20S-CBSA-4.0X5.25X0.2 Allicdata Electronics
Allicdata Part #:

20S-CBSA-4.0X5.25X0.2-ND

Manufacturer Part#:

20S-CBSA-4.0X5.25X0.2

Price: $ 19.01
Product Category:

RF/IF and RFID

Manufacturer: Leader Tech Inc.
Short Description: 20S SERIES CBS SHIELD ASSEMBLY -
More Detail: RF Shield Shield, 2-Piece 4.000" (101.60mm) X 5.25...
DataSheet: 20S-CBSA-4.0X5.25X0.2 datasheet20S-CBSA-4.0X5.25X0.2 Datasheet/PDF
Quantity: 1000
20 +: $ 17.28430
Stock 1000Can Ship Immediately
$ 19.01
Specifications
Series: 20-CBS
Part Status: Active
Type: Shield, 2-Piece
Height - Overall: 0.200" (5.08mm)
Length - Overall: 5.250" (133.35mm)
Width - Overall: 4.000" (101.60mm)
Ventilation: Non-Vented
Mounting Type: Surface Mount
Description

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RF shields are a type of shielding that is used in numerous applications to help limit the interfere and radiation from a high-frequency signal source. More specifically, the 20S-CBSA-4.0X5.25X0.2 shield is a small form factor shield designed to protect against electromagnetic interference in high-power, broadband devices, such as cellular base stations and routers. This type of shielding can also be used in automotive, aerospace, military, and industrial applications.The primary purpose of the 20S-CBSA-4.0X5.25X0.2 shield is to limit the amount of radiation that is emitted from a particular source. This type of shielding utilizes a combination of metal components that can absorb, deflect, and dissipate radiation. The materials used in the construction of the 20S-CBSA-4.0X5.25X0.2 shield are typically made from copper, aluminum, and other conductive metals. Additionally, thermal plastic adhesives are often employed to enhance the shielding effectiveness of the device. The design of the 20S-CBSA-4.0X5.25X0.2 shield is based on a three-stage process of absorption, deflection, and dissipation. These three stages work together to help reduce the amount of radiation that is emitted. The first stage, absorption, involves the metal components of the shield absorbing the radiation by allowing the energy to be dissipated in the form of heat. The second stage, deflection, is based on the principle that the metal components of the shield will deflect any incoming radiation away from the target by forcing the radiation to take a curved path around the metal layers. Lastly, dissipation is the process by which the absorbed and deflected radiation is dissipated and dispersed in the surrounding environment. As mentioned, the 20S-CBSA-4.0X5.25X0.2 shield is made of metal components and can vary in the thickness, material, and number of layers used. Additionally, these components will often be designed in a specific configuration to maximize the shielding effectiveness. For example, the components may be bent or curved in order to deflect the radiation away from the target. Additionally, the metal components may be placed in opposing directions to create a "cross-over" effect which can provide additional shielding. The 20S-CBSA-4.0X5.25X0.2 shield is designed to be used in applications where the radiation source is of high-frequency or high-power in nature. Examples of applications where the 20S-CBSA-4.0X5.25X0.2 shield would be especially valuable include cellular base stations, routers, military communications, satellite, and radar systems. Additionally, the shielding can also be used in other applications where radiation could potentially cause interference, such as medical equipment, GPS systems, automotive applications, and industrial electronics. In conclusion, the 20S-CBSA-4.0X5.25X0.2 shield is an effective shielding solution for applications requiring protection from electromagnetic interference. The device utilizes a three-stage process of absorption, deflection, and dissipation to reduce the radiation emitted from a particular source. The metal components of the shield are designed in a specific configuration to maximize the shielding effectiveness, and the components can vary in size, shape, and material. The 20S-CBSA-4.0X5.25X0.2 shield is most suitable for high-power, broadband devices, such as cellular base stations and routers, as well as other applications where radiation could interfere such as military communications, medical equipment, and automotive applications. 

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

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