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GE IC695CPE310-ACAT

The GE IC695CPE310-ACAT is a specific model of the CPU module from the GE Fanuc PACSystem RX3i series.

Detailed content

Technical Specifications

  • Model: IC695CPE310-ACAT
  • Series: GE Fanuc PACSystem RX3i
  • Processor: 32-bit RISC processor (specific speed not mentioned, but comparable to the 1.1 GHz Atom processor found in the IC695CPE310)
  • Input Voltage Range: 12-48VDC
  • Output Voltage: 5VDC
  • Output Current: Maximum 10A
  • Efficiency: Greater than 90%
  • Dimensions: 170mm x 105mm x 32mm
  • Weight: Approximately 120g
  • Operating Temperature: -20°C to +50°C
  • Storage Temperature: -40°C to +70°C
  • Humidity: 5% to 95% relative humidity (non-condensing)
  • Communication Interfaces:
    • Serial ports supporting Modbus, RS-232, RS-485, and possibly other protocols
    • Embedded Ethernet interface (specific speeds not detailed for this model)

Functional Characteristics

  • High-Efficiency Data Transmission: The serial ports support efficient data transmission, enabling fast communication with external devices, fulfilling real-time requirements.
  • Multi-Protocol Support: Supports multiple communication protocols, making it compatible with various types of devices and systems.
  • Stability and Durability: Crafted with high-quality materials and manufacturing processes, ensuring stable operation in harsh industrial environments.
  • Easy Configuration and Control: The serial ports can be configured and controlled through programming, allowing for customization of communication parameters, data formats, and communication flows.
  • Multi-Purpose: The serial ports and overall module are versatile, capable of handling various serial communication tasks, such as data acquisition, control, and remote monitoring.
  • Data Processing Capabilities: May possess the ability to process, parse, and store data received through serial ports before transmitting it to control systems or other target devices.

Application Scenarios

The GE IC695CPE310-ACAT is well-suited for industrial automation applications requiring real-time control and communication with external devices. Some common application scenarios include:

  • Factory Automation: For controlling and monitoring production lines, machinery, and equipment in manufacturing facilities.
  • Process Control: In industries where precise control of complex processes is necessary, such as chemical, oil and gas, and food processing.
  • Machine Monitoring and Control: For real-time monitoring and control of machines and systems, ensuring optimal performance and minimizing downtime.
  • Data Acquisition and Processing: In systems where real-time data acquisition and processing are critical for decision-making and optimization.

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