Protocol Compatibility:Supports various industry-standard protocols including EtherNet/IP, Profinet, and Modbus/TCP.
Data Transfer Rate:Offers data transfer rates up to 100Mbps, ensuring fast and reliable communication.
Operating Temperature Range:-40°C to 70°C, ensuring robust operation in extreme conditions.
Power Consumption:Operates on standard 24VDC power supply, minimizing energy consumption.
Dimensions:Measures 124mm x 101mm x 44mm, designed for easy integration into existing systems.
Connectivity:Features multiple Ethernet ports for versatile connection options.
The GE FANUC IC693CMM321-EE Ethernet Controller Module boasts a robust design, optimized for demanding industrial environments. Its compact size ensures it fits seamlessly into tight spaces, while its high-performance capabilities enable fast and reliable data transmission.
Equipped with advanced networking protocols, this controller facilitates smooth integration with a wide array of automation equipment, enhancing productivity and efficiency on the factory floor. Its compatibility with EtherNet/IP, Profinet, and Modbus TCP ensures compatibility across various systems.
With a data transfer rate of up to 100 Mbps, the IC693CMM321-EE delivers lightning-fast communication speeds, minimizing delays and improving operational responsiveness. It is engineered to withstand extreme temperatures and humidity levels, ensuring reliability in harsh industrial conditions.
Featuring low power consumption, this controller optimizes energy usage without compromising performance, making it an eco-friendly choice for sustainable manufacturing operations. Its intuitive design allows for easy setup and maintenance, reducing downtime and enhancing user experience.
Designed for compatibility and flexibility, the GE FANUC IC693CMM321-EE Ethernet Controller Module is an essential component for any modern industrial automation system. Its robust features and advanced networking capabilities make it a top choice for enhancing the efficiency and connectivity of your production processes.
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