Optimize your hydraulic systems with the Eaton Aeroquip FLUID COUP FEM Half, designed for seamless fluid transfer in demanding applications. This female half coupling features a quick connect and disconnect mechanism, eliminating the need for special tools and ensuring efficient operation. With its robust brass construction and Buna-N seal material, it offers durability and reliability in harsh environments. Designed to exceed ISO 16028 operating pressures, it supports a flow rate of up to 40 gallons per minute, making it ideal for on-highway hydraulic wet lines, dump and refuse vehicles, and bulk liquid transfer.
The coupling utilizes a thread-to-connect internal connection type, enhancing its secure fit and preventing leaks. Compatible with NPTF end types, it is suitable for various industrial applications where fluid compatibility and performance are critical. The Eaton FLUID COUP FEM Half measures 1.75 inches in width and operates efficiently in temperatures as low as -40 degrees Fahrenheit, ensuring versatility across diverse working conditions.
SKU: 5100-S1-16B
Supplier Part Number (MPN): 5100-S1-16B
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Specifications
Application
Hydraulics and fluid transfer, On-highway hydraulic wet lines, Dump and refuse vehicles, Bulk liquid transfer
Brand
Danfoss Power Solutions (II LLC Aeroquip)
Brand
Aeroquip
Pack Size
1.00
UOM
EA
End Gender 1
13553
End Gender 2
13556
End Size 2
1
End Type 2
NPTF
Features
Quick connect and disconnect|No need for special tools|Exceeds ISO 16028 operating pressures
what's the flow rate on this coupling, and is it gonna hold up running a dump truck's hydraulic line day in and day out?
Answer by: Customer Support on Aug 28, 2025, 8:22 AM
Rated at 40 gallons per minute, this fitting is built right into the on-highway hydraulic wet line and dump vehicle market. The brass body and Buna-N seals handle a solid working range down to negative 40 degrees, so cold morning startups on a route truck aren't going to be a problem. It exceeds ISO 16028 operating pressures, which means it's not a lightweight coupling trying to fake its way through heavy-duty work.