TE Connectivity AMPMODU MTE Series Vertical Board PCB Header, 3 Contact(s), 2.54 mm Pitch, 1 Row, Shrouded

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小計(1 管,共 208 件)*

HK$2,069.51

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RS庫存編號:
505-985
製造零件編號:
5-104450-2
製造商:
TE Connectivity
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品牌

TE Connectivity

Product Type

PCB Header

Series

AMPMODU MTE

Current

3A

Pitch

2.54mm

Number of Contacts

3

Housing Material

Thermoplastic

Number of Rows

1

Orientation

Vertical

Shrouded/Unshrouded

Shrouded

Connector System

Wire-to-Board

Mount Type

Board

Contact Material

Brass

Contact Plating

Tin Plated

Minimum Operating Temperature

65°C

Row Pitch

2.54mm

Termination Type

Solder

Maximum Operating Temperature

105°C

Tail Pin Length

3.3mm

Contact Gender

Male

Standards/Approvals

CSA LR7189, UL 94V-0, UL E28476

Mating Pin Length

5.84mm

Voltage

60 V

COO (Country of Origin):
MX
The TE Connectivity PCB Mount Header offers a sophisticated solution for vertical, wire-to-board connections. Designed specifically for efficient performance in compact spaces, this fully shrouded connector ensures reliable connectivity across a range of electronic applications. With a 2.54 mm centreline, it accommodates three positions and features durable through-hole solder termination to guarantee a secure fit on your printed circuit board. The robust body material withstands various operating conditions, making it ideal for both industrial and consumer electronics. The advanced design optimises mating retention and alignment, resulting in a streamlined assembly process and dependable operation. Whether you are developing new circuits or enhancing existing ones, this connector embodies versatility and innovation.

Designed for efficient wire-to-board connectivity

Optimised for vertical PCB mounting applications

Robust construction ensures resilience and longevity

The fully shrouded header protects against environmental interference

Easy assembly with precise alignment features

Compatible with a range of standard applications

Maintains signal integrity across varied operating temperatures

Low termination resistance enhances electrical performance

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