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Overunity Machines Forum



A truly overunity Transformer / Meg

Started by LoganBaker, March 17, 2008, 06:32:56 PM

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Kator01

Hello all,

please find attached the pic of the powermeter this inventor used for measuring input-power.

These types of meter do not show correct values. This is a type I used in my above describe experiment.

So it is necesssary to do it right. DC - Input is easy but no ac.

search here for anarticle of Proj. Kanarev on "The law of the elecric circuit" :

http://guns.connect.fi/innoplaza/energy/story/Kanarev/#articles

Best Regards

Kator





Getca

Quote from: altium on October 28, 2008, 04:33:39 PM
In Waleri Ivanov`s home, I was seen black working box with sinusoidal input - from big transformer 220V/30V 50Hz (such as video) and sinusoidal output. I saw unfinished items (see flash video and pictures from inwertor`s site) next to him.
All powers was CORRECTLY measured with oscilloscopes, analog multimeters, etc. I do like precision measurement.

This device in the picture is AC power meter and it's sold by Conrad Electronics as a power meter of sinus shaped voltage and current. Maybe there is something wrong if the input current wave has a different form. But Altium says all is OK and the measurement is correct.

Wish You success
Rossen

Nali2001

Hi all, well I will just give ya'll my view on how his 'recent devices' are being powered.
Yes he for some reason used half wave ac.
But I very much believe that these days with the systems 'in the box' he is using a different approach.

I very much believe that the is taking regular ac, which is in the box rectified to a steady dc state. This dc is pulsed in short duty cycle pulses to the input coil. But the important thing is that on the input coil is also a (tuned) capacitor. What this does is make the signal on the input a resonant sinus.

You see, you only need to input power to the input coil for as long as it takes to flip the magnet over. Any longer and it's wasted. If it takes 10ms to fully flip over the field of the magnet, then it is wasteful to input for example 20ms. And you only have ''pulse length control' with custom adjustable pulse width modulation, not with half wave ac...
And the advantage the cap gives is if you take a coil and a cap, and you very briefly pulse it with a dc pulse, the power will oscillate for a while in a ac sinus fashion in the coil and cap. So it is a way of getting clear ac from dc pulses.

This is in my opinion what he describes in picture Bm002.gif (see below)
And what the latest video shows is just that... short duty cycle dc pulses on a cap: See picture Bm001.jpg (also below)
And keep in mind that there probably is much more stuff in the box then the meg itself. I mean what are all these components? See image Bm003.jpg.

And there is this thing as well:
It goes like this: You switch the switch(input) coil and that core section (near)saturates and the magnet field goes to the output side. There, there is a cap and a load, the (tuned) cap is damn necessary it helps the output 10 fold and makes the output a pure ac since. Welnow you power off the input coil and the field of the magnet return to the side of the switching coil. BUT this returning of the field is due to the airgap a 'free field change' that seemingly is not used. And should be near as powerful as the first magnet switch action. Well what I now suspect is that, the switch coil is like said before fed with short input dc pulses and has a cap to make the resulting wave ac, which helps the core in various ways. BUT the returning field of the magnet is in combination with the cap there is systems that due to the return of the field induces power in the coil but on that coil is a cap and so with the right cap a resonance is set up. In such a way is the returning field translated in helping the switching along greatly. 


Nali2001