3M AB5030 1" X 4"-100 Allicdata Electronics
Allicdata Part #:

3M11828-ND

Manufacturer Part#:

3M AB5030 1" X 4"-100

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: 3M (TC)
Short Description: SHEET PLYMR 25.4X101.6MM 100/PK
More Detail: N/A
DataSheet: 3M AB5030 1" X 4"-100 datasheet3M AB5030 1" X 4"-100 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: AB5000S
Part Status: Obsolete
Type: Absorbing Sheet
Shape: Rectangular
Length: 4.000" (101.60mm)
Width: 1.000" (25.40mm)
Thickness - Overall: 0.014" (0.35mm)
Operating Temperature: -25°C ~ 85°C
Adhesive: Non-Conductive, Single Sided
Material: Polymer Resin, Metal Flakes
Description

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RF interference (RFI) and electromagnetic interference (EMI) are both forms of energy that interfere with the proper functioning of electronic devices. RF interference and EMI can be caused by many sources such as electrical and electronic equipment, wireless networks, lighting, and even cosmic radiation. RF interference and EMI can both be prevented by using shielding and absorbing materials. 3M AB5030 1" X 4"-100 is a type of shielding and absorbing material that is designed to reduce or eliminate RF interference and EMI.

What is 3M AB5030 1" X 4"-100?

3M AB5030 1" X 4"-100 is a shielding and absorbing material that is designed to reduce or eliminate RF interference and EMI. It is a thin, flexible, lightweight material made from multiple layers of thin copper foil and fiberglass. The multiple layers of thin copper foil create a barrier that prevents the RF energy from entering or leaving a device, while the fiberglass absorbs the energy and disperses it. This helps to prevent the RF interference and EMI from affecting the performance of the device.

Application Field and Working Principle of 3M AB5030 1" X 4"-100

The 3M AB5030 1" X 4"-100 shielding and absorbing material is used in a variety of applications where RF interference or EMI is a concern. The material can be used in military electronics, automotive electronics, medical electronics, industrial electronics, communications equipment, and consumer products. For example, it can be used to protect electronics from RF interference and EMI generated by nearby cell phone towers, wireless networks, and other sources of RF interference and EMI.

The working principle of the 3M AB5030 1" X 4"-100 is based on the concept of electromagnetic shielding. Electromagnetic shielding is the process of blocking the passage of RF energy by providing a physical barrier that keeps the RF energy from entering or leaving a device. The multiple layers of thin copper foil in the material acts as a barrier, preventing the RF energy from entering or leaving the device. The fiberglass within the material absorbs the RF energy and disperses it, thus reducing the amount of RF energy that reaches the device.

Benefits of Using 3M AB5030 1" X 4"-100

The use of 3M AB5030 1" X 4"-100 provides several benefits. First, it can help to reduce or eliminate RF interference and EMI, which can adversely affect the performance of electronic devices. Second, the material is thin, flexible, and lightweight, making it easy to apply to surfaces. Third, the material is easy to install, even for novice users. Finally, the material is affordable, providing a cost-effective solution for preventing RF interference and EMI.

Conclusion

The 3M AB5030 1" X 4"-100 shielding and absorbing material is a cost-effective solution for reducing or eliminating RF interference and EMI. The material is thin, flexible, and lightweight, making it easy to install, and it is designed to provide optimal protection from RF interference and EMI. The multiple layers of thin copper foil and fiberglass in the material act as a barrier to prevent RF energy from entering or leaving a device, while the fiberglass absorbs the energy and disperses it. This helps to reduce or eliminate RF interference and EMI, which can adversely affect the performance of electronic devices.

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

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