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GE IS220PTCCH2BB Thermocouple Input Pack | IS230SNTCH4A Mark VIe Module
GE IS220PTCCH2BB Thermocouple Input Pack | IS230SNTCH4A Mark VIe Module
Manufacturer: GE
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Product No.: GE IS220PTCCH2BB(IS230SNTCH4A)
Condition:in Stock
Product Type: GE IS220PTCCH2BB(IS230SNTCH4A)
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Product Origin: USA
Payment:T/T, Western Union
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Weight: 800g
Shipping port: Shanghai/Yiwu/Shenzhen
Warranty: 12 months
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Product Description
Overview
The GE IS220PTCCH2BB (IS230SNTCH4A) is a Thermocouple Input I/O Pack designed for the Mark VIe turbine control system. It provides precise temperature monitoring for critical gas and steam turbine operations. By integrating with the IS230SNTCH4A terminal board, this module delivers high-density thermocouple signal acquisition, advanced cold-junction compensation, and reliable Ethernet communication for safety-critical environments.
Functional Highlights
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High-Density Temperature Monitoring: Supports up to 12 or 24 thermocouple channels depending on the assembly configuration.
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Thermocouple Compatibility: Works with all standard types including J, K, E, T, S, B, R, and N.
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Advanced Signal Conditioning: 16-bit ADC resolution ensures accurate readings, even for low-voltage thermocouples.
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Redundancy and Safety Compliance: Supports simplex, dual, or TMR setups, compliant with SIL2/3 standards.
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Robust Communication: Dual 100 Mbps IONet Ethernet ports provide deterministic and redundant data paths to Mark VIe controllers.
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Environmental Resilience: Operates reliably from -25°C to +60°C, with humidity tolerance of 5–95% non-condensing.
Performance Characteristics
1. Precision Multi-Channel Sensing
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Handles numerous thermocouple inputs on a single assembly for compact installation.
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Includes integrated cold-junction compensation (CJC) for accurate readings despite ambient temperature variations.
2. High-Resolution Conversion
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16-bit analog-to-digital conversion ensures reliable detection of small millivolt variations from thermocouples, suitable for Type S, R, or B inputs.
3. Continuous Diagnostics
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Monitors for open or shorted thermocouple circuits.
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Internal self-tests verify power supply, reference voltages, and module integrity.
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Supports configurable software alarms for absolute temperature and rate-of-change limits.
4. Deterministic Ethernet Communication
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Dual IONet ports provide network redundancy and precise time-stamped temperature data.
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Compliant with IEEE 1588 Precision Time Protocol for synchronized measurements across multiple modules.
5. Rugged Industrial Design
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Conformal-coated PCB and robust chassis allow operation in EMI-intensive and high-temperature environments.
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Compact DIN-rail or panel mounting reduces footprint while maintaining service accessibility.
Technical Specifications
| Feature | Specification |
|---|---|
| System Compatibility | GE Mark VIe Control System |
| Part Number / Terminal Board | IS220PTCCH2BB / IS230SNTCH4A |
| Thermocouple Channels | 12–24 depending on configuration |
| Supported Thermocouple Types | J, K, E, T, S, B, R, N |
| A/D Converter Resolution | 16-bit |
| Operating Voltage | 24 VDC or 125 VDC |
| Control Modes | Simplex, Dual, TMR |
| Network Interface | Dual 100 Mbps IONet Ethernet |
| Cold-Junction Compensation | Integrated on SNTC board |
| Operating Temperature | -25°C to +60°C |
| Humidity Range | 5–95% non-condensing |
| Mounting Options | DIN rail or panel mount |
| Safety Compliance | SIL2 / SIL3 functional safety standards |
| Revision | H2 Variant, Revision B |
Applications
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Real-time temperature monitoring for gas and steam turbines
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Integration with Mark VIe turbine control systems
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Critical safety monitoring in TMR or simplex configurations
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Emission control and turbine component protection
FAQ
Q: How many thermocouple channels does this pack support?
A: Supports 12 channels natively, expandable to 24 channels depending on the SNTC terminal board configuration.
Q: Is it compatible with all standard thermocouples?
A: Yes, it works with J, K, E, T, S, B, R, and N types.
Q: Can it be installed in TMR configurations?
A: Yes, it supports simplex, dual, or TMR setups for redundant temperature monitoring.
Q: How is cold-junction compensation handled?
A: The SNTC terminal board includes integrated CJC sensors for accurate ambient temperature compensation.
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