TE Connectivity Economy Power 2.5 Series Vertical Board Mount PCB Header, 60 Contact(s), 0.5mm Pitch, 1 Row(s), Shrouded

Subtotal (1 reel of 1000 units)*

£3,106.83

(exc. VAT)

£3,728.20

(inc. VAT)

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Reel(s)
Per Reel
Per unit*
1 +£3,106.83£3.107

*price indicative

RS Stock No.:
467-212
Mfr. Part No.:
1565357-5
Brand:
TE Connectivity
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Brand

TE Connectivity

Series

Economy Power 2.5

Pitch

0.5mm

Number of Contacts

60

Number of Rows

1

Body Orientation

Vertical

Shrouded/Unshrouded

Shrouded

Mounting Type

Board Mount

COO (Country of Origin):
JP
The TE Connectivity PCB Mount Receptacle is designed for vertical, board-to-board applications, offering exceptional performance with 60 positions and a compact 0.5 mm centreline. Constructed with high-quality materials, it ensures reliable signal transmission and robust connections. The gold plating on the contact mating area enhances conductivity and resistance to corrosion, making it ideal for demanding electrical environments. With a temperature range suitable for operation between -30°C and 105°C, this connector is engineered to perform efficiently across a broad spectrum of applications. Its surface mount design simplifies integration into printed circuit boards, while the thoughtful engineering allows for stackable configurations, providing flexibility in design. This component represents a fusion of precision engineering and practical utility, making it an excellent choice for your connector needs.

Designed for vertical PCB mounting, enhancing ease of installation
Offers 60 positions, facilitating a compact connection layout
Constructed from high heat-resisted resin for durability in challenging environments
Gold plating ensures superior conductivity and long-lasting performance
Compatible with a wide range of applications due to its versatile design
Reflow solder capable, maximising compatibility with modern manufacturing processes
Supports a broad operating temperature range, ensuring reliability across varying conditions
Stackable design provides flexibility for space-constrained setups