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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 108 Guests are viewing this topic.

Hoppy

Quote from: T-1000 on May 24, 2013, 04:26:17 AM
It is not conventional model as you never do coil shorting in any way. Thanks Сергей for the link to somone's experiment on this so now you guys can see real scope shot:

Please give your interpretation of this waveform.

T-1000

Quote from: Hoppy on May 24, 2013, 04:41:20 AM
Please give your interpretation of this waveform.
Well, it was already described in http://www.overunity.com/12736/kapanadze-cousin-dally-free-energy/dlattach/attach/124000/image//
Just voltage won't be pure sine wave after this.

Hoppy

Quote from: T-1000 on May 24, 2013, 04:46:43 AM
Well, it was already described in http://www.overunity.com/12736/kapanadze-cousin-dally-free-energy/dlattach/attach/124000/image//
Just voltage won't be pure sine wave after this.

Do you think that the energy level in the 'out of resonance' segment of the waveform captured in the storage cap as a DC voltage level exceeds the energy level of that same segment of the waveform had it not been shorted?

Как вы думаете, что уровень энергии в 'из резонанса "сегмент сигнала захваченных в колпачок для хранения как уровень напряжения постоянного тока превышают уровень энергии в том же сегменте сигнала, если бы не замкнут?

Ar manote, kad energijos lygis "iš rezonanso" segmento signalo fiksuojami saugojimo dangtelis kaip nuolatinės įtampos lygis viršija energijos lygį tame pačiame segmente signalo nebūtų buvę trumpuoju?

verpies

Quote from: MenofFather on May 24, 2013, 04:19:03 AM
Ничего в основном не понятно. От чего происходит такой выстрел? От подсоединения конденсатора когда по синусу уские импульсы бъёт или от чего?
That's a manifestation of the Lenz law with repelling eddy currents in the metal plate, induced by the high dΦ/dt of the coil.

TinselKoala

Quote from: NickZ on May 23, 2013, 11:53:31 PM
  Ok, I think that MenofFather will understand why I'm posting the video below, which is a UFO politics idea, but is replicated by Woopyjump. Using a single IRF460 instead of 4 to 6 of those Fets as is shown by UFO previously in a different video. Maybe Verpies will even like the scope shots, and how they are altered by the use of the two trim pots, one for duty cycle, and the second for frequency adjustments. Similar to what Akula may be doing.
  Video by Woppy:
http://www.youtube.com/watch?v=pyOlJERlYK8

  I also wanted to post these first two pictures, so that you can see the similarities of my 65watt Cfl pulse circuit, and the Akula pulse circuit. Although mine is not adjustable with two pots as his is, and uses an e-core transformer instead of the single wind iron core toroid, but it could be made adjustable like his, if needed,  also.
Third pic:  Also notice that the yoke circuit with the induction heater (and wrench heating), is not the same yoke as is used later on, but look at how the connections of the IN4148 diodes on the fets (on the heat-sinks) are facing each other. And how the power lines feeding the driver circuit is most likely 220v, to the brown ceramic caps on his pulse circuit which drop that voltage to the right values, then the driver feeds the yoke at the center tap point, the two other ends or the red wires come back to the two fets mounted on the heat sinks.
What is going on there??? 
  Anyways, Woppy's video may help to understand what may be happening.

The diodes facing each other from Gate to Source on the mosfets are most probably not 1n4148, but rather are 12 or 15 volt Zeners. This is a common thing to do when using mosfets, to protect the gate from overvoltage spikes. It's sort of a gate voltage regulator. I can't think of any reason that one would use a small signal switching diode here, but it makes good sense to use Zeners.
The red wires from the yoke appear to go to the mosfet drains (middle pins) and the blue wires from the driver go to the sources (rightmost pin). The other diodes and cap on the mosfets: one is probably a Schottky diode to supplement the mosfet's body diode, between source and drain, to keep the mosfet cool.
The cap, other diode and resistor together I'm not so sure about.