326-91-134-41-001000 Allicdata Electronics
Allicdata Part #:

326-91-134-41-001000-ND

Manufacturer Part#:

326-91-134-41-001000

Price: $ 11.70
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN SKT SNG
More Detail: N/A
DataSheet: 326-91-134-41-001000 datasheet326-91-134-41-001000 Datasheet/PDF
Quantity: 1000
50 +: $ 10.64040
Stock 1000Can Ship Immediately
$ 11.7
Specifications
Series: *
Part Status: Active
Description

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Sockets for ICs, Transistors represent a universally used type of electrical connection for integrated circuits (ICs), transistors and other electrical components. Without such sockets, there would be no means to physically attach them to an electrical system or create a connection point for their electrical signals. In this article, we explore the 326-91-134-41-001000 application field and working principle.

Classification of Sockets for ICs, Transistors

Sockets for ICs, Transistors belong to the class of connectors which provide protection against failures due to mechanical vibration, electrical overstress or foreign material contamination. They shield the component from dust and particles, provide electrical connection between components and provide a secure mechanical connection. They are available in through hole, surface mount and connector mount design.

Different application fields of sockets are described by different dimensions and characteristics such as number of pins, socket type, pin type, contact voltage and current, and contact shape. As for 326-91-134-41-001000, its application field is:

  • Socket Type: Type-B
  • Number of Pins: 4pins
  • Pin Type: PCB/THT
  • Contact Voltage and Current: 600 V/µA
  • Contact shape: Sloped

Working Principle of Sockets for ICs, Transistors

The working principle of sockets for ICs, transistors is related to electrical conduction and mechanical contact. Within a socket, there are metal pins which the IC chip is soldered onto. The electrical contact between the pins and the IC is made inside the socket, eliminating any direct contact between the chip and the printed circuit board. The mechanical contact between the socket and the chip is made by small springs, which hold the pins in a perpendicular orientation.

The sockets have a variety of contact surfaces that provide physical latching, ensure a secure connection, and maintain contact continuity. These contacts are designed to provide a good connection with the IC pins they are connected to, preventing any electrical loss and maintaining a strong electrical contact. Tightening or loosening a socket with a screwdriver is the most common way to secure or release a socket, as a single screw is used to tighten or loosen the socket.

Advantages of Sockets for ICs, Transistors

The 326-91-134-41-001000 socket offers numerous advantages over direct soldering, such as better electrical performance, increased contact reliability, easier installation and removal of ICs, fewer replacement costs, and improved thermal management. Furthermore, the socket has a much longer lifespan than soldered ICs, and thus will last longer without needing to be replaced.

The socket provides a good electrical connection to the IC pins without the need for soldering, which reduces the risk of damage due to electrical overstress. In addition, the socket prevents dirt, dust, and other debris from getting into the circuitry, as the socket is much better at providing a barrier from these elements than soldering.

Another advantage of the socket is that it is easier to repair or replace the IC. When the IC becomes damaged, the socket allows a new IC to be easily and quickly inserted in place of the old one. This makes the replacement process much faster than if a soldered connection was used.

Conclusion

Sockets for ICs, Transistors, such as the 326-91-134-41-001000 socket, are essential components in designing electrical systems for ICs, transistors, and other electrical components. They provide a secure electrical and mechanical conduction between ICs, transistors and the surrounding printed circuit board, and are also better than populated ICs at maintaining electrical contact and protecting against ESD. In addition, they are easier to replace than soldered ICs, which makes them ideal for high-reliability applications.

The specific data is subject to PDF, and the above content is for reference

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