44-CBSA-0.5X5.0X0.4 Allicdata Electronics
Allicdata Part #:

44-CBSA-0.5X5.0X0.4-ND

Manufacturer Part#:

44-CBSA-0.5X5.0X0.4

Price: $ 14.94
Product Category:

RF/IF and RFID

Manufacturer: Leader Tech Inc.
Short Description: 44 SERIES CBS SHIELD ASSEMBLY
More Detail: RF Shield Shield, 2-Piece 0.500" (12.70mm) X 5.000...
DataSheet: 44-CBSA-0.5X5.0X0.4 datasheet44-CBSA-0.5X5.0X0.4 Datasheet/PDF
Quantity: 1000
22 +: $ 13.57820
Stock 1000Can Ship Immediately
$ 14.94
Specifications
Series: 40-CBS
Packaging: Bulk 
Part Status: Active
Type: Shield, 2-Piece
Height - Overall: 0.400" (10.16mm)
Length - Overall: 5.000" (127.00mm)
Width - Overall: 0.500" (12.70mm)
Ventilation: Vent Holes in Pattern
Mounting Type: Through Hole
Description

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RF shields are used in a variety of applications to reduce electromagnetic radiation by providing shielding between the source and the environment. The 44-CBSA-0.5X5.0X0.4 RF shield is one such shield that helps to safely contain high frequency electromagnetic signals in sensitive applications. This article will discuss the application field and working principle of this type of RF shield.

The 44-CBSA-0.5X5.0X0.4 RF shield is a conductive shield used for virtually any application that requires reduced electromagnetic interference (EMI). This type of shield is ideal for sensitive electronic equipment that needs to be protected from external noise sources, such as high frequency EMI signals generated by nearby radio transmitters, power lines, and wiring. This shielding device is made from galvanized steel that has been treated with an epoxy paint for durability. The shield is designed to provide a low impedance path for the EMI signals to dissipate, eliminating the interference that would otherwise occur.

The 44-CBSA-0.5X5.0X0.4 RF shield provides a variety of benefits, making it ideal for a wide range of applications. This shield is designed to have a low insertion loss, allowing high level signals to pass through with minimal interference. Additionally, the shield is designed to provide excellent shielding effectiveness, meaning that most of the unwanted EMI signals will be diverted away from sensitive equipment. This type of RF shield is also designed to be durable, ensuring that it will last for years in most environments.

The 44-CBSA-0.5X5.0X0.4 RF shield is often used in medical equipment, industrial machinery, telecommunications equipment, and other sensitive electronics. Additionally, this type of shield is also used in consumer electronics, such as phones, computers, and radio receivers. In each of these applications, the RF shield serves to improve the performance and reliability of the device by providing a barrier for high-frequency EMI signals.

The working principle of the 44-CBSA-0.5X5.0X0.4 RF shield is quite simple. The device is composed of two layers, a galvanized steel shell and an internal conductive layer. The steel shell serves as the barrier that prevents the EMI signals from reaching the internal conductive layer, while the conductive layer absorbs the energy from the EMI signals. This absorption process is known as “shielding” and is the primary function of the RF shield.

In order to ensure the effectiveness of the RF shield, the steel shell should be securely connected to the metal chassis in which the device is housed. This type of connection creates a Faraday Cage, which helps to ensure that the EMI signals are contained within the shield and not permitted to escape. The internal conductive layer then absorbs the EMI energy, preventing it from entering the internal components.

The 44-CBSA-0.5X5.0X0.4 RF shield is an effective way to reduce EMI noise and protect sensitive electronics. This type of shield is designed to have a low insertion loss and excellent shielding effectiveness, making it ideal for a variety of applications. The working principle of this RF shield involves the creation of a Faraday Cage and the absorption of EMI signals within the internal conductive layer. As such, the 44-CBSA-0.5X5.0X0.4 shield provides an effective barrier against unwanted interference and an improved performance for sensitive electronics.

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

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