TE Connectivity, 2-1761679-3 2.54 mm Pitch 10 Way Vertical Male FPC Connector, Solder

Subtotaal (1 verpakking van 200 eenheden)*

€ 214,74

(excl. BTW)

€ 259,84

(incl. BTW)

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  • Verzending vanaf 03 april 2026
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RS-stocknr.:
478-549
Artikelnummer Distrelec:
304-52-711
Fabrikantnummer:
2-1761679-3
Fabrikant:
TE Connectivity
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Merk

TE Connectivity

Number of Contacts

10

Product Type

FPC Connector

Contact Material

Phosphor Bronze

Pitch

2.54mm

Current

1A

Mount Type

Board

Connector Gender

Male

Termination Type

Solder

Orientation

Vertical

Voltage

250 V

Series

2-1761679-3

Minimum Operating Temperature

65°C

Contact Gender

Male

Maximum Operating Temperature

105°C

Standards/Approvals

UL 94 V-0

Number of Rows

2

Contact Plating

Gold

Housing Material

Polybutylene Terephthalate

Land van herkomst:
CN
The TE Connectivity Wire-to-Board connector is designed to facilitate efficient connections in compact spaces, showcasing an exceptional combination of performance and reliability. Configured with ten positions and a 2.54 mm centreline, it provides seamless vertical integration for PCB applications. Engineered to meet stringent electrical standards, this connector excels in signal transmission, making it ideal for high-demand environments. Its low-profile design offers ease of installation and enhances space-saving capabilities, complemented by robust materials that ensure longevity and resistance to thermal extremes. This connector is not just functional; it embodies precision engineering, promising impeccable compatibility and connectivity for various circuit applications.

Ensures reliable signal transmission even in demanding conditions

Vertical mounting orientation optimises PCB space usage

Low-profile design aids in the development of compact electronic assemblies

Constructed from high-quality materials for improved durability

Wide operating temperature range allows for versatile use in various environments

Easy installation enhances operational efficiency during assembly

Daisy chain capability facilitates complex circuit designs

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