Phoenix Contact PTSM Series Straight Solder PCB Header, 6 Contact(s), 2.5 mm Pitch, 1 Row(s), Shrouded

Subtotal (1 pack of 500 units)*

£501.86

(exc. VAT)

£602.23

(inc. VAT)

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Per unit*
1 +£501.86£1.004

*price indicative

RS Stock No.:
658-555
Mfr. Part No.:
1814812
Brand:
Phoenix Contact
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Brand

Phoenix Contact

Product Type

PCB Header

Series

PTSM

Pitch

2.5mm

Current

6A

Number of Contacts

6

Housing Material

Liquid Crystal Polymer

Number of Rows

1

Orientation

Straight

Shrouded/Unshrouded

Shrouded

Connector System

COMBICON PTSM

Mount Type

Solder

Contact Material

Copper Alloy

Contact Plating

Tin Plated

Termination Type

Solder

Minimum Operating Temperature

-40°C

Row Pitch

2.5mm

Maximum Operating Temperature

100°C

Tail Pin Length

2mm

Contact Gender

Male

Standards/Approvals

cULus Recognised, DIN EN 61340-5-1 (VDE 0300-5-1): 2008-07, IEC 60068-2-70:1995-12, IEC 60512-1-1:2002-02, IEC 60512-1-2:2002-02, IEC 60512-13-5:2006-02, IEC 60512-15-1:2008-05, IEC 60512-3-1:2002-02, IEC 60512-5-1:2002-02, IEC 60664-1:2007-04, ISO 6988:1985-02, UL Recognised, VDE

Voltage

160 V

COO (Country of Origin):
CN
The Phoenix Contact PCB Header, designed as part of the PTSM series, offers reliable connectivity solutions tailored for automation technology. With a nominal cross-section of 0.5 mm2, the product ensures efficient electrical performance with a nominal current rating of 6 A and a maximum rated voltage of 160 V. The linear pinning layout enhances both assembly ease and operational efficiency, making it suitable for wave soldering processes. Moreover, it comes with a set of features that accommodate various industrial applications while maintaining compliance with international standards.

Insulating material offers high flammability resistance enhancing safety in challenging environments

Compact dimensions allow for efficient use of space on multi layer PCBs

Resistant to moisture and adverse climatic conditions ensuring long term reliability

Offers a robust contact structure for superior conductivity and reduced contact resistance

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