Allicdata Part #: | 210-33-314-41-101000-ND |
Manufacturer Part#: |
210-33-314-41-101000 |
Price: | $ 43.62 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Mill-Max Manufacturing Corp. |
Short Description: | CONN IC SKT DBL |
More Detail: | N/A |
DataSheet: | 210-33-314-41-101000 Datasheet/PDF |
Quantity: | 1000 |
56 +: | $ 39.25860 |
Series: | * |
Part Status: | Active |
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, and other forms of electronic components are a vital tool in the manufacturing world. They greatly simplify the process of debugging, testing, and designing circuit boards, as well as helping to reduce time consuming, laborious soldering processes. To most designers however, the use of sockets when working with electronic components is a foreign concept. That\'s why in this article, we will discuss the application field, as well as the working principle of 210-33-314-41-101000 sockets.
Application Field
The most common application of 210-33-314-41-101000 sockets is in the prototyping and development of printed circuit board (PCB) designs. By making use of these kinds of sockets, designers are able to test out new components and their interactions within a safe, effective, and controlled environment. This means that the need to solder the components to the boards is eliminated, reducing potential damage due to user error, as well as reducing the time taken to set-up tests or to establish proof-of-concepts.
This makes 210-33-314-41-101000 sockets particularly useful in the development of breadboards, or in testing out new circuits. They also come in handy for a variety of other hobbies and activities, such as radio-controlled kits, model construction, and SpaceX parts. Those involved in these pursuits can use the sockets to create tests beds or to customize and modify existing circuit designs.
210-33-314-41-101000 sockets are also used in the production of hardware devices and appliances, particularly as a final step in the manufacturing process. By making use of the sockets, the components can be quickly and easily added when needed, without the need for tedious soldering.
Working Principle
The working principle of 210-33-314-41-101000 sockets is relatively straightforward. They are comprised of two mating parts; the socket, which is connected to the printed circuit board (PCB), and the lead, which is connected to the electronic component. Each part has several metal metal pins, with the pins in the socket acting as contacts for the pins in the lead.
The process of using the sockets is quite simple. The component to be tested or used is placed into the socket, making sure that the pins are properly aligned. This ensures that the component is securely connected to the PCB. The user can then make whatever adjustments or tests need to be done on the component, without fear of it slipping out of the socket.
The 210-33-314-41-101000 sockets are designed to be robust and reliable. The pins are constructed such that they will not easily be bend or broken, and they have a low contact resistance, meaning that they can easily transmit signals with very little interference or reduction in signal strength.
Additionally, the sockets are rated to be able to handle both high voltage and high current applications, making them a great choice for a variety of electronic applications. Furthermore, the sockets are designed to be simple and straightforward to use; they don’t require any special tools or equipment to be used.
Conclusion
In conclusion, 210-33-314-41-101000 sockets are a valuable tool for anyone working with electronic components. They provide a secure, reliable, and cost-effective way to test and verify components and circuits. They are also simple and straightforward to use, making them a great choice for a variety of applications. If you are in the market for such a socket, then the 210-33-314-41-101000 should definitely be on your list.
The specific data is subject to PDF, and the above content is for reference
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