Skip to main content
69168-316HLF

Amphenol 69168-316HLF; Mini-PV™ Basics+, 16-position header, 0.100" pitch

MPN69168-316HLF
Active

Amphenol Mini-PV™ Basics+ dual-row header, 16 positions, 0.100" (2.54 mm) pitch, through-hole solder termination, shrouded 2-wall with friction lock, gold/GXT contact plating 50 µin, UL94 V-0 black housing.

$3.2500Ref. 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 China distributor & sourcing agent· Listing updated Jul 2026

Specifications

69168-316HLF key specifications
ParameterValue
SeriesMini-PV™, Basics+
TypeMale Pin
MountingThrough Hole
Connector typeHeader
Fastening typeFriction Lock
Contact materialPhosphor Bronze
Insulation colorBlack
Insulation height0.386\" (9.80mm)
Material flammability ratingUL94 V-0
StyleBoard to Cable/Wire
PackageBulk
ShroudingShrouded - 2 Wall

All specifications

69168-316HLF additional specifications
ParameterValue
TerminationSolder
Contact shapeSquare
Rows2
Pitch0.100\" (2.54mm)
Positions16
Row spacing - mating0.100\" (2.54mm)
Contact length - post0.120\" (3.05mm)
Overall contact length0.800\" (20.32mm)
Contact finish - matingGold or Gold, GXT™
Contact length - mating0.230\" (5.84mm)
Contact finish thickness - mating50.0µin (1.27µm)

Frequently asked questions

How do I get current pricing and availability for 69168-316HLF?

Quoted to order against the BOM quantity via RFQ; availability and current pricing are confirmed at quote time from independent distribution.

What does 69168-316HLF's listed series (Mini-PV™, Basics+) mean for my harness design?

The Mini-PV Basics+ series is Amphenol's standard-range dual-row header line at 0.100-inch pitch, designed for board-to-cable wire-harness panels — the Basics+ designation indicates the mid-tier plating and cycle-life options within the series, as opposed to the higher-cycle or higher-current variants.