
Allicdata Part #: | 121-11-314-41-001000-ND |
Manufacturer Part#: |
121-11-314-41-001000 |
Price: | $ 9.18 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Mill-Max Manufacturing Corp. |
Short Description: | CONN IC SKT DBL |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
56 +: | $ 8.34526 |
Series: | * |
Part Status: | Active |
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Sockets for ICs, Transistors
The 121-11-314-41-001000 application field is a specialty socket designed for use with integrated circuits (ICs) and transistors. The socket is composed of connector pins that are normally soldered directly to a printed circuit board, and provide an easy way to electrically and mechanically connect the IC or transistor to the board. The socket is designed in a variety of sizes and shapes to accommodate different types of ICs and transistors.
The most common type of 121-11-314-41-001000 socket is a DIP (Dual Inline Package) socket. The DIP socket consists of two rows of contact pins in an array of varying sizes, typically ranging from four to 40 pins. The pins are spaced at standard distances and are soldered to the circuit board in a rectangular or square pattern, depending on the size and shape of the IC or transistor being used. The IC or transistor fits into the DIP socket by aligning the contacts on the chip with the contact pins in the socket. Once it is correctly placed, the IC or transistor is secured in the socket with a plastic clip, which also provides electrical insulation between the IC/transistor and the board.
Surface mount technology (SMT) is an alternative socket type which uses a form of interconnect technology capable of mounting ICs and transistors into printed circuit boards without soldering. The SMT socket is a surface mount device that is placed on the board and fits into a pre-drilled hole. The SMT socket consists of spring-loaded contact pins on the underside that extend through the hole and make electrical contact. The IC or transistor is placed on top of the contact pins and is held firmly in place with a clip. The edge of the socket also contains holes that align with the IC/transistor\'s leads, which provide additional mechanical and electrical stability.
Another type of socket commonly used for ICs and transistors is the zero insertion force (ZIF) socket. ZIF sockets are designed to prevent damage to the pins of an IC or transistor when they are inserted into the socket. The socket has a lever on the side that when pushed, opens a metal grip inside the socket that holds the component in place. When the lever is released, the grip holds the component securely and prevents it from moving.
The working principle of 121-11-314-41-001000 application field is the same for all socket types. When an IC or transistor is inserted into the socket, the contact pins in the socket make electrical contact with the IC\'s/ transistors\'s leads. The contact between the pins and leads allows electrical signals and energy to flow between the IC/ transistor and the board. By creating this electrical connection, the board and the IC/ transistor become “one” and operate as a single, integrated circuit.
The 121-11-314-41-001000 application field is used in a wide variety of applications, such as telecommunications, automotive electronics, consumer electronics, and industrial automation. The sockets are used to connect ICs and transistors to printed circuit boards, allowing the circuit boards to function as a single, integrated device. The sockets make it easier and faster to build and troubleshoot complex circuits, and can be used in high-speed applications that require minimal contact resistance and high reliability.
In summary, the 121-11-314-41-001000 application field is a specialty connector used for connecting integrated circuits and transistors to printed circuit boards. It is available in a variety of sockets types, including DIP sockets, SMT sockets, and ZIF sockets. The working principle of 121-11-314-41-001000 application field involves creating an electrical connection between the IC/ transistor and the board. The socket helps to simplify and speed up the process of assembling and troubleshooting complex circuits. It is widely used in a variety of applications, including telecommunications, automotive electronics, consumer electronics, and industrial automation.
The specific data is subject to PDF, and the above content is for reference
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