Product Short Description
Technical Specifications
- Electrical Parameters
- Voltage and Current: The standard operating voltage is 24Vdc, and it also supports a 5Vdc power supply for specific functional expansions. The typical current consumption of the module is 300mA, and its relay contacts have a rated switching capacity of 3A at 24Vdc.
- Communication Performance: It supports communication protocols such as Modbus RTU and is equipped with RS – 485 and Ethernet communication interfaces to realize efficient data exchange with PLCs, SCADA systems, and other industrial control equipment. The typical communication speed of the module can reach 10Mbps.
- Channel Configuration: It comes with 40 output channels as standard and can handle both analog and digital signals, with the signal types covering 4 – 20mA and 0 – 10V. It also provides flexible optional configurations of 8, 16, or 32 output points.
Description
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- Physical Parameters
- Dimensions: The module has a compact size, and there are different dimension specifications for different configurations, with common specifications including 60mm x 170mm x 105mm, which is convenient for installation in standard industrial control cabinets.
- Weight and Protection Level: Its weight is about 0.8kg, and some compact versions can be as light as 0.1kg. The enclosure protection level reaches IP20, and some enhanced versions can reach IP65 to adapt to different environmental protection needs.
- Environmental Parameters
- Temperature Adaptability: The operating temperature range is 0°C to 60°C, and some models can expand to -20°C to 60°C. The storage temperature range is -40°C to 85°C, which can withstand extreme temperature changes during transportation and shutdown.
- Humidity Tolerance: It can work normally in an environment with 5% – 95% relative humidity without condensation, which is suitable for humid industrial sites such as chemical plants and coastal oil fields.
- Physical Parameters
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Function Features
- Triple Modular Redundancy and Fault – Tolerant Design: The module adopts a triple modular redundancy architecture and fault – tolerant architecture. Three identical components perform the same operations and verify each other. When some components fail, the system can still maintain safe output and continuous operation, greatly improving the fault tolerance and reliability of the system.
- Flexible System Expansion Capabilities: As an expander interface module, it can add up to 16 additional I/O channels for the existing industrial control system. This modular expansion method will not affect the performance and stability of the original system, and can flexibly adapt to the expansion needs of industrial control systems during capacity expansion.
- Comprehensive Safety Control Functions: It integrates core safety functions such as safety interlocking, emergency shutdown, and safety linkage. When dangerous conditions such as excessive pressure and abnormal temperature are detected, it can immediately trigger safety interlocking to cut off the hazard source. In an emergency, it can quickly cut off the equipment power supply and link with other safety devices to achieve multi – level safety protection.
- Strong Anti – Interference and Protection Performance: Each output channel is equipped with advanced overload protection mechanisms to prevent component damage caused by current overload. Its robust circuit design can resist electromagnetic interference in industrial environments, ensuring the stability and accuracy of signal transmission without misoperation due to external interference.
- Easy Installation and Maintenance: The compact and lightweight structural design allows the module to be quickly installed in various industrial control racks. The modular design also enables maintenance personnel to quickly locate and replace faulty parts, reducing maintenance time and system downtime.
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Application Scenarios
- Oil and Gas Industry: It is widely used in oil drilling platforms, long – distance oil and gas pipelines, and refining plants. It is integrated into the safety instrumented system to control the switching of pipeline valves and the start – stop of oil transfer pumps. When gas leakage or pipeline overpressure occurs, it can trigger an emergency shutdown in time to avoid explosion and large – scale leakage accidents.
- Chemical Industry: It is deployed in the control systems of chemical reaction kettles, hazardous chemical storage tanks, and mixing equipment. It realizes the safety interlocking control of chemical production processes. When abnormal reactions such as excessive temperature of the reaction kettle occur, it can immediately cut off the supply of raw materials and activate the cooling system to prevent violent reactions and toxic gas leakage.
- Power Generation Industry: It is applied to the safety control systems of thermal power, hydropower, and other power plants, especially in the protection links of boilers and steam turbines. It monitors the operating parameters of power generation equipment in real time. When equipment malfunctions such as overspeed of the steam turbine and abnormal water level of the boiler occur, it can quickly output control signals to protect expensive power generation equipment.
- Metallurgical Industry: It is used in the safety control systems of high – temperature equipment such as blast furnaces and steelmaking converters in steel plants. It adapts to the high – temperature and dusty working environment in metallurgical plants. It controls the feeding speed and the switching of cooling water valves, and triggers safety measures in time when the temperature of the furnace body exceeds the safe range to ensure the safe operation of metallurgical production.
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