Phoenix Contact D31H Series Wave Soldering Mount PCB Header, 8 Contact(s), 3.81 mm Pitch, 1 Row, Shrouded

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€ 150,62

(excl. BTW)

€ 182,25

(incl. BTW)

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  • Verzending vanaf 04 maart 2026
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RS-stocknr.:
483-670
Fabrikantnummer:
1340373
Fabrikant:
Phoenix Contact
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Merk

Phoenix Contact

Product Type

PCB Header

Series

D31H

Pitch

3.81mm

Current

8A

Housing Material

Polybutylene Terephthalate

Number of Contacts

8

Number of Rows

1

Shrouded/Unshrouded

Shrouded

Connector System

CONNEXIS

Mount Type

Wave Soldering Mount

Contact Plating

Tin Plated

Contact Material

Copper Alloy

Row Pitch

3.81mm

Termination Type

Pin

Minimum Operating Temperature

-55°C

Tail Pin Length

3.8mm

Maximum Operating Temperature

105°C

Mating Pin Length

3.8mm

Standards/Approvals

No

Voltage

160 V

Land van herkomst:
CN
The Phoenix Contact D31H 2.2/8-V-3.81-X PCB header is expertly designed to deliver robust electrical connections for your applications. This versatile component features a unique plug-in system that enhances connectivity while maintaining a streamlined profile, making it ideal for high-density circuit designs. With its durable construction and user-friendly locking mechanism, this PCB header ensures reliable performance in varied environments. The integration of wave soldering mounting facilitates efficient assembly processes, ensuring quick installation without compromising the integrity of the connection. Tailored for use in industrial and commercial settings, it is compatible with both standard and bespoke configurations, meeting diverse connectivity needs.

Utilises a snap-in locking feature for secure connections

Includes a soft black housing to complement various designs

Engineered for wave soldering to optimise assembly efficiency

Features linear pinning for improved alignment and stability

Meets stringent WEEE/RoHS compliance standards for environmental safety

Offers easy plug-in module compatibility for hassle-free replacements

Constructed from rugged materials to withstand harsh conditions

Presents minimal contact resistance for enhanced electrical flow

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