Allicdata Part #: | 903-1457-ND |
Manufacturer Part#: |
0097091802 |
Price: | $ 9.32 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies EMI |
Short Description: | FINGERSTOCK BECU 8.9X381MM |
More Detail: | N/A |
DataSheet: | 0097091802 Datasheet/PDF |
Quantity: | 1000 |
105 +: | $ 8.47126 |
Series: | -- |
Part Status: | Active |
Type: | Fingerstock |
Shape: | -- |
Width: | 0.350" (8.89mm) |
Length: | 15.000" (381.00mm) |
Height: | 0.110" (2.79mm) |
Material: | Beryllium Copper |
Plating: | -- |
Plating - Thickness: | -- |
Attachment Method: | Adhesive |
Operating Temperature: | 121°C |
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
.RF (Radio Frequency) and EMI (electromagnetic interference) contacts, fingerstocks and gaskets are widely used today in many different industrial and non-industrial applications. As the name implies, these materials are designed to ensure the security of contacts between electronic components as well as protect them from outside interference. In this article, we’ll discuss what RF and EMI contacts, fingerstocks and gaskets are, their working principles, and how they are used in different applications.
First, let’s start with the basics of RF and EMI contacts, fingerstocks and gaskets: These materials are designed to provide a solid contact between two components, while also protecting the components from interference from RF or EMI. In order to do this, RF and EMI contacts are often made from a variety of materials, including metals, plastics, rubber, and other materials. The materials are designed to conduct RF and EMI signals, and protect the electronic components from interference.
RF and EMI contacts are commonly used in a variety of applications. One of the most popular applications for RF and EMI contacts is in communication systems, where they are used to connect the various components of a system. RF and EMI contacts are also used in medical diagnostic equipment, such as CT scanners, MRI machines, PET scans, and radiation detectors. They are also commonly used in the automotive industry, where they are used to connect and protect various electrical components.
The next question is, how do RF and EMI contacts work? The basic principle behind RF and EMI contacts is the same as it is with any other material: They are designed to allow a secure connection between two components, while also blocking any interference. In the case of RF and EMI contacts, the material is designed to be conductive so that the RF and EMI signals can pass through. The material is also designed to be insulating, so that any external interference is blocked.
RF and EMI contacts are also used in the manufacturing process. The materials are designed to provide a secure connection between components, which is essential for efficient production. These materials can also be used to protect the components from any interference that can occur during the manufacturing process. For example, if an RF and EMI contact is used on a component that is exposed to a high level of RF, the material will block the signal and protect the component.
Finally, RF and EMI contacts, fingerstocks and gaskets can also be used to enhance the performance of any electronic device. By reducing the amount of interference from RF and EMI, these materials can improve the performance of the device. For example, RF and EMI contacts can be used to improve the signal strength and reception of a cell phone, or to improve the accuracy of sensors in an industrial machine.
In conclusion, RF and EMI contacts, fingerstocks and gaskets are important materials in many different industrial and non-industrial applications. They are designed to provide a secure connection between components and protect them from outside interference. They are used in a wide variety of applications, from communication and medical systems to automotive and manufacturing processes. By understanding how RF and EMI contacts work and how they are used, it is easier to determine which materials are best suited for a particular application.
The specific data is subject to PDF, and the above content is for reference
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