Multi-Frequency Acoustic Therapy System for Cellular Voltage Enhancement
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Solution Overview
Problem
Conventional acoustic therapy devices are limited in generating frequencies below 30 Hz and above 70 Hz, fail to deliver multiple frequencies simultaneously, and cannot accommodate a wide range of user weights, thereby restricting their effectiveness in enhancing cellular voltage and stimulating blood and lymphatic circulation for detoxification.
Innovation Solution
A system comprising a base assembly with voice coils and magnets producing acoustic vibrations from 4 to 20,000 Hz, combined with a vertically extending assembly and cell exciter pads, allowing for polychromatic and multi-tonal frequencies to be delivered to the body, with adjustable thrust and frequency combinations tailored to individual user needs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If conventional acoustic therapy devices are used, then they can deliver acoustic waves to users, but they fail to generate frequencies below 30 Hz and above 70 Hz, limiting the range of therapeutic frequencies available
Solution Approach 1:
The acoustic generation system is divided into multiple independent acoustic drivers, each capable of generating specific frequency ranges. This segmentation allows the system to cover a broader frequency spectrum (below 30 Hz and above 70 Hz) by combining the outputs of multiple specialized drivers, resolving the limitation of conventional single-driver systems.
Solution Approach 2:
Multiple acoustic drivers operating at different frequency ranges are merged into a single integrated system. The drivers work simultaneously to produce polychromatic acoustic waves, combining low frequencies (below 30 Hz), mid frequencies (30-70 Hz), and high frequencies (above 70 Hz) to deliver a comprehensive frequency spectrum that neither single driver could achieve alone.
2Adaptability or versatility
If conventional acoustic therapy devices deliver single frequencies, then the device structure remains simple, but they fail to generate multiple different ranges of frequencies simultaneously, limiting therapeutic outcomes
Solution Approach 1:
The acoustic generation system is designed with multi-functionality, where each acoustic driver can operate independently to produce different frequency ranges. This universal design allows the system to deliver single frequencies, multiple frequencies, polychromatic waves, and custom frequency combinations through a unified platform, achieving versatile therapeutic capabilities without requiring multiple separate devices.
3Adaptability or versatility
If conventional acoustic therapy devices are designed for fixed weight ranges, then the device structure remains simple, but they are unable to accommodate a wide range of user weights
Solution Approach 1:
The mechanical structure incorporates dynamic adjustment capabilities that allow the system to adapt to different user weights. The acoustic drivers and supporting mechanical components can adjust their operational parameters and structural configuration based on the detected user weight, enabling the device to accommodate a wide range of weights while maintaining optimal acoustic delivery and structural integrity.
4Adaptability or versatility
If simple mechanical vibration is applied to cells, then the device structure remains simple, but it does not cause an increase of cellular voltage
Solution Approach 1:
The system utilizes parameter changes in acoustic frequency delivery to achieve cellular voltage enhancement. By delivering polychromatic acoustic waves with specific frequency combinations, amplitudes, and temporal patterns, the system transforms simple mechanical vibration into targeted acoustic stimulation that resonates with cellular structures, thereby increasing cellular voltage and promoting therapeutic effects.
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 system effectively increases cellular voltage, enhances blood circulation, and facilitates detoxification by delivering a wide range of frequencies, accommodating various user weights and enabling specific treatment modes for improved health and wellness outcomes.
Implementation Method 1
one or more voice coils positioned in the space, one or more magnets positioned in the space, wherein each of the one or more voice coils is aligned with one of the one or more magnets such that the one or more voice coils lies within a magnetic flux of the one or more magnets to thereby produce a first portion of the multi-frequency acoustic vibrations
Implementation Method 2
one or more springs positioned in the space, wherein the one or more springs is configured to maintain a predefined thrust range between the top plate and the bottom plate
Implementation Method 3
one or more cell exciter pads coupled with the vertically extending assembly and configured to attach to a portion of the user's body to deliver a third portion of the multi-frequency acoustic vibrations
Data Source
AI summary
A system of delivering multi-frequency acoustic vibrations into the body of a user for increasing a voltage of the cells of the user's body is provided. The system including: a base assembly including a space defined by a top plate and a bottom plate including voice coils, magnets and springs, wherein each voice coil is aligned with a magnet and the springs maintain a predefined thrust between the top and bottom plate, each voice coil lying within a magnetic flux of a magnet for producing acoustic waves of predefined frequencies for deliverance into the user's body through the user's feet when the user is standing on the base assembly; and a tower assembly tethered with the base assembly, and including at least one speaker, and one or more cell exciter pads for attaching with a portion of the user's body, the speaker and pads producing acoustic waves of predefined frequencies for deliverance into the user's body.


