Phoenix Contact SPT Series PCB Terminal Block, 12-Contact, 3.81 mm Pitch, Surface, 1 Row

Subtotal (1 pack of 200 units)*

$1,801.40

(exc. GST)

$1,981.54

(inc. GST)

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Per Pack
Per unit*
1 +$1,801.40$9.007

*price indicative

RS Stock No.:
556-709
Mfr. Part No.:
1824297
Brand:
Phoenix Contact
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Brand

Phoenix Contact

Product Type

PCB Terminal Block

Number of Contacts

12

Pitch

3.81mm

Current

17.5A

Number of Rows

1

Housing Material

Liquid Crystal Polymer

Mount Type

Surface

Minimum Wire Size mm²

0.2mm²

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

Standards/Approvals

cULus Recognised, VDE

Length

13.6mm

Series

SPT

Depth

7.7mm

Width

45.91mm

The Phoenix Contact high-performance printed circuit board terminal designed for seamless integration into SMT soldering processes. Featuring a compact design and a robust push-in spring connection method, this terminal block maximises reliable electrical connections while significantly reducing the need for manual tools. Suitable for a variety of applications, its intuitive colour-coded actuating push button simplifies operation and enhances user interaction. With a nominal current of 17.5 A and a voltage rating of 160 V, this component promises durability and efficiency in any electronic setup, making it an ideal choice for engineers and designers. Additionally, the inclusion of dual soldering spots per position diminishes mechanical strain, ensuring long-term operational stability.

Time-saving connection that eliminates the need for additional tools

Defined contact force stabilises connections over extended periods

Colour-coded actuator simplifies operation for users

Designed for easy integration into existing SMT soldering workflows

Facilitates front-side device integration with conductor connections from one direction

Integrated test option provides quick and convenient functionality

Dual soldering points per position enhance mechanical stability

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