IS200DTCIH1ABB GE

¥999.00

The IS200DTCIH1ABB is a Digital Thermocouple Input (DTCI) board from General Electric’s Mark VI Speedtronic™ series. This model combines the enhanced EMI immunity of the IS200DTCIH1A with the factory-preconfigured “ABB” suffix, indicating a specific firmware preload, component traceability, and specialized configuration for certain temperature monitoring applications. The IS200DTCIH1ABB shares the same core hardware as the IS200DTCIH1A, featuring 16 isolated thermocouple input channels with enhanced common-mode rejection (>120 dB), built-in cold junction compensation (CJC) per channel, 16-bit resolution, and support for all major thermocouple types (J, K, T, E, R, S, B, N). The “ABB” designation typically signifies factory preload with specific sensor calibration parameters, making the IS200DTCIH1ABB ideal for standardized turbine packages requiring both noise immunity and reduced commissioning effort. The board mounts directly into a Mark VI VME backplane and provides digitized temperature data to the main DSP processor for combustion control and protection algorithms.

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Description

Technical Specifications

Parameter Specification
Manufacturer General Electric
Model IS200DTCIH1ABB
Series Mark VI / Speedtronic™
Board Type Digital Thermocouple Input (DTCI)
Input Channels 16 isolated thermocouple inputs
Supported Thermocouple Types J, K, T, E, R, S, B, N (software selectable)
Input Range -100°C to +1800°C (depending on type)
Resolution 16-bit ADC per channel
Accuracy ±0.1% of reading + CJC error (±0.5°C typical)
Cold Junction Compensation Built-in per-channel CJC sensors
Update Rate 100 ms per channel (sequential)
Input Impedance > 10 MΩ
Common-Mode Rejection > 120 dB (enhanced EMI immunity)
Isolation Channel-to-channel and channel-to-backplane: 1500V RMS
Power Requirements +5V DC / 2.5A, ±15V DC / 0.5A
Operating Temperature -30°C to +65°C
Suffix Meaning “ABB” = specific firmware/configuration variant with preload

Advantages and Key Features

Enhanced EMI Immunity with Factory Preload: The IS200DTCIH1ABB offers the superior common-mode rejection (>120 dB) of the IS200DTCIH1A combined with factory-preconfigured sensor settings, making it ideal for electrically noisy environments while reducing commissioning time.

Comprehensive Thermocouple Support: Supports all major thermocouple types with software selection per channel, providing flexible deployment across different turbine measurement points.

Individual Cold Junction Compensation: Each of the 16 channels features dedicated CJC sensors, ensuring accurate temperature readings despite ambient temperature fluctuations in the control cabinet.

High Precision for Protection: With 16-bit resolution and better than ±0.5°C accuracy, the IS200DTCIH1ABB delivers reliable data for exhaust temperature spread monitoring and overtemperature protection.

Full Diagnostic Capability: Features open-thermocouple detection, input range validation, CJC sensor health monitoring, and channel deviation alarms with fault reporting to the main DSP processor.

Application Fields and Case Studies

The IS200DTCIH1ABB is used in GE gas turbines in electrically noisy environments (near VFDs, large motors, or high-power switchgear), steam turbine bearing temperature monitoring, and industrial cogeneration facilities. In a European cogeneration plant with multiple variable-frequency drives, the IS200DTCIH1ABB was selected for its combined EMI immunity and factory preload matching the site’s thermocouple specifications. The board eliminated intermittent reading errors that had occurred with standard boards and reduced commissioning by 2 days due to the preloaded configuration. When a channel deviation alarm triggered, the IS200DTCIH1ABB diagnostics helped operators identify a failing thermocouple before it affected turbine operation.

Comparison with Competing Products

Dimension IS200DTCIH1ABB IS200DTCIH1A IS200DTAIH1ABB ABB AI810 (TC)
Input Channels 16 16 16 16
Thermocouple Types J, K, T, E, R, S, B, N J, K, T, E, R, S, B, N J, K, T, E, R, S, B, N J, K, T, R, S, B, N
Resolution 16-bit 16-bit 16-bit 16-bit
CMRR > 120 dB > 120 dB > 100 dB > 100 dB
Pre-configured Options Yes (ABB) No Yes (ABB) Limited
Diagnostics Open-TC + range + CJC + deviation Open-TC + range + CJC + deviation Open-TC + range + CJC + deviation Open-TC + range
Isolation 1500V RMS 1500V RMS 1500V RMS 1500V RMS

The IS200DTCIH1ABB combines the best features of both the IS200DTCIH1A (enhanced EMI immunity) and the IS200DTAIH1ABB (factory pre-configuration). It is the optimal choice for noisy environments where reduced commissioning time is also valued.

Selection Recommendations

Choose the IS200DTCIH1ABB when your installation has significant electrical noise AND you require factory-preconfigured settings for reduced commissioning. Select it over the IS200DTCIH1A when the “ABB” preload matches your sensor specifications. Use it as a replacement for IS200DTAIH1ABB boards when experiencing EMI-related reading errors. Deploy multiple IS200DTCIH1ABB boards for turbines with 32+ exhaust thermocouples. Avoid the IS200DTCIH1ABB if your sensor configuration differs from the preload; in that case, use a standard IS200DTCIH1A and configure manually.

Precautions and Important Notes

Always use ESD-safe handling procedures when installing the IS200DTCIH1ABB. Verify that the preloaded “ABB” configuration matches your specific thermocouple types and calibration requirements. Use proper thermocouple extension wire matched to the sensor type. Ensure adequate cable shielding and grounding to maximize the board’s EMI immunity. Allow the IS200DTCIH1ABB to stabilize for 30 minutes after power-up before relying on readings. Never connect voltage or current signals to thermocouple inputs. When replacing a IS200DTAIH1ABB with a IS200DTCIH1ABB, reconfigure ToolboxST to recognize the new board. Do not mix IS200DTCIH1ABB with IS200DTAIH1ABB or IS200DTCIH1A in redundant pairs without verifying identical configuration. Store spare boards in anti-static packaging and rotate inventory every 24 months. Consult GE engineering when using the IS200DTCIH1ABB in extremely high-EMI environments or with non-standard thermocouple types not covered by the preload.

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