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Overunity Machines Forum



Kapanadze Cousin - DALLY FREE ENERGY

Started by 27Bubba, September 18, 2012, 02:17:22 PM

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0 Members and 287 Guests are viewing this topic.

NickZ

   Like I said, this is not the end of this story, only the beginning.
   Sorry, I couldn't find the hidden RCS's, must be under the chair.

dllabarre


NickZ

  All:
  Remember Tungus?  Well, here's a new circuit, April 27th.
  Showing a circuit just like I pictured it...   vodka, anyone?

  http://www.youtube.com/watch?v=05Mb1oUHdfw


Hoppy

Quote from: NickZ on April 30, 2013, 12:47:35 PM
  All:
  Remember Tungus?  Well, here's a new circuit, April 27th.
  Showing a circuit just like I pictured it...   vodka, anyone?

  http://www.youtube.com/watch?v=05Mb1oUHdfw

This does not look like a self-runner as he had a bench PSU supplying power and one lead of the lamp disappeared down under the bench!. Do you know what he was demonstrating?

verpies

Quote from: TinselKoala on April 27, 2013, 09:49:54 AM
I think you can prove this to yourself by using the offset function on a FG. Set up a transformer with the secondary feeding a diode, just as in a flyback. Stimulate the primary with a true sine wave, AC, symmetrical about the zero baseline. Then use the offset function to raise the signal up until it's all above the baseline, or lower it until it's all below the baseline. What happens to the output voltage of the secondary? As long as the p-p value of the driving signal is the same, the DC offset shouldn't matter to the secondary output. Up to some limit due to core saturation, of course. Now use a square pulse signal. The amplitude can be less to produce the same output voltage, because of the risetime advantage. If you are anywhere near resonance the output of the secondary will still be a sine wave (before the diode), even with the square stimulus. Now use the offset to move the input pulse up and down wrt its baseline. Does the output voltage change? Again, as long as the p-p value is the same, a little DC offset shouldn't matter to the output from the secondary.
Or so I believe, and with some empirical support.

OK, here are the results from different waveforms, DC offsets and methods of supplying the primary of a rectified Flyback Transformer (10:1 step-up turn ratio), in the configuration often used in Kapanadze's devices as well as Guest/Chubinadze's, etc...

It is obvious that a switched voltage source supplying the primary, produces the highest output voltage at the final capacitor and spark-gap.