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Popular Product

GE IC695CMU310 Redundant CPU Module


Manufacturer: GE Fanuc

Product Number: IC695CMU310

Category: Redundant CPU Module (RX3i PACSystems)

Function: Redundant central processing unit for high-availability systems

Redundancy: Supports redundant controller configuration

System Compatibility: GE RX3i PACSystems

Application: High-availability industrial control, redundant automation

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Product Description

The GE IC695CMU310 is a high-performance, redundant CPU module for the GE Fanuc RX3i PacSystem. It ensures maximum system availability and reliability through hot-standby redundancy. This module is ideal for applications requiring continuous operation without downtime.

Key Features

  • Hot-Standby Redundancy: Automatically switches to a backup CPU if a failure occurs, ensuring uninterrupted operation.
  • High Performance: Provides fast scan times and efficiently processes complex control logic.
  • Large Memory: Supports up to 10 MB of battery-backed RAM for extensive program storage.
  • Flexible Communication: Includes two built-in serial ports for connecting various devices.
  • Max-ON Compatibility: Enhances functionality with support for Max-ON IC695C.
  • Easy to Use: Features a user-friendly programming environment and intuitive configuration tools.

Technical Specifications

  • CPU Type: Redundant High Availability CPU
  • Memory: Up to 10 MB battery-backed RAM
  • Scan Time: 0.195 milliseconds per 100 Boolean contacts or coils
  • Serial Ports: 2 built-in serial ports
  • Compatibility: Max-ON IC695C
  • Power Supply: 24 VDC
  • Physical Dimensions: [Dimensions will vary depending on specific model]

Applications

The GE IC695CMU310 is suitable for:

  • Process Control: Manages and monitors industrial processes.
  • Machine Automation: Controls machinery operations efficiently.
  • Factory Automation: Integrates and automates factory processes.
  • Material Handling: Optimizes material movement and storage.
  • Power Generation: Oversees and controls power generation systems.
Popular Product

GE IC695CMU310 Redundant CPU Module

Manufacturer: GE Fanuc

Product Number: IC695CMU310

Category: Redundant CPU Module (RX3i PACSystems)

Function: Redundant central processing unit for high-availability systems

Redundancy: Supports redundant controller configuration

System Compatibility: GE RX3i PACSystems

Application: High-availability industrial control, redundant automation

Contact Sales

Product Description

The GE IC695CMU310 is a high-performance, redundant CPU module for the GE Fanuc RX3i PacSystem. It ensures maximum system availability and reliability through hot-standby redundancy. This module is ideal for applications requiring continuous operation without downtime.

Key Features

  • Hot-Standby Redundancy: Automatically switches to a backup CPU if a failure occurs, ensuring uninterrupted operation.
  • High Performance: Provides fast scan times and efficiently processes complex control logic.
  • Large Memory: Supports up to 10 MB of battery-backed RAM for extensive program storage.
  • Flexible Communication: Includes two built-in serial ports for connecting various devices.
  • Max-ON Compatibility: Enhances functionality with support for Max-ON IC695C.
  • Easy to Use: Features a user-friendly programming environment and intuitive configuration tools.

Technical Specifications

  • CPU Type: Redundant High Availability CPU
  • Memory: Up to 10 MB battery-backed RAM
  • Scan Time: 0.195 milliseconds per 100 Boolean contacts or coils
  • Serial Ports: 2 built-in serial ports
  • Compatibility: Max-ON IC695C
  • Power Supply: 24 VDC
  • Physical Dimensions: [Dimensions will vary depending on specific model]

Applications

The GE IC695CMU310 is suitable for:

  • Process Control: Manages and monitors industrial processes.
  • Machine Automation: Controls machinery operations efficiently.
  • Factory Automation: Integrates and automates factory processes.
  • Material Handling: Optimizes material movement and storage.
  • Power Generation: Oversees and controls power generation systems.

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