TE Connectivity 5-1571424 Series Vertical Board Mount PCB Header, 10 Contact(s), 1.27mm Pitch, 2 Row(s), Shrouded

Subtotal (1 tube of 112 units)*

£324.42

(exc. VAT)

£389.30

(inc. VAT)

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Tube(s)
Per Tube
Per unit*
1 +£324.42£2.897

*price indicative

RS Stock No.:
476-688
Mfr. Part No.:
5-1571424-5
Brand:
TE Connectivity
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Brand

TE Connectivity

Series

5-1571424

Pitch

1.27mm

Number of Contacts

10

Number of Rows

2

Body Orientation

Vertical

Shrouded/Unshrouded

Shrouded

Mounting Type

Board Mount

COO (Country of Origin):
MX
The TE Connectivity PCB mount header represents the pinnacle of connector technology, designed specifically for vertical board-to-board applications. With its fully shrouded design, it ensures a secure and reliable connection even in demanding environments. The innovative 10-position configuration allows for seamless integration into various electronic devices, making it an ideal choice for modern PCB designs. Constructed from high-quality materials like LCP (Liquid Crystal Polymer) and copper alloy, it boasts excellent durability and performance. This component not only stands out for its remarkable dielectric withstand capability but also for its robust insulation resistance, making it essential for sensitive signal applications. Its compact dimensions and 1.27mm centreline enable it to be utilised in space-constrained situations while maintaining optimal functionality.

Offers a strong and durable connection for board-to-board applications
Fully shrouded design adds an extra layer of protection to its electrical contacts
Ideal for applications that require tight PCB layouts due to its compact size
Can withstand high voltage, ensuring safety in electrical circuits
Utilises low halogen materials, aligning with environmental compliance
Designed with a mating alignment type, enhancing ease of use during assembly
Provides a reliable termination method through hole-soldering
Features a high temperature rating, suitable for demanding environmental conditions
Ensures excellent electrical performance with minimal resistance