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GE IC695CRU320

GE IC695CRU320 is a redundant processor belonging to the PACSystems RX3i product line, manufactured by GE Fanuc/Emerson Automation.

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Technical Specifications
Model: IC695CRU320
Manufacturer: GE Fanuc/Emerson Automation
Product Line: PACSystems RX3i
Processor Type: Redundant CPU
CPU Performance:
1 GHz Celeron M processor
High-performance capabilities for demanding industrial applications
Memory:
64 MB of non-volatile flash memory
64 MB of battery-backed RAM for data retention during power failures
Serial Ports:
Two serial communication ports (RS-232 and RS-485)
Supports Modbus RTU slave, SNP, and serial I/O protocols
Power Requirements:
+3.3V DC: 1.0 Amp nominal
+5V DC: 1.2 Amp nominal
Operating Temperature: 0 to 60°C (32°F to 140°F)
Durability: Rated for at least 100,000 write/erase cycles
Memory Error Correction (ECC): Single-bit correction and multi-bit detection
Program Blocks: Supports up to 512 program blocks, with a maximum block size of 128 KB
Embedded Communications: RS-232, RS-485
Supported Serial Protocols: Modbus RTU Slave, SNP, Serial I/O
Backplane Support: Dual backplane bus support for RX3i PCI and high-speed serial buses
PCI Compatibility: Compliant with PCI 2.2 standards
Functional Characteristics
Redundant Processor: Designed for redundant or hot-standby configurations to improve system availability and reliability.
Hot Standby Redundancy: Seamlessly switches to the backup processor in case of a primary processor failure, ensuring continuous system operation.
High Processing Power: Equipped with a powerful 1 GHz Celeron M processor for handling complex industrial automation tasks.
Communication Flexibility: Supports multiple serial communication protocols, facilitating integration with other devices and systems.
Data Retention: Battery-backed RAM ensures data integrity and continuity during power outages.
Easy Configuration: Enables simple setup and configuration for both primary (active) and secondary (standby) racks.
Application Scenarios
Industrial Automation: Ideal for controlling and monitoring various industrial processes, machines, and equipment.
Process Control: Used in process control systems for real-time monitoring and control of critical processes.
Manufacturing: Deployed in manufacturing plants to control production lines, machinery, and other equipment.
Infrastructure: Suitable for applications in the energy, transportation, and building automation sectors.
Critical Systems: Particularly suited for mission-critical applications that require high availability and minimal downtime.

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