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Made In USA with all American Brands & Highest Quality Components

Air & Hand Pressure & Calibration System | Designed for the Oil and Gas Field

CSS Serie is a liquid pressure test pump: Pneumatic driven with a pressure range of 500 psi up to 20,000 psi ideal for calibrating and testing in small confined spaces and remote locations. CSS-REX Series is pre-lubricated at factory and therefore does not require a lubricator in the air drive supply line.

  • Compatible with all hydraulic fluids, water, distilled and di-ionized water, solvents, mild chemicals, glycol, liquefied CO2 and many more.
  • Requires 15 – 60 Psi air drive pressure to operate, the L3 series pump is self priming for immediate operation.
  • Hand pump attachment allows for manual operation when shop air is not available or for precision pressure control.
  • Available in eight models to pressure up to 20,000 Psi (1379 Bar).
  • Requires no electrical power or connections.
  • Alternative gases that can drive the pump include nitrogen vapor from liquefied gas or natural gas pipeline, thus offering a completely self-contained package independent of external power sources.

For pressure, flow rates and port size for each model, please download the model datasheet below the product

Components: USA Brands, Parker, Swagelok, SC Hydraulic, Mc Daniels

  • Pelican Protective Rugged Case
  • Stainless Steel Liquid Tank 1.75 gallons ( 7 Liters) 
  • All Stainless steel, valves, tubing, adapters & hardware
  • Requires 15 – 60 Psi air pressure to operate
  • Dry Lube pump does not require and air lubricator
  • Pressure output ports will be according to ranges of pressure model, MP, or NPT  

PACKING & SHIPPING – LOCAL, NACIONAL & INTERNATIONAL

Diemensions: 19″L X 14″H X 11″- Shipping Wood Crate Dimensions: 20″L X 16″H X 13″W
Weight: 45 Pounds  – Shipping Weight 55 Pounds

When operating from 0 to rated hydraulic pressure, air consumption will be approximately 18 scfm of free air at 100 psi output. At lower air pressures and higher hydraulic pressures air consumption will be reduced proportionately to flow rates indicated

 
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