Danfoss / Eaton Coupling

Description & Features

The Danfoss / Eaton Coupling is designed for robust performance in demanding applications such as compressed air systems, pneumatic instrumentation, and cooling lines. Featuring a push-to-connect design on both ends, this coupling ensures quick and secure connections, enhancing your operational efficiency. Constructed from durable brass, it offers excellent resistance to corrosion, especially with its Dura-Kote plating, which ensures longevity even in harsh environments.

This coupling supports higher operating pressures above SAE standards, making it ideal for assembly equipment and cylinder control. With design flexibility, it accommodates diverse system requirements with hundreds of styles available. The union adapter's female-to-female connection type adds to its versatility, allowing integration into various industrial setups with ease.

SKU: IG1162X4M

Supplier Part Number (MPN): 1162X4M

Specifications

Application
Compressed air, pneumatic instrumentation, circuit, lubricant and cooling lines. Also excellent for assembly equipment and cylinder control.
End Gender 1
13553
End Gender 2
13555
End Type 1
Push to Connect
End Type 2
Push to Connect
Features
Dura-Kote plating for superior corrosion resistance|Design flexibility with hundreds of styles to choose from|Higher operating pressures above SAE standards
ICC
Union Adapters
Item Type
Push to Connect Female/Push to Connect Female Union
Language
English
Net Pack Quantity Units
EA
NMFC
50
Product Material
Brass
Product Width
0.64
Sub Brand
None
Supplier Part Number
1162X4M
Product Weight
0.03 lbs

Product Questions & Answers (1)

Question by: Norm E on Mar 30, 2026, 2:36 PM
reckon this fitting'd work okay in a shop with a air compressor running all day long?
Answer by: Customer Support on Apr 1, 2026, 6:06 AM
For compressed air systems, this coupling's push-to-connect design is meant to make connections quick and secure. It's also made of brass with Dura-Kote plating which helps it hold up well, even if things get a little rough.