Phoenix Contact FFKDSA1 Series PCB Terminal Block, 7-Contact, 7.62 mm Pitch, Wave Soldering Mount, 1 Row

Subtotal (1 pack of 50 units)*

£163.30

(exc. VAT)

£195.96

(inc. VAT)

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  • Ready to ship from 28 July 2026
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Per Pack
Per unit*
1 +£163.30£3.266

*price indicative

RS Stock No.:
521-426
Mfr. Part No.:
1929766
Brand:
Phoenix Contact
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Brand

Phoenix Contact

Number of Contacts

7

Product Type

PCB Terminal Block

Pitch

7.62mm

Number of Rows

1

Current

17.5A

Mount Type

Wave Soldering Mount

Minimum Wire Size mm²

0.2mm²

Housing Material

Polyamide

Maximum Wire Size mm²

1.5mm²

Minimum Wire Size AWG

24AWG

Maximum Wire Size AWG

16AWG

Orientation

Colour

Green

Wire Connection Method

Push-in

Voltage

63V

Series

FFKDSA1

Width

53.34mm

Length

13.6mm

Standards/Approvals

cULus Recognised, KEMA-KEUR

COO (Country of Origin):
GR
The Phoenix Contact printed circuit board terminal block, crafted for versatility and efficiency, is designed to provide reliable connections in compact spaces. This component features a push-in spring connection method, ensuring an effortless and tool-free installation. With a configuration that accommodates up to seven connections, it supports comprehensive electronic designs while maintaining an impressive performance across demanding applications. Its robust structure ensures durability, while the defined contact force promotes long-term stability, making it a preferred choice among developers seeking performance and reliability in one package.

Time-saving push-in connection method eliminates the need for additional tools

Intuitive operation is facilitated by a colour-coded actuator, enhancing user experience

Ability to combine various positions makes it adaptable to different configurations

Constructed with durable materials, ensuring longevity and performance under stress

Designed for wave soldering, simplifying production processes

Efficient conductor connection direction allows seamless integration into devices

Two solder pins reduce mechanical strain, enhancing reliability over time

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