The Weatherhead H101 Hose offers maximum durability under harsh operating conditions engineered to extend hose assembly life. Featuring a robust construction capable of withstanding high pressures this hose is suitable for air and multi-purpose applications.
Constructed with a single ply braid and reinforced with polyester the hose includes a cover made from chloroprene rubber providing standard abrasion resistance. The conductive nature of the hose ensures safety and reliability in various industrial settings.
Additional features include a minimum bend radius of 7 and a minimum working temperature of -40. The hose complies with MSHA standards and is identified by an ink jet lay line style. Qualified hose fittings for this product are 100 B.
** Supplier Part Number:** H10112-250R
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Specifications
Abrasion Resistance
29
Alternate Part Numbers
Alternate Part NumberC1HA95
Application
Air and multi purpose.
Color
Black
Compliances
MSHA Approved
Conductivity
30
Construction
1 Ply Braid
Cover Material
Chloroprene Rubber
Dash Size
-12
Brand
Danfoss (IGS)
Brand
Danfoss Power Solutions
Pack Size
1.00
UOM
FT
Features
Maximum durability under harsh operating conditions|Robust construction able to withstand highest pressures|System engineered to extend hose assembly life
what's the lowest temp this hose can handle? got equipment running through some pretty cold winters and need to know it won't get brittle on me
Answer by: Customer Support on Feb 15, 2026, 12:52 PM
Rated down to -40 degrees, so cold weather use aren't a concern with this one. The chloroprene rubber cover holds up well at those temps, and the nitrile tube material stays flexible enough to keep things moving even when it gets real nasty outside.
Question by: Johnny C on Mar 19, 2026, 8:02 PM
got a tight spot to route hose, how sharp can this H101 bend without kinkin it
Answer by: Customer Support on Mar 21, 2026, 6:57 AM
For routing, the minimum bend radius on the Weatherhead H101 is 7. Staying at or above a 7 inch bend radius helps keep the hose from being forced into an overly tight curve.