IS200VTCCH1CBB GE

¥999.00

The GE IS200VTCCH1CBB is a VMEbus terminal board manufactured by General Electric for the Mark VIe distributed control system (DCS). This board is a high-performance Thermocouple Input module, featuring 24 differential thermocouple inputs with integrated cold junction compensation. The GE IS200VTCCH1CBB combines the advanced capabilities of the “H1C” series with the “BB” suffix enhancements—typically indicating conformal coating as standard, extended burn-in (120 hours), 100% X-ray/AOI inspection, and premium component selection for maximum reliability in harsh environments. This board is designed for critical temperature monitoring in gas turbines, steam turbines, and HRSG systems where measurement accuracy, fast response, and environmental protection are paramount.

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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
CJC Accuracy ±0.15 °C
Resolution 24-bit ADC
Sample Rate 20 Hz (50 ms per channel, sequential)
Input Protection Overvoltage (±35 VDC), ESD (IEC Level 4)
Filtering 8-level programmable digital filtering
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 –25 °C to +70 °C (extended range)
Humidity 5–100% condensing (with conformal coating)
Coating Conformal coating (standard) — UV-traceable
Manufacturing 120-hour burn-in, 100% X-Ray/AOI, premium component selection
Power 12 W (+5 V / +3.3 VDC)
Connectors 48-pin terminal block with gold-plated contacts and captive washer screws
Built-in Test Open/short circuit detection, CJC sensor health monitoring, channel-to-channel crosstalk detection

Advantages & Distinctive Features

  • 24 High-Density Channels: Maximizes thermocouple inputs per slot—reduces rack space.

  • Superior Accuracy: ±0.05% reading + ±0.3 °C ensures reliable measurements for critical turbine protection.

  • Enhanced CJC Accuracy: ±0.15 °C provides accurate absolute temperature readings.

  • Faster Sample Rate: 20 Hz provides faster response for dynamic temperature monitoring.

  • 8-Level Digital Filtering: Expanded filtering for optimal noise rejection.

  • Fault Confirmation Delay: Programmable delay (0–10 seconds) prevents nuisance trips from intermittent sensor connections.

  • Conformal Coating Standard: Protects against humidity, salt spray, and chemical vapors—suitable for coastal, offshore, and industrial environments.

  • Extended Temperature Range: –25 °C to +70 °C operation—suitable for unheated cabinets and harsh environments.

  • 1000-Event Fault Log with waveform snapshots—enables comprehensive post-event analysis.

  • Gold-Plated Captive Washer Terminals: Corrosion-resistant and vibration-proof connections.

  • Hot-Swappable: No rack power-down for replacement.

  • Direct Retrofit: Replaces all VTCC H1A, H1B, and H1C series boards.


Application Fields

  • Gas turbines: Exhaust gas temperature (EGT), combustion monitoring, turbine inlet temperature

  • Steam turbines: Casing temperature monitoring, bearing temperature

  • Generators: Stator winding temperature monitoring

  • Compressors: Inlet/discharge temperature monitoring

  • HRSG: Superheater, reheater, economizer outlet temperature

  • Offshore platforms: Salt-spray environments requiring conformal coating

  • Chemical processing: Corrosive environments

  • Nuclear power plants: Safety-critical temperature monitoring

  • Arctic/desert installations: Extreme temperature environments


Comparison with Competitors

Feature GE IS200VTCCH1CBB 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
Sample Rate 20 Hz 10 Hz 10 Hz
Filtering Levels 8-level Basic Basic
Fault Confirmation Delay Yes No No
Coating Standard Optional Optional
Temp Range –25 to +70 °C 0 to +55 °C 0 to +55 °C
Fault Logging 1000 events + waveforms No No

The GE IS200VTCCH1CBB offers superior accuracy, sampling rate, channel density, environmental protection, and diagnostics compared to competitors—making it the definitive choice for demanding thermocouple monitoring in harsh environments.


Selection Guidelines

  • When to choose:

    • Critical temperature monitoring requiring high accuracy and fast response

    • Harsh environments (coastal, offshore, chemical, high-humidity, extreme temps)

    • 24 thermocouple channels in a single slot

    • Applications needing nuisance trip prevention (fault confirmation delay)

    • Dynamic temperature monitoring requiring 20 Hz sampling

    • Maximum reliability (nuclear, critical infrastructure)

  • When to choose “H1C” instead: For clean, controlled environments (0–60 °C, non-condensing) where conformal coating is not required—the “CBB” variant is typically more expensive; select only when environmental conditions warrant it.

  • Thermocouple Selection: Verify field TC type; use appropriate extension wire.

  • CJC Consideration: Ensure terminal block is at stable ambient temperature—avoid heat sources or direct airflow.

  • Burnout Configuration: Select up-scale for failsafe turbine protection or down-scale as required.

  • Fault Confirmation Delay: Program 0.5–2 seconds for most turbine applications.

  • Filtering: Use Level 2 or 3 for most applications; Level 4–8 for electrically noisy environments.

  • Coating Verification: Inspect under UV (365 nm) upon receipt—uniform fluorescence indicates proper coating.

  • Compatibility: Fits all Mark VIe VME64x racks. Requires ControlST v6.5 or higher for full features.


Operational Precautions

  1. Wiring: Follow GEH-6830 diagrams—correct polarity essential. Use TC-grade extension wire; ground shield at terminal board only.

  2. CJC Stability: Ensure stable terminal block temperature for accurate CJC compensation.

  3. Burnout Testing: Simulate open-circuit to verify burnout direction and fault confirmation delay during commissioning.

  4. Calibration: Factory-calibrated—verify against known millivolt reference during commissioning for critical channels.

  5. LED Diagnostics: Green = normal; Amber = out-of-range/CJC fault; Red = burnout. Refer to GEH-6830 for blink codes.

  6. Fault Log: Access 1000-event log via Toolbox ST for post-event analysis.

  7. Coating Care: Use GE-approved cleaner; avoid solvents that dissolve coating. Inspect annually under UV—rework voids with approved coating per GE FSB.

  8. Hot-Swap: Remove/insert slowly under power—processor auto-recognizes new module.

  9. Spare Stock: Maintain 1 spare per 3–4 racks; “CBB” backward-compatible with all VTCC sockets.

  10. Annual Verification: Verify channels against known millivolt reference during outages; document drift trends.

  11. Thermal Derating: Above 60 °C, accuracy may degrade slightly—monitor CJC temperature via Toolbox ST.

  12. ESD: Handle by edges only with grounded wrist strap—coating does not protect connectors.

  13. Storage: Anti-static bag with desiccant at –40 to +85 °C; rotate every 3 years for coating inspection.

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