This Eaton tee adapter is part of the 2029 series of adapters and features design flexibility for use in hydraulic, instrumentation, and chemical processing systems. The DANFOSS / EATON #4 FP (RUN) X #6 MJ TEE is constructed of carbon steel with Dura-Kote plating for superior corrosion resistance and the ability to withstand higher operating pressures above SAE standards.
This tee adapter has a female NPTF internal pipe end with a 0.25 inch size (end 1). End 2 is a male SAE 37 degree flare with a 0.5625 inch size. End 3 is also a male SAE 37 degree flare with a 0.5625 inch size. It meets SAE standard 070426 and is suitable for minimum working temperatures of -65 degrees Fahrenheit.
SKU: 2029-4-6S
Supplier Part Number (MPN): 2029-4-6S
Alternate Part Numbers: C1HD35
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Specifications
Alternate Part Numbers
Alternate Part NumberC1HD35, Alternate Part Number MINO-00925X09019
Application
Other - Hydraulic, instrumentation, and chemical processing systems
Certifications
SAE 070426
Brand
Danfoss Power Solutions (II LLC Aeroquip)
Brand
Aeroquip
Pack Size
1.00
UOM
EA
End Gender 1
13553
End Gender 2
13556
End Gender 3
13558
End Size 1
0.25
End Size 2
0.56
End Size 3
0.56
End Type 1
NPTF
End Type 2
SAE 37
Features
Dura-Kote plating for superior corrosion resistance|Design flexibility with hundreds of styles to choose from|Higher operating pressures above SAE standards
ICC
Tee/Y Adapters
Item Type
NPTF Female/SAE 37 Male/SAE 37 Male Tee Adapter
Language
English
Minimum Working Temperature
-65
Net Pack Quantity Units
EA
NMFC
50
Product Material
Carbon Steel
Product Width
0.75
Sub Brand
None
Supplier Part Number
2029-4-6S
Product Weight
1.93 lbs
Product Questions & Answers (1)
Question by: Pete B on Aug 3, 2025, 7:08 AM
Will this Eaton tee adapter hold up in a hydraulic system operating at, say, 3000 PSI?
Answer by: Customer Support on Aug 4, 2025, 8:56 PM
It's built with carbon steel and Dura-Kote plating so it can handle operating pressures that are above SAE standards. It's designed for hydraulic, instrumentation, and chemical processing systems, which suggests it can withstand fairly high pressure.