25-CBSA-3.0X3.0X0.225 Allicdata Electronics
Allicdata Part #:

25-CBSA-3.0X3.0X0.225-ND

Manufacturer Part#:

25-CBSA-3.0X3.0X0.225

Price: $ 15.27
Product Category:

RF/IF and RFID

Manufacturer: Leader Tech Inc.
Short Description: 25 SERIES CBS SHIELD ASSEMBLY -
More Detail: RF Shield Shield, 2-Piece 3.000" (76.20mm) X 3.000...
DataSheet: 25-CBSA-3.0X3.0X0.225 datasheet25-CBSA-3.0X3.0X0.225 Datasheet/PDF
Quantity: 1000
21 +: $ 13.88100
Stock 1000Can Ship Immediately
$ 15.27
Specifications
Series: 20-CBS
Part Status: Active
Type: Shield, 2-Piece
Height - Overall: 0.225" (5.72mm)
Length - Overall: 3.000" (76.20mm)
Width - Overall: 3.000" (76.20mm)
Ventilation: Non-Vented
Mounting Type: Surface Mount, Through Hole
Description

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RF shielding materials are materials that have the ability to attenuate or block electromagnetic radiation. They are used extensively in the electronics industry as a means for protecting sensitive electronic components from interference and fading from uncontrolled external sources. In particular, shielding is essential in the field of electromagnetic compatibility (EMC). This article will discuss the characteristics, applications and working principles of a popular type of shielding, namely 25-CBSA-3.0X3.0X0.225.

Characteristics of 25-CBSA-3.0X3.0X0.225

25-CBSA-3.0X3.0X0.225 is a ferrite bead based shielding material. It is composed of a ferrite core surrounded by a [ magnetic shielding ] layer of a metallic alloy, which acts as a barrier against harmful external electromagnetic fields. The alloy itself is typically composed of nickel and steel. This type of shielding material is available in any combination of size, shape and thickness, making it ideal for a range of applications.

The 25-CBSA-3.0X3.0X0.225 shielding material also offers high attenuation performance. This means that it is able to block a broad range of frequencies, providing effective protection against EMI (electromagnetic interference). In addition, the material is non-magnetic and non-conductive, making it resistant to corrosion and temperature fluctuations. Furthermore, it has a high melting point, making it suitable for use in high temperature environments.

Applications of 25-CBSA-3.0X3.0X0.225

25-CBSA-3.0X3.0X0.225 is widely used in the military, aerospace and medical industries, owing to its wide range of available shapes and sizes. The shielding material is often used to protect sensitive electronic circuits from interference and fading from external EMI sources. Furthermore, it can also be used in automotive and telecommunications applications for the same purpose.

In the military sector, 25-CBSA-3.0X3.0X0.225shielding is commonly employed to protect sensitive navigation systems from external electromagnetic radiation. In the aerospace industry, the material is used for the same reason. It is also employed in certain medical applications, such as ultrasound machines, X-ray machines and MRI scanners, to reduce the risk of harm to the patient due to exposure to radiation.

Working Principle of 25-CBSA-3.0X3.0X0.225

The working principle of 25-CBSA-3.0X3.0X0.225 is quite simple. When an electromagnetic wave passes through the shielding material, the ferrite core absorbs the harmful energy and blocks it from reaching the sensitive electronic components inside. The alloy layer acts as a barrier that diffuses the energy, dissipating it rather than passing it on.

The effectiveness of the shielding material is based on the thickness of the material. The thicker the material, the better it is at absorbing and blocking radiation. In addition, the material should also be chosen based on the frequency of the radiation, as some materials are better at blocking certain frequencies than others.

In conclusion, 25-CBSA-3.0X3.0X0.225 is an ideal RF shielding material due to its attenuation performance, size and shape flexibility and corrosion and temperature resistance. It is widely used in military, aerospace and medical applications for protecting sensitive electronic components from interference caused by external electromagnetic fields. The working principle of this material is based on absorbing and blocking the harmful energy, rather than passing it on.

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

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