Nanoscale Ferromagnetic Composition for EM Contamination Neutralization
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Solution Overview
Problem
Existing devices fail to completely neutralize the harmful effects of electromagnetic contamination from artificial sources, only reducing them, which can lead to continued exposure risks for humans and electronic equipment degradation.
Innovation Solution
A device utilizing a novel combination of ferromagnetic materials at the nanoscale, organized to maintain the trajectory of emitted radiation while aligning the spin of element particles, thereby neutralizing the harmful effects of electromagnetic contamination.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Object-affected harmful factors
If conventional electromagnetic shielding devices are used, then electromagnetic contamination is reduced, but it cannot be completely neutralized
Solution Approach 1:
The patent applies parameter changes by utilizing ferromagnetic materials at the nanoscale (specific size parameter) to fundamentally alter how electromagnetic contamination is handled. The nanoscale ferromagnetic particles create a harmonious arrangement that completely neutralizes electromagnetic effects, transitioning from mere reduction to complete neutralization.
Solution Approach 2:
The invention employs composite materials by combining ferromagnetic material at the nanoscale with other materials to create a composition that achieves complete neutralization of electromagnetic contamination. This composite approach enables the device to organize the polarization of spin in element particles while maintaining trajectory, achieving total neutralization rather than partial reduction.
2Object-affected harmful factors
If ferromagnetic material is organized to align spin of element particles, then electromagnetic contamination is neutralized, but trajectory of particles must be maintained
Solution Approach 1:
The patent applies local quality by organizing the spin of element particles in a localized harmonious arrangement using nanoscale ferromagnetic material. This local organization of spin polarization neutralizes electromagnetic contamination while the material's specific properties ensure that the trajectory of particles is not affected, resolving the complexity of achieving both goals simultaneously.
3Device complexity
If conventional shielding methods are used, then device complexity is minimized, but effectiveness against electromagnetic contamination is insufficient
Solution Approach 1:
The patent applies this principle by using nanoscale ferromagnetic particles that can be easily incorporated into the device structure. The composition uses readily available ferromagnetic materials at the nanoscale, making the device inexpensive to implement and maintain while achieving complete neutralization of electromagnetic contamination, rather than just reduction.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Effectively neutralizes electromagnetic contamination, reducing static and extending the lifespan of electronic equipment, preventing electrical shocks, and optimizing electricity consumption while being inexpensive and adaptable for various applications.
Implementation Method 1
The present invention uses a novel and non-obvious combination of ferromagnetic material at a nanoscale to eliminate and create a harmonious arrangement of particles of electromagnetic contaminants, thereby neutralizing their harmful effects. The neutralization is accomplished by organizing the polarization of the spin of the element particles, including electrons.
Implementation Method 2
The neutralization is accomplished by organizing the polarization of the spin of the element particles, including electrons.
Data Source
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Figure 1A
Figure 4~5
AI summary
A tangible device such as a credit card shaped device that includes at least one waffler carved therein. A bottom stabilizing material in the shape of a film or sheet is placed within the waffler. A nano-scaled metal in powdered form that is ferromagnetic in nanoscale, such as gold, is then added above the bottom stabilizing film. A ferromagnetic powder in nanoscale is added to the nano-scaled metal and a top stabilizing film is placed thereon. Ceramic powder is then used to further stabilize the composition and finally all the components are sealed within the waffler. The nano-scaled metals can be affixed to the stabilizing films using atomic layer deposition. The present invention is used to neutralize the electromagnetic contamination emitted from a plurality of electronic devices by organizing the polarity of the spin of the element particles within their radiation.