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Molex 00264820 Series

3 variants · Molex

About the Molex 00264820 Series

IC Source Direct is a China connector distributor, supplier and independent procurement agent for Molex 00264820 Series components, matching housing, contact and mating cycles across the Shenzhen interconnect channel. The Molex 00264820 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 applications of Automotive, General Purpose, Industrial, Medical, Telecommunications, connector type of Header, Breakaway and contact finish - mating of Gold. Variants differ by contact length - mating, contact length - post and mounting, so you can match the exact contact length - mating your application requires using the selection guide below. All listed Molex 00264820 Series part numbers are active and orderable.

Select a variant by

Contact length - mating
0.450\" (11.43mm) · 0.573\" (14.55mm)
Contact length - post
0.172\" (4.37mm) · 0.184\" (4.67mm)
Mounting
Through Hole · Through Hole, Right Angle
Overall contact length
- · 0.750\" (19.05mm)
Positions
2 · 3

Shared specifications

Applications
Automotive, General Purpose, Industrial, Medical, Telecommunications
Connector type
Header, Breakaway
Contact finish - mating
Gold
Contact finish - post
Tin
Contact finish thickness - mating
20.0µin (0.51µm)
Contact finish thickness - post
100.0µin (2.54µm)
Contact material
Brass
Contact shape
Square
Current rating
-
Fastening type
Push-Pull
Features
-
Insulation color
Black

Variant comparison

Parameter002648202100264820220026482031
Contact length - mating0.450\" (11.43mm)0.573\" (14.55mm)0.450\" (11.43mm)
Contact length - post0.172\" (4.37mm)0.184\" (4.67mm)0.172\" (4.37mm)
MountingThrough HoleThrough Hole, Right AngleThrough Hole
Overall contact length0.750\" (19.05mm)-0.750\" (19.05mm)
Positions223

Request a quote on any Molex 00264820 Series part number and we confirm price, availability and lead time per line — including end-of-life and allocation-constrained variants.

All variants