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Overunity Machines Forum



Kapanadze Cousin - DALLY FREE ENERGY

Started by 27Bubba, September 18, 2012, 02:17:22 PM

Previous topic - Next topic

0 Members and 38 Guests are viewing this topic.

Grumage

Quote from: itsu on January 05, 2014, 04:11:04 PM
Grum,

ok, that looks better, like in the video, one common ground.

My guess is that this 3 mtr wire is capacitively coupled to ground and therefor forming an parallel LCR with the filament induction of your bulb
Depending on how tight you couple the black wire to the HV it will vary the frequency and when it hit resonance of this LCR it fires up the bulb.

Something like shown in this drawing.


Who's next?


Regards Itsu

Dear itsu.

Your theory sounds good to me !!

Please see attached to verify. There was no connection to the other end  than the, dare I say the word ?? Aether !!  :)  :)  :)

Cheers Grum.

itsu

Quote from: Grumage on January 05, 2014, 04:35:12 PM
There was no connection to the other end

Right, i know, but as it still is capacitively coupled to ground, i depicted it as being a capacitor connected to ground.

If you have a high voltage probe you might just look at it on the scope.
You can use your AC HV source and your microwave oven diode to create another HV DC source. Right? (or did you also blow this diode?).

Regards itsu

Zeitmaschine

Interesting: After 1500x Kapanadze pages we are back to a light bulb connected to a spark gap and ground. ::)

Dave45

Quote from: itsu on January 05, 2014, 11:27:57 AM
Thanks Nick,

I too like to hear again from GF one of these days  :)

i am done with these 47N60C3 MOSFETs for the time being.

Back to the IRFP260N's, but as shown earlier, they do not show any abnormal (cold) energy allthough the circuit seems to work in 2 modes like i mentioned before.

"normal mode" when using a normal sized choke 230uH with 600nF cap. @9.7KHz
"special mode" when using a bigger choke 5mH with same cap. @3KHz


See the pictures of the scope screen shots in both modes (yellow/blue = gate signals, purple/green = drain voltages)

The "special mode" is much more chaotic and makes the MOSFET's heat up more (more current draw).


Good luck,  regards Itsu
Thanks for the scope shots, is channel 4 the output, it looks like its putting out pulsed dc.
If it is it should be easy to smooth out, just thinking out loud, Im playing with the same driver but using a large flyback core.

itsu

Quote from: Dave45 on January 06, 2014, 05:48:12 AM
Thanks for the scope shots, is channel 4 the output, it looks like its putting out pulsed dc.
If it is it should be easy to smooth out, just thinking out loud, Im playing with the same driver but using a large flyback core.

Hi Dave,

CH4 (green) (and CH3 which is overlaid by CH4) is the Drain signal of one of the MOSFET's. CH3 (purple) is the other MOSFET's drain signal.
So we have CH1/CH2 gate signals, CH3/CH4 drain signals.
The output of the yokes secondary (to the bulb) is sign wave (in normal mode), not shown.

Regards Itsu