Pneumatic Boosting System - Single Chip Microcomputer Control
    Pneumatic Boosting System - Single Chip Microcomputer Control
    • Pneumatic Boosting System - Single Chip Microcomputer Control
    • Pneumatic Boosting System - Single Chip Microcomputer Control

    Pneumatic Boosting System - Single Chip Microcomputer Control

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    Introduction to Fuente Pneumatic Gas Boosting System
    The PLC pneumatic boosting system is suitable for working environments where the original air compression system needs to increase pressure. It can increase the air pressure of the working system by 2-200 times, and only needs to use the compressed air in the working system as the gas source.
    1. The working pressure can reach 1600bar
    2. Flow rate: Standard 1350L/min
    When the set pressure is reached, there is no additional energy consumption
    4. No need for power supply (applicable to fields that require explosion-proof)
    The PLC pneumatic pressurization system can be used at low cost for producing compressed air and filling bottled gases, and can meet many requirements for high-pressure compressed air.
    The PLC pneumatic boosting system is used in the industrial field for clamping pneumatic chucks in machine tools, inflating accumulators, inflating high-pressure cylinders, converting low-pressure gas into high-pressure gas, etc. Any gas source with insufficient pressure, whether it is industrial machinery or testing equipment, can use pneumatic boosting systems (with the addition of gas storage tanks)
    Choosing a PLC pneumatic boosting system can reduce circuits and save time and effort.
    The core component of the air booster pump can be used as a component or as a complete power source system (with added valves and fittings).
    Adopting a pneumatic boosting system without electric sparks, it can be fully used in places with flammable and explosive gases.
    The typical applications of PLC pneumatic boosting system are as follows:
    Production of compressed air and filling of bottled gases
    Testing of air pressure regulator
    Performance testing and calibration of instruments and meters
    Transporting fluids in hazardous areas
    Testing of high-pressure gas systems and instruments
    Destructive testing of address specimens
    Testing of high-pressure gas systems and instruments
    Destructive testing of address specimens
    Demineralization processes, such as reverse osmosis and desalination
    Study on the morphology of high-pressure gas flow



    Pneumatic boosting system microcontroller

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