46X1N01920.NN00 Allicdata Electronics
Allicdata Part #:

903-1555-ND

Manufacturer Part#:

46X1N01920.NN00

Price: $ 41.54
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: CONDUCTIVE TAPE 86-749 19MM WIDE
More Detail: N/A
DataSheet: 46X1N01920.NN00 datasheet46X1N01920.NN00 Datasheet/PDF
Quantity: 1000
5 +: $ 37.76220
Stock 1000Can Ship Immediately
$ 41.54
Specifications
Series: 86749
Part Status: Active
Type: Shielding Tape
Shape: --
Length: 65.617' (20.00m)
Width: 0.748" (19.00mm)
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

Radio Frequency Interference (RFI) and Electromagnetic Interference (EMI) are phenomena that affect electronic devices and systems. As a result, in order to protect circuits and components from the damaging effects of these kinds of interference, shielding and absorption of the energy that is generated needs to be implemented. One such shielding and absorption material is 46X1N01920.NN00, which is specifically designed for absorbing and reflecting RFI and EMI.

46X1N01920.NN00 is a flexible, single-sided, hybrid laminate composite material that is made from a combination of an electrically conductive and radiation absorbing layers. This material is designed specifically for shielding and absorbing RFI and EMI, and is ideal for applications that require a thin, lightweight and low-profile solution. The layers of the composite material are joined together with a low-Z interlayer, which ensures that the electrical, shielding and absorptive properties of the layers are maintained while the material is bent and stretched.

The 40X1N01920.NN00 product offers excellent shielding and absorption performance, with a shielding effectiveness rating of better than 30 dB in the frequency range of 3kHz to 10GHz. The frequency of operation varies depending on the application; for example, the material absorbs more frequently in the range of 400MHz to 1000MHz and 1GHz to 2GHz, but is also effective in the range of 3kHz to 10GHz. The material is also highly durable and resistant to physical damage, heat exposure, moisture, and other environmental conditions.

The application field related to 46X1N01920.NN00 is extremely diverse, and it can be applied for a range of different uses. Its primary application is for shielding wireless communications systems, where it can reduce interference, increase signal coverage and reduce power consumption. Additionally, the material is often used as an EMI absorber in electronic equipment, in order to reduce the radiation of the energy produced. It can also be used for general-purpose shielding and absorption applications, such as for low-power radio transmitting and receiving antennas.

The working principle of 46X1N01920.NN00 is based on the absorption and reflection of energy. The conductive layers of the laminate composite material absorb the electromagnetic energy and convert it into heat, which dissipates before it can cause interference. Additionally, the shielding layer reflects the incident energy, which prevents it from entering the device and interfering with its circuitry. The absorptive and reflective properties of the material can be further enhanced by adding an absorptive filler or a reflective coating to its surface.

In conclusion, the 46X1N01920.NN00 is a high performance, shielding and absorptive material that can be used for a wide range of applications. Its flexibility, lightweight and low profile make it suitable for compact and portable devices, while its shielding effectiveness rating ensures high performance in wireless communication applications. Additionally, the working principle of this material is based on the absorption and reflection of energy, which makes it highly effective in shielding and absorbing EMI and RFI.

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

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