Skip to main content
TE Connectivity AMP Connectors 1-826646-3 — Pin Headers

1-826646-3 TE Connectivity AMP Connectors Pin Header 13POS

MPN1-826646-3
Active

TE Connectivity AMP Connectors AMPMODU Mod II, 1-826646-3, Header Breakaway, 13 Positions, 0.100" (2.54mm) Pitch, Through Hole, Solder, Gold Mating Finish, 5 A, UL94 V-0, Green Insulation

$2.3900Ref. price · indicative, final on quote
RoHSRoHS Compliant
SeriesAMPMODU Mod II
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

1-826646-3 key specifications
ParameterValue
SeriesAMPMODU Mod II
TypeMale Pin
MountingThrough Hole
Connector typeHeader, Breakaway
Fastening typePush-Pull
Current rating5A
Operating temperature-65°C ~ 105°C
Contact materialBrass
Insulation colorGreen
Insulation height0.110\" (2.79mm)
Insulation materialPolybutylene Terephthalate (PBT)
Material flammability ratingUL94 V-0

All specifications

1-826646-3 additional specifications
ParameterValue
StyleBoard to Board or Cable
PackageBulk
ShroudingUnshrouded
TerminationSolder
Contact shapeSquare
Rows1
Pitch0.100\" (2.54mm)
Positions13
Contact finish - postTin
Contact length - post0.126\" (3.20mm)
Overall contact length0.465\" (11.81mm)
Contact finish - matingGold
Contact length - mating0.228\" (5.80mm)
Contact finish thickness - post118.1µin (3.00µm)
Contact finish thickness - mating3.90µin (0.099µm)

Product details

It breaks away from a longer strip, so you get exactly the circuit count you need without stocking odd-length parts.

We source this part against RFQ for volume or sample quantities.

Termination is solder to through-hole PCB.

Frequently asked questions

What connectors mate with 1-826646-3?

Any 0.100" pitch IDC receptacle or crimp housing designed for 0.025" square pins will mate. The unshrouded header relies on the receptacle's own polarization and retention.