Description
IS220PDIAH1B GE High-Speed Turbine Control Circuit Board
Product Description:
The IS220PDIAH1B is a high-speed turbine control circuit board manufactured by General Electric (GE). This board is specifically designed for use in controlling high-speed turbines and integrates with various components and terminals of the turbine control system.

IS220PDIAH1B GE High-Speed Turbine Control Circuit Board
Product Parameters:
Input Voltage Range: 85-132 VAC
Input Frequency Range: 47-63 Hz
Input Current: Maximum 1.5 A (RMS)
Surge Current: 20 A (maximum), lasting for 1 cycle
Output Voltage Range: 22-28 VDC
Line Regulation: ±0.5%
Load Regulation: ±1.0%
Output Ripple and Noise: Maximum 150 mVp-p
Operating Temperature Range: -40°C to +70°C
Product Specifications:
Dimensions: 5.00 x 3.00 x 1.38 inches
Weight: Not specified.
Power Output: 40 Watts
Efficiency: 89%
Series:
The IS220PDIAH1B belongs to the Mark VIe series of control components from GE, specifically designed for use in turbine control systems
Features:
Compatibility: The board is compatible with various GE terminal blocks, including IS200STCIH1A and 2A, IS200STCIH8A, Is200TBCIH2C or H4C, IS400TBCIH2C, IS400STCIH1A or 2A, and IS400STCIH8A
UL Approval: The board is approved for use in both non-hazardous and hazardous locations
Robust Design: It features a robust design with industrial-grade components, ensuring reliability and durability in harsh environments

IS220PDIAH1B GE High-Speed Turbine Control Circuit Board
Functions:
Control and Monitoring: The board provides control and monitoring capabilities for high-speed turbines, regulating their operation based on various input signals and parameters
Signal Processing: It processes input signals from various sensors and devices, converting them into usable data for the control system
Data Exchange: The board interfaces with other components and systems, facilitating data exchange and integration
Applications and Uses:
The IS220PDIAH1B is primarily used in industrial automation and control systems, specifically for controlling high-speed turbines in power generation, oil and gas, and other industrial processes. It integrates with various sensors, actuators, and other components to provide precise control and monitoring of turbine operations
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