55-CBSA-1.0X3.5X0.5 Allicdata Electronics
Allicdata Part #:

55-CBSA-1.0X3.5X0.5-ND

Manufacturer Part#:

55-CBSA-1.0X3.5X0.5

Price: $ 12.08
Product Category:

RF/IF and RFID

Manufacturer: Leader Tech Inc.
Short Description: 55 SERIES CBS SHIELD ASSEMBLY -
More Detail: RF Shield Shield, 2-Piece 1.000" (25.40mm) X 3.500...
DataSheet: 55-CBSA-1.0X3.5X0.5 datasheet55-CBSA-1.0X3.5X0.5 Datasheet/PDF
Quantity: 1000
25 +: $ 10.98850
Stock 1000Can Ship Immediately
$ 12.08
Specifications
Series: 50-CBS
Packaging: Bulk 
Part Status: Active
Type: Shield, 2-Piece
Height - Overall: 0.500" (12.70mm)
Length - Overall: 3.500" (88.90mm)
Width - Overall: 1.000" (25.40mm)
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 RF shield 55-CBSA-1.0X3.5X0.5 is used to protect electronic components from radio frequency (RF) interference. These shields are designed to block out high-frequency signals while allowing lower-frequency signals to pass through relatively unhindered. In the industrial, consumer and medical sectors these shields are used in various applications.

The RF shield 55-CBSA-1.0X3.5X0.5 is made up of several layers of different materials, each with different properties. The innermost layer of the shield is typically made of a metal such as aluminum, copper or brass. This layer provides electrical conductivity and is usually used to divert any RF signals away from the equipment inside the shield. The other layers are usually made of dielectric or magnetic materials which act as an absorbent for any stray RF signals.

In order to make the shield effective, each layer of material needs to be carefully designed and applied. For example, if the gap between the layers is too large, it may not provide sufficient shielding from RF interference. Additionally, the absorbent materials need to be chosen to provide optimal coverage of the intended frequency range. This will ensure that any unwanted RF signals are diffused before they can affect the equipment inside the shield.

Once the shield has been assembled, it needs to be tested for effectiveness. This is typically achieved by using an RF scanner to measure the blocking performance of the shield in various scenarios. The data from these tests is then used to determine whether the shield meets the required standards. If necessary, adjustments may be made before the shield is approved for use.

The RF shield 55-CBSA-1.0X3.5X0.5 is suitable for a wide range of applications. In the consumer sector it can be used to protect audio visual equipment, such as televisions and radio receivers, from RF interference. In the medical sector, it can also be used to protect medical devices from RF interference, ensuring their efficacy and safety. In the industrial sector, it can be used to shield sensitive test equipment from radio signals. It is also commonly used in building construction to protect electronic systems within structures from interference.

The working principle of the RF shield 55-CBSA-1.0X3.5X0.5 is based on selective absorption of RF signals. The multi-layered construction of the shield acts as an absorptive barrier, blocking out any unwanted signals while allowing lower-frequency signals to pass through relatively unhindered. The effectiveness of the shield is largely determined by the design and layout of the shield layers. By carefully selecting the materials and the spacing between layers, the shielding performance of the shield can be optimized for the application in question.

In conclusion, the RF shield 55-CBSA-1.0X3.5X0.5 provides effective shielding for a wide range of applications. It can be used to protect a variety of equipment from electromagnetic interference without affecting the performance of the device. By carefully designing and applying the shield layers, its performance can be optimized for the intended application and environment.

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

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