changes for combustion dynamics monitoring and predictive maintenance.

  • Integrated Cold Junction Compensation – Built-in high-accuracy CJC sensor (±0.1°C) eliminates the need for external CJC reference junctions, reducing installation complexity.

  • Excellent Noise Rejection – > 100 dB common-mode rejection provides reliable measurements in high-EMI environments such as turbine generator areas.

  • Open-Circuit Detection – Configurable pull-up/pull-down resistors on each channel of the IS220PTCCH1A enable reliable open-circuit detection for broken thermocouple sensors.

  • Advanced Diagnostics – Sensor health monitoring, cold junction temperature monitoring, and diagnostic alert LEDs enable predictive maintenance and rapid troubleshooting via the Mark VIe Toolbox.

  • Hot-Swap Capability – Can be replaced in a running system without powering down.


Application Fields and Use Cases

1. Exhaust Gas Temperature (EGT) Monitoring

The IS220PTCCH1A monitors multiple exhaust gas thermocouples on gas turbines, providing critical data for combustion dynamics control, EGT spread protection, and turbine performance optimization. With 16 channels per module, multiple IS220PTCCH1A modules can monitor all EGT thermocouples in large Frame 7/9 turbines.

2. Turbine Inlet Temperature

The IS220PTCCH1A measures turbine inlet temperature using high-temperature thermocouples (Type R/S/B) for combustion monitoring and thermal stress calculation.

3. Combustion Chamber Monitoring

Monitors thermocouple signals from individual combustion chambers for combustion stability monitoring and early detection of flame-out conditions.

4. Flue Gas and Exhaust Stack Monitoring

The IS220PTCCH1A provides flue gas temperature measurement for emissions monitoring, heat rate calculation, and environmental compliance.

5. Bearing Temperature Monitoring (High-Temperature)

For applications requiring thermocouple-based bearing temperature monitoring (oil drain temperature), the IS220PTCCH1A provides reliable measurement with Type J or K thermocouples.

6. Retrofit Projects

Used in Mark VIe upgrades from legacy systems, providing high-density thermocouple input capability with improved accuracy and diagnostics.


Comparison with Competing Products

Feature IS220PTCCH1A (GE) IS220PRTDH1A (GE) ABB TC880 (AC 800M) Siemens 6ES7 331-7PF01 (S7-400)
Platform Mark VIe Mark VIe AC 800M S7-400
Input Channels 16 thermocouple 16 RTD 8 thermocouple 8 thermocouple
Thermocouple Types J, K, T, E, R, S, B, N N/A J, K, T, R, S, B J, K, T, R, S, B
Accuracy ±0.05% or ±0.3°C ±0.1% or ±0.2°C ±0.1% ±0.1%
Resolution 0.01°C 0.01°C 0.1°C 0.1°C
Integrated CJC Yes (±0.1°C) N/A Yes External module
Open-Circuit Detection Yes N/A Yes No
Isolation 1500 V 1500 V 1500 V 500 V
Hot-Swap Yes Yes Yes No
Temp Range -30°C to +65°C -30°C to +65°C -25°C to +60°C 0°C to +60°C
MTBF > 180,000 hrs > 180,000 hrs > 120,000 hrs > 80,000 hrs

Key Differentiators: The IS220PTCCH1A offers the highest channel density (16 thermocouple channels) among dedicated thermocouple modules, double the capacity of ABB and Siemens alternatives. It supports the widest range of thermocouple types (J, K, T, E, R, S, B, N) and offers superior resolution (0.01°C) compared to competitors (0.1°C). The integrated CJC sensor provides high accuracy without external reference junctions. The IS220PTCCH1A is the optimal choice for GE Mark VIe turbine applications requiring extensive thermocouple monitoring.


Selection Suggestions and Precautions

Selection Criteria

  • Choose the IS220PTCCH1A for applications requiring extensive thermocouple temperature monitoring (EGT, turbine inlet, combustion, flue gas).

  • For RTD temperature measurement, consider the IS220PRTDH1A.

  • For general analog I/O requirements, consider the IS220PAICH1B or IS220PIOAH1A.

  • Verify Mark VIe Toolbox version supports the IS220PTCCH1A (v8.0 or higher).

Critical Precautions

  1. Thermocouple Wiring – Use the correct thermocouple extension wire (same type as the thermocouple, J/K/T/E/R/S/B/N) for all connections to the IS220PTCCH1A. Do not use standard copper wire for field wiring, as this introduces additional junctions and measurement errors.

  2. Cold Junction Compensation – The IS220PTCCH1A uses an internal CJC sensor located on the terminal block. Ensure the terminal block is not subject to temperature gradients or airflow that could affect the CJC accuracy (±0.1°C). Keep the terminal block away from heat sources.

  3. Cable Quality – Use shielded twisted-pair thermocouple extension cables. Terminate shields at the field device end, not at the IS220PTCCH1A, to prevent ground loops.

  4. Terminal Block – The IS220PTCCH1A requires specific terminal blocks (e.g., IS200STTCH1A) with integrated CJC sensors. Verify compatibility and ensure the terminal block is installed with the CJC sensor facing away from heat-generating components.

  5. Grounding and Shielding – Proper grounding is critical for thermocouple measurement. Ground shields only at one end (field device). Do not ground both ends to avoid ground loops.

  6. Open-Circuit Detection – Configure pull-up/pull-down resistors on the IS220PTCCH1A for open-circuit detection. Ensure the selected pull-up/pull-down value does not significantly affect the thermocouple signal.

  7. Thermocouple Type Configuration – Configure each channel on the IS220PTCCH1A for the correct thermocouple type. Incorrect configuration will produce erroneous temperature readings and may damage the module.

  8. CJC Calibration – The IS220PTCCH1A is factory-calibrated. Re-calibration of the CJC sensor is generally not required in the field unless specified by your maintenance program or after a module replacement.

  9. ESD Handling – Use grounded wrist straps when handling the IS220PTCCH1A to prevent static damage to sensitive components.

  10. Hot-Swap – While the IS220PTCCH1A supports hot-swap, verify the system is properly configured for live insertion. Allow temperature stabilization of the CJC sensor (approximately 5 minutes) after installation before relying on measurement accuracy.

  11. Obsolescence – The IS220PTCCH1A is in active production with long-term support. For new projects with additional thermocouple type requirements, evaluate the IS220PTCCH1B when available. Keep spare units for critical turbine EGT monitoring applications.

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