ABB PPD113 B01-10-150000 3BHE023784R1023 Controller Module
Product Overview
ABB PPD113 B01-10-150000 3BHE023784R1023, as a controller module, plays a key role in the field of industrial automation. It belongs to the high-performance product line developed by ABB for complex industrial control scenarios. With ABB's profound accumulation in electrical and automation technology, this module has excellent stability, reliability, and powerful control capabilities. It can accurately control various industrial equipment and systems and is one of the core components to ensure efficient and stable operation of industrial production.
Technical parameters
Power parameters: The input voltage range is 85-264VAC, which can adapt to various power supply environments. Whether in standard industrial power environments or in situations where there are certain fluctuations in power supply voltage, it can stably obtain electrical energy. The output is 24VDC voltage, with an output current of 6.3 amperes and a rated power of 150 watts. This output configuration can provide stable and sufficient power support for connected load devices, ensuring that the equipment operates normally under rated conditions. The efficiency of the module is as high as 90%, which means that in the process of energy conversion, the input electrical energy can be converted into effective output electrical energy at a high proportion, reducing energy loss and lowering operating costs.
Environmental parameters: In terms of working temperature, it can operate normally in an environment of -25 ° C to+70 ° C. This wide temperature adaptation range allows it to be applied to various industrial sites with different environmental conditions. Whether it is a high-temperature steel smelting workshop or a low-temperature refrigerated storage environment, its performance will not be affected by temperature issues. The storage temperature range is -40 ° C to+85 ° C, ensuring that the module can be safely stored even in non working conditions such as transportation and storage, without being affected by extreme temperatures.
Dimensions and installation parameters: The module measures 97mm x 45mm x 130mm, with a compact design and small footprint, making it easy to integrate into various control cabinets or devices. Adopting DIN rail installation method, this standardized installation method is easy to operate and can quickly and stably install modules to designated positions, facilitating equipment assembly and maintenance. At the same time, the module has passed certifications such as CE and ROHS, complying with relevant international safety and environmental standards, and can be used with confidence worldwide.
Functional characteristics
Comprehensive protection function: equipped with short circuit, overload, overvoltage, and over temperature protection functions. When a short circuit is detected in the output circuit, the protection mechanism will quickly act to instantly cut off the circuit, avoiding irreversible damage to the module itself and backend equipment caused by excessive short-circuit current. When encountering overload situations, it can adjust the output or issue an alarm in a timely manner according to the preset threshold to prevent the equipment from burning out due to long-term overload operation. For overvoltage phenomenon, it can effectively suppress the impact of excessive input voltage on the internal circuit of the module, ensuring stable operation of the circuit. And over temperature protection can monitor the working temperature of the module in real time. Once the temperature exceeds the safety threshold, immediate cooling measures or stop working can be taken to ensure that the module will not experience performance degradation or damage due to overheating.
Efficient data processing and control: As a controller module, it has powerful data processing capabilities and can quickly collect and analyze signal data from various sensors and devices. Through built-in advanced algorithms and control logic, precise control of the operating status of industrial equipment is achieved. For example, on an automated production line, equipment parameters such as motor speed and valve opening can be precisely controlled according to production process requirements, achieving automation and intelligent control of the production process, and improving production efficiency and product quality.
Application scenarios
Power industry: used for monitoring and controlling power equipment in power plants, substations, and other places. Real time monitoring and adjustment of the operating status of the generator set to ensure the stability and reliability of power output; Centralize the control of switchgear, protective devices, etc. within the substation to ensure the safe and stable operation of the power system.
In the field of industrial manufacturing, it is widely used in industries such as elevator manufacturing, automobile production, and mechanical processing. In the elevator control system, the lifting speed and leveling accuracy of the elevator can be precisely controlled to ensure the safety and comfort of passengers. On the automobile production line, precise control of automated assembly equipment, robots, etc. can be achieved to improve production efficiency and product consistency. In the process of mechanical processing, the operating parameters of the machine tool can be controlled to achieve high-precision machining of parts.
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