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Thane Heins Delayed Lenz

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  • #16
    Magnet core capacitance.

    Bifilar capacitance.

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    Synchro's discovery was that a thin wire 32 guage bifilar coil, series wired in Tesla Hi Voltage, or "Joule Thief" fashion, generated a high coil capacitance when a diametric magnet was placed inside the air core. This charge developed spontainiously while the magnets were stationary. This effect the basis for the Cook battery. The magnet core bifilar output coil capacitance is much greater then the parasitc capacitance that accumulates naturally in a high inductance coil, and the Lenz delay propulsion effect much greater.

    Synchro noted that the output coil magents were attracted to the rotor while standing still, but neutralized when producing Lenz induced poles while spinning. Synchro maintains that he was able to charge the run battery of his Bedini spinner by looping just one magnet core high capacitance 32 guage bifilar Lenz delay propulsion coil back to source. The coil ends were in series with a super capacitor and fast switching diode. Shorting this kind of high capacitance magnet core coil out would most likely create an even higher prime mover spin rate and reduced input.

    The advantages to increasing thin wire output coil capacitance with diametric tube magnet cores are twofold: One, coil capacitance can be raised higher then with greater lengths of wire alone! and two, voltage can be kept to a lower and more managable range with less wraps and higher Lenz Dalay Propusion effect.

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    Last edited by Allen Burgess : Today at 02:30 AM.

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    • #17
      Originally posted by minoly View Post
      As I think on it, I really do not like cap dumps. Is Thane using that second winding on the outside with a thicker wire to convert the energy to a more usable current. has anyone tried this yet?
      I'll have to hack up the kit if I'm to fit a fat coil in there...
      excellent and astute observations everyone

      Patrick
      Hi Patrick,
      Thane also mentioned using the high impedance coil and the low impedeance high current coil on the same core. Try winding a thicker wire on a similar coil form and extend the core through both coils. The resulting coil will be longer but the same diameter. The low impedance coil will cause drag but will be counteracted by the acceleration of the high impedance coil with a net result of no increased drag while drawing usable current.

      =|/////|=|////|= <= single core , 2 coils

      high imp. Low imp

      He also mentioned connecting the high impedance coil to a stepdown transformer to get usable current from the stepdown transformer while still benefiting from the delayed lenz acceleration of the high impedence coil.

      Alex

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