TE Connectivity AMPMODU Series Vertical Through Hole PCB Retainer, 18 Contact(s), 2.54 mm Pitch, 2 Row(s), Unshrouded

Subtotal (1 tube of 50 units)*

£172.62

(exc. VAT)

£207.14

(inc. VAT)

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Tube(s)
Per Tube
Per unit*
1 +£172.62£3.452

*price indicative

RS Stock No.:
482-282
Mfr. Part No.:
534206-9
Brand:
TE Connectivity
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Brand

TE Connectivity

Series

AMPMODU

Product Type

PCB Retainer

Current

2A

Pitch

2.54mm

Number of Contacts

18

Housing Material

Fibreglass Polyester

Number of Rows

2

Orientation

Vertical

Shrouded/Unshrouded

Unshrouded

Mount Type

Through Hole

Connector System

Board-to-Board

Contact Plating

Gold

Contact Material

Phosphor Bronze

Minimum Operating Temperature

65°C

Row Pitch

2.54mm

Termination Type

Solder

Tail Pin Length

2.92mm

Contact Gender

Female

Maximum Operating Temperature

105°C

Standards/Approvals

CSA LR7189, UL 94V-0, UL E28476

Voltage

333 V

Distrelec Product Id

304-50-972

Non Compliant

COO (Country of Origin):
US
The TE Connectivity PCB Mount Receptacle exemplifies innovation in the realm of board-to-board connectivity. Designed to deliver exceptional performance, this vertical-mounted connector features an 18-position configuration, optimised for efficient space utilisation in compact applications. With a robust gold-plated construction, it ensures reliable signal integrity and distinctive durability, accommodating varying operational demands. This receptacle is engineered for through-hole solder termination, providing a secure and lasting fit on printed circuit boards. Its adaptability is backed by a standard body profile, making it an ideal choice for a wide range of electronic devices, from consumer gadgets to industrial machinery.

Supports a wide range of operational temperatures for versatile applications

18-position layout allows for substantial connectivity in limited space

Standard body profile ensures compatibility with various devices

Modu Connector System facilitates inter-connectivity across different models

Manufactured for optimal performance in high-pressure environments

Feature-rich design supports both mechanical stability and electrical efficiency

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