
Allicdata Part #: | 322-11-118-41-001000-ND |
Manufacturer Part#: |
322-11-118-41-001000 |
Price: | $ 10.17 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Mill-Max Manufacturing Corp. |
Short Description: | CONN SKT WRAPOST |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
50 +: | $ 9.24273 |
Series: | * |
Part Status: | Active |
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Sockets for ICs and transistors, such as the model 322-11-118-41-001000, are an increasingly important component of the modern electronics industry. Their versatility and usefulness stem from their ability to serve as an interface between circuit boards and components, their cost effectiveness, and their high temperature tolerance.
In order to function properly, sockets need to be able to manipulate electrical signals in a variety of ways. For instance, most sockets feature a three stage shielding process that helps to prevent noise from external sources and improve signal integrity by providing better insulation. Additionally, most sockets have some form of dielectric protection to prevent damage to the connection and sockets. Additionally, many of today\'s sockets use ferroelectric technology to provide a broad frequency response and high temperatures.
Sockets are most commonly used for integrated circuit (IC) or transistor applications. For these two electronic components, the best performance is achieved when the socket maintains a good connection between the component and the circuit board. As such, these sockets can typically accommodate a wide variety of components and circuit boards, such as QFN packages, SIMM modules, TQFPs, and even narrow BGA packages. Additionally, sockets are often used in the assembly of flexible electronic products such as membranes, keyboards, wristband wearable products, and even hearing aids.
The working principle behind sockets is relatively simple. In order to create a connection between a circuit board and its component, a "socket" – essentially a metal or plastic shell that can be installed onto the board – is used to bridge the gap between the two components. The socket is designed to securely hold the component in place, while also providing a way to manipulate the signals that pass through it. In order to achieve this, most sockets feature a variety of contact types, such as pogo pins, ZIF pads, and bunched wires. This allows the socket to connect with and transfer a wide variety of signals from the board to the component.
Additionally, many modern sockets feature a variety of features that can help to improve signal integrity. For example, some feature integrated ESD protection to prevent damage from static electricity, while others feature a variety of thicknesses and contact types in order to reduce signal reflection and signal losses. Additionally, some sockets also feature built-in current limiters to help protect components from being damaged by high levels of current.
In conclusion, sockets for integrated circuits and transistors, such as the model 322-11-118-41-001000, have become an essential part of modern electronics. By providing a simple yet secure connection between circuit boards and components, these sockets help to improve signal integrity, enable faster data transfer rates, and prevent damage from static electricity. Furthermore, their versatility and cost effectiveness have made them increasingly popular for use in a wide variety of applications, such as deployments in flexible products and assemblies with specialized components.
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