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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 139 Guests are viewing this topic.

T-1000

If you look for common patterns in all Kapanadze style devices, one of the patterns are generated spike banging against reversal moment on peak of signal top. Also all of them are creating standing waves inside of device and combining voltage from the spike with current from magnetization.
If anyone asks what electricity contains, the answer always is same - the electrical field and magnetic field makes current. And for creating electricity you always need to combine electrical field with magnetic field... All these devices are just doing it right conditions for that.

P.S> Most may disagree with this my personal opinion just the truth is out there... ;)

magpwr

Quote from: T-1000 on September 17, 2015, 08:55:49 AM
If you look for common patterns in all Kapanadze style devices, one of the patterns are generated spike banging against reversal moment on peak of signal top. Also all of them are creating standing waves inside of device and combining voltage from the spike with current from magnetization.
If anyone asks what electricity contains, the answer always is same - the electrical field and magnetic field makes current. And for creating electricity you always need to combine electrical field with magnetic field... All these devices are just doing it right conditions for that.

P.S> Most may disagree with this my personal opinion just the truth is out there... ;)

hi T-1000,

There is also alternative way of creating electricity without the use  of magnetic field.

This is achieved by AV plug to demo  longitudinal wave which was shown in the old Lithuania experiment with av plug to cadecus coil.Maybe you did not realized it back then.

In my youtube video i was trying to show how i increase the electrical field generated from the disposable circuit via AV diode configuration(single wire) without the involvement of magnetic field at all.

Just watch the  test pen light base on electrical field test which i did not make it obvious in my video.

1 Wire Spark Gap powered by disposable camera circuit
http://www.youtube.com/watch?v=zlafYiuertk





T-1000

Quote from: magpwr on September 17, 2015, 09:39:37 AM
hi T-1000,

There is also alternative way of creating electricity without the use  of magnetic field.

This is achieved by AV plug to demo  longitudinal wave which was shown in the old Lithuania experiment with av plug to cadecus coil.Maybe you did not realized it back then.

The AV plug was used there exactly as it was ment with splitting charges from the traveling wave over one wire and charging up capacitor.
On my opinion - with Kapanadze style devices there are no physical diodes for splitting up charge but there are standing waves creating nodes and antinodes where the difference of charge affect current on the wire which is getting amplified voltage and that sums up as output power in the result.

P.S> Just tried to avoid complex terms as not everyone is fluent on RF and physics terms and it is complicated matter for everyone to stay on same page of understanding.

NickZ

   So, here are a couple of images of the scope readings of my Kacher circuit, with less peaks, less amplitude.
They will tell more closely what is happening in my Kacher's output and frequency, before I remove some turns from my Kacher's secondary coil.
    And, I'll also post the new scope shots once I remove some turns, to compare if I'm going the right way with this, or not.

gyulasun

Hi Nick,

I edited your scope shot on the waveform to show you how you can go about next time to estimate the time duration of a single full cycle of a waveform, in this case a sine wave. I assumed "as the best hit" you set the time base to 0.5 usec/DIV (from your photo it can hardly be seen but it must have been set to 0.5 usec...).

So you count the number of useconds a full cycle occupies (see it in red), this came out for me as 1.38 us and you have to take the reciprocal value of this to get the frequency (f=1/T).  So 1/(1.38*10-6) = 724637.6 Hz i.e.  725 kHz.  Use the built-in Windows Calculator in scientific mode if you do not have a scientific pocket calculator at hand.

This value is a bit different from the previous 759 kHz which came from the previous measurement but considering the temperature and other changes in the free running LC oscillator circuit at such frequency range, the difference is explainable (even if you approach your hand to the coil you detune it slightly).  (free running oscillator= the frequency of the LC circuit is not stabilized)

Notice that it is better to position the center line of a waveform onto the main horizontal center line of the scope display to ease the estimation of the single cycle time (your waveform is shifted up a little). You can easily do this if you first position the flat line (with no input) onto the center line by the Vertical up or down Position knob (of course here I assume the waveform has no DC component in it but AC, if it has then just use the Vertical Position knob to arrange the waveform around the main horizontal center line.)

Gyula