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Amphenol 77311-118R10LF — Pin Headers, Sockets & Housings

77311-118R10LF Amphenol ICC (FCI) BERGSTIK Header, 10 Pos

MPN77311-118R10LF
Active

Amphenol ICC (FCI) BERGSTIK header, order code 77311-118R10LF, 10 positions, single row, 0.100" (2.54mm) pitch, 3A per contact, gold or GXT mating finish, through-hole, kinked pin solder termination.

$0.8990Ref. price · indicative, final on quote
StockContact for availability
Lead timeIn Stock wk
MOQ1 pcs
  • New & original stockTraceable channels only — no mixed lots, no re-taped reels.
  • Factory packaging where availableSealed reels, trays and bags; cut quantities always stated on the quote.
  • Photo-verified countsEvery line counted and photographed before the box closes.
  • PayPal buyer protectionPay by T/T, PayPal or Payoneer — card payments covered end to end.

Specifications

77311-118R10LF Technical Specifications
ParameterValue
SeriesBERGSTIK®
TypeMale Pin
MountingThrough Hole
Connector typeHeader
Fastening typePush-Pull
Current rating3A per Contact
Operating temperature-65°C~125°C
Contact materialPhosphor Bronze
Insulation colorBlack
Insulation height0.100\" (2.54mm)
Insulation materialThermoplastic
Material flammability ratingUL94 V-0
StyleBoard to Board
PackageBag
ShroudingUnshrouded
TerminationKinked Pin, Solder
Contact shapeSquare
Rows1
Pitch0.100\" (2.54mm)
Positions10
Contact finish - postTin
Contact length - post0.120\" (3.05mm)
Overall contact length0.450\" (11.43mm)
Contact finish - matingGold or Gold, GXT™
Contact length - mating0.230\" (5.84mm)
Contact finish thickness - post78.7µin (2.00µm)
Contact finish thickness - mating30.0µin (0.76µm)

Product details

Amphenol ICC (FCI) BERGSTIK header, order code 77311-118R10LF, 10 positions, single row, 0.100" (2.54mm) pitch, 3A per contact, gold or GXT mating finish, through-hole, kinked pin solder termination.

Frequently asked questions

What is the closest pin-compatible alternative in the BERGSTIK series?

The 77311-118R10LF is the 10-position variant; other position counts share the same footprint and mating interface, so the selection is driven by circuit count.