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GE IC693CHS392C

  • Bus Interface: 25 – pin D – type female I/O bus expansion connector.
  • Operating Voltage: DC 24V (external power supply is required for powering input/output modules).
  • Power Consumption: Typical value < 5W (excluding connected modules).
  • Isolation Method: Optional opto – coupler isolation or transformer isolation.
  • Response Time: < 1ms (typical value).
  • Operating Temperature: – 20°C to 70°C (optional extended range).

Detailed content

  • Storage Temperature: – 40°C to 85°C.
  • Protection Level: IP20 (higher levels can be customized).
  • Communication Protocol: Supports various protocols such as Modbus and Profinet.
  • Dimensions: Approximately 443 mm x 142 mm x 130 mm (L x W x H).
  • Current Consumption: 150 mA (5 VDC).

 

Functional Characteristics

 

  • Modular Design: It supports hot – swap functionality, which facilitates on – site maintenance and module replacement, reducing downtime.
  • Expandability: Provides 10 I/O slots, enabling the connection of various function modules such as digital input/output modules, analog input/output modules, and temperature control modules.
  • System Compatibility: It must be used in conjunction with Series 90 – 30 series CPU modules (such as IC693CPU331, IC693CPU350, etc.), and realizes data interaction with the host through a 25 – pin D – type female I/O bus expansion connector.
  • High Reliability: Adopting an industrial – grade design, it has strong anti – interference ability, and can ensure signal transmission stability in harsh environments.
  • Centralized Control: Supports local I/O expansion without the need for additional processors.

 

Application Scenarios

 

  • Industrial Automation Production Lines: It can be used to connect digital input modules to monitor equipment status and digital output modules to control motor starts and stops, achieving precise synchronization of the production process.
  • Energy Management: By connecting analog input modules, it can transmit sensor data to the CPU for analysis, optimizing energy distribution efficiency.
  • Motor Control: It can be connected to a high – speed counter module and combined with a frequency converter to realize closed – loop control of the conveyor belt, improving sorting efficiency.
  • Temperature Control: By connecting a temperature control module, it can realize PID regulation to ensure the stable operation of the production process.

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