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Molex 5055960601 — Connector Housings

Molex 5055960601 MUO 2.5 Receptacle Housing, 6 Pos, 2.50mm

MPN5055960601
Active

Molex MUO 2.5 505596 series receptacle housing, 5055960601, 6 positions, 2 rows, 0.098" (2.50mm) pitch, free-hanging inline, crimp termination, locking ramp, black PA66, -40°C to 105°C.

$0.5800Ref. price · indicative, final on quote
RoHSROHS3 Compliant
SeriesMUO 2.5 505596
Sourced new & surplus through independent channelsAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

5055960601 specifications
ParameterValue
SeriesMUO 2.5 505596
TypeFemale Socket
MountingFree Hanging (In-Line)
Connector typeReceptacle
Fastening typeLocking Ramp
Operating temperature-40°C ~ 105°C
ColorBlack
Insulation materialPolyamide (PA66), Nylon 6/6
NoteContacts Not Included
Pitch0.098\" (2.50mm)
PackageBulk
Rows2
Contact terminationCrimp
Positions6

Product details

The Molex 5055960601 is a 6-circuit, dual-row receptacle housing from the MUO 2.5 505596 series. It is a free-hanging, in-line connector body that accepts female socket crimp terminals — the contacts are ordered separately.

Why the Contacts-Not-Included Note Matters on the Line

The housing ships empty — the spec explicitly notes Contacts Not Included. For a harness build, the crimp terminals must be ordered as a separate BOM line.

Temperature Range and Housing Material

The black colour is standard for the series — no colour-coding option is listed, so if your harness uses colour for circuit identification, you will need a separate marker system.

Frequently asked questions

Does 5055960601 include contacts?

No — the housing ships empty. The Contacts Not Included note means you must order the female socket crimp terminals separately for the harness build.

What is the pitch of 5055960601?

The pitch is 0.098" (2.50 mm), which matches the standard MUO 2.5 header footprint.

Is there a direct equivalent for 5055960601?

The peer MPN 505596-0601 carries identical specs (6 positions, 2.50 mm pitch, locking ramp, active lifecycle) and can be treated as a functional second-source for AVL purposes.