
Allicdata Part #: | 12693-31841003000-ND |
Manufacturer Part#: |
126-93-318-41-003000 |
Price: | $ 11.12 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Mill-Max Manufacturing Corp. |
Short Description: | CONN IC DIP SOCKET 18POS GOLD |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 11.12000 |
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Electronic components such as ICs, transistors, and sockets enable us to conduct electricity in a variety of ways. Whereas ICs, transistors, and sockets for ICs provide a physical connection between wires or other components, the physical connection made by a socket for transistors is much more complicated. This is because transistors are not purely resistive devices. Instead, they rely on both current and voltage to conduct electricity. The application of a socket for transistors and its working principle can be illustrated by the following example of the number 126-93-318-41-003000.
The application of the socket for transistors for 126-93-318-41-003000 is to create a solid electrical connection between a transistor and a circuit board. This connection, as with all other electrical connections, depends upon the flow of current and voltage. Transistors, as mentioned previously, require both current and voltage in order to provide an electrical connection. When a transistor is connected to a circuit board, it carries current through the circuit board which it receives from the power source. The voltage, on the other hand, is carried by the wire connected to the socket.
The working principle of a socket for transistors is based on the principle of electricity conduction. To conduct electricity, a current flowing between two points is required. When a transistor is connected to a circuit board, it will act as a bridge between two points of contact. In this case, the two points are the base and the emitter. The socket for transistors will provide the necessary current and voltage for conduction. This will then enable the current to flow through the transistor and the circuit board.
The socket for transistors also ensures that the electrical connection is reliable. In order to do this, the contacts between the socket and the transistor must be secure and reliable. The socket for transistors is designed to ensure that the contacts between the transistor and the socket remain secure. It also ensures that the flow of current and voltage through the socket is secure and reliable. This is done by using high-quality contacts and materials in order to ensure a secure connection.
Furthermore, the socket for transistors is also designed to reduce the risk of shorts or other electrical problems. The contacts on the socket are insulated to ensure that no short circuits occur. The insulation also reduces the risk of electrical shock if someone were to touch any part of the socket. Finally, the socket for transistors also acts as a buffer against shocks and vibrations, ensuring that the electrical connection is secure.
In conclusion, sockets for transistors are a vital component in the creation of reliable electronic connections. They provide a physical connection between transistors and circuit boards which are reliant on both current and voltage. Furthermore, they ensure that the electrical connections are secure and reliable by using high-quality contacts and insulation. Finally, they act as buffers against shocks and vibrations, making them a vital component for any electronic system.
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