General Electric IS220PHRAH1A, REV D | Advanced Turbine Control Boards
The GE IS220PHRAH1A, REV D is an advanced turbine control system designed for seamless integration and enhanced performance in industrial settings, offering precise control and reliability in demanding environments.
Detailed content
Model:IS220PHRAH1A, REV D
Manufacturer:General Electric
Module Type:Advanced Control Board
Series:Mark VIe
Revision😀
Functionality:Turbine Control
Dimensions (WxDxH):12.2 cm x 8.2 cm x 6 cm
Weight:0.38 kg
Thermocouple Input Capacity:8 channels
Input Voltage Range:0-10 VDC / 4-20 mA
Operating Temperature:-20°C to +60°C
Storage Temperature:-40°C to +85°C
Connection Ports:RS-485, Analog Inputs, Relay Outputs
Power Supply:DC 24V
Integrating the latest advancements in turbine control technology, the GE IS220PHRAH1A, REV D Boards & Turbine Control offers unparalleled precision and reliability. This high-performance module is meticulously designed to meet the stringent demands of modern industrial operations.
With its robust thermocouple input capacity and wide voltage range, this board ensures accurate data acquisition from temperature sensors, enabling efficient monitoring and control of turbine processes.
Featuring a compact design optimized for space-saving installation, the IS220PHRAH1A, REV D is equipped with multiple connection ports, facilitating easy integration with other control systems. Its wide operating and storage temperature range makes it suitable for a variety of environmental conditions, ensuring continuous operation even under challenging circumstances.
Backed by General Electric’s reputation for quality and innovation, this board comes with comprehensive documentation and support, ensuring a smooth setup and maintenance process. It is a testament to GE’s commitment to delivering state-of-the-art solutions that enhance productivity and minimize downtime.
Ideal for applications requiring precise turbine control, the GE IS220PHRAH1A, REV D Boards & Turbine Control is an indispensable component for any facility aiming to optimize energy efficiency and operational reliability.