Product Short Description

Technical Specifications

  • Processor and Memory Specifications
    • It is equipped with a 32-bit Motorola MPC860 processor running at a clock speed of 50 MHz, which can efficiently handle complex safety control logic and real-time data.
    • It is configured with 16 MB DRAM without battery backup, 32 KB SRAM with battery backup and 6 MB flash PROM, which can stably store system programs and real-time operation data.
  • Communication and Interface Specifications
    • It is equipped with a TriBus backplane bus with a communication rate of 25 Mbps. The bus adopts 32-bit CRC check and fully isolated 32-bit DMA technology to ensure the accuracy and stability of data transmission.
    • It is provided with an optically isolated RS – 232 serial port with 500 VDC isolation, as well as an Ethernet port, which is compatible with multiple protocols such as TriStation, Modbus and TCP/IP.
    • The system supporting this module can connect up to 2048 I/O modules to meet the needs of large – scale industrial control scenarios.

Description

  • Physical and Environmental Specifications
    • Its approximate physical size is 6.4 inches × 4.2 inches × 2.0 inches, and its typical transportation weight is 3 kilograms. It is installed through the slot on the Triconex rack.
    • Its operating temperature range is -40°C to 70°C, and its storage temperature range is -40°C to 85°C. It can work normally in an environment with a relative humidity of 5% to 95% without condensation.
    • The input voltage range of the power supply is 10.5 – 30 VDC, the output voltage range is 0 – 10 VDC, and the maximum output current can reach 24 A.

Functional Characteristics

  • Outstanding Safety and Fault Tolerance
    • The triple modular redundancy architecture fundamentally eliminates the impact of single-point faults. The real-time voting mechanism of the three independent channels can quickly identify and shield faulty data, ensuring the continuous and stable operation of the system.
    • It is equipped with a TriClock time reference system. The typical drift of the clock is 2 seconds per day, and the maximum drift is 2.16 seconds per day. The backup battery can maintain the normal operation of the clock system when the power is cut off, ensuring the accuracy of event time recording.
  • Powerful Processing and Expansion Capabilities
    • The 32-bit high-performance processor and dedicated TriBus bus enable the module to quickly execute complex control logic and realize high-speed data exchange with I/O modules, meeting the requirements of real-time response in industrial control.
    • It can be seamlessly integrated with other I/O modules and communication modules of the Triconex series. The strong compatibility allows flexible configuration according to the scale of industrial projects, which is applicable to both small and medium-sized control systems and large-scale integrated control scenarios.
  • Convenient Maintenance and Diagnosis
    • It supports the hot-swappable function. Maintenance personnel can replace the faulty module online during the operation of the system without shutting down the entire production line, which greatly shortens the maintenance downtime.
    • It has advanced real-time diagnosis capabilities. It can continuously monitor its own operating status, communication links and the working status of connected I/O modules. Once a fault is found, it can promptly send out fault signals to help technicians quickly locate and solve problems.

Application Scenarios

  • Oil and Gas Industry
    • It is used in emergency shutdown systems and fire and gas detection systems of offshore drilling platforms and onshore oil refineries. It monitors oil and gas pressure and leakage signals in real time and triggers emergency shutdown procedures immediately when dangerous conditions occur to prevent explosion and fire accidents.
    • It is applied to the high-integrity pressure protection system of long-distance oil and gas pipelines. It controls the opening and closing of pipeline valves according to the real-time pressure data to ensure the safe transportation of oil and gas.
  • Power Industry
    • In nuclear power plants, it is integrated into the reactor protection system. It monitors key parameters such as temperature and pressure of the reactor in real time and executes preset safety actions immediately when abnormalities are detected to avoid nuclear safety accidents.
    • In thermal power plants, it is used in the turbine overspeed protection and boiler safety interlock system to prevent major equipment damage caused by abnormal operation parameters of the turbine and boiler.
  • Chemical and Pharmaceutical Industry
    • In chemical plants, it is deployed in the reactor safety control system. It precisely controls the temperature, pressure and raw material dosage in the reaction process. When parameters exceed the safe range, it cuts off the feeding pipeline in time to avoid dangerous chemical reactions.
    • In pharmaceutical production workshops, it is used to control the sterile production process. It monitors the temperature and humidity of the workshop and the mixing ratio of raw materials to ensure that the production process meets safety and quality standards.
  • Other High-Risk Industrial Fields
    • In the metallurgical industry, it is applied to the safety control system of smelting furnaces. It monitors the temperature and air pressure of the furnace and adjusts the relevant process parameters in real time to ensure the safety of the smelting process.
    • It is used in the safety interlock system of rail transit related equipment, such as the control system of rail transit power supply equipment, to ensure the stable operation of rail transit power supply and avoid safety accidents caused by power supply failures.

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