Phoenix Contact PC Series Wave Soldering Mount PCB Header, 6 Contact(s), 7.62 mm Pitch, 1 Row, Shrouded

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TWD19,156.00

(不含稅)

TWD20,113.80

(含稅)

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  • 2026年2月13日 發貨
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RS庫存編號:
520-076
製造零件編號:
1720725
製造商:
Phoenix Contact
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品牌

Phoenix Contact

Series

PC

Product Type

PCB Header

Current

32A

Pitch

7.62mm

Number of Contacts

6

Housing Material

Polyamide

Number of Rows

1

Shrouded/Unshrouded

Shrouded

Mount Type

Wave Soldering Mount

Connector System

COMBICON PC 5 hybrid

Contact Plating

Tin Plated

Contact Material

Copper Alloy

Termination Type

Solder

Row Pitch

7.62mm

Minimum Operating Temperature

-40°C

Tail Pin Length

4.2mm

Contact Gender

Male

Maximum Operating Temperature

100°C

Standards/Approvals

cULus Recognised, IEC 61984, UL Recognised

Mating Pin Length

4.2mm

Voltage

63 V

COO (Country of Origin):
DE
The Phoenix Contact PC 5/6-GU-7.62 is a robust PCB header designed for flexibility and efficiency in various electronic applications. This component stands out with its advanced mounting principle, allowing for seamless integration into device designs while supporting multiple connection technologies. With a focus on durability and performance, the header is ideal for use in environments requiring reliable electrical connectivity, ensuring a nominal current of 32 A and a rated voltage of up to 630 V. Its compact design, featuring linear pinning and wave soldering capabilities, makes it suitable for compact PCB layouts. This product simplistically meets the rigorous demands of modern electronic devices while adhering to international compliance standards.

Accommodates a wide range of connection technologies for device design flexibility

Hot-dip tin-plated contacts ensure excellent surface conductivity

Environmentally compliant materials promote sustainability in electrical projects

The packaging is designed for easy handling and protection during transport

High resistance to mechanical stress enhances reliability in dynamic applications

Compact dimensions optimise space on PCB layouts without compromising performance

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