Description
Key Specifications
| Parameter | Specification |
|---|---|
| Input Channels | 24 differential thermocouple inputs |
| Thermocouple Types | J, K, T, E, N, R, S, B, C (software-selectable per channel) |
| Input Signal Range | –20 mV to +100 mV |
| Accuracy | ±0.05% of reading + ±0.3 °C (improved over H1B) |
| CJC Accuracy | ±0.15 °C (enhanced over H1B) |
| Resolution | 24-bit ADC |
| Sample Rate | 20 Hz (50 ms per channel, sequential) — double H1B series |
| Input Protection | Overvoltage (±35 VDC), ESD (IEC Level 4) |
| Filtering | 8-level programmable digital filtering (expanded over H1B) |
| Isolation | 1500 VDC (channel-to-backplane) |
| Burnout Detection | Selectable up/down scale with programmable fault confirmation delay (0–10 seconds) |
| Diagnostics | 1000-event fault log with timestamps and waveform snapshots |
| Operating Temp | 0 °C to +60 °C |
| Power Draw | 12 W (+5 V / +3.3 VDC) |
| Connectors | 48-pin terminal block with gold-plated contacts |
| Built-in Test | Open/short circuit detection, CJC sensor health monitoring, channel-to-channel crosstalk detection |
Advantages & Distinctive Features
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24 High-Density Channels: Maximizes thermocouple inputs per slot—reduces rack space and cost per channel.
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Superior Accuracy: ±0.05% reading + ±0.3 °C ensures reliable measurements for critical turbine protection and efficiency optimization.
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Enhanced CJC Accuracy: ±0.15 °C CJC sensors provide more accurate absolute temperature readings.
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Faster Sample Rate: 20 Hz (double H1B) provides faster response for dynamic temperature monitoring and transient analysis.
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8-Level Digital Filtering: Expanded filtering options for optimal noise rejection in electrically noisy environments.
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Fault Confirmation Delay: Programmable delay (0–10 seconds) prevents nuisance trips from intermittent sensor connections.
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Channel-to-Channel Crosstalk Detection: Identifies wiring shorts between adjacent channels—enhances diagnostic capability.
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Waveform Snapshots: Captures pre- and post-fault data for detailed post-event analysis.
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1000-Event Fault Log: Enables comprehensive remote diagnostics and trend analysis.
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I/O Net Integration: Seamless communication with processor boards via redundant Ethernet links.
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Hot-Swappable: No rack power-down for replacement.
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Direct Retrofit: Replaces all VTCC H1A and H1B series boards.
Application Fields
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Gas turbines: Exhaust gas temperature (EGT), combustion monitoring, turbine inlet temperature
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Steam turbines: Casing temperature monitoring, bearing temperature
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Generators: Stator winding temperature monitoring
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Compressors: Inlet/discharge temperature monitoring
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HRSG: Superheater, reheater, economizer outlet temperature
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Offshore platforms: Salt-spray environments
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Chemical processing: Corrosive environments
Comparison with Competitors
| Feature | GE IS200VTCCH1C | Siemens ET200SP TC | Rockwell 1794-IT8 |
|---|---|---|---|
| Channels | 24 | 8 | 8 |
| TC Types | J,K,T,E,N,R,S,B,C | J,K,T,E,N,R,S | J,K,T,E,R,S |
| Accuracy | ±0.05% + ±0.3 °C | ±0.2% + ±1 °C | ±0.15% + ±1 °C |
| CJC Accuracy | ±0.15 °C | ±0.5 °C | ±0.5 °C |
| Sample Rate | 20 Hz | 10 Hz | 10 Hz |
| Filtering Levels | 8-level | Basic | Basic |
| Fault Confirmation Delay | Yes (programmable) | No | No |
| Crosstalk Detection | Yes | No | No |
| Fault Logging | 1000 events + waveforms | No | No |
The GE IS200VTCCH1C offers superior accuracy, sampling rate, channel density, and diagnostics compared to competitors—making it the definitive choice for demanding thermocouple monitoring applications.
Selection Guidelines
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When to choose:
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Critical temperature monitoring requiring high accuracy and fast response
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24 thermocouple channels in a single slot
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Applications needing nuisance trip prevention (fault confirmation delay)
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Dynamic temperature monitoring requiring 20 Hz sampling
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Electrically noisy environments (8-level filtering)
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Thermocouple Selection: Verify field TC type; use appropriate extension wire.
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CJC Consideration: Ensure terminal block is at stable ambient temperature—avoid heat sources or direct airflow.
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Burnout Configuration: Select up-scale for failsafe turbine protection or down-scale as required.
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Fault Confirmation Delay: Program 0.5–2 seconds for most turbine applications.
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Filtering: Use Level 2 or 3 for most applications; Level 4–8 for electrically noisy environments.
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Compatibility: Fits all Mark VIe VME64x racks. Requires ControlST v6.5 or higher for full features.
Operational Precautions
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Wiring: Follow GEH-6830 diagrams—correct polarity essential. Use TC-grade extension wire; ground shield at terminal board only.
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CJC Stability: Ensure stable terminal block temperature for accurate CJC compensation.
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Burnout Testing: Simulate open-circuit to verify burnout direction and fault confirmation delay during commissioning.
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Calibration: Factory-calibrated—verify against known millivolt reference during commissioning for critical channels.
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LED Diagnostics: Green = normal; Amber = out-of-range/CJC fault; Red = burnout. Refer to GEH-6830 for blink codes.
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Fault Log: Access 1000-event log via Toolbox ST for post-event analysis.
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Crosstalk Testing: During commissioning, verify adjacent channels do not affect each other (inject signal on one channel, monitor adjacent).
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Hot-Swap: Remove/insert slowly under power—processor auto-recognizes new module.
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Spare Stock: Maintain 1 spare per 3–4 racks; “C” backward-compatible with all VTCC sockets.
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Annual Verification: Verify channels against known millivolt reference during outages; document drift trends.
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Thermal Derating: Above 50 °C, accuracy may degrade slightly—monitor CJC temperature via Toolbox ST.
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ESD: Handle by edges only with grounded wrist strap.

TRICONEX 9561-810
AB 1769-HSC
A-B 1756-PA72
WESTINGHOUSE 1C31169G02


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