Molex 42440 Series Vertical Through Hole PCB Header Pin, 4 Contact(s), 4.2mm Pitch, 2 Row(s), Shrouded

Subtotal (1 tray of 120 units)*

£206.77

(exc. VAT)

£248.12

(inc. VAT)

Add to Basket
Select or type quantity
Stock information currently inaccessible
Tray(s)
Per Tray
Per unit*
1 +£206.77£1.723

*price indicative

RS Stock No.:
685-094
Mfr. Part No.:
15-28-6041
Brand:
Molex
Find similar products by selecting one or more attributes.
Select all

Brand

Molex

Series

42440

Pitch

4.2mm

Number of Contacts

4

Number of Rows

2

Body Orientation

Vertical

Shrouded/Unshrouded

Shrouded

Mounting Type

Through Hole

COO (Country of Origin):
MX
The Molex mini-fit BMI header designed for versatile applications in PCB headers and receptacles, facilitating seamless board to board, power, and wire to board connections. Engineered with a 4.20mm pitch and dual row configuration, this vertical header showcases a robust design featuring snap-in plastic pegs that ensure secure PCB locking. Made from high-quality PA Polyamide Nylon 6/6 with UL 94V-2 compliance, it is suitable for environments requiring durability and reliability. With a maximum current rating of 13A per circuit and a voltage capacity of up to 600V, the mini-fit bmi header is a reliable choice for high-performance connectivity, assuring engineers and designers of its superior functionality and compliance with key industry standards.

Designed for 4 circuits offering reliable connectivity options
Constructed from UL 94V-2 rated materials which ensuring fire safety and durability
Snap-in plastic peg ensures a secure connection with the PCB
Natural resin colour facilitates easy identification during assembly
Durability rated for up to 30 mating cycles which ensuring long-term use
Compatible with a variety of molex receptacle housing options which enhancing design flexibility
Lightweight construction with a net weight of just 1.284g for minimal impact on board designs
Features through hole termination interface for reliable soldering
Minimises space requirements while maintaining high performance