The GE-FANUC IC660BBA020 I/O Block is a high-performance input/output module designed for industrial automation systems. It offers reliable connectivity and versatile functionality, making it suitable for various applications in manufacturing, process control, and other industrial environments.
This module is designed for advanced control systems, featuring high reliability and precision for GE’s turbine control solutions. It integrates E-Net, ISBUS, and Genius modules for efficient data communication and process control.
The General Electric MIVII 1000E00HI00 Digital Feeder Device is designed for industrial environments, offering precise control over power distribution. It ensures efficient and reliable operation of critical electrical systems in factories, plants, and infrastructure.
The GE FANUC A20B-2003-0311 spindle motor is engineered for precision and reliability in high-demand industrial applications, delivering consistent performance and energy efficiency.
The GE DIGIFAS 7202 is a sophisticated industrial control module designed for precision control applications across various industries, offering unparalleled reliability and efficiency.
The General Electric IS200SRTDH2ACB is a high-power control module designed for efficient operation in industrial automation systems, offering unparalleled reliability and precision.
This high-performance Converter Interface Board from General Electric seamlessly integrates into complex industrial control systems, ensuring reliable data conversion and communication.
The GE Fanuc DS200IMCPG1CB – Mark V PLC is designed for advanced industrial control systems, offering seamless integration and unparalleled performance in manufacturing automation.
The GE Fanuc IC200MLD650 24VDC Input Modules are designed for seamless integration into industrial control systems, offering high reliability and accuracy in data acquisition.
The General Electric UR7CM Multilin Digital Input Module is designed to elevate industrial control systems by offering unparalleled precision and reliability in managing digital signals.