78153090 Allicdata Electronics
Allicdata Part #:

78153090-ND

Manufacturer Part#:

78153090

Price: $ 72.48
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: LS-30/SS3 .25X24X24 ECCOSORB
More Detail: N/A
DataSheet: 78153090 datasheet78153090 Datasheet/PDF
Quantity: 1000
2 +: $ 65.88540
Stock 1000Can Ship Immediately
$ 72.48
Specifications
Series: *
Part Status: Active
Description

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The field of radio frequency interference (RFI) and electromagnetic interference (EMI) shielding and absorbing materials has become a mainstay of modern digital technology. Because of its significant technical complexity, the field of RFI and EMI shielding and absorbing materials is rapidly increasing in importance. This article will focus on the 78153090 application field and working principle, and will discuss the various techniques used to protect against RFI and EMI interference.

The 78153090 application field and working principle is based on the concept of electromagnetically shielding electronic components from one another. This is done by using materials that are highly conductive and have an inherent shielding ability from the effects of electromagnetic interference. There are a variety of materials that are used for this purpose, such as copper, silver, and aluminum, which act as a barrier against the electromagnetic radiation. Additionally, in order to reduce the amount of interference that is transferred between components, the use of absorbers, such as foams, fibreglass, or materials made from rubber or other plastic, is also used.

A key factor in improving the shielding ability of these materials is their thickness. The thicker the material, the better the shielding. In certain circumstances it is advantageous to use multiple layers of these materials to increase the shielding ability. Furthermore, the temperature of the material also needs to be taken into consideration because, at higher temperatures, the shielding ability of the material reduces significantly.

One of the most widely used materials in RF application field and EMI shielding is copper. Copper is highly conductive, is lightweight, and is relatively low cost. Additionally, it also has excellent RF shielding capability, is highly durable, and is easy to work with. In addition, the skin effect of the copper makes it possible to reduce the interferences between two components to a very low level.

Aluminum is another commonly used material in RFI and EMI shielding applications. Aluminum is lightweight, strong, and inexpensive, and is also highly conductive, making it an effective material for reducing interference between components. Additionally, aluminum is relatively low in cost and is easy to work with.

Additionally, there are a number of specialized materials that can be used for RF application field and EMI shielding. One example is PEX, which is a type of plastic material that is extremely lightweight and is incredibly strong. It is also highly flexible and resistant to moisture, making it an effective material for shielding. Additionally, PEX can be easily installed with minimal disruption, making it ideal for the installation of RFI and EMI shielding materials.

There are also several different techniques and technologies used to protect against RFI and EMI interference. One technique is the use of Faraday cages, which are metal cages that surround electronic equipment and act as a shield to prevent the transmission of electromagnetic radiation. Additionally, RF absorbers, such as foam and other materials, are also used to reduce the radiation levels in certain areas. Additionally, waveguide technology is also used to reduce the transmission of interference between components, by redirecting the signal away from the affected area, to an area where less interference is present.

Finally, in addition to the materials and technologies mentioned above, there are also more sophisticated technologies such as active and passive damping, which utilize special cables to act as a barrier between two components to reduce the amount of interference they produce. Additionally, there are also specialized filters and amplifiers that can be used to further reduce the amount of interference produced between components.

In conclusion, the 78153090 application field and working principle have become increasingly important for the development of modern digital technology. By utilizing the various techniques and technologies discussed above, it is possible to effectively reduce the amount of electromagnetic radiation that is produced between components, allowing for improved performance of digital equipment.

The specific data is subject to PDF, and the above content is for reference

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