
Allicdata Part #: | 126-91-318-41-003000-ND |
Manufacturer Part#: |
126-91-318-41-003000 |
Price: | $ 10.74 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Mill-Max Manufacturing Corp. |
Short Description: | CONN IC SKT DBL |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
66 +: | $ 9.75681 |
Series: | * |
Part Status: | Active |
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Sockets for ICs, Transistors
A socket for ICs, transistors and other such components is a device used for connecting integrated circuits, transistors, and other components to an electronic board. It is constructed with a hole pattern of two types. The first type is a dual in-line pin arrangement (DIP), while the second type is a surface mount technology. The first one is a narrower version of the traditional DIP and is used for space saving reasons. It is available in a variety of sizes and shapes.
The purpose of using a socket is to afford protection to the component and to facilitate easier handling and assembly. There are two main types of protection offered by sockets: physical and electrical. The physical protection is provided by the socket’s body or frame. This prevents its contact elements from being bent, changed, or damaged through shock or vibration. The electrical protection comes through the socket’s terminals, which ensure that the current is passed safely from each pin of the components to the board.
An important factor to consider when selecting a socket for electronic components is the insertion and extraction force. Insertion force is The amount of pressure or force necessary to push the component into the socket. The extraction force is the pressure required to pull it out. Too much insertion force can damage or bend pins, while insufficient extraction force can cause the component to stay in the socket of unknown connections.
Typically, sockets are constructed from synthetic materials such as polyamide, phenol, or even metals. The most common type of terminals used is the male and female connector, also known as PK. When selecting any socket for a certain component, one needs to be aware of the dimension of the component, as well as the number and size of pins it has. This helps to identify the specifics of the socket.
126-91-318-41-003000 Application Field and Working Principle
The 126-91-318-41-003000 socket is a dual-in-line socket for use with integrated circuits (ICs), transistors, and other small components. It features a total of 8 pins, two rows of 4, in a narrow DIP configuration. The base material is a polyester reinforced phenolic resin and the contact material is beryllium copper. It is designed to provide electrical connectivity between a board and small components and offers push-pull insertion for improved convenience and ease of use.
The 126-91-318-41-003000 socket offers excellent EMI shielding and has a maximum working temperature amounting to up to +125°C. It also provides superior mechanical resistance, stability, and vibration protection, making it a reliable choice for applications where high temperature, shock, and vibration are expected. Some of the applications this socket is used in include telecommunications, consumer electronics, automotive and automotive electronics, test equipment, and medical instrumentation.
The working principles of the 126-91-318-41-003000 socket are relatively simple. When the device is inserted into the socket, it establishes an electrical connection with the IC or transistor. The socket then maintains the electrical connection by using the pressure between the pins and contact strips, which prevents the connection from being disrupted. The contact strips provide reliable and well-suited electrical connections to the IC or transistor, allowing for the smooth flow of current.
Conclusion
The 126-91-318-41-003000 socket is an essential electronic component for connecting integrated circuits and other components to an electronic board. Its design provides excellent EMI shielding, mechanical stability, and vibration protection while its push-pull insertion makes it an even more convenient and reliable choice. The working principle is relatively simple, and its applications range from telecommunications, consumer electronics, automotive electronics, test equipment, and medical instrumentation.
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