Operating Temperature Range:-40°C to +70°C
Power Supply Voltage:AC 115V, DC 24V
Communication Interface:RS-485, Ethernet
Number of Inputs/Outputs:16 inputs, 8 outputs
Control Protocol Support:MODBUS RTU, CANopen
Memory Capacity:512 KB
Dimensions (WxHxD):140 x 120 x 60 mm
Weight:0.5 kg
The GE-FANUC IS215REBFH1BA Control Board is specifically engineered to cater to the demanding requirements of modern industries, offering unparalleled performance and reliability. Its high-speed microprocessor ensures efficient processing of complex control tasks, while the robust memory capacity of 1 MB RAM and 2 MB ROM supports extensive data storage and processing capabilities.
With a comprehensive set of 64 digital inputs and 16 digital outputs, this control board provides ample connectivity options for various sensors and actuators, facilitating seamless integration into existing production lines. The inclusion of versatile communication interfaces such as RS-232, RS-485, and Ethernet enables smooth data exchange with other control systems and devices.
Designed for operation within a wide temperature range of -10°C to +50°C, this control board ensures reliable performance even in challenging industrial environments. Its compact dimensions (178 x 113 x 104 mm) make it easy to integrate into space-constrained systems without compromising on functionality.
The GE-FANUC IS215REBFH1BA Control Board comes equipped with a user-friendly interface, allowing for easy configuration and customization according to specific industrial needs. This flexibility, combined with its advanced features, makes it an indispensable tool for optimizing production processes and enhancing overall operational efficiency.
Backed by GE-FANUC’s commitment to quality and innovation, this control board is subjected to rigorous testing and quality assurance processes, ensuring that users receive a product that meets or exceeds industry standards. Whether you are upgrading an existing system or building a new one, the GE-FANUC IS215REBFH1BA Control Board is a reliable choice for driving industrial automation forward.
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