346-93-126-41-012000 Allicdata Electronics
Allicdata Part #:

346-93-126-41-012000-ND

Manufacturer Part#:

346-93-126-41-012000

Price: $ 9.79
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN SKT STRIP
More Detail: N/A
DataSheet: 346-93-126-41-012000 datasheet346-93-126-41-012000 Datasheet/PDF
Quantity: 1000
50 +: $ 8.90218
Stock 1000Can Ship Immediately
$ 9.79
Specifications
Series: *
Part Status: Active
Description

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The functionality of ICs, transistors, and other elements is often enhanced with the use of sockets. The devices are normally mounted on a motherboard or PCB using connectors, but sockets are also available. These devices provide a much more versatile option, allowing for greater flexibility and improved performance due to direct contact with the board. Sockets for ICs, transistors, and other components are available in a variety of styles and designs, depending on the application and requirements.

One of the most common types of sockets is the dual in-line package (DIP) or socket for IC chips. This type of socket is designed for directly mounting IC chips on the board, with two rows of pins inserted into corresponding holes in the board. The IC chip is then inserted in between the two rows of pins, connecting it to the board. This design is often used in a variety of computer and laptop components, as well as many industrial applications.

For more complicated applications, a multichip module (MCM) socket can be used. This type of socket allows for multiple chips to be mounted on the board simultaneously. The slots on the MCM socket are arranged in any pattern as desired, ensuring the maximum amount of flexibility for the design. Multi-chip modules are often designed for use with high-end components, such as CPUs, GPUs, or memory chips.

For applications that require more power, a power package socket may be used. This type of socket is similar to the DIP socket, except the pins are designed for power connections rather than digital signals. This design is ideal for applications that require large amounts of power, but also require a high level of flexibility. Power package sockets are often found in power amplifiers and other amplifying components.

More complex applications may require a pin grid array (PGA) or ball grid array (BGA) socket. These sockets have a large number of interconnections that connect multiple components together. They are usually soldered directly to the board to ensure a good connection. These types of sockets are often used in memory chips, CPUs, and other components that require high levels of data communication.

Display components such as TVs and monitors often require a flexible flat cable (FFC) socket. These are specially designed for this application, as the connectors have both flexible and durable components. FFC sockets are often soldered directly to the board, allowing for more flexibility in the design. They are often used with LCD displays, as well as other display devices.

In addition to the more traditional applications, sockets are also available for other uses. Socket tools, for example, allow for faster and easier maintenance of mechanical components. These sockets are specially designed with a hexagonal head, which allows for the rapid insertion and removal of mechanical components. This design is ideal for applications that require frequent disassembly and routine maintenance.

Sockets for ICs, transistors, and other components are essential for many types of applications. Each type of socket has its own unique features and advantages, so it is important to select the right type for the application to ensure optimal performance. By selecting the right types of sockets, a hardware designer can achieve the desired levels of performance with minimal effort.

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

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