Product Short Description

Technical Specifications

  • Processor and Memory Specifications
    • It is equipped with a QorIQ P1021 dual-core processor, which runs at a clock speed of 800 MHz, with 32 KB L1 cache and 2 MB L2 cache to ensure efficient operation of complex programs.
    • It is configured with 256 MB DRAM without battery backup, 2 MB SRAM with battery backup and 128 MB flash PROM, which can stably store operation programs and real-time data.
    • It has a battery-backed clock and calendar, with a typical drift of ±2 seconds per day and a maximum drift of ±2.16 seconds per day, ensuring accurate time recording of system events.
  • Communication and Interface Specifications
    • The Tribus interface adopts 32-bit CRC protection and 32-bit DMA with full isolation, and the communication speed reaches 25 Mbps when matching 8110 main chassis and 8100 – 1 low-density main chassis, and 1000 Mbps when matching 8120e enhanced performance main chassis.
    • It is equipped with an optically isolated RS – 232 interface on a 9-pin connector with 500 VDC isolation, and also supports RS – 485 protocol. The baud rate of the communication interface is 2 Mbps, and the baud rate of the I/O interface is 375 kbps.
    • It is also configured with multiple interfaces such as Ethernet and USB, which can realize data interaction with various external hosts and peripheral devices.

Description

  • Physical and Power Specifications
    • Its approximate dimensions are 45 centimeters in length, 20 centimeters in width and 15 centimeters in height, and its weight is about 3.5 kilograms.
    • The power consumption of the module is 14 watts, which has low power consumption characteristics while maintaining high performance, reducing the overall energy consumption of the control system.

Functional Characteristics

  • Superior Fault Tolerance and High Safety
    • The triple modular redundancy architecture and two-out-of-three voting mechanism fundamentally eliminate the impact of single-point faults, ensuring that the system can maintain stable operation even in extreme environments, and meeting the strict safety integrity level requirements of industrial fields.
    • It is equipped with comprehensive online diagnosis capabilities, which can automatically detect faults inside the module and faults in the connection links with external modules, and quickly isolate the faulty parts without affecting the normal operation of the entire system.
  • Strong Processing and Expansion Capabilities
    • The high-speed dual-core processor and sufficient cache and memory resources enable the module to quickly process a large amount of real-time data transmitted by on-site sensors and execute complex safety control logic in a short time.
    • It can be compatible with up to 118 I/O modules, supporting both analog and digital inputs. It can also connect remote I/O modules within 12 kilometers, which can flexibly expand the system scale according to the actual needs of industrial projects.
  • Convenient Communication and Maintenance
    • It supports peer-to-peer networking with other Triconex controllers and external hosts, realizing efficient data sharing and collaborative work between multiple devices in the industrial control system.
    • It adopts a modular design, which allows on-site installation and maintenance without disrupting on-site wiring. Routine maintenance work can be carried out without interrupting the production process, greatly reducing maintenance downtime.
    • It can be developed and debugged through Windows NT-based programming software, which is convenient for technicians to configure parameters and modify programs.

Application Scenarios

  • Oil and Gas Industry
    • It is installed in offshore drilling platforms and onshore wellhead control systems. It monitors parameters such as pressure and flow of oil and gas extraction equipment in real time. When abnormal data is detected, it triggers the emergency shutdown system immediately to prevent leakage, fire and explosion accidents.
    • It is used in long-distance oil and gas pipeline monitoring systems. It communicates with sensors along the pipeline, controls the opening and closing of pipeline valves in real time, and ensures the safe and stable transportation of oil and gas.
  • Chemical and Petrochemical Industry
    • It is deployed in the reactor protection system of chemical plants. It precisely controls the temperature, pressure and raw material dosage in the reactor. When parameters exceed the safe range, it adjusts the process in time or stops the reaction to avoid dangerous chemical reactions.
    • It is applied to the burner management system of petrochemical enterprises. It monitors the ignition state and flame stability of the burner, and cuts off the fuel supply immediately when flameout or abnormal combustion occurs to eliminate potential safety hazards.
  • Power Industry
    • In nuclear power plants and large thermal power plants, it is integrated into the turbine overspeed protection and boiler safety interlock system. It monitors the operation parameters of key equipment in real time and initiates protection measures quickly when abnormalities occur to avoid major equipment damage and power supply accidents.
    • It is used in the auxiliary control system of power plants, responsible for managing the operation of water supply pumps, induced draft fans and other equipment, ensuring the continuity of the power generation process.
  • Other Industrial Fields
    • In metallurgical enterprises, it is applied to the safety control system of smelting furnaces. It monitors the temperature and air pressure of smelting furnaces and adjusts relevant parameters in real time to ensure the safety of the smelting process and the quality of metal products.
    • It is used in the safety control system of water treatment plants. It controls the operation of aerators, sludge treatment equipment and other devices, ensures the stable operation of the water purification process, and avoids environmental pollution caused by equipment failures.

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