Triconex 8110 High Density Triple Modular Redundancy Main Chassis

Technical Specifications

    • Electrical Parameters
      • The input voltage range covers 10.5V to 30V RMS, and the output voltage range is 0V to 10V RMS. The maximum output current reaches 24 amperes, and the maximum working frequency is 2500 Hz, with a control accuracy of ±1%.
      • The power consumption is optimized for energy efficiency. The galvanic isolation design is adopted, and the isolation voltage meets industrial anti-interference standards, which can effectively reduce the impact of electrical noise on the system.
    • Physical Parameters
      • There are differences in dimensions and weight among different versions. One common version has dimensions of approximately 15.9 cm × 14.7 cm × 8.1 cm and weighs about 1.13 kilograms. Another version has dimensions of 16 cm × 16 cm × 12 cm and a weight of 0.8 kilograms, and there is also a model weighing 1.36 kilograms, which is compact and convenient for installation in standard control cabinets.
Category:
Description
    • Environmental Parameters
      • The operating temperature range is -40°C to +70°C, which can adapt to the low-temperature environment in high-latitude areas and the high-temperature environment near industrial furnaces.
      • It can work normally in an environment with 0 – 95% non-condensing humidity, and its structural design can resist the erosion of dust and water vapor in the on-site environment.
  • Functional Features
    • Triple Modular Redundancy Architecture Ensures Fault Tolerance
      • The triple modular redundancy architecture adopts a 3 – 2 – 0 fault-tolerant mode. When a single module or component fails, the system can automatically identify the fault and rely on the other two normal modules to maintain continuous operation without interrupting the key control processes.
      • It is equipped with hardware-implemented fault-tolerant architecture, which can quickly recognize faults and handle them automatically. It also has a time-stamped fault historian, which can record fault information in detail for staff to trace and analyze the cause of the fault.
    • Strong Compatibility and Integration Capabilities
      • It supports a variety of communication protocols including Modbus TCP/IP, DeviceNet and CANopen, which can be flexibly connected with distributed control systems, human-machine interfaces and other equipment from different manufacturers, reducing the cost of system integration.
      • It can be compatible with various Triconex I/O modules and processor modules, and can be flexibly expanded according to the scale of industrial control projects to meet the needs of different complex processes.
    • Convenient Maintenance and Monitoring
      • It supports hot-swap operation. When a module in the chassis breaks down, maintenance personnel can replace the faulty module online without shutting down the entire system, minimizing production downtime.
      • The front panel is equipped with LED status indicators, which can clearly show the health status of the module, and is also equipped with an RS232 diagnostic port, which facilitates maintenance personnel to carry out on-site debugging and troubleshooting.
  • Application Scenarios
    • Oil and Gas Industry
      • In offshore drilling platforms and onshore refineries, it serves as the core chassis of the emergency shutdown system and fire and gas control system. It carries the installation of various detection and control modules, collects data such as oil and gas pressure and gas concentration in real time, and triggers emergency measures in time when abnormalities occur to avoid explosions and leakage accidents.
      • In long-distance oil and gas transmission pipelines, it is integrated into the pipeline monitoring system, connects the pressure and flow detection modules along the line, and transmits the operation data to the central control room to ensure the stable operation of the transmission process.
    • Power Industry
      • In nuclear power plants, it is used in the safety control system of nuclear reactors. It provides a reliable operation platform for the monitoring modules of coolant temperature and pressure, ensuring the stable transmission and processing of safety-related data and maintaining the safe operation of nuclear power units.
      • In coal-fired and hydropower plants, it is applied to the turbine control system. It carries the relevant control modules to monitor the speed and pressure parameters of the turbine in real time, preventing equipment damage caused by parameter abnormalities.
    • Chemical and Other Industrial Fields
      • In chemical plants and petrochemical facilities, it is used in the control system of chemical reaction kettles and the safety system of storage tanks. It connects temperature, pressure and liquid level modules to realize precise control of the reaction process and avoid dangerous accidents such as material leakage and chemical reactions out of control.
      • In pulp and paper mills, it is integrated into the production process control system. It carries modules related to pulp concentration and papermaking speed control, ensuring the stability of product quality and the continuity of the production line.
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