614-93-089-13-082007 Allicdata Electronics
Allicdata Part #:

614-93-089-13-082007-ND

Manufacturer Part#:

614-93-089-13-082007

Price: $ 13.03
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: SKT CARRIER PGA
More Detail: N/A
DataSheet: 614-93-089-13-082007 datasheet614-93-089-13-082007 Datasheet/PDF
Quantity: 1000
50 +: $ 11.84180
Stock 1000Can Ship Immediately
$ 13.03
Specifications
Series: *
Part Status: Active
Description

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Sockets for ICs, Transistors

The 614-93-089-13-082007 application field and working principle of ICs, transistors, and sockets is a key component to modern electronics and is a technology that is used worldwide. Sockets are designed to securely attach and support a variety of electronic components such as Integrated circuits (ICs), transistors, and rectifiers. They are used to provide a secure connection between a circuit board and the component that is being used.

Electronic Sockets are available in a variety of designs, shapes, and sizes depending on the needs of the end user. When selecting a socket for a circuit board, the design should be chosen based on the type of component to be attached, the power requirements of the component, and the physical size of the socket that will accommodate the component.

Types of Sockets

ICs and transistors come in a variety of shapes, types, and sizes. Quite often, the physical size of the component dictates the type of socket that needs to be used. There are three main types of sockets available:

  • DIP – Dual Inline Package sockets
  • SOP – Small Outline Package sockets
  • PLCC – Plastic Leaded Chip Carrier sockets

DIP sockets are designed to accommodate dual in-line packages such as Dual Inline Memory Modules (DIMMs). These sockets have two rows of connecting pins which provide the means to attach a component to the circuit board. DIP sockets are the most common type of socket and are used for most ICs, transistors, and rectifiers.

SOP sockets are designed for use with small outline packages and are typically used for memory modules such as SO-DIMM or Mini-DIMM modules. These sockets have a single row of pins and feature an open ended design which allows for easy access to the component.

PLCC sockets are designed for use with plastic leaded chip carriers. These sockets are used with high-speed integrated circuits and have two or four rows of pins. PLCC sockets are designed for high-speed applications, as they provide a secure connection for the component and also ensure that the leads of the components remain in place.

The Working Principle

Once the correct socket has been selected, the next step is to attach the component to the socket. This is usually done by placing the component securely into the socket and making sure that all of the pins/leads are properly aligned. The component should then be secured into the socket by using a silicone or EMI pad or by soldering the pins of the component to the socket.

Sockets are designed to be easily removed and replaced and can be used to connect a component to the circuit board without damaging any of the components or circuit boards. This makes sockets an ideal solution for repair and maintenance purposes, as they provide an easy way to replace a malfunctioning component or upgrade a component without having to solder the component directly to the board.

Conclusion

In a nutshell, 614-93-089-13-082007 sockets are essential for connecting components to circuit boards and are used with a variety of electronic devices such as ICs, transistors, and rectifiers. They come in a variety of designs, sizes, and packages and are usually secured by either a silicone or EMI pad or through soldering. They provide a reliable and secure connection between the component and the circuit board and can be easily removed and replaced.

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

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