Microcirculation Protection Using Opposed EM Frequency Emission
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Solution Overview
Problem
Existing methods for improving microcirculation due to electromagnetic radiation from mobile devices and computers require physical contact, which is restrictive and uncomfortable, and do not effectively suppress the negative effects on circulation.
Innovation Solution
An apparatus that detects electromagnetic radiation frequencies and amplitudes, modulates a sinusoidal waveform at 36 MHz and its harmonics up to 2.6 GHz, selectively amplifies opposing amplitudes, and broadcasts these frequencies to cancel out the adverse effects without physical contact.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If physical contact devices are used to improve microcirculation, then circulation enhancement can be achieved, but user movement is restricted and comfort is reduced
Solution Approach 1:
The patent replaces mechanical contact-based circulation enhancement devices with an electromagnetic field-based system. The apparatus uses electromagnetic radiation detection and emission to suppress negative effects on microcirculation without requiring physical contact with the body, thereby maintaining circulation benefits while freeing user movement.
Solution Approach 2:
The patent introduces electromagnetic fields as an intermediary between the device and the human body. Instead of direct mechanical contact, the apparatus uses electromagnetic radiation to interact with and improve microcirculation, serving as a non-contact mediator that achieves the therapeutic effect without physical restriction.
2Reliability
If electromagnetic radiation frequencies are amplified in opposing amplitudes, then negative effects on microcirculation are suppressed, but device complexity increases
Solution Approach 1:
The patent employs feedback mechanisms where the detector continuously monitors electromagnetic radiation frequencies and amplitudes in the environment. The processor uses this feedback information to selectively amplify specific sinusoidal waveforms in opposing amplitudes, creating a dynamic response that suppresses negative effects on microcirculation while adapting to changing environmental conditions.
Solution Approach 2:
The patent changes the amplitude parameter of detected electromagnetic radiation frequencies by generating opposing amplitude sinusoidal waveforms. The processor selectively amplifies these opposing waveforms to match and counteract the detected harmful frequencies, thereby suppressing their negative effects on microcirculation through parameter transformation.
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
The apparatus effectively enhances microcirculation by suppressing electromagnetic radiation effects, allowing users to engage in daily activities without hindrance, with a maximum coverage of 8 meters and a portable design.
Implementation Method 1
a resonator and a dampening circuit to modulate a sinusoidal waveform at 36 MHz and its accompanying harmonics up to 2.6 GHz
Data Source
AI summary
An apparatus and method for improving microcirculation by suppressing and cancelling the negative effects of electromagnetic radiation from cellular phones and computers connected to wireless networks on microcirculation. The apparatus generates frequencies that are synchronized and in opposed amplitudes to the detected electromagnetic radiation frequencies, thereby suppressing and cancelling the negative effects of the electromagnetic radiation frequencies on microcirculation.


