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Heavy Duty in-LINE Compressed AIR Pressure
Heavy Duty in-LINE Compressed AIR Pressure
Heavy Duty in-LINE Compressed AIR Pressure
Heavy Duty in-LINE Compressed AIR Pressure
Heavy Duty in-LINE Compressed AIR Pressure
Heavy Duty in-LINE Compressed AIR Pressure
Heavy Duty in-LINE Compressed AIR Pressure
Heavy Duty in-LINE Compressed AIR Pressure

Heavy Duty in-LINE Compressed AIR Pressure Regulator for AIR Compressor, 7 to 215 PSI Adjustable, HIGH Flow Rate, Wall Bracket and Gauge Included (1/2" NPT, 130 CFM)

Product ID : 19755417


Galleon Product ID 19755417
UPC / ISBN 687927981430
Shipping Weight 1.76 lbs
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Model R704N
Manufacturer THB
Shipping Dimension 8.74 x 3.5 x 3.11 inches
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4,183

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*Packaging of actual item may differ from photo shown
  • Electrical items MAY be 110 volts.
  • 7 Day Return Policy
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Heavy Duty in-LINE Compressed AIR Pressure Features

  • 250 PSI MAX INPUT PRESSURE, 215 MAX OUTPUT PRESSURE, WALL MOUNTING BRACKET & GAUGE INCLUDED.

  • ADJUSTABLE FROM 7 PSI TO 215 PSI, 130 SCFM FLOW RATE.

  • HIGH IMPACT LOCKING COMPOSITE KNOB.


About Heavy Duty In-LINE Compressed AIR Pressure

ADJUSTABLE FROM 7 PSI TO 215 PSI, 130 SCFM FLOW RATE A pressure regulator's primary function is to match the flow of gas through the regulator to the demand for gas placed upon it, whilst maintaining a constant output pressure. If the load flow decreases, then the regulator flow must decrease also. If the load flow increases, then the regulator flow must increase in order to keep the controlled pressure from decreasing due to a shortage of gas in the pressure system. High pressure gas from the supply enters into the regulator through the inlet valve. The gas then enters the body of the regulator, which is controlled by the needle valve. The pressure rises, which pushes the diaphragm, closing the inlet valve to which it is attached, and preventing any more gas from entering the regulator. The outlet side is fitted with a pressure gauge. As gas is drawn from the outlet side, the pressure inside the regulator body falls. The diaphragm is pushed back by the spring and the valve opens, letting more gas in from the supply until equilibrium is reached between the outlet pressure and the spring. The outlet pressure therefore depends on the spring force, which can be adjusted by means of an adjustment knob.