Self-Recharging Power Circuit for Continuous Energy Generation
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Solution Overview
Problem
Conventional power generators, transformers, and storage devices require an initial power source and are limited by finite mineral resources, posing environmental and safety risks, and are often used in military applications.
Innovation Solution
Development of infinite auto power generation devices utilizing modified batteries, capacitors, transformers, and motors that can generate and store power continuously without external energy input, using combinations of rechargeable batteries, capacitors, transformers, and motors with specific configurations and insulators to create self-sustaining power systems.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Use of energy by moving object
If conventional power generators and storage devices are used, then power can be generated and stored, but external energy sources are required and mineral resources are depleted
Solution Approach 1:
The patent implements self-service through a feedback control system where the generated power automatically recharges the battery system. The device serves itself by using its own output to maintain its operation, eliminating the need for external energy sources while ensuring continuous operation through automatic power management and recharge cycles.
2Productivity
If mineral resources are used for power generation, then energy can be produced, but environmental harm and safety risks increase
Solution Approach 1:
The patent replaces mechanical/chemical power generation systems (combustion engines, nuclear reactions) with an electromagnetic-based self-sustaining system. By using electromagnetic induction and battery storage, the system eliminates harmful emissions, waste products, and safety risks associated with fossil fuels and nuclear energy, while maintaining continuous power generation capability through renewable energy input.
3Power
If conventional power systems are used, then power can be generated, but the systems are complex and require external infrastructure
Solution Approach 1:
The patent merges multiple functions into a single integrated system: power generation, power storage, power management, and feedback control are combined in one device. This consolidation simplifies the overall system architecture by eliminating the need for separate external infrastructure components while maintaining full power generation and storage capability through unified design.
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
These devices produce continuous electrical and mechanical power efficiently, economically, and safely, without harmful by-products, and are restricted for peaceful uses only, avoiding military applications.
Implementation Method 1
a first battery (10; 110) having a first power storage capacity and configured to store first electrical energy
Implementation Method 2
a second capacitor (20; 120) having a second power storage capacity and configured to store second electrical energy
Implementation Method 3
a second transformer (30; 130) having a second transformation ratio and configured to transform the second electrical energy
Implementation Method 4
a second motor (40; 140) configured to generate second mechanical energy from the second electrical energy
Data Source
AI summary
The present invention relates to infinite auto power generation device No: 1 to 19 that can be used together in products to generate, store, amplify mechanic, DC, AC power without using external power, made with:(rechargeable) batteries or capacitors or electrical transformers with same voltage but different powers connected in parallel and/or in series,or insulated capacitor with 2 different electrodes separated by an insulator, (with holes)or magnet(s) & diodes with coils/transformers kept in a HV insulator,or transformers and electric motors with insulated magnetic alloy wire coils,or at least 1 circular magnet on an axis with magnet(s) with rod, U or other form,or at least 2 torsaded insulated wires separated by a HV insulator, kept insulated.or by using diodes, resistors, capacitors transistors between 2 batteriesor by using 2 inverted diodes on parallel kept on HV insulator


