GE IS200VTCCH1B | VME TC Module | Fast Shipping

  • Model: IS200VTCCH1B
  • Brand: GE (General Electric)
  • Series: Mark VIe Speedtronic
  • Core Function: VME-based thermocouple input module for high-temperature measurement in turbine control applications
  • Product Type: Thermocouple Input Module / Temperature Interface (VME form factor)
  • Key Specs: 16 thermocouple inputs | 16-bit resolution | Cold junction compensation | Linearization
  • Condition: New Surplus, OEM packaging. Factory-sealed units available.
Manufacturer:

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Description

 

Product Introduction

The GE IS200VTCCH1B is a VMEbus thermocouple input module from the Mark VIe Speedtronic series, purpose-built for high-temperature measurement in turbine control applications. This board interfaces with standard thermocouple types (J, K, T, E, N, R, S, B) to monitor exhaust gas temperatures (EGT), metal temperatures, and other critical thermal parameters required for turbine protection, performance optimization, and life extension monitoring.

What sets the H1B revision apart is its 16-channel capacity, built-in cold junction compensation (CJC) per channel, and factory linearization for multiple thermocouple types. The module delivers 16-bit resolution with better than ±0.5°C accuracy (after CJC) and features per-channel open-circuit detection for immediate fault reporting. The H1B revision also includes improved input filtering and enhanced noise rejection compared to earlier variants—critical for accurate measurement in the electrically noisy environments typical of gas turbine enclosures. For system integrators maintaining Mark VIe cabinets and requiring precise high-temperature measurement, this board is the direct OEM solution.

 

Key Technical Specifications

Parameter Value
Input Channels 16 differential thermocouple inputs
Thermocouple Types J, K, T, E, N, R, S, B (software selectable per channel)
Input Voltage Range ±100 mV typical (thermocouple signal)
Resolution 16-bit (0.25 µV typical)
Accuracy ±0.5°C typical (after CJC), ±1.0°C maximum over temperature
Cold Junction Compensation Per-channel built-in CJC
Linearization Factory-linearized per type (ITS-90)
Input Protection TVS diodes, series resistors (withstands 30 VDC)
Open-Circuit Detection Per-channel diagnostic
Common Mode Rejection >90 dB at 50/60 Hz
Normal Mode Rejection >60 dB at 50/60 Hz
Scan Rate 200 ms typical for all 16 channels (12.5 ms per channel)
Operating Temperature 0 to +55°C (ambient)
Storage Temperature −40 to +85°C
Power Draw 5 VDC @ 0.5 A typical (2.5 W)
Firmware Requires Mark VIe Toolkit v5.0 or higher
Connectors Front panel 50-pin D-sub (two 25-pin channels)

 

Key Selling Points & Differentiators

  • High Channel Density: 16 thermocouple inputs on a single VME slot—reduces chassis space requirements.
  • Multiple Thermocouple Support: J, K, T, E, N, R, S, B types—software selectable per channel, eliminating the need for different board variants.
  • Per-Channel CJC: Individual cold junction compensation sensors on each channel minimize errors from cabinet temperature gradients.
  • Enhanced Noise Rejection: >90 dB common mode rejection—critical for accurate measurement in turbine environments with high electromagnetic interference.
  • Open-Circuit Detection: Per-channel diagnostics alert you to broken thermocouple wires or loose connections.
  • Live Test Verified: Every board undergoes a 48-hour burn-in with all 16 channels exercised across simulated temperature ranges. We log accuracy, CJC performance, noise rejection, and diagnostic detection thresholds.
  • 90-Day Warranty: Covers functional defects. If it fails under normal operating conditions, we replace it. No restocking fee for verified returns.
  • OEM Traceability: All units come from audited surplus channels with original GE anti-static bags and serialized labels. No clones, no pull-and-refurbish from unknown sources.
  • Configuration Backup Service (Free): Upon request, we extract and archive your existing board’s firmware version and configuration before shipment.

 

Frequently Asked Questions (FAQ)

Q: What is the difference between IS200VTCCH1A and IS200VTCCH1B?

A: The H1B has improved input filtering and slightly better noise rejection than H1A. The H1B also supports a wider range of thermocouple types and has enhanced cold junction compensation accuracy. Functionally they are interchangeable for most applications, but if you’re in an electrically noisy environment, the H1B is recommended.

Q: What types of thermocouples does this board support?

A: The VTCCH1B supports eight standard thermocouple types: J (iron-constantan), K (chromel-alumel), T (copper-constantan), E (chromel-constantan), N (nicrosil-nisil), R (platinum-rhodium), S (platinum-rhodium), and B (platinum-rhodium). Type selection is per-channel software selectable through the Mark VIe Toolkit. If you’re using a less common type, check your toolkit version—some older versions may not support all types.

Q: How does cold junction compensation (CJC) work on this board?

A: Each of the 16 channels has an individual temperature sensor built into the connector block. This sensor measures the temperature at the thermocouple junction and applies the appropriate compensation to the measured voltage. This eliminates errors caused by cabinet temperature gradients, which can be substantial in turbine enclosures. The CJC accuracy is critical—at 500°C, a 1°C error in CJC can cause a 0.8°C measurement error.

Q: What is the typical temperature range for thermocouple measurements?

A: The range depends on thermocouple type:

  • J: −200 to +760°C
  • K: −200 to +1,350°C
  • T: −200 to +400°C
  • E: −200 to +900°C
  • N: −200 to +1,300°C
  • R/S: 0 to +1,750°C
  • B: +100 to +1,820°C

The board accurately measures within these ranges, but you must verify your sensor’s calibration for your specific application.

Q: Is this board hot-swappable?

A: No. The Mark VIe VME backplane does not support live insertion. You must de-energize the rack, ground yourself, and wait 30 seconds for bulk capacitors to discharge. We’ve seen field crews try to pull a VTCC while the cabinet was still on auxiliary power—it corrupted the calibration data on the board. Don’t risk it.

Q: How do I know if my thermocouple sensor or wiring is faulty?

A: The VTCCH1B performs automatic open-circuit detection on each channel. If the thermocouple resistance exceeds approximately 10 kΩ (indicating a broken wire or loose connection), the board flags a fault. In the Mark VIe Toolkit, you’ll see a diagnostic alarm. Common causes: broken sensor wire, loose terminal connection, or corrosion in the junction box. The board does not detect short circuits (low resistance) because thermocouples naturally have low DC resistance.

Q: What is the typical scan rate for all 16 channels?

A: The board scans all 16 channels in approximately 200 ms (12.5 ms per channel). If you need faster updates, you can reduce the number of active channels in software—the scan rate scales linearly. For critical protection channels (e.g., EGT monitoring), we recommend dedicating separate channels and keeping the scan rate under 100 ms per channel.

Q: What is the typical lead time for this part?

A: We stock these on the shelf—usually ship within 24 hours of order placement and payment confirmation. For international orders, add 3–5 days for customs. If you need expedited (overnight air), we can do that, but you’ll need to coordinate with our logistics team for the cut-off time.

Q: Does this board work with the newer Mark VIeS (SIL-rated) cabinets?

A: To be direct: no. The IS200VTCCH1B is not SIL-certified. It’s meant for standard Mark VIe industrial control. The SIL-rated systems use the IS220VTCC (with additional redundancy, diagnostic coverage, and separate safety shutdown path). Mixing them violates your site’s safety integrity level. If you’re in a SIL environment, we can source the correct variant but it will have a different model number.

Q: What’s your return policy if this doesn’t solve my temperature measurement issue?

A: If the board is electrically functional (passes our QC test) but doesn’t correct your fault, we’ll accept a return within 30 days provided the board shows no physical damage and the connectors are intact. We do charge a 15% restocking fee if the fault was due to sensor wiring issues, configuration errors, or toolkit compatibility problems. We’ll work with you over the phone or email to diagnose the problem before we ship—our goal is to get you running, not to ship boxes back and forth.

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