GE IS220PTCCH2A Thermocouple Signal Conditioning Module - Mark VIe Control System
The GE IS220PTCCH2A is a thermocouple signal conditioning module designed for the Mark VIe control system, providing precise temperature measurement and signal processing for industrial applications.
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The GE IS220PTCCH2A is a thermocouple signal conditioning module designed for the Mark VIe control system, providing precise temperature measurement and signal processing for industrial applications.
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The GE IS220PTCCH2A is a specialized thermocouple signal conditioning module developed for the Mark VIe turbine and control system platform. This module provides high-accuracy temperature measurement capabilities essential for monitoring critical process parameters in power generation and industrial applications.
Key Technical Features:
Multi-Channel Input: Supports multiple thermocouple inputs with individual signal conditioning
High Accuracy Measurement: Precision analog-to-digital conversion ensures accurate temperature readings
Cold Junction Compensation: Integrated compensation for reference junction temperature variations
Noise Immunity: Advanced filtering and shielding techniques provide reliable operation in electrically noisy environments
Diagnostic Capabilities: Continuous self-monitoring and fault detection for maintenance planning
Technical Specifications:
Input Channels: 8 thermocouple inputs
Thermocouple Types: J, K, T, E, R, S, B, N types
Measurement Accuracy: ±0.1% of reading
Temperature Range: -200°C to +1800°C (dependent on thermocouple type)
Update Rate: 10 samples per second per channel
Isolation: 1500V channel-to-channel and channel-to-ground
Operating Temperature: 0°C to +70°C
Typical Applications:
Gas turbine exhaust temperature monitoring
Steam turbine metal temperature measurement
Bearing temperature monitoring
Process temperature control
Industrial furnace monitoring
The IS220PTCCH2A module exemplifies GE's commitment to precision measurement technology, providing reliable temperature monitoring that ensures equipment protection and process optimization in critical industrial applications.