Foxboro P0926GH

Technical Specifications
  • Power Supply: 24 VDC (common)
  • Input/Output Signal: For analog input, it can support 0 – 10 V or 4 – 20 mA analog signal input; for analog output, it can provide 0 – 10 V or 4 – 20 mA output signal.
  • Accuracy: Input voltage accuracy can reach ±0.05% for analog input; output accuracy is ±0.5% for analog output.
  • Repeatability: ±0.2% for analog output.
  • Response Time: 10 ms for analog output.
  • Operating Temperature Range: – 20℃ – 60℃ (varies according to different specifications).
  • Dimensions: Approximately 100 mm x 65 mm x 30 mm or 127 mm × 127 mm × 50 mm (varies according to different specifications).
  • Weight: About 0.4 kg – 0.5 kg (varies according to different specifications).
Category:
Description
Functional Characteristics
  • High – Precision: It can achieve high – precision signal acquisition and output, ensuring the accuracy of industrial process control.
  • Reliability: With a long mean time between failures (MTBF > 100,000 hours) and compliance with relevant international standards such as IEC 61000 – 4 – 3 and IEC 61000 – 4 – 5, it has strong anti – interference ability.
  • Modular Design: It is convenient for installation, maintenance, and replacement, and can be seamlessly integrated with other modules in the Foxboro I/A series.
  • Multi – channel Function: Some models have multiple input or output channels, which can meet the needs of different industrial control scenarios, reducing the number of required cables and connections.
Application Scenarios
  • Petrochemical Industry: Used for precise control of temperature, pressure, and flow in chemical reaction processes, such as monitoring and controlling the pressure of reactors.
  • Power Industry: Applied to signal acquisition and control in power generation processes, such as monitoring the temperature and flow of cooling water in power plants.
  • Metallurgical Industry: Employed in monitoring key parameters such as the temperature and pressure of blast furnaces, and realizing the automation control of the smelting process.
  • Water Treatment Industry: Used for connecting various field devices to achieve the automation control of the water treatment process, such as controlling the opening and closing of valves in water treatment plants according to the water quality and flow rate.
  • Manufacturing Industry: In manufacturing production lines, it is used for equipment control and status monitoring, such as precisely controlling the speed and pressure of production equipment.
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