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Overunity Machines Forum



Selfrunning Free Energy devices up to 5 KW from Tariel Kapanadze

Started by Pirate88179, June 27, 2009, 04:41:28 AM

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0 Members and 224 Guests are viewing this topic.

Hoppy

Quote from: Ansis on October 22, 2013, 07:45:44 AM
OK, here it is:
https://dl.dropboxusercontent.com/u/15799961/Kapanadze%20zimejums%202.jpg

Thanks for posting this. It looks strange enough to be the real McCoy, a bit like an old treasure map  ;D Can you translate the text for us?

I'm wondering if the ten circular ferrites / magnets are somehow resonating to low frequency earth currents and inducing voltage into the ten coils??

Ansis

To all members!
I think the "principle" is Lightning to the main lines....
It means- long lines (today many 230V lines are not "open", but cables) in outside the town... in the village regions are very heavy "bombarded" with lightning in the period of thunder. It`s about April- August. In this period Lightning is very regular and in country home of ours there are very many damage after this happens...SatTV, IR Sensors, LED lamps, "Daylight" lamps end so on. Somehow this can do "good job" for us and Kapanadze do that!

Ansis

To, Hoppy!
It`s partly Russian/ Georgian :-)
I can do that in simple manner...
But I have no "skills" in PhotoShop :-)

captainkt

@Ansis, thanks looks interesting, especially the small loop around the outer coil at the top of picture. I noticed this on Kapanadze coils, but dismissed as just holding cables during construction. Any idea what this does special?
Regards
Keith     PS. I bought 20 ferrite rings from Russia 3 years ago so will find them out to use.

baroutologos

Quote from: verpies on October 22, 2013, 05:28:57 AM
That's true when the circuit is loaded.
In an ideal circuit -  yes.  In practical circuits, any resistance in the primary or a load across secondary will limit those values.


hello Verpies,

I do not exactly recall things that way.. I remember an idling royer will top voltage in the LC circuit (we are not talking about any secondaries connected) at x4 p-p from source voltage and wont go any higher.. having a minimum input in the same time to overcome losses. Typical royer circuits will consume at that zero load equilibrium 10-100mAps at typical 12v input. (depending resistance and oscillating current magnitude)

When an load is connected across a secondary this x4 p-p will fall a bit and cause much greater current to be inputed at the primary side (depending the voltage drop)
this is my understanding of the simple two transistor royer.

***
Once i had made an assemble of a midlle taped LC circuit with two transistors operated by an SG3524 IC. Then it is obviously seen that if the frequency is not matched of the natural LC, then every kind of distortion is seen and heavy losses also.
The plain Royer (every transistor base is connected to the opposite side of the LC circuit)  is a self tuned one, that means it changes frequency depending the load that increases current and causes some to heavy saturation in the core. A royer's lower frequency would be at idling. So i see as unlikely event the switching frequency of the transistors in that topology to be mismatched in relation to LC. It has to do with saturation in my view and experience or bad transistor switching.

Anyone has any royer handy?

ps: A parallel LC circuit, at resonance has infinite impedance... right? Maybe this means for a given oscillating voltage input, it will be developed a counter voltage and not go at infinite voltage values as suggested..right?