Aeroquip 50FT CUT Length Hose

Description & Features

Rated for both automotive brake and marine hydraulic applications, this -12 dash size hose meets SAE J1402, ABS, DOT FMVSS 106 Type AII, USCG, and DNV compliance standards, making it a well-certified option for demanding fluid transfer requirements. The Aeroquip 50FT Cut Length Hose features a chlorinated polyethylene inner tube, single-ply polyester and wire braid reinforcement, and a polyester outer cover with premium abrasion resistance.

The conductive construction supports static dissipation, and an ink wheel lay line aids identification and installation alignment. With a minimum bend radius of 2.75 inches and a rated working temperature floor of -55°F, it performs reliably across a range of temperature-variable environments. Compatible with reusable and 100R5 fittings, the hose suits mobile equipment, marine installations, and brake line assemblies where regulated compliance is required.

SKU: FC350-12-06000

Supplier Part Number (MPN): FC350-12-06000

Specifications

Abrasion Resistance
28
Alternate Part Numbers
Alternate Part Number MINO-00015X10697
Certifications
SAE J1402|ABS
Color
Black
Compliances
USCG|DNV|DOT FMVSS 106 Type AII
Conductivity
30
Construction
1 Ply Braid
Cover Material
Polyester
Dash Size
-12
Brand
Danfoss Power Solutions (II LLC Aeroquip)
Brand
Aeroquip
Pack Size
1.00
UOM
EA
ICC
Hoses and Flexible Tubes
Language
English
Lay Line Style
Ink Wheel
Minimum Bend Radius
2.75
Minimum Bend Radius
2.75
Minimum Working Temperature
-55
Product Width
1.10
Qualified Hose Fittings
Reusable, 100R5
Reinforcement Material
Polyester and Wire
Supplier Part Number
FC350-12-06000
Tube Material
Chlorinated Polyethylene
Product Weight
19.50 lbs

Product Questions & Answers (1)

Question by: Keith P on Nov 17, 2025, 8:29 AM
Can this Aeroquip hose handle the heat under the hood of my truck, or is it more for lower-temp stuff?
Answer by: Customer Support on Nov 18, 2025, 1:49 PM
Rated with a minimum working temperature of -55°F, this hose is designed to perform reliably in temperature-variable environments.