24499110 Allicdata Electronics
Allicdata Part #:

24499110-ND

Manufacturer Part#:

24499110

Price: $ 73.15
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: ECCOSORB ELASTOMER 12X12X0.010
More Detail: N/A
DataSheet: 24499110 datasheet24499110 Datasheet/PDF
Quantity: 1000
2 +: $ 66.49650
Stock 1000Can Ship Immediately
$ 73.15
Specifications
Series: ECCOSORB®
Part Status: Active
Type: Absorbing Sheet
Shape: Square
Length: 12.000" (304.80mm)
Width: 12.000" (304.80mm)
Thickness - Overall: 0.010" (0.25mm)
Operating Temperature: --
Adhesive: --
Material: --
Description

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The application and working principle of RFI and EMI - Shielding and Absorbing Materials 24499110 is fairly simple. It can be broken down into two main components: shielding and absorption. First, an electromagnetic wave is reflected off a surface, and then it is absorbed through the transfer of energy to the material.

The basic purpose of an electromagnetic shield or material is to either reflect or absorb electromagnetic waves. The type of material used for this purpose depends on numerous factors, such as frequency, material type, environmental requirements, electromagnetic field intensities, the distance from the source, and the type of environment the material will be placed in. Different materials can be combined to increase shielding effectiveness, for example combining metals and absorbents to create a hybrid shield.

RFI and EMI shielding materials are designed to allow the electromagnetic wave to impinge on a physical surface, but prevent it from entering a sensitive system. These materials are also capable of absorbing the energy of the wave, and are usually made of conductive materials like metals. Metals are preferred for this purpose because they’re very conductive, meaning they can quickly dissipate the energy of the wave to reduce the levels of energy intensity.

One advantage of using RFI and EMI shielding materials is that the material doesn’t have to be thick in order to be effective. Since the structure of metal can absorb the wave very quickly, only a few layers of metal are needed to shield a sensitive system from an electromagnetic wave. This makes these materials ideal for applications where weight and space are limited.

The second type of material used for RFI and EMI shielding are absorbent materials. These materials, also known as foam materials, are designed to absorb the energy of the wave instead of allowing it to pass through. Some of the most common absorbent materials used for shielding are polyurethane, rubber, and foamed rubber. These materials are often very lightweight and durable, making them ideal for applications where weight and space are both a concern.

In addition to shielding, absorbent materials are also used to provide additional protection from electromagnetic noise. This is done by using materials that are designed to absorb the energy of the wave. This type of material can be used in applications where there is a need to reduce the levels of noise from external sources. Some materials that can be used for this purpose include acoustic foam, polyurethane, and fabrics.

These materials are designed to provide protection from electromagnetic waves, and can be used in a variety of applications, including defense systems, medical equipment, broadcast and entertainment systems, communications systems, and industrial power systems. While shielding materials are used to protect sensitive systems, absorbent materials are used to reduce the levels of electromagnetic noise in the environment.

In conclusion, RFI and EMI - Shielding and Absorbing Materials 24499110 are used for both shielding and absorbing purposes. Shielding materials are designed to reflect and absorb electromagnetic waves, while absorbent materials are designed to reduce the levels of electromagnetic noise in the environment. Both shielding and absorbing materials are lightweight and durable, making them ideal for applications where space is a concern.

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

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