🔬 High PromisePartially Sourced★★★★Advanced

Charles Flynn Parallel Path Magnetic Technology

by Charles Flynn · USA

Claimed COP
>1.0
Replications
Limited
Patents
1
Community Score
0
⚠️

Safety & Liability Disclaimer

Replicating alternative electromagnetism or mechanical resonance systems carries extreme physical hazards including lethal voltage shock, explosive gas ignition, mechanical shrapnel, and chemical toxicity. All contents, schematics, and guidelines on this page are provided strictly for educational and historical research.

By viewing or constructing any design herein, you agree to assume 100% of all risks and to indemnify and hold harmless the site owners, authors, and contributors. Read our complete, legally binding Safety & Liability Disclaimer.

Overview

Uses permanent magnets with small electromagnetic 'flux steering' coils in parallel magnetic circuits. Tiny electrical pulses redirect large magnetic forces — achieving 'magnetic amplification' where a small input controls a much larger magnetic output. Both motionless (solid-state) and rotary motor variants exist.

⚖️ What Would Convince Us?

To validate the anomalies claimed for this device under mainstream scientific parameters, builders and inventors must document and present evidence satisfying the following criteria:

Criterion #1

RMS input/output electrical COP exceeding 1.0 under stable load

Criterion #2

Direct measurement of rotor drag force cancellation

Criterion #3

Calorimetry of permanent magnet demagnetization rates

NSCOIL ACOIL BFLUX PATH 1FLUX PATH 2Charles Flynn PPMTOVERUNITY DIAGRAMS // PARALLEL_PATH_MAGNETICS
⚡ Animated Schematic

Investigation & Credibility Metrics

Source Credibility
Primary Source

Direct inventor writings, patents, or lab notebooks available.

Technical Review
Demonstrated Conventional Effect

Effect matches accepted physics (e.g. basic inductance, ion wind).

Replication Tracker
Partial success

Sub-components work, but operational COP > 1 has not been replicated.

Measurement Protocol
Instrumented Auditing

Oscilloscopes and power analyzers used to record transient waveforms.

Commercial Activity
No Commercial Activity

This device is purely open-source or historical; no active sales.

Community Status

US patent with detailed design. Elegant concept — small energy controls large forces. Both solid-state and motor variants possible.

🔧 Build Guides

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Research & Engineering Notice

Flynn's patent US 5,455,474 contains detailed descriptions and schematics of flux-steering, but builders must design their own rotors and casings.

What We Do Not Have (Missing Specifications)

Magnetic stator assembly sizing, timing board programming parameters, and coil driver transistor circuit boards.

Compiled Reference Materials & Authors

US Patent 5,455,474, flux steering diagrams, and magnetic path equations.

📖 Patrick Kelly Guide: Technical Assessment

Chapter 1 REFERENCE
An elegant concept showing magnetic force amplification. Requires precise machining of the core paths.
— Patrick Kelly, Chapters 1 & 3
### Flux Steering Technology Charles Flynn's Parallel Path technology (US Patent 5,455,474) uses permanent magnets combined with steering electromagnet coils. A tiny electrical pulse to the control coils redirects the permanent magnet's flux through one of two parallel paths, generating mechanical force with minimal input energy. ### Circuit Elements * **Permanent Magnets**: Grade N52 neodymium magnets provide the primary magnetic flux. * **Control Coils**: Wound on thin core sections. A small current saturates the core path, routing the magnet's field into the alternative path. * **Laminated Core**: Made from grain-oriented silicon steel laminations to minimize eddy current losses.
Sourced from A Practical Guide to Free-Energy Devices · Personal Study Only

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🔧 Key Components

  • Strong permanent magnets
  • Small electromagnetic steering coils
  • Magnetic frame/core material
  • MOSFET switching circuit
  • Timing circuit

📄 Patents

⚠️ Patent Disclosure Disclaimer: A patent is evidence of technical disclosure, not validation of a device's functionality, efficiency, or operational overunity.

Categories

📖 Patrick Kelly Guide

The complete chapter reference text and schematic diagram are embedded directly in the main section of this page.

Author: Patrick KellyChapter 1
📖 Read Chapter Excerpt (PDF)