Double Helix Conductor with Counter-Rotating Fields
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Solution Overview
Problem
Existing electromagnetic coil systems for generating electromagnetic effects are limited in their ability to produce diverse and controlled electromagnetic fields, particularly in applications requiring specific frequency harmonics and directional currents.
Innovation Solution
A system comprising two intertwined helically wound runners with pairs of twisted wires, where alternating currents are induced to generate electromagnetic effects, with the currents flowing in opposite directions around each runner, and the frequencies forming harmonious intervals, allowing for dynamic control based on sound signals.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional electromagnetic coil systems are used, then the system structure is simple, but the ability to produce diverse and controlled electromagnetic fields is limited
Solution Approach 1:
The system divides the electromagnetic field generation into multiple independent components: two separate helical runners, each with pairs of twisted wires wound around them. Each runner can be controlled independently with separate alternating currents, allowing diverse electromagnetic field configurations while maintaining modular simplicity
Solution Approach 2:
The patent introduces a second helical runner intertwined with the first, adding a dimensional layer to the electromagnetic field generation. This dual-runner configuration enables counter-rotating fields and harmonious frequency intervals, expanding field diversity without significantly increasing overall system complexity
2Ease of operation
If alternating currents are induced to generate electromagnetic effects, then the electromagnetic field control is improved, but the energy consumption increases
Solution Approach 1:
The system uses alternating currents with specific frequencies that form harmonious intervals, creating periodic electromagnetic fields. This periodic action allows for controlled field generation with energy efficiency, as the fields are generated in rhythmic cycles rather than continuously, while maintaining precise control over electromagnetic effects
Solution Approach 2:
The patent converts the potential energy waste of generating electromagnetic fields into a beneficial therapeutic effect. By using counter-rotating fields from the two runners and sound signal modulation, the system directs energy toward specific therapeutic outcomes, making the energy consumption productive rather than wasteful
3Adaptability or versatility
If multiple wires are used to create counter-rotating fields, then the electromagnetic field diversity is improved, but the manufacturing complexity increases
Solution Approach 1:
The patent merges multiple functional elements into unified components: pairs of twisted wires are wound around each runner as integrated units, and the two runners are helically intertwined to form a cohesive double-helix structure. This merging approach achieves complex electromagnetic field diversity while simplifying the manufacturing process through integrated design
4Adaptability or versatility
If the system is dynamically controlled based on sound signals, then the versatility is improved, but the device complexity increases
Solution Approach 1:
The system incorporates sound signal feedback control where sound signals modulate the alternating currents supplied to the twisted wires. This feedback mechanism enables dynamic adjustment of electromagnetic field characteristics in response to acoustic input, enhancing versatility while using a relatively simple control loop that monitors and adjusts current based on sound frequency and amplitude
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 produces a controlled electromagnetic field with specific frequency harmonics, enabling applications such as therapy and energy manipulation by dynamically adjusting the currents in response to sound signals, enhancing the versatility and effectiveness of electromagnetic effects.
Implementation Method 1
inducing a first alternating current through the first wire, a second alternating current through the second wire, a third alternating current through the third wire, and a fourth alternating current through the fourth wire such that the first alternating current, the second alternating current, the third alternating current, and the fourth alternating current generate an electromagnetic effect
Data Source
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AI summary
An electrical system including a body may have a structure resembling a double helix having twisted conductive wires wound around both helical structures. The electrical system may be used to produce useful electromagnetic effects for various applications, including providing therapy and promoting growth of living organisms.