
Allicdata Part #: | 22-CBSA-6.0X6.0X0.2-ND |
Manufacturer Part#: |
22-CBSA-6.0X6.0X0.2 |
Price: | $ 20.30 |
Product Category: | RF/IF and RFID |
Manufacturer: | Leader Tech Inc. |
Short Description: | 22 SERIES CBS SHIELD ASSEMBLY - |
More Detail: | RF Shield Shield, 2-Piece 6.000" (152.40mm) X 6.00... |
DataSheet: | ![]() |
Quantity: | 1000 |
20 +: | $ 18.44980 |
Series: | 20-CBS |
Part Status: | Active |
Type: | Shield, 2-Piece |
Height - Overall: | 0.200" (5.08mm) |
Length - Overall: | 6.000" (152.40mm) |
Width - Overall: | 6.000" (152.40mm) |
Ventilation: | Non-Vented |
Mounting Type: | Surface Mount, Through Hole |
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 Radio Frequency (RF) shield, sometimes referred to as an RF enclosure, is a specialized device that is used to protect against electromagnetic radiation. The shield can also be used to prevent the transmission of sensitive information or signals through the air. The RF shield is often used in industrial and commercial applications, as well as in the medical and communication fields. The 22-CBSA-6.0X6.0X0.2 RF shield is a versatile tool that provides protection from a wide array of frequencies, from 0.1 MHz up to 6.0GHz.
The shield is a relatively simple device, consisting of an all-metal chassis that is lined with metal screens. The metal screens act as a Faraday cage, which blocks the exchange of electromagnetic radiation between the inside and the outside of the shield. This prevents external signals from entering the shielded area, thus allowing the user to control or protect sensitive data. In addition, the RF shield will also attenuate any external electromagnetic radiation, which will reduce the amount of noise that is featured on the overall signal.
The 22-CBSA-6.0X6.0X0.2 RF shield is primarily designed for use in medical and communication fields. It is specifically designed to protect medical devices, such as MRI scanners and X-ray equipment, from the harmful effects of electromagnetic radiation. In the communications field, the shield can be used to protect wireless devices, which can prevent unauthorized access or interference to the signal. Additionally, the shield can be used in research and laboratory settings to protect sensitive equipment and data from electromagnetic radiation.
The working principle of the 22-CBSA-6.0X6.0X0.2 RF shield is based on Faraday’s law of induction. This law states that a conductor that is placed within a varying magnetic field will produce an electromotive force which is proportional to the rate of change of the magnetic field. This then produces a current flow in the conductor, which is proportional to the rate of change of the magnetic field. By enclosing the entire device inside of a shielding material, such as aluminum or steel, the inducing magnetic field is blocked and thus no current flow can be produced.
Due to the versatile features of the 22-CBSA-6.0X6.0X0.2 RF shield, it is an ideal choice for various applications. In the medical field, the shield is used to protect MRI scanners, X-ray machines, and electrocardiographs, as well as other sensitive medical equipment. In the communications field, it can be used to protect wireless communications, prevent eavesdropping, and control access to sensitive data. In the research and laboratory settings, the shield is used to protect sensitive data, equipment, and experiments from electromagnetic radiation.
In conclusion, the 22-CBSA-6.0X6.0X0.2 RF shield is a versatile shielding device that provides protection against a wide range of frequencies from 0.1 MHz up to 6.0GHz. Its primary application is in the medical and communication fields, where it is used to protect medical devices, sensitive data, and wireless transmissions. The shield works by forming a Faraday cage-like enclosure which blocks the passage of electromagnetic radiation through the air. Additionally, the shield will attenuate any incoming electromagnetic radiation, thus reducing the noise present in the overall signal.
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