Bridge the gap between a 1/4" inverted flare propane pigtail and a regulator with a 1/4" female NPT inlet port. This compact solid brass fitting from Camco includes a built-in check valve that restricts propane flow to one direction, adding a layer of safety to your RV or trailer propane system. Weighing just 0.05 lbs, it installs quickly and holds up to repeated use in tight LP plumbing runs.
Many RV propane systems mix pigtail hoses terminated with inverted flare fittings and regulators or manifolds ported with NPT threads. Without the correct adapter, those two standards simply will not connect -- and improvised workarounds risk leaks. The Camco 59953 is machined specifically to mate a 1/4" inverted flare female end (the pigtail side) to a 1/4" male NPT thread (the regulator or manifold side), giving you a clean, code-compliant joint.
The fitting is machined from solid brass, which resists corrosion from LP gas odorants and outdoor moisture, and provides the structural integrity needed to withstand standard propane system pressures. The integrated check valve is a key safety feature: it permits flow only from the pigtail toward the regulator, helping prevent reverse flow if a line is disconnected under pressure.
Corrosion-resistant brass body stands up to LP gas odorants and outdoor exposure over years of use.
One-directional flow control is built into the fitting body -- no separate check valve needed in the line.
1/4" male NPT on one end, 1/4" female inverted flare on the other -- bridges the two most common LP connection types.
Weighs just 0.05 lbs. Fits into tight propane compartments without adding bulk or requiring repositioning of other components.
The 59953 is intended for use in propane systems where a regulator or manifold has a 1/4" female NPT port and the incoming pigtail hose is terminated with a 1/4" inverted flare (also written as 1/4" IFF or 1/4" SAE 45-deg flare on some fittings). Common applications include:
Getting thread type right before purchasing saves time and return shipping. Here is how to identify each end: