18R-CBSA-0.5X3.25X0.13 Allicdata Electronics
Allicdata Part #:

18R-CBSA-0.5X3.25X0.13-ND

Manufacturer Part#:

18R-CBSA-0.5X3.25X0.13

Price: $ 14.71
Product Category:

RF/IF and RFID

Manufacturer: Leader Tech Inc.
Short Description: 18R SERIES CBS SHIELD ASSEMBLY -
More Detail: RF Shield Shield, 2-Piece 0.500" (12.70mm) X 3.250...
DataSheet: 18R-CBSA-0.5X3.25X0.13 datasheet18R-CBSA-0.5X3.25X0.13 Datasheet/PDF
Quantity: 1000
22 +: $ 13.38010
Stock 1000Can Ship Immediately
$ 14.71
Specifications
Series: 10-CBS
Packaging: Bulk 
Part Status: Active
Type: Shield, 2-Piece
Height - Overall: 0.130" (3.30mm)
Length - Overall: 3.250" (82.55mm)
Width - Overall: 0.500" (12.70mm)
Ventilation: Vent Holes in Pattern
Mounting Type: Through Hole
Description

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RF (Radio Frequency) shields are an important tool for handling electromagnetic interference (EMI), allowing radio signals to be contained and contained. The 18R-CBSA-0.5X3.25X0.13 is a type of RF shield, which has become a staple in the field of Radio Frequency shielding solutions. This article will cover the application field and working principle of 18R-CBSA-0.5X3.25X0.13 shields.

Application field

18R-CBSA-0.5X3.25X0.13 RF shields have a wide variety of uses, and are often used in the automotive, industrial, telecommunications, and other fields that require reliable radio frequency shielding solutions. They are particularly popular in the automotive industry, where they are used to protect automotive electronics from interference from other vehicles and nearby radio signals. In the industrial sector, 18R-CBSA-0.5X3.25X0.13 shields can be found in RF antennas, RF amplifiers, and other products that require shielding from EMI.

18R-CBSA-0.5X3.25X0.13 shields are also used in industries where radio signals need to be blocked or contained. This is especially important in the telecommunications sector, where companies need to ensure that sensitive data is not leaked or intercepted. 18R-CBSA-0.5X3.25X0.13 shields can also be used in medical and military applications, where sensitive electronic equipment needs to be protected from EMI and other forms of interference.

Working Principle

18R-CBSA-0.5X3.25X0.13 shields work by reflecting and absorbing incident RF energy. The shields are composed of a dielectric material, usually an insulator foam, which allows them to absorb electromagnetic waves while also reflecting them away from the protected area. The dielectric material is then surrounded by a conductive metallic material, usually copper of aluminum, which allows the shield to conduct the reflected energy away from the protected area. This conductive layer is usually in the form of a tubular or foil conductive layer.

The conductive layer works to reflect and block incoming electromagnetic energy, while also providing the necessary conductivity to carry away the energy which is reflected by the shields. The shield also works by dissipating EMF, which is the energy produced by the electromagnetic waves that are reflected by the shields. This dissipated energy is then dispersed throughout the environment, helping to reduce the amount of EMF that can affect sensitive electronics in close proximity.

The 18R-CBSA-0.5X3.25X0.13 shields are also able to create a Faraday Cage, which is an enclosure that can provide total radio signal isolation from the outside world. This helps to prevent external signals from entering the shielded area, and also prevents EMF from leaking out from the shielded area. This is especially useful in medical and military applications, where sensitive electronics need to be totally isolated from outside noise in order to function correctly.

In conclusion, 18R-CBSA-0.5X3.25X0.13 RF shields are an important tool for providing reliable EMI shielding and containment solutions. They are used widely in automotive, industrial, medical, telecommunications, and other fields to protect sensitive electronics from harmful electromagnetic interference and to create a Faraday Cage which can resist external signals.

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

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