98100328 Allicdata Electronics
Allicdata Part #:

903-1610-ND

Manufacturer Part#:

98100328

Price: $ 16.70
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: COOLZORB 400 4X4X0.1"
More Detail: N/A
DataSheet: 98100328 datasheet98100328 Datasheet/PDF
Quantity: 46
1 +: $ 15.17670
10 +: $ 13.79450
25 +: $ 12.76000
100 +: $ 11.72530
250 +: $ 10.69080
500 +: $ 10.00100
Stock 46Can Ship Immediately
$ 16.7
Specifications
Series: CoolZorb 400
Part Status: Active
Shape: Square
Length: 4.000" (101.60mm)
Width: 4.000" (101.60mm)
Thickness - Overall: 1.000" (25.40mm)
Operating Temperature: -40°C ~ 175°C
Adhesive: Self-Adhesive
Description

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Introduction

Radio Frequency Interference (RFI) and Electromagnetic Interference (EMI) are two of the most frequency-dependent forms of interference that can affect the performance of electronic systems. RFI and EMI can be caused by a variety of sources, including electrical and electronic equipment, radio and television signals, and heating and lighting systems. Therefore, it is important to understand the principles of shielding and absorbing materials when designing electronic systems in order to maximize the performance of these systems.

Definition of 98100328

98100328 is a generic term used to describe shielding and absorbing materials that are used to reduce the effects of RFI or EMI. A shielding material is defined as a material that can absorb or reflect electromagnetic waves. An absorbing material is a material that can absorb the energy in an electromagnetic wave while still allowing some of the radiation to pass through.

Applications of 98100328

Shields and absorbing materials have a wide range of applications. Examples of applications include enclosures for radio and radar systems, protection from electromagnetic fields generated by large power lines, and protection from RFI and EMI in cellular phones and other electronic devices. Shielding materials can also be used to reduce noise in audio systems. In the medical field, they can provide protection for vulnerable systems, such as pacemakers and other electronic medical devices, from potential interference from external sources. In addition, they can be used to protect sensitive electronic equipment from lightning strikes.

Types of 98100328

Shields and absorbing materials can be made of a variety of materials, including thermoplastics, ferrite magnets, and wire mesh. Thermoplastics, such as PVC and Teflon, are often used to create enclosures that will protect sensitive systems from RFI and EMI. Ferrite magnets are also used to absorb the energy from an electromagnetic wave, while wire mesh is often used to block or redirect the energy from an electromagnetic wave.

Working principle of 98100328

The working principle of shielding and absorbing materials is to reduce the amount of electromagnetic radiation that passes through the material. This is achieved by creating an enclosure that will block or redirect the radiation. Thermoplastics, ferrite magnets, and wire mesh all work in different ways to accomplish this.For example, thermoplastics can be used to create an enclosure that completely blocks out electromagnetic waves, or a mesh screen can be used to direct the waves away from certain areas. Ferrite magnets are used to absorb the energy from an electromagnetic wave, while wire mesh works to redirect the energy from an electromagnetic wave.In addition, shields and absorbing materials can also be used to reduce noise in audio systems. In this application, the materials are used to absorb the energy in sound waves before they reach the speaker. This helps to reduce the amount of noise that the speaker produces, resulting in better audio quality.

Conclusion

In conclusion, 98100328 is a generic term used to describe shielding and absorbing materials that are used to reduce the effects of RFI and EMI. These materials have a wide range of applications and can be made from a variety of materials. The working principle of these materials is to reduce the amount of electromagnetic radiation that passes through the material, either by blocking it or directing it away from sensitive areas. In addition, they can also be used to reduce noise in audio systems, resulting in better audio quality.

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

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