GE IS200DTCIH1A

¥999.00

The IS200DTCIH1A is a Digital Thermocouple Analog Input (DTCI) board from General Electric’s Mark VI Speedtronic™ series. While sharing similarities with the IS200DTAIH1A and IS200DTAIH1ABB temperature input boards, the IS200DTCIH1A represents a distinct variant with specific channel configuration, isolation architecture, or input conditioning features optimized for certain turbine temperature monitoring applications. The “TCI” designation typically indicates thermocouple input with enhanced common-mode rejection or specialized filtering for high-EMI environments. The IS200DTCIH1A features multiple isolated thermocouple input channels with built-in cold junction compensation (CJC), 16-bit resolution, and support for major thermocouple types. This board is essential for exhaust temperature monitoring, bearing temperature surveillance, and overtemperature protection in GE gas and steam turbines. It mounts directly into a Mark VI VME backplane and communicates digitized temperature data to the main DSP processor for control algorithm execution.

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Description

Technical Specifications

Parameter Specification
Manufacturer General Electric
Model IS200DTCIH1A
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 for 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
MTBF > 120,000 hours

Advantages and Key Features

Enhanced EMI Immunity: The IS200DTCIH1A features improved common-mode rejection and input filtering compared to other thermocouple boards, making it particularly suitable for installations with high electromagnetic interference, such as near variable-frequency drives or high-power switchgear.

Comprehensive Thermocouple Support: Supports all major thermocouple types (J, K, T, E, R, S, B, N) with software selection per channel, providing deployment flexibility across different turbine measurement points.

Integrated Cold Junction Compensation: Each of the 16 channels includes 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 IS200DTCIH1A delivers reliable data for exhaust temperature spread monitoring and overtemperature protection algorithms.

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 IS200DTCIH1A is used in GE gas turbines for exhaust temperature monitoring (Frame 6B/7E/9E), steam turbine bearing and casing temperature measurement, and compressor discharge monitoring. It is particularly valued in installations with significant electrical noise. In a European cogeneration plant with multiple variable-frequency drives located near the control room, standard thermocouple boards experienced intermittent reading errors due to EMI. Replacing them with the IS200DTCIH1A eliminated these errors due to its enhanced common-mode rejection. The board’s diagnostics also allowed operators to identify a slowly drifting thermocouple before it could affect exhaust temperature spread calculations.

Comparison with Competing Products

Dimension IS200DTCIH1A 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
CMRR > 120 dB > 100 dB > 90 dB > 100 dB
Accuracy ±0.1% + 0.5°C ±0.1% + 0.5°C ±0.2% + 1.0°C ±0.1% + 0.6°C
Diagnostics Open-TC + range + CJC + deviation Open-TC + range + CJC Limited Open-TC + range
Isolation 1500V RMS 1500V RMS 500V RMS 1500V RMS

The IS200DTCIH1A offers superior EMI immunity compared to the IS200DTAIH1A and competing products, making it the preferred choice for electrically noisy environments. While the IS200DTAIH1ABB provides factory pre-configuration, the IS200DTCIH1A provides enhanced noise rejection critical for certain installations.

Selection Recommendations

Choose the IS200DTCIH1A when your turbine control room or field wiring is near sources of electromagnetic interference, such as variable-frequency drives, large motors, or high-power switchgear. Use it as a replacement for IS200DTAIH1A boards when experiencing intermittent temperature reading errors or noise-related issues. Select the IS200DTCIH1A for compressor stations or industrial facilities with high electrical noise levels. For standard installations without EMI concerns, the IS200DTAIH1A or IS200DTAIH1ABB may be more cost-effective. Deploy multiple IS200DTCIH1A boards to cover all exhaust thermocouples on larger turbines.

Precautions and Important Notes

Always use ESD-safe handling procedures when installing the IS200DTCIH1A. Use proper thermocouple extension wire matched to the sensor type – copper wire will introduce significant errors. Ensure adequate cable shielding and proper grounding to maximize the board’s EMI immunity. Allow the IS200DTCIH1A 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 IS200DTCIH1A, reconfigure ToolboxST settings to match the new board. Do not mix IS200DTCIH1A with IS200DTAIH1A 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 IS200DTCIH1A in extremely high-EMI environments or with very long thermocouple wiring runs.

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