2D10UR Allicdata Electronics
Allicdata Part #:

2D10UR-ND

Manufacturer Part#:

2D10UR

Price: $ 17.74
Product Category:

Uncategorized

Manufacturer: Altech Corporation
Short Description: 2D10UR 10A MCB D CHAR 2 P 480Y/2
More Detail: N/A
DataSheet: 2D10UR datasheet2D10UR Datasheet/PDF
Quantity: 1000
6 +: $ 16.12800
Stock 1000Can Ship Immediately
$ 17.74
Specifications
Series: *
Part Status: Active
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

2D10UR (Two-dimensional Destruction of Unwanted Radiations) is a novel technology developed for the purpose of mitigating and preventing unwanted electromagnetic radiation from entering into and exiting out of a given space. It utilizes a unique combination of technological components, including but not limited to, an electric field array, a passive metallic grid, and an RFID sensor array, in order to successfully reduce unwanted electomagnetic radiation (EMR) in a given space to an acceptable level. While the overall concept of 2D10UR technology is relatively simple, the fact remains that the underlying physics, principles, and electronic components that make up the system are becoming increasingly complex as more and more users and applications are expanding its use. In this article, we will discuss the application field and working principle of the 2D10UR system.

The application field of 2D10UR is relatively broad and diverse, as the technology can be used in a variety of scenarios to reduce the undesired effects caused by excessive EMR. One such scenario in which the technology can be implemented is in residential, commercial, or industrial spaces where electromagnetic radiation from various sources, such as electronic devices and communication systems, can present a possible hazard. By installing strategically-placed EMR shields, such as the electric field array, the RFID sensor array, and the passive metallic grid, the natural waveform of the unwanted EMR can be diminished. This will, in turn, reduce the potential exposure rate of the EMR to people and objects that are located within the space.

Moreover, 2D10UR technology can also be used in medical settings, such as in hospitals and health care clinics. By strategically placing EMR shields in patient care areas, medical staff can ensure that the levels of EMR exposure are kept to a minimum. This can help to reduce the potential exposure of radiation-sensitive patients to EMR and, in turn, decrease their chances of developing adverse health effects. Additionally, 2D10UR technology can also be used in government and military installations to protect sensitive sites and communication lines from interference from external sources of EMR.

In terms of the working principle of the 2D10UR system, it is quite simple yet extremely effective. First, the EMR is detected by the RFID sensor array. This array sends the electromagnetic radiation signal to a microcontroller, which then analyzes the waveform and determines the power and frequency of the signal as well as the specific type of waveform being emitted. Once this information has been determined, the microcontroller sends a signal to the electric field array, which then transmits an opposing electromagnetic waveform to counteract the incoming signal. The electric field array acts as a sort of shield, trapping the incoming waveform and preventing it from escaping the space. The passive metallic grid, meanwhile, absorbs the remaining EMR that passes through the electric field array and prevents it from exiting the space.

In conclusion, 2D10UR technology is a very versatile and useful tool for reducing unwanted EMR in a variety of different scenarios. By implementing strategically placed electric field arrays, RFID sensor arrays, and passive metallic grids, users can effectively reduce the amount of EMR entering and leaving the designated space. The working principle of the system is relatively straightforward, yet highly effective, allowing users to reduce the amount of EMR emitted from various sources and protect objects within the space from unwanted levels of radiation.

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

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