Phoenix Contact SPT Series PCB Terminal Block, 11-Contact, 3.81 mm Pitch, Surface, 1 Row

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RS-stocknr.:
487-841
Fabrikantnummer:
1824284
Fabrikant:
Phoenix Contact
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Merk

Phoenix Contact

Product Type

PCB Terminal Block

Number of Contacts

11

Pitch

3.81mm

Current

17.5A

Number of Rows

1

Minimum Wire Size mm²

0.2mm²

Mount Type

Surface

Housing Material

Liquid Crystal Polymer

Maximum Wire Size mm²

1.5mm²

Minimum Wire Size AWG

24AWG

Maximum Wire Size AWG

16AWG

Orientation

90°

Colour

Black

Wire Connection Method

Push-in

Voltage

160V

Series

SPT

Standards/Approvals

cULus Recognised, VDE

Width

42.1mm

Length

13.6mm

Land van herkomst:
PL
The Phoenix Contact high-performance printed circuit board Terminal designed for seamless integration into SMT soldering processes. Engineered for reliability, it boasts a remarkable nominal current capacity of 17.5 A and accommodates up to 11 connections, making it suitable for a variety of applications. Its black housing and intuitive design, coupled with push-in spring connection technology, enhance operational efficiency while ensuring stability over extended use. The product aligns with modern manufacturing needs, featuring a pitch of 3.81 mm for optimal spacing between connections. With its compatibility for both rigid and flexible conductors, it caters to diverse installation requirements. The SPT-SMD series also prioritises ease of testing, integrating a quick-check option to Streamline maintenance.

Time-saving push-in connection design requires no additional tools for installation

The intuitive, colour-coded push button facilitates straightforward operation

Durable construction ensures long-term reliability in demanding environments

Optimised for SMD soldering, aligning with contemporary production methods

Integrated test option allows for Rapid and efficient troubleshooting

Two soldering spots per position significantly reduce mechanical strain

Wide compatibility with various conductor cross-sections enhances versatility

Compact dimensions allow for efficient use of board space

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