Molex 4030 Series Vertical PCB PCB Header, 14 Contact(s), 2.54 mm Pitch, 1 Row, Unshrouded

Subtotal (1 bag of 300 units)*

221,53 €

(exc. VAT)

268,05 €

(inc. VAT)

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  • Expédition à partir du 19 janvier 2026
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Per Bag
Per unit*
1 +221,53 €0,738 €

*price indicative

RS Stock No.:
683-727
Mfr. Part No.:
22-03-2141
Brand:
Molex
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Marque

Molex

Series

4030

Product Type

PCB Header

Pitch

2.54mm

Current

4A

Housing Material

Nylon

Number of Contacts

14

Number of Rows

1

Orientation

Vertical

Shrouded/Unshrouded

Unshrouded

Mount Type

PCB

Contact Plating

Tin

Contact Material

Brass

Termination Type

Solder

Row Pitch

2.54mm

Tail Pin Length

3.43mm

Standards/Approvals

RoHS

Voltage

500 V

COO (Country of Origin):
IN
The Molex KK 254 Wire-to-Board Header designed to facilitate seamless electronic connections in compact spaces. This single-row, vertical header accommodates up to 14 circuits, leveraging durable PA polyamide nylon construction and reliable tin plating to ensure optimal performance. Ideal for board-to-board, signal, and wire-to-board applications, this component features a straightforward through-hole termination style that simplifies installation. With proven electrical characteristics, including a maximum current rating of 4.0A and voltage capacity of 500V, this header is tailored for a wide range of PCB header and receptacle applications, making it a trusted choice for engineers and manufacturers alike.

Features 14 circuits, allowing for robust connectivity

Constructed from durable PA polyamide nylon for long lasting reliability

Tin plating enhances electrical performance and ensures corrosion resistance

Designed for vertical orientation, optimising space within electronic assemblies

Voltage capacity of 500V provides versatility in various applications

Through hole termination style facilitates easy soldering and assembly

Low halogen material aligns with environmental compliance standards

Durability rating of up to 25 mating cycles guarantees extended use

Stackable design enables flexibility in circuit arrangements

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