Pressure Reducing Valve      

 

 Pressure Reducing Valve : Model 132-010

  It automatically reduces and maintains constant pre-set low pressure regardless of changing flow rate and/or varying inlet pressure. ¢Ñ Detail   

Pressure Reducing & Check Valve : Model 132-020

   It maintains constant pre-set low pressure regardless inlet pressure change and/or downstream flow rate change, and once downstream pressure higher than inlet pressure closes the basic valve to prevent return flow caused by back pressure.
 
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 Pressure Reducing & Pressure Sustaining Valve : Model 132-030

   It maintains constant downstream pressure and it sustains the upsteam pressure to a pre-determined minimum.
    Also, double chamber prevents malfunctions caused by vortex flow to the minimum, and easy adjustment and maintenance.
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 Pressure Reducing & Pressure Sustaining & Check Valve : Model 132-040  

    Model 132-040 combined Pressure Reducing and Pressure Sustaining and Check valve maintains inlet pressure change and/or downstream pressure flow rate to a pre-determined minimum pressure.  ¢Ñ Detail

Pressure Reducing & Solennoid Shut-Off Valve : Model 132-050

   This valve automatically reduces higher inlet pressure to a steady lower downstream pressure regardless of changing flow rate and/or varying inlet pressure.   It is a pressure reducing and solenoid control valve that can control basic valve closing and opening remotely by controling solenoid pilot valve electrically.  ¢Ñ Detail

 Pressure Controller & Two Stage Pressure Control Valve : Model 132-060

  It has one pilot set at a higher pressure setting for times of high water demand; a second pilot set at a lower pressure setting for low demand. This valve is suitable for many pressure control applications for high two-pressure control of a distribution zone
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Two Stage Pressure Reducing & Solenoid Control Valve : Model 132-070

   It has one pilot set at a higher pressure setting for times of high water demand; a second pilot set at a lower pressure setting for low demand for getting the direct effect as saving water in a high flowing water rate.  ¢Ñ Detail

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