HARWIN M22 Series Right Angle Through Hole Pin Header, 3 Contact(s), 2 mm Pitch, 1 Row(s), Unshrouded

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RS Stock No.:
173-0831
Mfr. Part No.:
M22-2030305
Brand:
HARWIN
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Brand

HARWIN

Product Type

Pin Header

Series

M22

Pitch

2mm

Current

1A

Number of Contacts

3

Housing Material

Nylon

Number of Rows

1

Orientation

Right Angle

Shrouded/Unshrouded

Unshrouded

Connector System

Board-to-Board

Mount Type

Through Hole

Contact Material

Phosphor Bronze

Contact Plating

Gold

Row Pitch

2mm

Termination Type

Solder

Minimum Operating Temperature

-40°C

Tail Pin Length

3mm

Contact Gender

Male

Maximum Operating Temperature

105°C

Standards/Approvals

No

Mating Pin Length

3.5mm

COO (Country of Origin):
TW

Harwin M22 2.00 mm PCB Pin Header Connectors


M22 series PCB through hole and SMT mount header connectors with a 2.00mm pitch. These M22 2.00 mm PCB headers are available with dual and single row, vertical and right angle configurations making them a versatile solution for various applications. The mating pin length of these M22 series breakaway PCB headers is 3.5 mm

The housings of both PCB through hole and SMT headers are made from high temperature thermoplastic enabling them to withstand the same reflow soldering process

The design of the housings incorporates castellations enabling them to be cut to size where required, care should be taken with the tails when doing this.

These M22 2.00 mm PCB pin header connectors mate with the M22 series PCB sockets, socket housings and jumpers.

Features and Benefits


Multiple configuration options and pin mating lengths for design flexibility

High temperature thermoplastic housings can withstand reflow soldering process

Can be cut to smaller sizes

Applications


These M22 2.00 mm PCB headers can be used in a wide range of applications and are established as standard connectors in embedded PCs, motherboards and large electronics systems.

Applications include consumer electronics, communications, drives and controls, industrial monitoring and personal computing

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