Description
Technical Specifications
| Parameter | Specification |
|---|---|
| Manufacturer | General Electric |
| Model | IS200DTAIH1ABB |
| Series | Mark VI / Speedtronic™ |
| Board Type | Digital Thermocouple Analog Input (DTAI) |
| 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 |
| 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 |
Advantages and Key Features
Factory-Preloaded Sensor Configuration: The IS200DTAIH1ABB ships with pre-calibrated settings for specific thermocouple types and sensor batches, reducing on-site commissioning time and eliminating manual configuration errors for exhaust temperature monitoring.
Comprehensive Thermocouple Support: Supports all major thermocouple types with software selection per channel, allowing flexible deployment across different turbine temperature measurement points.
Individual Cold Junction Compensation: Each of the 16 channels features dedicated CJC sensors, ensuring accurate temperature readings even with ambient temperature variations in the control room.
High Accuracy for Protection Systems: With 16-bit resolution and better than ±0.5°C accuracy, the IS200DTAIH1ABB provides reliable data for critical overtemperature protection algorithms executed by the main DSP processor.
Advanced Diagnostics: The IS200DTAIH1ABB includes open-thermocouple detection, input range validation, CJC sensor health monitoring, and channel deviation alarms, reporting all faults to the DSP for immediate operator notification.
Application Fields and Case Studies
The IS200DTAIH1ABB is used in GE Frame 7E and 9E gas turbine exhaust temperature monitoring systems, steam turbine bearing temperature measurement, and critical process temperature monitoring in combined-cycle plants. In a South American 500 MW combined-cycle plant, the IS200DTAIH1ABB was selected for its factory-preloaded configuration matching the site’s specific thermocouple sensor batch. The preloaded settings reduced commissioning time by 3 days and eliminated calibration errors that had occurred with manually configured boards. When a channel deviation alarm activated on the IS200DTAIH1ABB, operators identified a drifting thermocouple before it could affect exhaust temperature spread calculations, preventing a potential turbine trip.
Comparison with Competing Products
| Dimension | IS200DTAIH1ABB | IS200DTAIH1A | Siemens SM 331 (TC) | ABB AI810 (TC) |
|---|---|---|---|---|
| Input Channels | 16 | 16 | 8 | 16 |
| Thermocouple Types | J, K, T, E, R, S, B, N | J, K, T, E, R, S, B, N | J, K, T | J, K, T, R, S, B, N |
| Resolution | 16-bit | 16-bit | 14-bit | 16-bit |
| Accuracy | ±0.1% + 0.5°C | ±0.1% + 0.5°C | ±0.2% + 1.0°C | ±0.1% + 0.6°C |
| Pre-configured Options | Yes (ABB) | No | Limited | Limited |
| Diagnostics | Open-TC + range + CJC + deviation | Open-TC + range + CJC | Limited | Open-TC + range |
| Isolation | 1500V RMS | 1500V RMS | 500V RMS | 1500V RMS |
The IS200DTAIH1ABB offers all the advantages of the IS200DTAIH1A with added factory pre-configuration that reduces commissioning time and eliminates configuration errors. The “ABB” variant is specifically valuable for standardized turbine packages. Siemens and ABB alternatives lack the specific GE sensor pre-configuration and diagnostic depth of the IS200DTAIH1ABB.
Selection Recommendations
Choose the IS200DTAIH1ABB when your project involves GE turbines with specified thermocouple sensor types and the “ABB” configuration matches your application. Use it as a replacement for IS200DTAIH1A boards when you require reduced commissioning effort and consistent sensor calibration. Avoid the IS200DTAIH1ABB if your thermocouple configuration differs from the factory preload; use a standard IS200DTAIH1A and configure manually. Deploy multiple IS200DTAIH1ABB boards to cover all exhaust thermocouples on larger turbines (e.g., 32+ channels for Frame 9E). For critical temperature inputs, use redundant IS200DTAIH1ABB boards with cross-wired thermocouples for full fault tolerance.
Precautions and Important Notes
Always use ESD-safe handling procedures when installing the IS200DTAIH1ABB. Verify that the preloaded “ABB” configuration matches your specific thermocouple types and calibration requirements; incorrect settings can cause unsafe temperature readings. Use proper thermocouple extension wire matched to sensor type – copper wire will introduce errors. Ensure adequate cable shielding and grounding to minimize EMI. Allow the IS200DTAIH1ABB to stabilize for 30 minutes after power-up before relying on readings. Never connect voltage or current signals to thermocouple inputs. When replacing a IS200DTAIH1A with a IS200DTAIH1ABB, verify configuration settings in ToolboxST. Do not mix IS200DTAIH1ABB with standard IS200DTAIH1A in redundant pairs without confirming identical settings. Store spare boards in anti-static packaging and rotate inventory every 24 months. Consult GE engineering if using the IS200DTAIH1ABB with non-standard thermocouple types or sensor configurations not covered by the preload.

A-B 1756-PB75
HIMA F3330
NI PXI-6031E
SCHNEIDER 140ACO13000


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