TE Connectivity AMPMODU Series Right Angle Board Mount PCB Header, 50 Contact(s), 1.27mm Pitch, 2 Row(s), Unshrouded

Subtotal (1 tube of 16 units)*

£173.34

(exc. VAT)

£208.01

(inc. VAT)

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Tube(s)
Per Tube
Per unit*
1 +£173.34£10.834

*price indicative

RS Stock No.:
520-626
Mfr. Part No.:
5-104118-1
Brand:
TE Connectivity
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Brand

TE Connectivity

Series

AMPMODU

Pitch

1.27mm

Number of Contacts

50

Number of Rows

2

Body Orientation

Right Angle

Shrouded/Unshrouded

Unshrouded

Mounting Type

Board Mount

COO (Country of Origin):
MX
The TE Connectivity PCB Mount Header is an exceptional solution designed for efficient board-to-board connections. This product features a right-angle orientation with 50 positions, making it ideal for tight spaces requiring reliable connectivity. The unshrouded design facilitates easy access for mating connections, while the robust construction ensures long-lasting performance in various applications. With a centerline pitch of 1.27 mm, this header is compatible with a wide array of circuit configurations. Its materials are selected to provide optimal electrical characteristics while maintaining a high level of durability, making it suitable for a diverse range of environments. This product stands out for its compliance with industry standards, providing peace of mind for manufacturers and engineers alike.

Designed for board-to-board applications, providing versatile connectivity solutions
Right-angle orientation helps optimise PCB layout and space management
Unshrouded header design allows for simplified mating and insertion
Constructed with materials that withstand harsh environmental conditions
Meets stringent industry standards for reliable performance
Offers excellent electrical characteristics, ensuring signal integrity
Supports a wide operating temperature range for diverse application needs
Easy to implement with through-hole solder termination for secure mounting
Low-profile design enhances space efficiency in compact assemblies
Robust construction enhances longevity and reliability in demanding environments

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