The GE IC693 CHS391 E/G is a high-performance sine wave power supply module designed for precision industrial control applications, ensuring stable power delivery to sensitive electronic equipment.
The GE IC693 CHS391 E/G is a high-performance sine wave power supply module designed for precision industrial control applications, ensuring stable power delivery to sensitive electronic equipment.
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Communication Protocol:RS-485
Data Rate:Up to 1 Mbps
Operating Temperature:-40°C to +70°C
Power Consumption:1.5 W
Number of Channels:1
Dimensions:100 mm x 52 mm x 54 mm
Weight:100 g
Integrating state-of-the-art technology, the GE IC693 CHS391 E/G modular controller is engineered to deliver unparalleled performance and efficiency in industrial automation environments. This versatile device seamlessly integrates with a wide range of components, making it suitable for complex production lines and control systems.
Featuring a high-speed 200 MHz processor and ample memory capacity, this controller ensures rapid response times and smooth operation even under demanding conditions. Its robust design allows it to withstand harsh industrial environments, ensuring reliable operation over extended periods.
With support for multiple communication protocols, including Modbus, Ethernet/IP, and DeviceNet, the IC693 CHS391 E/G facilitates seamless integration with existing systems and promotes efficient data exchange. This capability significantly enhances system interoperability and simplifies the setup process.
Equipped with a comprehensive set of input/output channels, the controller provides flexible configuration options tailored to specific application requirements. Whether you need precise analog control, digital signal processing, or advanced monitoring capabilities, this device delivers the necessary functionality.
Built with durability in mind, the IC693 CHS391 E/G features a compact yet sturdy design capable of operating within a wide temperature range (-20°C to 60°C). It also supports a wide voltage range (12 to 36 VDC), ensuring reliable performance regardless of the power supply conditions encountered in industrial settings.

