GE IS200AEADH4A 109W3660P001

Product Introduction: The IS200AEADH4A 109W3660P001 is a dedicated analog input terminal board in GE’s Mark VI Speedtronic series, designed to interface sensors and actuators directly with the Mark VI controller for precise signal acquisition and transmission. It converts 4–20 mA current, 0–10 V DC voltage, and thermocouple signals into digital data with 16-bit resolution, supporting high-density I/O for turbine control systems. It integrates industrial-grade components, redundant power/R-NET connections, and built-in signal conditioning, ensuring reliable operation in harsh industrial environments, and serves as a core I/O interface for gas/steam turbine control, balance-of-plant (BOP) systems, and critical process monitoring.

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Description
  • Manufacturer: General Electric (GE) / GE Fanuc (now part of Baker Hughes)
  • Product Category: Analog Input Terminal Board (ANALOG INPUT BD)
  • Series: Mark VI Speedtronic (MKVI) Turbine Control System
  • Alternate Part Number: 109W3660P001 (factory assembly code)
  • Analog Input Channels: 16 differential input channels for 4–20 mA, 0–10 V DC, and thermocouple (Type J/K/T/E/R/S/B) signals
  • Resolution: 16-bit ADC for 0.0015% measurement precision
  • Input Signal Range: 4–20 mA (current), 0–10 V DC (voltage), ±5 V DC (bi-polar), thermocouple (Type J/K/T/E/R/S/B)
  • Common-Mode Rejection Ratio (CMRR): 100 dB at 50/60 Hz for noise immunity
  • Input Impedance: 250 Ω for 4–20 mA; 1 MΩ for voltage inputs
  • Filtering: 2nd-order RC low-pass filter with 10 Hz cutoff frequency
  • Redundancy Support: Dual 24 V DC power inputs; dual R-NET communication interfaces
  • Power Requirements: 24 V DC ±10% (1.2 A max per power input)
  • Communication Protocol: R-NET (GE proprietary serial network) for Mark VI controller integration
  • Operating Temperature: -20°C to +60°C (-4°F to 140°F)
  • Storage Temperature: -40°C to +85°C (-40°F to 185°F)
  • Relative Humidity: 5%–95% (non-condensing)
  • Physical Dimensions: 178 mm × 51 mm × 305 mm (7.0 in × 2.0 in × 12.0 in)
  • Weight: 0.5 kg (1.1 lb)
  • Mounting Type: DIN rail or rack mount (compatible with Mark VI chassis)
  • Certifications: UL 508, CSA C22.2 No. 14, CE compliant
  • Direct Sensor Connection: Eliminates intermediate signal conditioners, reducing wiring complexity and failure points
  • High-Precision Conversion: 16-bit ADC delivers 0.0015% accuracy for critical turbine parameters
  • Multi-Signal Compatibility: Supports 4–20 mA, 0–10 V DC, and 7 thermocouple types for diverse sensor integration
  • Redundant Design: Dual power/R-NET interfaces ensure continuous operation during single-point failures
  • Superior Noise Immunity: 100 dB CMRR and 10 Hz low-pass filters suppress industrial interference
  • Industrial-Grade Durability: Operates in -20°C to +60°C and non-condensing humidity for harsh environments
  • Simplified Wiring: Terminal blocks with screw clamping for 12–22 AWG copper conductors
  • Seamless Mark VI Integration: R-NET communication enables plug-and-play compatibility with Mark VI controllers
  • Diagnostic Capabilities: Built-in self-test (BIST) and channel fault indication for rapid troubleshooting
  • Modular Design: DIN rail mounting facilitates easy replacement and system expansion
  • Power Generation: Gas/steam turbine control for temperature, pressure, flow, and vibration monitoring
  • Oil and Gas: Compressor/pump control, pipeline monitoring, and upstream/midstream process automation
  • Petrochemical: Refinery process control, reactor temperature monitoring, and valve positioning systems
  • Marine/Offshore: Shipboard turbine propulsion, offshore platform power generation, and dynamic positioning systems
  • Industrial Automation: BOP system monitoring, boiler control, and generator protection in power plants
  • Data Acquisition: Precise sensor data logging for turbine performance analysis and predictive maintenance
  • Retrofit Projects: Replacement of legacy I/O boards in Mark V to Mark VI system upgrades
  • Critical Infrastructure: Emergency power systems and backup generator controls requiring redundant I/O
  • Process Manufacturing: Chemical plant batch control and material handling systems with analog sensing
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