CAMELBAK MAX GRIP NT FIRE RETARDANT GLOVES – FAR (Federal Acquisition Regulation), DESERT TAN
Team Soldier certified and Combat proven by Special Operations Aviation, US Marine Corps and more
92% Nomex (fire-retardant material), 5% Kevlar (cut-resistance), and 3% P140 anti-static fiber (to provide safety around fuels, explosives and electronics)
Digitally textured leather palm, fingers and knuckles provide good grip in all conditions of use while concealed interior seam stitching using Para-Aramid thread enhances durability especially around vulnerable finger tips
Tanning technology keeps leather soft and supple for the life of the glove even after repeated exposure to perspiration or moisture and the gloves will not lose grip or fit even when wet or submersed in water and will stay soft even with repeated exposure to salt water
Â
Â
Camelbak Max Grip NT Gloves are durable high-performance fire-retardant flight gloves. This Camelbak glove is an ideal flight and shooter's glove. The Camelbak Max Grip Glove is combat-proven, with excellent fit, dexterity and durability. This combat glove from Camelbak is tailored for applications including pilots and crew chiefs, tanks, gunnery, special operations, SWAT, Close Quarter Battle (CQB) and Search and Rescue (SAR).
Bravo Company USA Gunfighter Kinesthetic Angled Grip
Â
BCMGUNFIGHTERâ„¢ KAG-KM
Kinesthetic Angled Grip - KeyModâ„¢ Version
Â
The KAG is the end result of an ongoing collaboration between BCM® an...
Bravo Company USA Gunfighter Kinesthetic Angled M-LOK Grip
Â
BCMGUNFIGHTER™ KAG-MCMR (M-LOK® Compatible*)
Kinesthetic Angled Grip -Â KAG
The KAG is the end result of collaboration between BCMÂ...
Bravo Company USA Gunfighter Mod 3 M-LOK Vertical GripFeatures & Specifications:Low-profile length for increased mobility and decreased snag factor.The forward angle increases the rigidity of t...
Bravo Company USA Gunfighter Mod 3-KeyMod Vertical GripFeatures & Specifications:Low-profile length for increased mobility and decreased snag factor.The forward angle increases the rigidity of ...