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    Solenoid Controlled Pressure Reducing Plastic Valve

    Manufacturer: Armas Valves & Filters

    BACCARA G75 Solenoid valve controlled pressure reducer control valve continuously controls downstream pressure value and maintains it without being affected by flow rate and upstream pressure values.

    Easy to use
    Low cost
    Operation in wide pressure range (PN10)
    Perfect modulation even in lower flow rates
    Anti-surge closing and opening with flexible diaphragm
    Glass Reinforced Poly-amide material
    Made in Turkey
    Manufacturer part number: PREL/B
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    Armas Solenoid Controlled Pressure Reducing Plastic Valve

    Applications

    • Irrigation
    • Industrial
    • Water distribution, where downstream pressure should be reduced the valve is
      the commanded to open

    FEATURES

    • 3-way plastic pressure reducing pilot, Baccara G75 solenoid valve 24V AC N.O., polytethylene plastic tubing system and nylon fittings
    • 3-way selector valve
    • Standard pressure adjustment: 2.5 bar
    • Made in Turkey

     

     Download Baccara G75 1/8" Solenoid Valves Technical Specifications

    Armas solenoid pressure reducing control valve

    ARMAS 500 Series Baccara Solenoid Controlled Pressure Reducing Plastic Valve

    Armas “Solenoid Controlled Pressure Reducing” model pressure reducing valve is the hydraulic control valve which reduces high upstream pressure value into desired lower pressure value. Control of main valve is achieved by means of built-in solenoid pilot valves. Electric signal for solenoid pilot valves is ensured by means of a control device, time relay, main switch and PLC control units etc. Automated control can be easily ensured by this way in application systems.

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    Irrigation Unit Conversions

    Convert a given value and unit to different unit type. Conversions are available for flow rate, area, distance, time, volume, pressure, power, precipitation, salinity, and speed.

    Click here to see unit descriptions.


     to 
    Area:
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    Distance:
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    Time:
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    Volume:
     to 
    Pressure:
     to 
    Power:
     to 
    Precipitation (Water Application) Rate:
     to 
    Salinity:
     to 
    Speed:
     to 

    Reference: Washington State University