1-6-1183 Allicdata Electronics
Allicdata Part #:

3M9894-ND

Manufacturer Part#:

1-6-1183

Price: $ 30.91
Product Category:

RF/IF and RFID

Manufacturer: 3M (TC)
Short Description: TAPE COPPER FOIL 25.4MMX5.5M
More Detail: N/A
DataSheet: 1-6-1183 datasheet1-6-1183 Datasheet/PDF
Quantity: 4
1 +: $ 28.10430
10 +: $ 26.44990
25 +: $ 25.62340
50 +: $ 23.97020
100 +: $ 22.64770
250 +: $ 21.98650
Stock 4Can Ship Immediately
$ 30.91
Specifications
Series: 1183
Part Status: Active
Type: Shielding Tape
Shape: --
Length: 18.000' (5.50m)
Width: 1.000" (25.40mm)
Thickness - Overall: 0.003" (0.07mm)
Operating Temperature: -40°C ~ 130°C
Adhesive: Conductive, Single Sided
Material: Tin-Plated Copper Foil
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

The use of RFI and EMI shielding and absorbing materials is an increasingly important component of modern technology, particularly in applications such as communications, radio, television, navigation and military applications. Shielding materials are electromagnetic materials which act as a barrier to radio frequency radiation. They are typically employed to prevent interference from external sources such as building materials, power lines, telephone lines, and other radio frequency broadcasting sources. In order to effectively shield against this interference, RFI and EMI shielding and absorbing materials must be effective at absorbing and dissipating the energy of incoming signals.

The characteristics of 1-6-1183 shielding and absorbing materials are determined by the absorption and leakage properties of the material. In its simplest form, the absorption properties refer to the amount of energy that the material is able to absorb and convert into a thermal energy form. Leakage, on the other hand, is the amount of energy that escapes the material. The absorption and leakage characteristics of 1-6-1183 materials are generally measured in terms of the far-field receiver sensitivity.

When it comes to application fields, 1-6-1183 materials are primarily used in applications that require high levels of isolation from outside interference. Examples of these applications include telecommunications, wireless communications, radar systems, navigation systems, and systems where signal integrity is of paramount importance. Certain materials, such as aluminum and copper, offer superior shielding and absorbing properties over those materials of similar type. This makes them useful in these and other applications where reliable performance is critical.

The working principle of 1-6-1183 materials is based on the principle of Faraday’s Cage. Faraday’s Cage is an enclosed space that blocks electric and magnetic fields from entering or leaving the space. The material is arranged in such a way that electric and magnetic fields are blocked, while the material is somewhat permeable to allow some energy to pass through. The material is designed to be conductive in order to contain the energy and prevent it from escaping. The material also acts as a conductor, making it capable of reflecting and refracting energy.

In order to ensure maximum effectiveness, 1-6-1183 materials must be of the highest quality and uniform to reduce leakage. They must also be placed in such a way that reflection and refraction of the energy is minimized. Additionally, the materials must be properly designed and installed in order to ensure the best possible performance.

In conclusion, 1-6-1183 shielding and absorbing materials are essential components of modern technology. They offer superior shielding and absorption capabilities over other materials of similar type, making them best suited for applications where signal integrity and isolation from interference is of utmost importance. By understanding the working principles of these materials and ensuring maximum performance, 1-6-1183 materials can be effectively utilized for a variety of applications.

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

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