Triconex 3201 Communication Module

Technical Specifications

  • Communication Port Parameters
    • It is equipped with three configurable RS – 232/485 serial ports and two Ethernet ports. Some versions can be configured with four serial ports, with a total data transmission rate of 460.8 kilobits per second for all serial ports.
    • The two Ethernet ports include 802.3 copper Ethernet ports and fiber – optic Ethernet ports in different models, with the Ethernet transmission speed reaching 100Mbps.
    • The first serial port can support Modbus or Trimble GPS interface, and the fourth serial port can be configured as Modbus or Tristation interface.
  • Power and Electrical Parameters
    • The nominal input voltage is 24V DC, and the working voltage range is 19.2V DC to 30V DC, which can tolerate 5% AC ripple.
    • The maximum power interruption time allowed from the nominal voltage is 1 millisecond, the minimum repetition rate of power interruption is 1 second, and the maximum logic power consumption of the module is 8 watts.
Category:
Description
    • Physical and Environmental Parameters
      • The weight of the module is about 0.8 kilograms, and there are versions with dimensions of 16cm×16cm×12cm and 22cm×16.9cm×4.4cm for different application scenarios.
      • The operating temperature range is -40°C to 70°C, and the storage temperature range is -40°C to 85°C, which can adapt to the temperature changes of most extreme industrial environments.
  • Functional Features
    • Multi-protocol Compatibility for Flexible Integration
      • It supports a variety of industrial communication protocols such as Modbus master/slave, TCP/IP, UDP/IP, Ethernet/IP, CANopen and HART. It can also be compatible with Tristation configuration protocol and Triconex peer-to-peer communication protocol, enabling seamless communication with different brands and types of industrial equipment.
      • It supports up to 32 Modbus masters or slaves including network and serial ports, which fully meets the communication needs of large-scale and complex industrial control systems.
    • Redundant Design Ensures Continuous Communication
      • It is equipped with redundant communication interfaces. When one communication interface breaks down, the other interface can immediately take over the communication task without interruption. This design completely avoids communication suspension caused by single – interface faults and guarantees the continuity of data transmission in critical industrial processes.
    • Convenient Maintenance and Strong Diagnostics
      • A dedicated debug port is set up for professional maintenance and troubleshooting of the module. Faulty modules can be replaced when the controller is running online, which avoids the shutdown loss caused by maintenance.
      • It has built-in powerful diagnostic functions that can continuously monitor the communication status, port operation and data integrity. It can quickly locate problems such as port failure and data transmission errors, which greatly reduces the difficulty and time of troubleshooting for maintenance personnel.
  • Application Scenarios
    • Oil and Gas Industry
      • It is widely used in emergency shutdown systems and fire and gas detection systems of offshore drilling platforms and onshore oil fields. It realizes data interaction between the Triconex safety system and the on-site sensor network, and transmits gas concentration and pipeline pressure data to the control center in real time to ensure the immediate start of emergency measures when dangerous conditions occur.
      • In long-distance oil and gas transmission pipelines, it connects the pipeline monitoring equipment with the remote SCADA system, realizing real-time feedback of pipeline operation parameters and remote control of valves, which guarantees the safe and stable transportation of oil and gas.
    • Chemical and Petrochemical Industry
      • In chemical plants producing flammable and explosive chemicals, it is used for data communication between reactor control systems and distributed control systems. It transmits parameters such as reaction temperature and pressure to the central control room in real time and receives control instructions to avoid dangerous reactions caused by parameter deviations.
      • It is applied to the safety monitoring system of chemical storage tanks. It connects the liquid level and leakage detection equipment with the safety system and triggers alarm and leakage treatment procedures in time through stable data transmission.
    • Power Generation Industry
      • In thermal power plants, it is integrated into boiler management systems and steam turbine overspeed protection systems. It realizes data exchange between the safety instrument system and the power generation equipment control system, monitors the operation status of key equipment in real time and ensures the safe operation of power generation processes.
      • In nuclear power plants, it is used for communication between the reactor safety monitoring system and external monitoring terminals. It transmits reactor coolant flow and temperature and other critical data stably, which lays a foundation for the timely judgment and handling of potential safety hazards.
    • Pharmaceutical and Metallurgical Industry
      • In the pharmaceutical industry, it is used in the production process that needs to meet strict safety and quality standards. It connects the raw material proportioning equipment and environmental monitoring instruments with the control system to ensure that all parameters in the pharmaceutical process meet the specified requirements through real-time data transmission.
      • In iron and steel metallurgical plants, it realizes communication between blast furnace, converter control systems and the central scheduling system. It transmits smelting temperature, furnace pressure and other data synchronously, which helps to adjust the smelting process in time and ensures the stability of product quality and production safety.
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