Ge IS200TBTCH1CBB
1. Core Overview
- Product Positioning: A standard thermocouple input module for GE Mark VI series control systems, mainly used for temperature collection in industrial processes.
- Applicable Systems: GE Mark VIe, Mark VIe Speedtronic, RX3i and other PLC/DCS systems.
- Functional Features: Supports multiple thermocouple types, with automatic cold junction compensation function, providing high-precision temperature measurement.
2. Main Specifications
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Specification Category
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Specific Parameters
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|---|---|
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Number of Channels
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8 Channels (8 Points)
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Thermocouple Type
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J, K, T, E, C, R, S, B
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Input Range
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-200°C to 1800°C
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Accuracy
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±0.1% FS (Full Scale)
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Resolution
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0.1°C
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Cold Junction Compensation
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Auto
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Operating Temperature
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-10°C to 60°C (Operating)
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Storage Temperature
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-40°C to 85°C
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Power Supply
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24V DC
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Communication
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Communicates with Mark VI system bus (Internal Bus)
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Protection Level
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Usually meets industrial environment requirements (e.g., IEC 60947-4-1)
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Dimensions
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Approx. 146 x 89 x 35 mm
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Mounting Method
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DIN Rail Mounting
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3. Product Features
- Multi-Thermocouple Support: Compatible with 8 most commonly used thermocouple standards in industry, with strong adaptability.
- High-Precision Measurement: Accuracy of ±0.1% FS meets the strict requirements of process control.
- Automatic Cold Junction Compensation: Built-in cold junction compensation circuit, no need for external compensation wires, simplifying wiring.
- Modular Design: Adopts GE standard card design, facilitating quick on-site replacement.
- Good Stability: Designed for harsh industrial environments with strong anti-interference ability.
4. Structure and Composition
- Module Body: Includes printed circuit board (PCB) and metal shell, usually gray or silver metal case.
- Terminal Blocks: Each channel has an independent thermocouple input terminal (Input Terminal) and signal return terminal (Signal Terminal).
- Cold Junction Compensation Circuit: Internally integrated compensation circuit.
- Interface: The back is equipped with a connector for communication with the PLC host (usually a standard GE interface).
5. Typical Application Fields
- Process Control: Chemical, petrochemical, pharmaceutical and other process industries that require precise temperature monitoring.
- Combustion Control: Combustion temperature monitoring of boilers, gas turbines and burners.
- Industrial Heating: Temperature control of electric furnaces and heat treatment equipment.
- Power Station and Energy: Key temperature monitoring points in electric power and nuclear power plants.
- Others: Temperature monitoring in food and beverage, papermaking, metal smelting and other fields.
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