Molex 172065 Series Vertical Through Hole PCB Header, 4 Contact(s), 5.7 mm Pitch, 2 Row, Shrouded

Sous-total (1 sachet de 40 unités)*

265,00 €

(TVA exclue)

320,65 €

(TVA incluse)

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Temporairement en rupture de stock
  • Expédition à partir du 01 juin 2026
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Sachet(s)
Le Sachet
Prix par unité*
1 +265,00 €6,625 €

*Prix donné à titre indicatif

N° de stock RS:
683-580
Référence fabricant:
172065-0304
Fabricant:
Molex
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Marque

Molex

Series

172065

Product Type

PCB Header

Pitch

5.7mm

Number of Contacts

4

Number of Rows

2

Orientation

Vertical

Shrouded/Unshrouded

Shrouded

Mount Type

Through Hole

Row Pitch

5.7mm

Standards/Approvals

RoHS

Pays d'origine :
CN
The Molex Mega-Fit Slim Vertical Header designed for seamless wire-to-board connections, providing unmatched reliability and performance. With a dual-row configuration and a 5.70mm pitch, this component ensures efficient space utilisation while accommodating up to 4 circuits. Featuring a robust construction with high conductivity copper and extensive gold plating for superior conductivity, this header is not only glow-wire capable but also supports a wide temperature range of -40°C to +120°C. Active and compliant with various international standards, it is the ideal solution for applications requiring durable and efficient electrical connections.

Dual row configuration enables compact design for space efficient applications

Glow wire capability enhances fire safety in critical environments

Durable design offers up to 200 mating cycles for extended operational life

Constructed from high conductivity copper for optimal electrical performance

RoHS compliant, ensuring a reduced environmental impact

Low halogens meet IEC 61249 2 21 standards for increased safety

Vertical orientation simplifies PCB layout and improves assembly efficiency

Matte tin plating on terminations enhances solderability and durability

Compatible with multiple over moulded cable assemblies for versatile use

Features PCB retention and locator for stable installation during operation

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