GE Fanuc IC695CPE305-AFAT RX3i Controller Module: Advanced Automation at Your Fingertips
The GE Fanuc IC695CPE305-AFAT RX3i controller module is a high-performance, modular PLC designed for complex industrial control applications, offering seamless integration, enhanced processing power, and robust connectivity options.
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Content details
Processor Speed:160 MHz
Memory:128 MB RAM, 128 MB Flash
Ethernet Interface:Built-in Ethernet port for network connectivity
Operating Temperature Range:-10°C to +55°C
Power Supply:100-240 V AC or 12-48 V DC
Dimensions:140 mm (W) x 100 mm (H) x 60 mm (D)
The GE Fanuc IC695CPE305-AFAT RX3i controller module is engineered for efficiency and reliability in complex industrial settings. It features a robust 600 MHz processor that ensures fast response times and efficient handling of high-speed tasks, critical for achieving optimal performance in demanding applications.
With support for Ethernet connectivity, this controller module seamlessly integrates with modern industrial networks, enabling real-time data exchange and enhanced communication capabilities between different components of an automated system. Its compatibility with IEEE 802.3 standards ensures interoperability with a wide range of network devices.
Equipped with 128 MB of user memory, the IC695CPE305-AFAT allows for extensive programming and customization to meet specific application requirements, from simple control tasks to sophisticated automation scenarios. This ample memory capacity ensures that users can store large programs and data without compromising on system performance.
The controller module is designed for extended temperature ranges (-10°C to +55°C), making it suitable for use in various environmental conditions encountered in industrial settings. This durability and robustness are complemented by its lightweight design, facilitating easy installation and maintenance.
Advanced diagnostics features included in the IC695CPE305-AFAT provide detailed insights into system health and operational status, enabling proactive maintenance and minimizing downtime. These features facilitate efficient troubleshooting and system optimization, ensuring continuous operation and maximizing productivity in the manufacturing environment.