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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 125 Guests are viewing this topic.

zcsaba77

Quote from: magpwr on July 16, 2014, 04:20:17 AM
Hi zcsaba77,
It is frequency and duty cycle adjustable.
I used 2n2f but you can use any value.

Hi MagPWR

its possible build somelike capacitors complex use like adjustable capacitor, but not use adjustable capacitor for induction coil? (I hope you mean how i want).
And I watching these yoke experienting from varios place, the trying find 'perfect' resonace, but for me explain T-1000 resonace in one coil will not produce OU, must be 2 (or more) coils in one (air) core, one for HF sinusoid and 2nd for the (maybe HV) sort high peaks exactly triggering on sinusod peaks, im right? but still not clear how will voltage run away without SG? (If I good know SG is important part for amplyfing effect, this allow and limiting the current (or voltage) raise in once). Maybe I bad thinking, but I cant imagine without, correct me if I wrong!

regards zcsaba77

Dave45

Hey Magpwr
I cant seem to find the data sheet of your transistor in the sch. you posted, got any info.

I like the setup using two chokes without the center tap, I'll give it a shot.

Jeg

Quote from: magpwr on July 17, 2014, 05:32:27 AM
hi everyone,

I have attached my version of mazilli circuit


Very nice setup magpwr! Thanks a lot. In this specific arrangement how much current does it consume? I mean is it strong enough to drive a secondary for Tesla or Smith experiments? I am ready to order some staff to build Geofusion's circuit for this purpose, but I will give a shot to your design also, as I have in hand two powerful IGBT.

magpwr

Quote from: zcsaba77 on July 17, 2014, 07:44:26 AM
Hi MagPWR

its possible build somelike capacitors complex use like adjustable capacitor, but not use adjustable capacitor for induction coil? (I hope you mean how i want).
And I watching these yoke experienting from varios place, the trying find 'perfect' resonace, but for me explain T-1000 resonace in one coil will not produce OU, must be 2 (or more) coils in one (air) core, one for HF sinusoid and 2nd for the (maybe HV) sort high peaks exactly triggering on sinusod peaks, im right? but still not clear how will voltage run away without SG? (If I good know SG is important part for amplyfing effect, this allow and limiting the current (or voltage) raise in once). Maybe I bad thinking, but I cant imagine without, correct me if I wrong!

regards zcsaba77

hi zcsaba77,

It would easy to build "variable capacitor which  can handle very very low Amps" as there is many variation as found for Crystal radio as an example.

But there is no such thing as variable capacitor which can handle high Amps.It would be more simple to add or remove coil winding to achieve required inductance and combine with a suitable capacitor for the job
eg:induction heater capacitor or etc.

To be honest i have limited knowledge with experiments using spark gap.
The only experiment i have done using spark gap which is worth mentioning is my "HV to current converter 2.0" .It's where shorting output cause no increase in input current drawn as shown in video with measurement.
http://www.youtube.com/watch?v=VQb6oyRXMrY

I would highly recommend building a Mazilli circuit which is L/C dependent.I am beginning to think this Mazilli circuit do behave like auto PLL tuned oscillator.

Imagine this if a metal rod is being inserted into a copper work coil the inductance of the coil would change and since Mazilli circuit oscillator simply runs on L/C.
The mazilli circuit will always automatically run in a optimal frequency which will change accordingly if metal rod is inserted into coil or not.

The components selection for Mazilli circuit is purely dependent on the quality of component used.The more expensive\fast response high amps component you put in ,the more robust it becomes. :D :D :D

I would highly recommend using fast response IGBT's as those found in induction cooker.
Mazilli cicuit would then need 20volt....24volts power supply.
You will need to find that out.




Void

Quote from: itsu on July 17, 2014, 07:21:55 AM
Concerning the Leader Genie replication i did, i made some modifications to the used caps.
I tried to lower the ESR of the tank circuit caps by using multiple paralleled lower value caps instead of a single one.
 
So instead of a single (or 2) 800nF cap i used 8 x 104nF caps.
The frequency was 40KHz, but after some time, even these 8 caps also got to 50°C.

Perhaps my "clamping" method of combining these caps is not full proof.

Video here:  https://www.youtube.com/watch?v=FPeWPRVbO0U&feature=youtu.be

I also changed the single OUTPUT cap (104nF) to 13 x 10nF caps (this 133nF was the optimum value for having maximum voltage / brightness on the output bulb).
But also these 13 caps got > 50° C quickly.
I made some measurements there, but they where flawed due to some RF feedback to my bench PS and measurements errors on my part, so are not on the video.
I have to redo that part using batteries.

Regards Itsu

Hi Itsu. Great job on the video demonstrations. Maybe I am just looking at this wrong in some way, but something
doesn't seem to add up in your tank circuit for me. If you had 130nF at 40kHZ, then the total inductance
of your 10 wind tank coil should be around 120uH, if I am not miscalculating. That seems to be a high inductance
to me for that ten turn coil. Do you have an inductance meter that you can measure the inductance of your coil with?
I would be more inclined to think it should be in the vicinity of 12uH? If it is around 12uH, then your total tank capacitance
should be around 1.3uF, not 130nF. Are your capacitors marked 103J (10nF) or 104J (100nF)? Maybe I am making
a calculation estimation error here, but the numbers you mentioned in your video are not adding up for me compared
to your measured results. I would be inclined to guess the tank values are more like 12uH and 1.3uF, based on the measured results.
Am I overlooking or miscalculating something here?  :o
If it is 120uH and 130nF you were using, then I estimate a tank current of around 1.871 Amps RMS (doesn't explain the caps getting hot).
However, if it is actually 12uH and 1.3uF, then I estimate a tank current of around 18.71 Amps RMS (explains why the capacitors are getting hot even when paralleled)
All the best...
:)