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Reservoir Accessories

BF Breathers

Control airborne contamination and extend the life of other filters in your system.  BF Breathers go beyond ineffective filter / breather caps to protect your system with high capacity, high efficiency pleated glass media elements.  Combine with Hy-Pro Filter Assemblies and Fluid Conditioning Equipment for the ultimate in Total Systems Cleanliness.

Hy-Dry Desiccant Breather

Hy-Dry desiccant breathers control moisture by adsorption and particulate mechanically down to 1 micron from entering reservoirs during air exchange.  Rugged designs are available high vibration mobile applications.  A wide range of breather sizes and reservoir adaptors are available to enhance any reservoir.  Fluid contamination is the root cause of most hydraulic system failures. Controlling airborne contamination is critical. The synergy of Hy-Pro fluid filter elements and Hy-Dry desiccant breathers yields fluid clarification and a healthy hydraulic system.  Desiccant beads change color signaling that is time to replace the breather.


Hydraulic & Lube Oil Contamination Reference Chart (39″ X 27″)

Water and particulate contamination reference chart for hydraulic and lube oil (39″ X 27″).  Contact Proactive Strategic Reliability Sdn Bhd ( to request your free copy today!


In-Tank Suction Strainer Mesh Elements

In-tank suction strainer mesh elements are available with nylon and corrosion resistant steel threaded end cap connections up to 3″ NPT and G threads.



Spin-On Breathers

Hy-Pro high efficiency high capacity spin-on breathers prevent contaminant ingression in to reservoirs, ideal for mobile applications.  Replace ineffective filler-breather caps.


TMR™ Reservoir Headspace Dehydrator

TMR™ introduces air with 150°F dew point suppression into reservoir headspace to maintain water levels < 300 ppm in EHC reservoir phosphate ester (to 1,000 gal / 3,750 liter reservoirs).


TMR™ N2 Active Headspace Dehydrator + Nitrogen Generator

TMR™ N2 is an active breather system that maintains the air in the headspace that continuously introduces clean dry Nitrogen. As the dry N2 transfers through the headspace at RH < 1% the oil gives up its water striving to achieve equilibrium with the dry Nitrogen in the headspace.

Nitrogen is an inert gas so it will also remove combustible gases (ie CO2, C2H2, CO, C2H4, C2H6, CH4, H2) from the oil to reduce oxidation and fluid breakdown.

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