GE-FANUC IC693CPU364CJ - PAC Systems RX3i
The GE Fanuc IC693CPU364CJ is a critical component of the PAC Systems RX3i PLC, designed for advanced industrial automation tasks, ensuring high-performance operations and reliability.
The GE Fanuc IC693CPU364CJ is a critical component of the PAC Systems RX3i PLC, designed for advanced industrial automation tasks, ensuring high-performance operations and reliability.
Product Type:PAC Systems RX3i
CPU Type:IC693CPU364CJ
Rated Speed:400 MHz
User Memory:128 KB
Communication Protocol:EtherNet/IP, Profinet, DeviceNet
Power Supply Voltage:24V DC
Operating Temperature:-20°C to 70°C
Dimensions (WxHxD):240mm x 140mm x 120mm
Weight:1.6kg
Mounting:Panel mountable
Certifications:CE, UL, CSA, IEC
Compatibility:PCIe expansion modules
Engineered for demanding industrial settings, the GE Fanuc IC693CPU364CJ is a state-of-the-art CPU module that forms the backbone of the PACSystems RX3i automation platform.
Featuring a robust 300 MHz processor and 32 MB of memory, it ensures rapid response times and efficient data processing, crucial for complex manufacturing operations.
With support for EtherNet/IP, this module facilitates seamless communication with other networked devices, enhancing system integration and operational flexibility.
Designed with wide temperature tolerance (-40°C to +70°C), the IC693CPU364CJ ensures reliable performance under extreme conditions, making it suitable for a broad range of industrial environments.
Compact yet powerful, this CPU module measures 110 mm x 78 mm x 46 mm and weighs only 0.25 kg, providing a lightweight solution for space-constrained applications without compromising on functionality.
Backed by GE Fanuc’s commitment to quality and reliability, the IC693CPU364CJ offers unparalleled performance and durability, making it an indispensable choice for modern industrial automation systems.
The GE Fanuc IC693CPU364CJ is a critical component of the PAC Systems RX3i PLC, designed for advanced industrial automation tasks, ensuring high-performance operations and reliability.