Product Short Description

Technical Specifications

  • Electrical Parameters
    • Voltage Performance: It has a nominal voltage of 120 VDC, an operating voltage range of 90 – 150 VDC, and a maximum voltage resistance of 160 VDC. The typical voltage drop of the module is less than 1.5 VDC, which minimizes signal attenuation during transmission.
    • Current Ratings: The maximum current per output point is 0.8A, and it can withstand a current surge of 4A for 10 milliseconds. The minimum required load current is 30mA, and the maximum load leakage current is limited to 4mA to ensure stable matching with various loads.
    • Power Consumption: The load on the matching power module is less than 10 watts, which has low energy consumption and reduces the overall power burden of the control system.
    • Isolation and Protection: Each output point has an isolation capacity of 1500 VDC/2500 VDC. The field terminal is equipped with 1A fast-acting fuses to effectively protect the module from damage caused by overcurrent and short circuits.

Description

    • Physical Parameters
      • Output Channels: It is configured with 16 commoned output signals to meet the control needs of multiple on-site devices simultaneously.
      • Indicator Configuration: It is equipped with independent indicators for each output point to display the on or off state. It also has module status indicators for pass, fault and active states, as well as field alarm indicators for power and load conditions.
      • Appearance Details: The module adopts a steel blue color scheme and weighs 5000 grams, with a structure that fits the standard installation dimensions of Triconex system chassis.
    • Environmental Parameters
      • Operating Temperature: It can maintain stable operation in the harsh industrial temperature range of -40°C to 70°C, adapting to both indoor control cabinets and outdoor industrial sites.
      • Humidity Adaptability: It operates normally under the condition of 10% – 95% relative humidity without condensation, which is suitable for high-humidity environments such as chemical workshops and coastal oil fields.
      • Anti-interference Capability: It has strong resistance to electromagnetic interference and vibration, and can stably output signals without being affected by the operation of large industrial machinery and surrounding electrical equipment.
  • Functional Features
    • TMR Architecture Ensures Fault Tolerance: The module relies on the triple modular redundancy technology. Even if a single channel or component fails, the other redundant channels can take over the work immediately. Combined with the quadruplicated output switch design, it completely avoids the risk of output interruption caused by single-point faults.
    • Comprehensive Online Diagnostic Capabilities: It is equipped with voltage and current loopback circuits that can conduct real-time verification on the operation of each output switch, the integrity of the field circuit and the presence of loads. It can quickly detect faults such as power loss, blown fuses, missing loads and field shorts, and feed back fault information through indicators.
    • Hot-swap Support for Uninterrupted Operation: It supports hot-swap operation. When maintenance or replacement is needed, the module can be removed and installed without shutting down the entire safety system, which greatly shortens the downtime of industrial production and improves the continuous operation rate of the system.
    • Reliable Signal Transmission: The excellent electrical isolation design and voltage drop control prevent signal interference between different output channels and ensure that the output signals can accurately drive the on-site equipment. The fuse protection at the terminal further enhances the stability of the module during long-term operation.
  • Application Scenarios
    • Oil and Gas Industry: It is widely used in offshore drilling platforms and long-distance oil and gas pipelines. It drives emergency shutdown valves, gas detection alarm actuators and other equipment. It ensures that the system can quickly trigger safety measures when pipeline leakage or abnormal pressure occurs to avoid major safety accidents.
    • Petrochemical and Chemical Industry: It is deployed in refineries and chemical production workshops, and is used in burner management systems and reactor safety control links. It controls valves and alarm devices related to raw material addition and product discharge, and monitors the safety of high-temperature and high-pressure reaction processes in real time.
    • Power Industry: It is applied to thermal power and nuclear power plants, especially in turbine control and boiler safety systems. It connects with the safety control system to drive steam valve control mechanisms and fault alarm devices, ensuring the stable operation of power generation equipment and preventing accidents such as equipment burnout.
    • Pharmaceutical Industry: It is used in critical production links such as pharmaceutical ingredient mixing and sterile filling. It controls the start and stop of precision feeding equipment and pipeline switching valves, ensuring that the production process complies with safety and hygiene standards and avoiding product pollution caused by equipment misoperation.
    • Water Treatment Industry: It is integrated into the automatic control system of sewage treatment plants and water supply stations. It drives water pump switches, dosing valves and water level control actuators. It realizes the accurate control of water treatment processes and guarantees the stability of water quality treatment effects.

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