The GE DS200DCFBG1B is a high-performance Direct Current Control Module, designed for seamless integration into industrial automation systems. It ensures precise control over DC systems with robust performance and reliability.
The GE DS200DCFBG1B is a high-performance Direct Current Control Module, designed for seamless integration into industrial automation systems. It ensures precise control over DC systems with robust performance and reliability.
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Model:DS200DCFBG1B
Type:Digital Control Module
Series:Mark V
Dimensions (LxWxH):18.5 x 20.3 x 3.5 cm
Weight:0.65 kg
Operating Voltage:24V DC
Input Current:0.5A
Output Current:1A
Operating Temperature Range:-20°C to +60°C
Humidity Range:5% to 95% non-condensing
Communication Interface:RS-485
Control System Compatibility:Mark V and higher
The GE DS200DCFBG1B is engineered with advanced semiconductor technology to deliver unparalleled performance in controlling DC systems across various industrial applications. Its compact design and robust construction make it suitable for harsh environments, ensuring reliable operation under extreme conditions.
Featuring an extensive set of communication interfaces, including RS-485 and Modbus protocols, this module facilitates seamless integration with other industrial devices and control systems, enhancing system efficiency and flexibility.
With a comprehensive input/output capacity, the DS200DCFBG1B provides ample connectivity options for interfacing with sensors, actuators, and other critical components in your automation setup. This ensures efficient monitoring and control of your DC processes.
Engineered with high-quality materials and rigorous quality control measures, the DS200DCFBG1B is built to withstand the rigors of industrial use. Its ability to operate within a wide temperature range (-20°C to +60°C) ensures consistent performance across diverse geographical locations.
For optimal maintenance and ease of troubleshooting, the DS200DCFBG1B is equipped with diagnostic features and self-monitoring capabilities. These features help in identifying issues early, minimizing downtime and improving overall system reliability.

