22-CBSA-3.0X4.5X0.2 Allicdata Electronics
Allicdata Part #:

22-CBSA-3.0X4.5X0.2-ND

Manufacturer Part#:

22-CBSA-3.0X4.5X0.2

Price: $ 16.09
Product Category:

RF/IF and RFID

Manufacturer: Leader Tech Inc.
Short Description: 22 SERIES CBS SHIELD ASSEMBLY -
More Detail: RF Shield Shield, 2-Piece 3.000" (76.20mm) X 4.500...
DataSheet: 22-CBSA-3.0X4.5X0.2 datasheet22-CBSA-3.0X4.5X0.2 Datasheet/PDF
Quantity: 1000
20 +: $ 14.62710
Stock 1000Can Ship Immediately
$ 16.09
Specifications
Series: 20-CBS
Part Status: Active
Type: Shield, 2-Piece
Height - Overall: 0.200" (5.08mm)
Length - Overall: 4.500" (114.30mm)
Width - Overall: 3.000" (76.20mm)
Ventilation: Non-Vented
Mounting Type: Surface Mount, Through Hole
Description

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 Shields, commonly known as Radio Frequency (RF) shield or electromagnetic interference (EMI) shield, are an important component in many electronic and communication systems. RF Shields are essentially protective covers that protect the system from any interference or RF radiation that could damage or disrupt it. RF Shields are designed to attenuate the electromagnetic energy and deflect it away from the protected system. The attenuation of the RF energy depends on the material composition of the RF Shield and the physical size of the shield.

22-CBSA-3.0X4.5X0.2 is a particular RF Shield, specifically designed to protect devices from the harmful radiation emitted by other frequency generators and amplifiers. 22-CBSA-3.0X4.5X0.2 is a compact, lightweight shield with a unique architecture that includes three layers of protective coatings. The innermost layer is the carrier medium, which is a copper alloy material. The copper alloy is used to disperse the electromagnetic radiation away from the core of the shield, and to reduce the effective radiated power. Additionally, the carrier medium helps to reduce the amount of RF noise that the shield can pick up from other devices in the system.

The middle layer of 22-CBSA-3.0X4.5X0.2 is a dielectric material which helps to provide additional attenuation of the RF energy and helps to keep the shape of the shield consistent. The dielectric material also provides mechanical strength to the shield. The third and outermost layer is a conductive metal coating which helps to prevent the passage of any RF energy that penetrates beyond the inner two layers. The conductive metal coating also helps to protect the interior of the shield from any environmental factors that may be destructive to the RF electronics.

In terms of applications, 22-CBSA-3.0X4.5X0.2 is primarily used in the communications industry to protect devices from the interference caused by multiple frequency generators, amplifiers, and other electronic devices. Additionally, it can be used in military and aerospace applications which require heightened protection from environmental factors and can also be used in consumer electronics to provide additional protection from EM radiation.

The working principle of 22-CBSA-3.0X4.5X0.2 RF Shield is quite simple. When a source of RF radiation or noise is detected, the absorbed energy is immediately attenuated by the inner carrier medium and dielectric material, thus allowing the RF energy to be diverted into the conductive metal coating and away from the protected system. The physical shape of the shield also helps to redirect the energy away from the system, ensuring that any interference is kept to a minimum.

In conclusion, RF Shields are an essential component in many electronic and communication systems. 22-CBSA-3.0X4.5X0.2 is a particular RF Shield designed to protect devices from RF radiation and environmental factors. It consists of three layers of protective coatings which attenuate the RF energy and deflect it away from the device. The shield is primarily used in the communications industry and is also used in military and aerospace applications, as well as in consumer electronics. The working principle of the shield is simple, by redirecting the RF energy and noise away from the protected devices, while maintaining a consistent shape and providing additional protection to the interior components.

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

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