GE Fanuc IC698CRE030 Pentium-M Redundancy CPU – Industrial Control System Component
The GE-FANUC IC698CRE030 Pentium-M Redundancy CPU is designed for high-performance control systems, providing exceptional reliability and speed in industrial automation environments.
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Content details
Product Type:Redundant CPU
Model Number:IC698CRE030
Processor Type:Pentium-M
Speed:600 MHz
Memory:64 MB
Communication Interface:Ethernet
Network Type:Ethernet
Rated Speed:Up to 100 Mbps
Weight:Not specified
Dimensions:Not specified
The GE Fanuc IC698CRE030 Pentium-M Redundancy CPU is engineered to meet the stringent demands of modern industrial automation environments. Its robust Pentium-M dual-core processor ensures swift execution of complex control algorithms, enhancing operational efficiency.
Featuring an Ethernet network interface, this CPU enables seamless integration with existing network infrastructures, facilitating real-time data exchange and remote monitoring capabilities. Its communication speed ranges from 10 to 100 Mbps, ensuring reliable data transmission over the network.
Equipped with a generous 64 MB user memory, the IC698CRE030 provides ample space for storing control programs and application-specific data. This ample memory capacity supports extensive programming and customization options to suit various industrial automation needs.
The redundant design of this CPU significantly enhances system reliability. In the event of a primary processor failure, the backup unit seamlessly takes over, ensuring continuous operation without any interruption. This feature is critical in industries where downtime can lead to significant losses.
With its compact design, the IC698CRE030 is easy to integrate into existing systems, minimizing installation time and costs. It adheres to industry-standard power supplies, ensuring compatibility with a wide range of power sources.
Designed for durability and efficiency, the GE Fanuc IC698CRE030 Pentium-M Redundancy CPU is a reliable choice for industrial automation projects requiring high performance and reliability.