Allicdata Part #: | 25-CBSA-4.75X5.75X0.225-ND |
Manufacturer Part#: |
25-CBSA-4.75X5.75X0.225 |
Price: | $ 19.22 |
Product Category: | RF/IF and RFID |
Manufacturer: | Leader Tech Inc. |
Short Description: | 25 SERIES CBS SHIELD ASSEMBLY - |
More Detail: | RF Shield Shield, 2-Piece 4.750" (120.65mm) X 5.75... |
DataSheet: | 25-CBSA-4.75X5.75X0.225 Datasheet/PDF |
Quantity: | 1000 |
20 +: | $ 17.47090 |
Series: | 20-CBS |
Part Status: | Active |
Type: | Shield, 2-Piece |
Height - Overall: | 0.225" (5.72mm) |
Length - Overall: | 5.750" (146.05mm) |
Width - Overall: | 4.750" (120.65mm) |
Ventilation: | Non-Vented |
Mounting Type: | Surface Mount, Through Hole |
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RF Shields are vital components used in a wide range of modern electronic devices. They are intended to improve the performance of electronic systems by providing shielding from electromagnetic interference. Typical applications include RF systems, RF power conditioning, cellular communication, wireless applications, and more. In this article, we\'ll discuss the 25-CBSA-4.75X5.75X0.225 RF Shield and its application field and working principle.
RF Shields are typically formed into various shapes. Common shapes include circular, cylindrical, rectangular, and pentagonal forms. Each shape offers different degrees of shielding effectiveness and performance characteristics. The 25-CBSA- 4.75X5.75X0.225 shield is a series of rectangular shields in a staggered pattern. This staggered pattern provides improved shielding effectiveness in comparison to that of a solid-body shield.
This shielding can be used in a variety of applications and is suitable for controlling radio frequency interference (RFI). This is widely used in consumer electronics, industrial equipment, and military applications. This particular shield is ideal for applications that require high shielding effectiveness, low signal losses, and moderate flexibility.
The 25-CBSA-4.75X5.75X0.225 shield is made from an electro-magnetic conducting material, such as aluminium, copper, or steel. This material is stamped or machined into the desired shape, and then an electrically insulating material is applied. This can be a polyurethane or a non-conductive elastomer. Finally, the shield is mounted in its application.
The working principle of the 25-CBSA-4.75X5.75X0.225 shield is based on the principle of electromagnetic shielding. Electromagnetic shielding prevents or reduces electromagnetic radiation from entering or leaving an area, depending on the orientation of the shield material. The material is designed to absorb or reflect the incoming radiation, thereby preventing or reducing electromagnetic interference.
In this particular shield, the staggered design provides increased shielding effectiveness compared to a solid shield. The staggered pattern causes the electromagnetic field to be “pushed” outwards and thus it is more effective at preventing interference from entering the application than if it was a solid shield. In addition, the staggered pattern also provides more flexibility. This is important for applications which may experience a range of environmental conditions or which may need to be adjusted or replaced in the future.
The 25-CBSA-4.75X5.75X0.225 shield is ideal for applications where shielding effectiveness is needed in combination with moderate flexibility. It is primarily suitable for consumer electronics, industrial equipment, and military applications. The shield is also used in wireless applications, cellular communication, and RF power conditioning. The staggered pattern provides improved shielding effectiveness, and the electro-magnetic conducting material provides superior performance compared to a solid-body shield.
In conclusion, the 25-CBSA-4.75X5.75X0.225 shield is a sturdy and effective shielding solution. It is effective at controlling radio frequency interference and is suitable for a variety of applications. This shielded casing is produced from quality electro magnetic conducting materials and is designed to offer superior shielding performance. The staggered pattern provides increased shielding effectiveness, and the electro-magnetic conducting material provides superior performance compared to a solid-body shield.
The specific data is subject to PDF, and the above content is for reference
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