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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 142 Guests are viewing this topic.

starcruiser

Guys, I am thinking most of what you need can be obtained commercially from http://www.easternvoltageresearch.com/index.html  or build them yourselves. These are self resonant drivers and high current IGBT's, basically a driver stage for a Tesla coil. The trick is the primary and secondary configurations IMO. Why re-invent the wheel here, worry about the coils instead and the tuning of them.

Get a 400 Watt inverter for the Dc to AC conversion and signal source as Wattsup indicated in his post. Depending on the current draw a larger one might be required. A sinewave version would be better and more efficient but a modified Sinewave unit might work just fine.
Regards,

Carl

Shokac

Quote from: Zeitmaschine on November 01, 2012, 10:10:03 AM

Hence where is the energy coming from that melted the brass coin? ::)


From paralel LC resonance. (Or serial resonance)

forest

Quote from: Shokac on November 01, 2012, 02:23:01 PM
From paralel LC resonance. (Or serial resonance)

Yes and no. There is one trick required and someone could easily verify this (unfortunately not me because I have no signal generator or required power). But you indirectly posted that info I think.... Antenna is the key. How many times we see something truly extraordinary and simple and ignore because someone told us this is obvious impossible ?

forest

 Ok, that was  Zeitmaschine  who posted schematic.  Compare that to ordinary used tank circuit and tell me what is the difference and why it is crucial to test it ?
That idea is not novel , vide Tom Bearden page for schematic of usage for example

frankidel

Quote from: Zeitmaschine on November 01, 2012, 02:10:36 PM
Perhaps we should play dumb and start again at square one. :)

What is an LC circuit? Wikipedia says:

»An LC circuit, also called a resonant circuit, tank circuit, or tuned circuit, consists of an inductor, represented by the letter L, and a capacitor, represented by the letter C. When connected together, they can act as an electrical resonator, an electrical analogue of a tuning fork, storing energy oscillating at the circuit's resonant frequency.«

What can we do with an LC circuit? Wikipedia says:

»The resonance effect of the LC circuit has many important applications in signal processing and communications systems.

1. The most common application of tank circuits is tuning radio transmitters and receivers. For example, when we tune a radio to a particular station, the LC circuits are set at resonance for that particular carrier frequency.
2. A series resonant circuit provides voltage magnification.
3. A parallel resonant circuit provides current magnification.
4. A parallel resonant circuit can be used as load impedance in output circuits of RF amplifiers. Due to high impedance, the gain of amplifier is maximum at resonant frequency.
5. Both parallel and series resonant circuits are used in induction heating.«

This leads to the following considerations:

We take a look at the first example regarding the tuning of a radio. A transmitter sends out radio waves with a certain frequency, then a receiver is tuned in on exactly that frequency by means of a resonating LC circuit in order to receive only this single station. All other waves coming form other transmitters with different wavelengths are getting blocked.

But are they really getting blocked by the LC circuit? If an LC circuit in a radio blocks all frequencies which are not in resonance then consequently a radio without an LC circuit (maybe because the LC circuit in the radio is broken) should receive all frequencies of all stations at once because no frequency is blocked. But I can't remember having ever seen a broken radio that receives all stations in range simultaneously. Why is that so?

Is that so because the LC circuit does not block all non-resonant frequencies but it rather amplifies the resonant frequency? If so then where is the energy coming from which is needed to amplify the resonant frequency? Is the energy coming from a battery or power supply (as generally accepted)? If so then how can a Crystal Radio (notice the grounding) without any power source receive a resonant radio station?

Is that so because the energy which amplifies the resonant frequency is coming rather from the aether than a battery? And here the aether means literally the aether, not the remote radio transmitter. The transmitter (the radio station) provides only the resonant frequency but not the power.

Now, could it be that this fundamental principle works independently of the frequency range? Hence could it further be that Kapanadze's inverter is the »radio station« (directly connected not via antenna) that provides the resonant frequency (of 50Hz) but it does not provide the power? The power is actually provided by the aether by means of a resonant LC circuit the same way like in a Cristal Radio? ::)

Thus any Cristal Radio would be an »Over Unity« device per se (just as a side note).

Therefore could someone please do quick experiments on that basis so I can save my own equipment ... 8)
Yes, indeed. :(
There is very little doubt, however, that the electret is much more effective in generating power indirectly by using it's field to move and trap existing electro-static charges. A prime example of this are reports from amateur radio operaters of the static charges collected by coaxial cables.
Another source of atmospheric charge is condensing water vaper. As water evaporates, it gathers electrons the molecules in the liquid state are sharing, and leaves behind a positive charge. When it condenses in the atmosphere, it gives back the electrons creating a negative charge. This is why the cable generator's output increases in stormy weather. Ham radio operators will certainly confirm that a coaxial cable strung out as an antenna will pick up static charge, especially in wet, stormy weather.
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