Phoenix Contact MCDNV Series Vertical Wave Soldering Mount PCB Header, 20 Contact(s), 3.81 mm Pitch, 2 Row, Shrouded

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RS는 이 제품을 더 이상 판매하지 않습니다.
RS 제품 번호:
492-770
제조사 부품 번호:
1750313
제조업체:
Phoenix Contact
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브랜드

Phoenix Contact

Product Type

PCB Header

Series

MCDNV

Pitch

3.81mm

Current

8A

Number of Contacts

20

Housing Material

Liquid Crystal Polymer

Number of Rows

2

Orientation

Vertical

Shrouded/Unshrouded

Shrouded

Connector System

5 MCDN 1, COMBICON FMC 1

Mount Type

Wave Soldering Mount

Contact Material

Copper Alloy

Contact Plating

Tin Plated

Row Pitch

3.81mm

Termination Type

Solder

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

100°C

Contact Gender

Male

Tail Pin Length

2.6mm

Standards/Approvals

cULus Recognised, VDE

Mating Pin Length

2.6mm

Voltage

160V

COO (Country of Origin):
DE
The Phoenix Contact PC Board header is designed to offer exceptional versatility in electronic device connections, integrating seamlessly into the modern SMT soldering process. With its compact design, it allows for a tailored fit on PCBs, enhancing the overall device layout. The product features an efficient pin layout and boasts a robust construction that's compatible with multiple connection technologies, allowing for a streamlined assembly process. Its remarkable specifications ensure high reliability and performance under various operational conditions, supporting a nominal current of 8 A and rated voltage up to 160 V. Whether you are developing new devices or upgrading existing designs, this PCB header balances efficient space utilisation with high-performance standards, delighting engineers and product developers alike.

Facilitates vertical connection arrangements for multi-row setups

Solder pins designed for simple integration and reliability

Provides maximum flexibility for diverse connector technologies

Composed of materials meeting WEEE/RoHS compliance standards

Supports installation using reflow and wave soldering processes

Developed for high-density PCB applications without compromising performance

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