
Allicdata Part #: | 23-CBSF-1.5X4.0X0.25-ND |
Manufacturer Part#: |
23-CBSF-1.5X4.0X0.25 |
Price: | $ 12.54 |
Product Category: | RF/IF and RFID |
Manufacturer: | Leader Tech Inc. |
Short Description: | 23-CBSF-1.5X4.0X0.25--23S67--CIR |
More Detail: | RF Shield Shield, 2-Piece 1.500" (38.10mm) X 4.000... |
DataSheet: | ![]() |
Quantity: | 1000 |
25 +: | $ 11.39540 |
Series: | 20-CBS |
Part Status: | Active |
Type: | Shield, 2-Piece |
Height - Overall: | 0.250" (6.35mm) |
Length - Overall: | 4.000" (101.60mm) |
Width - Overall: | 1.500" (38.10mm) |
Ventilation: | Vent Holes in Pattern |
Mounting Type: | Through Hole |
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RF Shields such as the 23-CBSF 1.5x4.0x0.25 are a type of radio frequency (RF) absorbent material designed to reduce electromagnetic radiation from one area to another, while allowing RF signals to pass through from one area to another without causing interference. This type of shield can be used in a variety of applications, from limiting signal interference in buildings to providing a protective barrier against RF signals. It is important to understand the application field and working principle of RF Shields in order to maximize their functionality and ensure that they are used correctly in various applications.
Application field of RF Shields
RF Shields are used in a number of different application fields and have a range of uses ranging from commercial to military applications. In commercial applications, RF Shields are widely used in wireless communication systems, such as cellular phone towers, radios, and Bluetooth devices. They are also used in industrial settings, such as factories, in order to reduce noise pollution and electromagnetic interference. Finally, in military applications, they are generally used to protect personnel from harmful RF signals.
Working Principle of RF Shields
The basic working principle of RF Shields is that they absorb RF signals, preventing them from passing through the shield. This absorption is caused by the materials used in the construction of the shield, which can include conductive materials such as copper or aluminum, or dielectric materials such as plastic or foam. These materials absorb the RF signals and convert them into heat energy, which is dissipated from the shield in a safe and efficient manner. The precise design of the shield, material selection, and thickness of the material used to construct the shield can all affect the effectiveness of the RF Shield, and should be considered when choosing the right RF Shield for the application.
Conclusion
The 23-CBSF 1.5x4.0x0.25 is a type of RF Shield used in a variety of application fields. It works by absorbing RF signals and converting them into heat energy, which is dissipated from the shield in a safe and efficient manner. Understanding the application field and working principle of RF Shields is important in order to properly use them in various applications, as the design, material selection, and thickness of the material used can all affect the effectiveness of the RF Shield.
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