522-13-073-11-061002 Allicdata Electronics
Allicdata Part #:

522-13-073-11-061002-ND

Manufacturer Part#:

522-13-073-11-061002

Price: $ 25.00
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: SKT PGA WRAPOST
More Detail: N/A
DataSheet: 522-13-073-11-061002 datasheet522-13-073-11-061002 Datasheet/PDF
Quantity: 1000
50 +: $ 22.50330
Stock 1000Can Ship Immediately
$ 25
Specifications
Part Status: Active
Series: *
Description

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Sockets for ICs, Transistors

Integrated circuits, commonly known as ICs, integrate hundreds or even thousands of electronic components, like transistors, resistors, and capacitors in a single chip.

Sockets are one of the important components used when mounting and connecting an IC to an electronic circuit board. They are designed to fit an IC chip securely and allow for a reliable electrical connection so that an IC chip can send and receive signals and power to and from the other components of a circuit board.

Sockets for ICs and transistors come in many shapes and sizes, depending on the number of pins the IC chip has. Some popular socket varieties include ZIF, PGA, LGA, and BGA. Each of these have their own characteristics and applications.

What Does a Socket for ICs and Transistors Look Like?

The image to the right shows a typical socket for ICs and transistors. This particular socket is known as a ZIF socket, and it has a row of 31 pins, each of which is connected to a socket contact on the bottom of the socket. The socket is designed to securely fit the IC chip inside, and it also provides the necessary electrical connection for the IC to interact with the other parts of the circuit board.

For a ZIF socket, there is a lever to open and close the sleeve. This lever allows for easy insertion and removal of an IC chip. It also prevents the IC from being short-circuited.

How Does a Socket for ICs and Transistors Work?

A socket for ICs and transistors is designed to make a reliable electrical connection between the pins of the IC chip and the circuit board. They create a conductive path for current to flow between the two components. In some cases, the socket may also help to protect the IC chip from physical damage due to excessive heat and force.

When an IC chip is inserted into a socket, the pins of the IC chip line up with the socket contacts, which are connected to the circuit board. When the socket is closed, the pins and contacts make contact and the IC is securely connected to the circuit. This connection allows for the IC chip to receive power and signals from the circuit board and to send signals and power back to it.

In some cases, the socket may also be used to adjust the voltage or current going to the IC. Some sockets have adjustable contacts or built-in voltage regulators which can be used to adjust the voltage going to the IC chip. This allows the IC to operate in different voltage levels, and can help to prevent it from being damaged by over-voltage.

Application Field and Working Principle of 522-13-073-11-061002

522-13-073-11-061002 is designed for ICs using a MOS type process technology, such as Field Effect Transistors (FET). It is a 32-pin ZIF (Zero Insertion Force) socket with an adjustable lever for easy insertion and removal of the IC chip. The body of the socket is made from an injection molded high-temperature plastic, making it resistant to heat and wear.

The socket is designed to provide a reliable connection between the pins of the IC chip and the circuit board. It has 31 contacts, which are connected to the circuit board. When the IC chip is inserted in the socket and the lever is closed, the pins of the IC chip will line up with the contacts of the socket and a reliable connection will be established.

This socket is suitable for many types of ICs such as transistors, logic gates, memory chips, etc. It is an ideal choice for low-power applications, and it can also be used in high-power applications with the use of an external heat sink. The socket is designed to ensure reliable performance and it offers a wide range of features such as high current capability, low noise, and EMI protection.

The process for installing this socket is fairly straightforward. First, the socket must be soldered to the circuit board and the IC chip should be properly oriented before being carefully inserted into the socket. Once the chip is inserted and the lever is closed, the necessary connection between the IC and the circuit board is established and the IC can start communicating with the rest of the components.

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

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