
Allicdata Part #: | 614-91-632-41-001000-ND |
Manufacturer Part#: |
614-91-632-41-001000 |
Price: | $ 10.12 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Mill-Max Manufacturing Corp. |
Short Description: | SKT CARRIER PGA |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
60 +: | $ 9.19660 |
Specifications
Series: | * |
Part Status: | Active |
Description
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Sockets for ICs, Transistors
Socket technology is an integral part of integrated circuit (IC) and transistor devices. In this form, transistors and ICs are connected to an electrical system’s circuitry using a cross-interconnecting device or socket. A socket is a small electrical connector and physical interface designed to mount, protect, and maintain electrical contact between ICs and other electronic components. It also provides convenience and flexibility in terms of component replacement and upgrading. There are many types of sockets available, each designed to accommodate specific types of ICs and transistors. For instance, there are special-purpose sockets tailored for the connection of different semiconductor components that require different forms of electrical connection. These sockets are usually made with different contact trends, such as leaded and non-leaded contacts or through-hole and surface-mount styles. In addition, the structures of these sockets vary depending on the type of components they are designed to connect. For instance, some sockets feature spring arms or levers to affix the IC package to the socket, while others feature plastic pillars that hold the IC package in place. Furthermore, one type of socket may have solder termination points to which the IC package is secured, while another type may have clip contacts designed to enhance electrical contact with the IC package. The sockets are also designed to operate at various voltages depending on the type of devices they are expected to handle. While some sockets are designed to handle only low-voltage component connections, others are Built with high-voltage insulation and contain enhanced features that enable them to be used in high voltage applications. The number of pins of a socket also varies depending on the type of components it is designed to accommodate. For instance, some sockets may support up to 128 pins, while others are designed to accommodate fewer than 10 pins. Similarly, the socket’s form factor and pin orientation may also vary depending on the application. For example, a socket may have a wide range of pin configurations for high-density applications or symmetrical pin-outs for low-density components. The working principle of sockets for the connection of ICs and transistors is quite straightforward. The socket is designed to act as an intermediary between the electrical system and the IC or transistor that must be connected. The contacts on the socket’s surface create an electrical connection between the IC package and the electrical circuit, with the socket providing the necessary insulation to ensure a safe connection. In order for the socket to be effective, there must be good electrical contact between the socket’s contacts and the contacts on the IC package. This is to ensure that electrical signals are transferred between the IC package and the circuit without any loss of signal. In conclusion, socket technology is an important component of electronic systems that use ICs and transistors, as it ensures a safe and efficient connection between these components and the electrical circuit. Sockets come in various sizes and configurations, and can be designed to work with various voltages and to accommodate a wide range of pin configurations. The working principle of sockets is quite simple: the socket creates an electrical connection between the IC package and the electrical circuit while providing insulation.The specific data is subject to PDF, and the above content is for reference
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