Phoenix Contact FMC Series Wave Soldering Mount PCB Header, 64 Contact(s), 6.35 mm Pitch, 2 Row, Shrouded

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€ 5.434,87

(excl. BTW)

€ 6.576,19

(incl. BTW)

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  • Verzending vanaf 09 maart 2026
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RS-stocknr.:
556-747
Fabrikantnummer:
1714763
Fabrikant:
Phoenix Contact
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Merk

Phoenix Contact

Series

FMC

Product Type

PCB Header

Pitch

6.35mm

Current

6A

Number of Contacts

64

Housing Material

Polyamide

Number of Rows

2

Shrouded/Unshrouded

Shrouded

Connector System

IEC 60603 Connector Type D

Mount Type

Wave Soldering Mount

Contact Material

Copper Alloy

Contact Plating

Tin Plated

Row Pitch

6.35mm

Minimum Operating Temperature

-40°C

Termination Type

Solder

Maximum Operating Temperature

105°C

Tail Pin Length

3mm

Contact Gender

Male

Mating Pin Length

3mm

Standards/Approvals

CHINA RoHS, EU REACH, EU RoHS, IEC 60068-2-82, IEC 60112, IEC 60512, IEC 60603, IEC 61984, ISO 6988, JEDEC JESD 201, UL 94 V0

Voltage

32 V

Land van herkomst:
CN
The Phoenix Contact FRONT-FMC 1.5/D32-MF-6,35 PCB header offers a robust solution for connecting electronic circuits with precision and reliability. Engineered for demanding environments, this connector supports a nominal current of 6 A and a rated voltage of 320 V, making it ideal for a range of applications. Its dual-row construction accommodates 32 positions and features a pitch of 6.35 mm, allowing for efficient space utilisation on PCBs. The connector is designed for wave soldering, ensuring a secure and stable configuration, while its light grey housing seamlessly blends into various setups. Compliance with international standards further guarantees its reliability in mission-critical operations.

Engineered for high mechanical stability with a screw locking mechanism

Uses a linear pin layout for straightforward installation and reduced assembly time

Compliant with WEEE/RoHS directives for environmentally responsible use

Features a threaded flange mounting method for enhanced durability

Optimised for effective heat dissipation with high-quality contact surfaces

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