Semiconductor Longitudinal Wave Module With Metal Pattern Modulation
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Solution Overview
Problem
Existing longitudinal wave generators are limited by mass production, price, marketability, and usability due to their large size, and there is a need for a more efficient method to generate and apply longitudinal waves for bio-function activation.
Innovation Solution
An electromagnetic wave modulation module using a semiconductor chip to convert electric signals into longitudinal waves, comprising an input terminal, metal patterns, and an electromagnetic wave adjustment circuit to modulate and adjust the wave characteristics.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional coils or plasma are used to generate longitudinal waves, then the generation method is established, but the device size becomes large which limits mass production and usability
Solution Approach 1:
The patent replaces traditional mechanical coil-based electromagnetic wave generation with a semiconductor chip-based electric signal oscillator. This substitution transitions from a mechanical/electromagnetic system to a solid-state electronic system, dramatically reducing the device size while maintaining the ability to generate the required electromagnetic signals for longitudinal wave creation.
Solution Approach 2:
The patent changes the operating parameters by using a semiconductor chip that can generate electric signals at specific frequencies directly, eliminating the need for large coils and plasma generation systems. This parameter change in the generation method enables compact device design while preserving the essential function of producing electromagnetic waves for longitudinal wave generation.
2Reliability
If traditional longitudinal wave generators are used, then wave generation is achieved, but the large size increases cost and reduces marketability
Solution Approach 1:
The patent replaces complex mechanical and electromagnetic components (coils, plasma generation systems) with a semiconductor chip-based oscillator. This substitution simplifies the manufacturing process, reduces component count, and enables standard semiconductor fabrication techniques to be used, thereby reducing production costs and improving ease of manufacture.
Solution Approach 2:
The semiconductor chip-based oscillator can be designed to generate multiple frequencies and signal types, making it a universal component that can serve various applications. This multi-functionality reduces the need for application-specific custom designs, enabling mass production and reducing per-unit costs.
3Device complexity
If simple configuration is used for longitudinal wave generation, then device complexity is reduced, but the ability to adjust intensity and energy characteristics is limited
Solution Approach 1:
The patent divides the electromagnetic wave adjustment function into separate modular components: the semiconductor chip handles signal generation, the metal pattern handles wave modulation, and the electromagnetic wave adjustment circuit handles intensity and energy characteristics adjustment. This segmentation allows each component to be optimized independently while maintaining overall system simplicity.
Solution Approach 2:
The patent introduces an electromagnetic wave adjustment circuit as an intermediary component between the signal source and the output. This intermediary enables flexible adjustment of wave intensity and energy characteristics without complicating the core signal generation mechanism, maintaining system simplicity while enhancing adaptability.
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 module enables the generation of longitudinal waves in a simple configuration, facilitating a wearable, small-sized bio-function activation device that promotes positive physical conditions and activates bio-functions, as demonstrated by improved physical fatigue, ocular potential, and blood flow activity in user tests.
Implementation Method 1
a metal pattern that modulates an electromagnetic wave generated by the input electric signal of a specific frequency into a longitudinal wave
Implementation Method 2
an electromagnetic wave adjustment circuit that adjusts intensity and energy characteristics of the modulated longitudinal wave
Data Source
AI summary
An electromagnetic wave modulation module includes: an input terminal to which an electric signal of a specific frequency is input; a metal pattern that modulates an electromagnetic wave generated by the input electric signal of the specific frequency into a longitudinal wave; and an output terminal that outputs an electric signal that generates a longitudinal wave modulated and adjusted by the metal pattern. An electromagnetic wave modulation module capable of generating a longitudinal wave with a simple configuration is provided by using an electric signal oscillator manufactured with a semiconductor chip


