110-43-324-61-801000 Allicdata Electronics
Allicdata Part #:

110-43-324-61-801000-ND

Manufacturer Part#:

110-43-324-61-801000

Price: $ 15.34
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN IC SKT DBL
More Detail: N/A
DataSheet: 110-43-324-61-801000 datasheet110-43-324-61-801000 Datasheet/PDF
Quantity: 1000
64 +: $ 13.81220
Stock 1000Can Ship Immediately
$ 15.34
Specifications
Series: *
Part Status: Active
Description

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Sockets for ICs, Transistors which use the 110-43-324-61-801000 application field and working principle are special types of devices used in the field of electronics production. They are necessary components for making and connecting electronic components with each other and can be used for connecting ICs, transistors and other substrates with each other. This article will give an overview of the general characteristics of such sockets, their application fields, their working principles, and the types available.

Firstly, sockets for ICs, transistors which use 110-43-324-61-801000 application fields and working principles come in various shapes and sizes. The pins used for connecting the different sockets and substrates need to be compatible. Generally, they are made of materials such as copper, aluminum or tin as well as plastic or other composite materials. They are also thermally isolated and have a low electrical resistance.

Secondly, the sockets for ICs, transistors which use the 110-43-324-61-801000 application field and working principle are mainly used in the production of electronics components. They are used in creating and connecting ICs and transistors which are used in computers, telecommunication devices, and other similar electronic products. Without these devices, it would be impossible to effectively connect different components together and create the electronic products we use in our daily life.

Thirdly, the working principle of these sockets for ICs, transistors is based on the fact that they are designed to reduce the risk of electromigration. This is the process by which electrons migrate from one socket or substrate to another, and can be extremely damaging to the components if it occurs. To prevent this from happening, a number of methods are employed in the socket design, such as reducing the resistance of the pads, placing the sockets on a thick substrate, and ensuring that the sockets are properly insulated from one another. In addition, some of these sockets are intended to be safely heated by soldering to attach them to the substrate.

Finally, there are a number of different types of these IC sockets available on the market. These include through hole sockets, surface mount sockets, and flip chip sockets. Through hole sockets are the most common type of socket and are the simplest to install as they can be turned in place and then soldered in place. Surface mount sockets are designed for installation on a flat surface and can be used in applications where only one side is accessible. These are generally more expensive than through hole sockets, but their increased performance makes them popular for many applications. Flip chip sockets are designed for use in applications where both sides of the socket are accessible, and are generally installed by soldering on one side of the socket and soldering on the other side.

In conclusion, sockets for ICs, transistors which use the 110-43-324-61-801000 application field and working principle are necessary components for creating and connecting ICs, transistors and other substrates with each other. They are mainly used in the production of electronic components, are designed to reduce the risk of electromigration, and come in various forms, such as through hole, surface mount, and flip chip sockets.

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

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