GE IC697MDL250

  • Rated Voltage: 120 VAC
  • Number of Inputs: 32 (4 isolated groups of 8)
  • Input Current: 10 mA
  • Current Required: 0.35 amps
  • Frequency: 60 Hz
  • DC Power: Not required
  • Compliance: Complies with IEC standard type 2 for reactive input
  • Configuration Method: Done through programming software (MS - DOS or Windows)
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Function Features

  • Isolated Input Groups: Each group of eight points is isolated, enabling the use of different AC supply phases, which improves the stability and reliability of the system.
  • Input Filter: It has a 20 ms input filter, which can reduce noise and improve signal integrity, ensuring the accuracy of input signals.
  • Proximity Switch Compatibility: Designed to work seamlessly with various proximity switches, expanding the application range of the module.
  • LED Indicators: Provide visual feedback for each input point’s status, which is convenient for users to monitor the operating status of the module in real – time.
  • Mechanical Keying: Prevents accidental replacement with incorrect modules, ensuring the correct installation of the module.
  • User – configurable I/O References: Eliminates the need for jumpers or dip switches, allowing users to customize the I/O references according to their actual needs.
  • Low Heat Dissipation: Ensures reliable and long – lasting operation of the module.

Application Scenarios

  • Industrial Automation Production Lines: Such as in the automotive manufacturing, electronics manufacturing, and food processing industries, it can be used to collect sensor signals, such as motor speed and material position, and then transmit these signals to the control system for processing, so as to realize the control of production equipment.
  • Energy Management: In the fields of power distribution and energy use optimization, it can monitor the operating data of power equipment, such as voltage, current, and power, and transmit this data to the energy management system for analysis and processing, so as to achieve the goal of optimizing energy use.
  • Water Treatment and Environmental Protection: In water treatment facilities, it can be used to monitor various indicators of water quality, such as pH value and turbidity, and transmit these signals to the control system to automatically adjust the operating parameters of water treatment equipment to ensure that the water quality meets the discharge standards.




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