Allicdata Part #: | 511-91-121-15-061002-ND |
Manufacturer Part#: |
511-91-121-15-061002 |
Price: | $ 18.87 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Mill-Max Manufacturing Corp. |
Short Description: | SKT PGA SOLDRTL |
More Detail: | N/A |
DataSheet: | 511-91-121-15-061002 Datasheet/PDF |
Quantity: | 1000 |
50 +: | $ 16.97790 |
Series: | * |
Part Status: | Active |
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Sockets for ICs, Transistors made use of 511-91-121-15-061002 application field and working principles.
These sockets are designed to provide an ideal connection between the ICs, transistors and the circuitboards utilized both in testing or in prototyping. Primarily, they are used to connect between chips, transistors, and also the printed circuit boards where those chips or transistors are to be held in place. In the case of ICs, the connection is established through the leads, while, for transistors, a base lead might be connected.
The three main working principles of these sockets are as follows:
- Direct Contact Principle: Here, the IC is attached to the socket through direct contact. This is beneficial as the direct contact offers fast, efficient transfer of electrical signals from the ICs to the chipset.
- Bypass Principle: This principle offers an indirect connection between the ICs and the chipset. Here, the ICs are held by a socket and the output signal goes through a bypass circuit. This circuit, in turn, is connected to the required chipset on the PCB, which helps in amplifying the signals.
- Inertive Principle: This principle is the most commonly employed working principle of the sockets. The sockets are three-terminal connections and provide both connection and disconnection of the ICs and transistors from the PCBs. The connections can be removed easily in case of a transfer or replacement of any component. This provides a reliable connection of signals from the ICs or transistors to the chipset.
511-91-121-15-061002 sockets use the Inertive Principle to make the connections stronger and reliable. These sockets have the capacity of providing an ideal connection even if the ICs, transistors, or the circuit boards used are of low quality. They are also compatible with the existing lead-free processes.
The benefits of these sockets are more in terms of the convenience of the testing (of the ICs and transistors) or prototyping activities. It eliminates the need for manual connections, thereby eliminating the possibility of human errors. Also, it enables faster assembly of the ICs and transistors. With them, the testing of the ICs and transistors become more accurate and reliable.
As these sockets are mainly used in the testing or prototyping of various electronic projects, it is important to use them properly. It is important to clean the socket surfaces, and invest time to check if the connection is tight and secure. The pins and the leads should be properly aligned and fit inside the socket tight. Also, care should be taken to ensure that there is no movement between the pins and the socket when the ICs and transistors are plugged in.
Even with the advantages, it is important to have a thorough understanding of how and where these sockets work, and how they could be used in different applications. For example, in the case of ICs, the sockets should be used in such a way that there is no damage caused to the ICs by overheating. Cross connections should also be avoided so that the circuitry and the chips are properly connected to the required components.
Sockets for ICs and transistors have proven to be very useful in building electronic projects. It is therefore important to understand where and how these sockets work in order to have the best possible result and greatest benefits.
The specific data is subject to PDF, and the above content is for reference
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