Product Short Description

Technical Specifications

  • Electrical Parameters
    • Output Power Supply: It adopts 24V DC power supply, which is consistent with the unified power supply specifications of the Triconex system chassis backplane and ensures stable power support for output operations.
    • Output Channel Design: Each digital output module is equipped with three isolated channels, and each channel can independently receive data from the corresponding main processor. This design avoids signal interference between channels and improves output accuracy.
    • Compatibility: It can be perfectly compatible with the overall Triconex Tricon safety instrumented system, and can also cooperate with various industrial actuators that match its digital signal specifications.
  • Physical Parameters
    • Dimensions: The approximate overall dimensions are 4.4 cm × 16.9 cm × 22 cm. The compact and standardized size enables it to be smoothly installed into the standard Triconex system rack without additional customized installation accessories.
    • Weight: The net weight of the module is 5 kilograms, and the shipping weight including packaging reaches 7.5 kilograms. The weight is properly controlled to balance structural stability and convenience of on-site installation and replacement.

Description

    • Environmental Parameters
      • Operating Temperature: It follows the environmental adaptability standard of Triconex industrial modules and can operate stably in the temperature range of -40°C to 70°C, adapting to both low-temperature outdoor workshops and high-temperature chemical production sites.
      • Humidity Adaptability: It can work normally in an environment with relative humidity of 5% – 95% without condensation, which is applicable to humid working conditions such as coastal oil and gas platforms and water treatment plants.
  • Functional Features
    • Triple Modular Redundancy for High Reliability: It carries the triple modular redundant structure inherent in Triconex products. Three independent circuit units process and output signals simultaneously, and the system conducts voting on the output results. When one unit malfunctions, the other two units can still maintain normal operation, completely avoiding system downtime caused by single-channel failures.
    • Isolated Channels to Avoid Interference: The three built-in output channels adopt independent isolation design. This design not only prevents mutual interference between internal channels of the module but also isolates the module from external circuit signals. It effectively reduces the impact of on-site electromagnetic interference on output signals and ensures the stability and accuracy of each output instruction.
    • Hot-Swappable to Reduce Downtime: It supports hot-swap operation with the support of the Triconex system backplane bus. Maintenance personnel can replace the faulty module online without shutting down the entire safety control system, which greatly shortens maintenance time and minimizes production losses caused by system downtime.
    • Easy Integration and Expansion: It has good compatibility with Triconex controllers and other I/O modules. The system can be flexibly expanded according to actual production needs. It can be combined with analog input modules and other functional modules to form a complete control loop, meeting diverse industrial control requirements.
  • Application Scenarios
    • Oil and Gas Industry: It is installed in the emergency shutdown system and fire and gas protection system of offshore drilling platforms and onshore oil transmission stations. It sends digital signals to drive emergency shut-off valves and alarm devices. When abnormal pressure or gas leakage is detected, it can quickly trigger the actuator to act, preventing the spread of dangerous situations.
    • Petrochemical Industry: It is integrated into the control system of petrochemical refining equipment and reaction kettles. It outputs digital signals to control the opening and closing of pipeline valves and the start and stop of conveying pumps, ensuring precise control of the material adding speed and reaction process, and avoiding safety accidents caused by process deviations.
    • Power Generation Industry: It is applied to the control system of thermal power plants and nuclear power auxiliary equipment. It sends digital output signals to the actuators of boiler combustion systems and steam turbine control mechanisms, precisely regulating the fuel supply and steam discharge, and ensuring the stable operation of generator sets and the safety of the power generation process.
    • Chemical Industry: It is used in the automatic control system of chemical material mixing and storage equipment. It controls the operation of storage tank discharge valves and mixing machine actuators through digital signals, ensuring the accuracy of material proportioning and the orderliness of the storage and transportation process, and improving the stability of product quality.
    • Heavy Manufacturing Industry: It is deployed in the control system of steelmaking and non-ferrous metal smelting equipment. It drives the actuators of smelting furnace feeding mechanisms and temperature control valves through stable digital output, ensuring the continuity of the smelting process and the accuracy of temperature control, and providing guarantee for the quality of metal products.

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