Double Helix Conductor Winding for Toroidal Electromagnetic Therapy
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Solution Overview
Problem
Current electromagnetic systems using spirally wound conductors lack effective configurations to generate specific electromagnetic effects for therapeutic and growth-promoting applications, particularly in a toroidal structure with intertwined helically wound runners.
Innovation Solution
A system comprising intertwined helically wound runners forming a double helix around a toroidal structure, with conductive wires spirally wound around the runners and struts, configured to conduct current and emit electromagnetic radiation, utilizing various materials and wire guides to optimize electromagnetic properties.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional spirally wound conductors are used, then electromagnetic effects can be generated, but the configuration lacks effectiveness for specific therapeutic and growth-promoting applications
Solution Approach 1:
The conductor is divided into multiple discrete runners (first runner, second runner, third runner) that can be independently configured and wound around different cores. Each runner can have different winding parameters, materials, and configurations, allowing the system to be segmented into functional modules that can be optimized for specific therapeutic applications while maintaining overall system effectiveness
Solution Approach 2:
The patent employs adjustable and reconfigurable conductor configurations where runners can be dynamically adjusted in terms of winding tightness, number of turns, material composition, and spatial arrangement. This dynamic configurability allows the same basic structure to adapt to different therapeutic requirements, resolving the contradiction between maintaining reliable electromagnetic generation and enabling application-specific customization
2Reliability
If complex helical structures with multiple runners are used, then electromagnetic properties can be optimized, but device complexity increases
Solution Approach 1:
Multiple conductor runners are merged into a single integrated assembly that shares common support structures, mounting mechanisms, and control systems. The first, second, and third runners are combined in a coordinated configuration around shared cores, reducing the overall number of independent components and simplifying assembly while maintaining the complex electromagnetic field generation capabilities
Solution Approach 2:
The helical structure employs universal components and standardized configurations that can serve multiple functions. The runners can simultaneously generate electromagnetic fields, provide structural support, and be configured for different winding patterns depending on application requirements. This multi-functionality reduces device complexity by eliminating the need for separate specialized components for each function
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 generates electromagnetic effects that can be used for therapeutic and growth-promoting applications, offering flexible material options and adjustable electromagnetic properties through varying wire configurations and frequencies.
Implementation Method 1
One or more runners may be configured to conduct current and/or emit electromagnetic radiation
Data Source
AI summary
An electrical system including a body having a structure resembling a double helix wound around a toroidal structure may be used to produce useful electromagnetic effects for various applications, including providing therapy and promoting growth of living organisms.


