1115B 8"X10" Allicdata Electronics
Allicdata Part #:

3M1115E-ND

Manufacturer Part#:

1115B 8"X10"

Price: $ 2.04
Product Category:

RF/IF and RFID

Manufacturer: 3M
Short Description: TAPE ALUM FOIL 203X254MM
More Detail: N/A
DataSheet: 1115B 8"X10" datasheet1115B 8"X10" Datasheet/PDF
Quantity: 68
1 +: $ 1.85220
10 +: $ 1.65375
25 +: $ 1.48831
100 +: $ 1.35608
250 +: $ 1.22379
500 +: $ 1.09809
1000 +: $ 0.92610
2500 +: $ 0.87980
5000 +: $ 0.84672
Stock 68Can Ship Immediately
$ 2.04
Specifications
Series: 1115
Part Status: Active
Type: Shielding Sheet
Shape: --
Length: 10.000" (254.00mm)
Width: 8.000" (203.00mm)
Thickness - Overall: 0.007" (0.18mm)
Operating Temperature: -40°C ~ 130°C
Adhesive: Conductive, Single Sided
Material: Aluminum Foil
Description

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Introduction

RFI and EMI shielding and absorbing materials are specialized materials that absorb or block the radiation of radio frequency (RF) or electromagnetic interference (EMI). These materials are very important in applications that require mitigating radio frequency or electromagnetic interference. This article will focus on the 1115B 8"X10" application field and working principle of RFI and EMI Shielding and Absorbing Materials.

RFI and EMI Shielding and Absorbing Materials

RFI and EMI shielding and absorbing materials are used in a variety of applications in order to block or reduce the effects of radio frequency or electromagnetic interference (RFI and EMI respectively). These materials are available in a wide range of forms such as foam, rubber, elastomers, and others. Depending on the type of material and its performance characteristics, they are used in various application fields such as electromagnetic compatibility (EMC) testing, RF shielding, radiofrequency signal shielding, and others.The 1115B 8"x10" application field and working principle of RFI and EMI Shielding and Absorbing Materials can be divided into two categories: shielding and absorbing.

Shielding Materials

Shielding materials are designed to attenuate or block radio frequency and electromagnetic interference by reflecting or redirecting the radiation away from the protected area or object. The most common shielding materials are metals, including aluminum, copper, and steel. These materials are usually formed into fabric, sheet, or film form for ease of installability. Other materials such as non-metallic materials may also be used as shielding materials, including plastic, ceramic, and fiber reinforced glass (FRG).When it comes to the 1115B 8"x10" application field, shielding materials are used to block RF signals from entering from the exterior of the space or the device. This means that the device or the space will remain shielded from the radio frequency and electromagnetic interference.

Absorbing Materials

Absorbing materials are designed specifically to absorb radio frequency and electromagnetic radiation. This is achieved through the use of porous materials such as slip-on shielding gaskets, conductive fabric, dielectric foam, and other materials. These materials are able to absorb energy by converting the RF or EMI waves into low-level electrical current, which can then be dissipated away from the device or space.In the 1115B 8"x10" application field, absorbing materials are used to absorb the RFI and EMI radiation from both the interior and exterior space of the device or space. This helps to reduce the level of RF and EMI radiation, which helps to improve overall electromagnetic compatibility (EMC).

Conclusion

RFI and EMI shielding and absorbing materials can be used in a variety of applications for mitigating the effects of radio frequency and electromagnetic interference. The 1115B 8"x10" application field and working principle of these materials can be divided into two main categories: shielding and absorbing materials. Shielding material is used to reduce or block the radiation of RF and EMI. On the other hand, absorbing materials are used to absorb RF or EMI signals from both the interior and exterior of the space or device. Both types of materials can be used together to reduce the total level of interference and improve EMC performance.

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

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