Skip to main content

TE Connectivity AMP Connectors 165861 Series

3 variants · TE Connectivity AMP Connectors

About the TE Connectivity AMP Connectors 165861 Series

IC Source Direct is a China connector distributor, supplier and independent procurement agent for TE Connectivity AMP Connectors 165861 Series components, matching housing, contact and mating cycles across the Shenzhen interconnect channel. The TE Connectivity AMP Connectors 165861 Series series groups 3 related part numbers, each listed with full specifications, a datasheet where available, and an RFQ option. Every variant in the range shares a common backset spacing of -, color of Black and contact finish of Gold. Variants differ by connector type, contact finish thickness and package, so you can match the exact connector type your application requires using the selection guide below. All listed TE Connectivity AMP Connectors 165861 Series part numbers are active and orderable.

Select a variant by

Connector type
Plug, Male Pins · Receptacle, Female Sockets
Contact finish thickness
- · 30.0µin (0.76µm)
Package
Bulk · Tube
Positions
9 · 15
Shell material, finish
- · Steel, Tin Plated
Shell size, connector layout
1 (DE, E) · 2 (DA, A)

Shared specifications

Backset spacing
-
Color
Black
Contact finish
Gold
Contact form
-
Contact material
Phosphor Bronze
Current rating
1.25A
Dielectric material
Thermoplastic
Features
Feed Through
Flange feature
Housing/Shell (4-40)
IP rating
-
Material flammability rating
UL94 V-0
Mounting
Free Hanging (In-Line)

Variant comparison

Parameter1658611-31658610-31658610-4
Connector typePlug, Male PinsReceptacle, Female SocketsReceptacle, Female Sockets
Contact finish thickness-30.0µin (0.76µm)30.0µin (0.76µm)
PackageTubeBulkBulk
Positions15159
Shell material, finish-Steel, Tin PlatedSteel, Tin Plated
Shell size, connector layout2 (DA, A)2 (DA, A)1 (DE, E)

Request a quote on any TE Connectivity AMP Connectors 165861 Series part number and we confirm price, availability and lead time per line — including end-of-life and allocation-constrained variants.

All variants