49L-CBSA-2.75X6.0X0.4 Allicdata Electronics
Allicdata Part #:

49L-CBSA-2.75X6.0X0.4-ND

Manufacturer Part#:

49L-CBSA-2.75X6.0X0.4

Price: $ 18.63
Product Category:

RF/IF and RFID

Manufacturer: Leader Tech Inc.
Short Description: 49L SERIES CBS SHIELD ASSEMBLY
More Detail: RF Shield Shield, 2-Piece 2.750" (69.85mm) X 6.000...
DataSheet: 49L-CBSA-2.75X6.0X0.4 datasheet49L-CBSA-2.75X6.0X0.4 Datasheet/PDF
Quantity: 1000
20 +: $ 16.93470
Stock 1000Can Ship Immediately
$ 18.63
Specifications
Series: 40-CBS
Packaging: Bulk 
Part Status: Active
Type: Shield, 2-Piece
Height - Overall: 0.400" (10.16mm)
Length - Overall: 6.000" (152.40mm)
Width - Overall: 2.750" (69.85mm)
Ventilation: Vent Holes in Pattern
Mounting Type: 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

The 49L-CBSA-2.75X6.0X0.4 is a type of RF Shield—a device designed to prevent radio waves or electromagnetic fields from entering or leaving an electrical component or system. RF Shields are predominantly used in the aerospace, military, and automotive industries, where it is essential to ensure that any form of communication is reliable and free from interference. By preventing unwanted RF signals from entering or leaving an electrical system, RF shields can improve functioning and protect operators from undue exposure to RF radiation.

In the case of the 49L-CBSA-2.75X6.0X0.4, it is designed for use in high frequency applications which require superior RF shielding performance. This shield consists of a solid steel body that is plated with a corrosion resistant finish. The steel body includes two layers - the first layer creating a barrier to protect the electrical components from outside interference, and the second layer acting as a conductor which allows for the transmission of radio frequencies. The steel body also contains two different types of ferrite absorbers: one to reduce the reflection of RF signals, and one to reduce the transmitted signals.

The working principle of the 49L-CBSA-2.75X6.0X0.4 is quite straightforward. When an RF signal contacts the device, it is directed into the first layer of the shield’s body, the ferrite absorbers absorb and dissipate the signal. This process prevents the signal from being able to reach its intended destination, thus providing the desired shielding effect. As the RF signal can no longer reach its intended destination, it is thus no longer able to interfere with the electrical system. Similarly, any signals passing through the shield from within the system are also absorbed and dissipated by the ferrite absorber’s, preventing them from exiting the system and causing interference to any other electronic equipment in the vicinity.

The 49L-CBSA-2.75X6.0X0.4 is suitable for applications where high levels of RF shielding performance is required. Examples of such applications include military aircrafts, automobiles, communications systems, and radio transmitters. In addition, it is ideal for applications where high levels of electrical safety are needed, such as in medical equipment and computer systems. When used in conjunction with other shielding components, such as those made of an aluminum or copper alloy, the 49L-CBSA-2.75X6.0X0.4 can provide superior shielding performance and enable sensitive systems to function in an environment where interference from radio frequency signals is unavoidable.

Overall, the 49L-CBSA-2.75X6.0X0.4 RF Shield is an essential device in ensuring the reliability and safety of sensitive electrical equipment. By preventing unwanted RF signals from entering or leaving an electrical system, the shield can vastly improve the functioning and safety of the system, while also allowing for the peaceful coexistence of sensitive systems and equipment in an area where interfering RF signals are present. In this way, the 49L-CBSA-2.75X6.0X0.4 RF Shield is an invaluable component in the world of electronic engineering.

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

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