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Pulse Electronics E5288 Series

2 variants · Pulse Electronics

About the Pulse Electronics E5288 Series

IC Source Direct is a China connector distributor, supplier and independent procurement agent for Pulse Electronics E5288 Series components, matching housing, contact and mating cycles across the Shenzhen interconnect channel. The Pulse Electronics E5288 Series series groups 2 related part numbers, each listed with full specifications, a datasheet where available, and an RFQ option. Every variant in the range shares a common connector type of Jack, contact finish of Gold and contact material of Phosphor Bronze. Variants differ by contact finish thickness, features and housing material, so you can match the exact contact finish thickness your application requires using the selection guide below. All listed Pulse Electronics E5288 Series part numbers are active and orderable.

Select a variant by

Contact finish thickness
3.00µin (0.076µm) · 30.0µin (0.76µm)
Features
- · Solder Retention
Housing material
Polyamide (PA10T), Nylon 10T · Polybutylene Terephthalate (PBT), Glass Filled
Mounting
Surface Mount · Through Hole
Package
Bulk · Tape & Reel (TR) Cut Tape (CT)
Shielding
Shielded, EMI Finger · Unshielded

Shared specifications

Connector type
Jack
Contact finish
Gold
Contact material
Phosphor Bronze
IP rating
-
LED color
Does Not Contain LED
Number of ports
1
Number of positions (Contacts)
8p8c (RJ45, Ethernet)
Operating temperature
-40°C ~ 85°C
Orientation
Vertical
Ratings
Cat3
Rows
1
Tab direction
User Selectable

Variant comparison

ParameterE5288-006-02-LE5288-310141-L
Contact finish thickness30.0µin (0.76µm)3.00µin (0.076µm)
FeaturesSolder Retention-
Housing materialPolyamide (PA10T), Nylon 10TPolybutylene Terephthalate (PBT), Glass Filled
MountingSurface MountThrough Hole
PackageTape & Reel (TR) Cut Tape (CT)Bulk
ShieldingUnshieldedShielded, EMI Finger

Request a quote on any Pulse Electronics E5288 Series part number and we confirm price, availability and lead time per line — including end-of-life and allocation-constrained variants.

All variants