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Amphenol 75867-130LF — Pin Headers, Sockets & Housings

Amphenol ICC (FCI) 75867-130LF Quickie Header, 4-Pos 2.54mm

MPN75867-130LF
Active

Amphenol ICC (FCI) Quickie header, order code 75867-130LF, 4 positions, dual row, 0.100" (2.54 mm) pitch, gold GXT mating contacts, through-hole right-angle, solder termination, shrouded 4-wall.

$1.1300Ref. price · indicative, final on quote
Source DocumentedChannel stated on listing & quote
Condition PhotosReal unit photos / video on request
WhatsApp AnswersFast human replies for stock & sourcing questions
Worldwide DispatchDHL/FedEx — transit quoted per order
Independent supplier — new & surplus connector stock· Listing updated Aug 2026

Specifications

75867-130LF key specifications
ParameterValue
SeriesQuickie™
TypeMale Pin
MountingThrough Hole, Right Angle
Connector typeHeader
Fastening typePush-Pull
Contact materialPhosphor Bronze
Insulation colorBlue
Insulation height0.362\" (9.20mm)
Insulation materialThermoplastic, Glass Filled
Material flammability ratingUL94 V-0
StyleBoard to Cable/Wire
PackageBulk

All specifications

75867-130LF additional specifications
ParameterValue
FeaturesKeying Slot
ShroudingShrouded - 4 Wall
TerminationSolder
Contact shapeSquare
Rows2
Pitch0.100\" (2.54mm)
Positions4
Row spacing - mating0.100\" (2.54mm)
Contact finish - postTin
Contact length - post0.120\" (3.05mm)
Contact finish - matingGold, GXT™
Contact length - mating0.236\" (6.00mm)
Contact finish thickness - post78.7µin (2.00µm)
Contact finish thickness - mating30.0µin (0.76µm)

Product details

Contact system and board fit

The 75867-130LF is the 4-circuit member of Amphenol ICC (FCI)'s Quickie shrouded header line. The 4-wall shrouded housing with keying slot guides the mating receptacle and prevents misalignment.

Series and position count

Within the Quickie 75867 series the 4-position 75867-130LF is the lowest circuit-count member.

Frequently asked questions

What is the closest pin-compatible alternative to 75867-130LF in the Quickie series?

They are not direct replacements but are the next higher circuit counts in the same series.