Phoenix Contact PTDA 1 Series PCB Terminal Block, 12-Contact, 3.5 mm Pitch, Wave Soldering Mount, 1 Row

Subtotal (1 pack of 50 units)*

PHP19,367.16

(exc. VAT)

PHP21,691.22

(inc. VAT)

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Per Pack
Per Unit*
1 +PHP19,367.16PHP387.343

*price indicative

RS Stock No.:
520-077
Mfr. Part No.:
1724964
Manufacturer:
Phoenix Contact
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Brand

Phoenix Contact

Number of Contacts

12

Product Type

PCB Terminal Block

Pitch

3.5mm

Current

17.5A

Number of Rows

1

Mount Type

Wave Soldering Mount

Housing Material

Polyamide

Minimum Wire Size mm²

0.2mm²

Maximum Wire Size mm²

1.5mm²

Minimum Wire Size AWG

24 AWG

Maximum Wire Size AWG

16 AWG

Orientation

45°

Wire Connection Method

Push-in Spring

Colour

Green

Voltage

24 V

Width

22.4 mm

Series

PTDA 1

Length

16mm

Standards/Approvals

VDE report with production monitoring, cULus Recognised

COO (Country of Origin):
PL
The Phoenix Contact printed circuit board terminal block offers a seamless integration of quality and efficiency, designed specifically for demanding electronic applications. With its robust construction and innovative push-in spring connection technology, it ensures reliable electrical performance while simplifying installation. The unique design features a compact format with six potentials, allowing for versatile use in various circuits. Engineered for high-performance reliability, this terminal block can handle currents of up to 17.5 A and voltages of 240 V, making it ideal for a wide range of uses from simple circuits to advanced bus applications. The terminal block is also compliant with RoHS and WEEE standards, ensuring it meets stringent environmental requirements.

Time-saving installation process requires no additional tools

Defined contact force provides long-term stability and reliability

Integrated test option enables convenient and quick performance checks

Flexible conductor compatibility accommodates various wire types

Enhanced mechanical stability reduces strain on solder connections

Compact design optimises space while maintaining efficiency

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