46W5E01020.NN00 Allicdata Electronics
Allicdata Part #:

903-1573-ND

Manufacturer Part#:

46W5E01020.NN00

Price: $ 16.49
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: FABRIC TAPE COPPER
More Detail: N/A
DataSheet: 46W5E01020.NN00 datasheet46W5E01020.NN00 Datasheet/PDF
Quantity: 19
1 +: $ 14.99400
10 +: $ 13.63190
25 +: $ 12.95060
50 +: $ 12.26900
100 +: $ 11.58730
250 +: $ 10.90570
500 +: $ 10.22410
Stock 19Can Ship Immediately
$ 16.49
Specifications
Series: 86285
Part Status: Active
Type: Shielding Tape
Shape: --
Length: 65.617' (20.00m)
Width: 0.394" (10.00mm)
Thickness - Overall: --
Operating Temperature: --
Adhesive: Conductive, Single Sided
Material: Nickel-Copper (NI/CU) Fabric
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

RFI and EMI - Shielding and Absorbing Materials

Radio frequency interference (RFI) and electromagnetic interference (EMI) can have a detrimental effect on electronic systems. Shielding and absorbing materials are used to prevent these adverse effects. The 46W5E01020.NN00 shielding and absorbing material is the ideal solution for preventing the effects of RFI and EMI in various applications.

The 46W5E01020.NN00 material is a nonresonant absorber. It is made up of a mixture of semiconducting particles and nonmagnetic metal. The product\'s unique design enables it to absorb electromagnetic fields more efficiently than other typical materials. As a result, it is used to shield and absorb RFI and EMI in a wide range of applications.

In many applications, such as in the automotive industry, shielding and absorbing materials are used to reduce undesired electromagnetic radiation. This type of radiation can interfere with consumer electronics, which can lead to disruptions in mobile telecommunication. By shielding and absorbing materials, such as the 46W5E01020.NN00 material, the radiation is contained and the electronic components of consumer devices are not exposed to any electromagnetic interference.

Shielding and absorbing materials are also used to protect sensitive electronic components from the damaging effects of RFI and EMI. In some applications, such as in medical settings, the use of radiation-resistant materials is essential to protect personnel and equipment from hazardous radiation. Shielding and absorbing materials can be used to create a protective barrier around medical equipment, which is designed to prevent radiation from entering the equipment. This helps to ensure the safety of personnel and keep a medical facility running efficiently.

The 46W5E01020.NN00 material is also used to reduce the level of reflected radiation, which can cause interference with radio and television broadcasts. By using this material, it is possible to effectively reduce the amount of reflected radiation in the environment and minimize interference with broadcast signals. In addition, the material is also useful in reducing the levels of static and noise in electronic systems.

The 46W5E01020.NN00 material is a versatile option for shielding and absorbing materials. It is highly durable and can be used in a variety of applications, including in extreme temperature and aggressive chemical environments. The product has a relatively low coefficient of thermal expansion (CTE), which ensures that it does not suffer from distortion or cracking caused by temperature changes. Additionally, the electromagnetic absorbing properties of the material remain constant over wide temperature ranges.

The 46W5E01020.NN00 shielding and absorbing material is an effective solution for reducing the effects of RFI and EMI in various applications. The material has a unique design, which enables it to absorb and shield electromagnetic fields more efficiently than other conventional materials. As a result, the material can be used to protect electronic components from damaging radiation, reduce the level of interference with broadcast signals, and minimize the amount of static and noise in electronic systems.

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

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