Phoenix Contact Straight Solder PCB Header, 10 Contact(s), 5 mm Pitch, 1 Row, Shrouded

Sous-total (1 paquet de 100 unités)*

230,92 €

(TVA exclue)

279,41 €

(TVA incluse)

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  • Expédition à partir du 26 janvier 2026
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Paquet(s)
le paquet
Prix par unité*
1 +230,92 €2,309 €

*Prix donné à titre indicatif

N° de stock RS:
567-255
Référence fabricant:
1753592
Fabricant:
Phoenix Contact
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Marque

Phoenix Contact

Product Type

PCB Header

Pitch

5mm

Current

12A

Housing Material

Polyamide

Number of Contacts

10

Number of Rows

1

Orientation

Straight

Shrouded/Unshrouded

Shrouded

Connector System

COMBICON MSTB 2.5

Mount Type

Solder

Contact Material

Copper Alloy

Termination Type

Solder

Row Pitch

5mm

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

100°C

Tail Pin Length

3.9mm

Contact Gender

Male

Standards/Approvals

CSA Approval ID: 13631-2585951, cULus Recognised Approval ID: E60425-19931011, IEC 60068-2-70:1995-12, IEC 60512-1-1:2002-02, IEC 60512-13-5:2006-02, IEC 60512-15-1:2008-05, IEC 60512-3-1:2002-02, IEC 60512-5-1:2002-02, IEC 60664-1:2007-04, ISO 6988:1985-02, VDE Approval ID: 40050648

Mating Pin Length

3.9mm

Voltage

32 V

Pays d'origine :
DE
The Phoenix Contact PCB Header, designed for seamless integration into various electronic applications, boasts a compact design that optimises space within your systems. With a nominal cross section of 2.5 mm² and accommodating up to 10 connections, it ensures reliable connectivity and robust performance. The wave soldering mounting method facilitates straightforward installation, while the pin layout provides flexibility for multi-row arrangements.

Offers excellent resistance against environmental stresses and extreme temperatures

Compatible with a wide range of mating components for maximum design flexibility

Supports high current ratings ensuring effective power distribution for various applications

Meets stringent international approvals for safety and reliability

Features a compact design that simplifies board layout and maximises space efficiency

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