Quantum Kinetic Well Transistor Circuit for Zero-Point Energy Harvesting

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Solution Overview

Problem

Current energy harvesting technologies are limited in their ability to efficiently harness and convert the pervasive Zero-Point Energy flux, which is inherent in the quantum vacuum, into usable energy forms.

Innovation Solution

A closed-loop electrical system utilizing transistors and a Tri-Coil-Stargate-Transformer configuration, with specific arrangements of capacitors, coils, and diodes, to amplify and channel electron pressures and oscillations, effectively converting Zero-Point Energy into electrical energy through dielectric cavitation and resonance.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Use of energy by moving object

If conventional energy harvesting methods are used, then existing energy conversion processes can be maintained, but the ability to efficiently harness Zero-Point Energy flux is limited

Engineering Contradiction:
Improveenergy conversion efficiencyVSAvoidsystem complexity
Core Design Contradiction:
Use of energy by moving objectVSDevice complexity

Solution Approach 1:

The patent introduces a dielectric medium as an intermediary between the quantum vacuum and the electrical circuit. This dielectric medium facilitates the conversion of Zero-Point Energy flux into electrical energy by allowing quantum flux wave motions to induce electron oscillations, thereby resolving the contradiction between energy conversion efficiency and system complexity

Inventive Principle:
Principle #24Intermediary (Mediator)

Solution Approach 2:

The patent replaces conventional mechanical or chemical energy conversion mechanisms with a quantum field-based approach. By utilizing the quantum vacuum's inherent Zero-Point Energy flux and its interaction with dielectric materials, the system achieves energy conversion without traditional mechanical moving parts or chemical reactions

Inventive Principle:
Principle #28Mechanics substitution (Replace mechanical system)

2Power

If transistor amplification is applied to electron pressures, then electron oscillations can be amplified, but circuit components have voltage and current limits that must be followed

Engineering Contradiction:
Improveelectron pressure amplificationVSAvoidcomponent rating compliance
Core Design Contradiction:
PowerVSReliability

Solution Approach 1:

The patent employs periodic switching of transistors in a closed-loop circuit to amplify electron oscillations. By operating transistors in periodic on-off cycles synchronized with the electron oscillations, the system amplifies electron pressures while distributing stress over time, preventing instantaneous exceedance of voltage and current ratings

Inventive Principle:
Principle #19Periodic action

Solution Approach 2:

The closed-loop circuit configuration provides feedback control where the output electron oscillations are continuously monitored and fed back to adjust the transistor switching. This feedback mechanism ensures that amplification remains within safe operating limits of circuit components while maximizing electron pressure amplification

Inventive Principle:
Principle #23Feedback

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

This configuration enables the efficient harvesting and conversion of Zero-Point Energy into electrical energy, potentially leading to innovative applications such as self-sustaining power generation, quantum computing, and advanced energy management systems.

Implementation Method 1

A semiconductor or a series of semiconductors, typically a NPN or PNP, an SCR, H-Bridge, JFET or MOSFET type transistors are arranged in series or parallel to a capacitive anode from the transistor's emitter within a 'Closed-Loop' electrical load. Within the transistor a tiny chip of crystalline material, usually silicon, is triggered, amplifies or switches electric current during operations.

Methodology Applied
Scientific EffectTransistor amplification:

Implementation Method 2

A capacitor is connected between the emitter of the transistor and the ground, and having an anode and a cathode for receiving a capacitive dielectric medium therebetween, such that, electrons flow through dielectric medium to the transistor from a ground state in order to break down the dielectric material.

Methodology Applied
Scientific EffectDielectric breakdown:

Implementation Method 3

A closed-loop electrical system utilizing transistors and a Tri-Coil-Stargate-Transformer configuration, with specific arrangements of capacitors, coils, and diodes, to amplify and channel electron pressures and oscillations, effectively converting Zero-Point Energy into electrical energy through dielectric cavitation and resonance.

Methodology Applied
Scientific EffectResonance: Resonance

Data Source

PatentUS11233421B2Quantum kinetic well
Publication Date: 2022.01.25 LEE MCKANE B
  • US11233421B2 patent drawing
  • US11233421B2 patent drawing
  • US11233421B2 patent drawing

AI summary

Provided herewith is a closed loop circuit including a transistor operable as a microscopic switch device to amplify electron pressures. The transistor has a collector connected to a positive voltage source. An optocoupler is provided, connected in parallel to the positive voltage source, and triggered in response to a triggering unipolar pulse from a network. An output of the optocoupler is connected to a base of the transistor. A capacitor is provided, connected between the emitter of the transistor and a ground, and having an anode and a cathode for receiving a capacitive dielectric medium therebetween, such that, electrons flow through dielectric medium to the transistor from a ground state in order to break down the dielectric material. In the preferred embodiment, the dielectric material includes water which is dissociated into hydrogen and oxygen.