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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 126 Guests are viewing this topic.

AlienGrey

Hi Re the catcher scenario, been doing some more experiments with it slung the 2SC2500 and protection diodes out and ran red coil inside copper 6 turn coil as per pic further back and the peak resonance is 5mhz
put it back in the Tesla coil sleave with its TC secondary and it drops to 2.8 Mhz both tests don with scope and SG drive.
Just how much capacitance and frequency response does a 2SC5200 have to pull it all down to 167khz ?

Nick z Adrian's  Katcher (I presume it's him.  https://www.youtube.com/watch?v=bNzFwHqI7fc

NickZ

  AG:   
   Not sure of just which circuit you are using. But, my Kacher runs between 900KHz, to 1.2MHz, and can be tuned up or down in frequency by adding or removing turns on the Kacher secondary, and/or using ferrite in the core.
   I would like to build the controlable Stalker Kacher circuit shown in the diagram below.
I have replicated the simple Kacher design by Ruslan and is what I still have on hand. That was what was first used by Ruslan, then Stalker, and then Adrian, for their earlier versions of their self runners. I doubt that the controlable Kacher is more powerful, even though it is frequency and duty cycle controllable. It can also be run from the 28t coil, and rectified, then sent to the Kacher input.

AlienGrey

Quote from: NickZ on March 04, 2019, 09:27:18 PM
  AG:   
   Not sure of just which circuit you are using. But, my Kacher runs between 900KHz, to 1.2MHz, and can be tuned up or down in frequency by adding or removing turns on the Kacher secondary, and/or using ferrite in the core.
   I would like to build the controlable Stalker Kacher circuit shown in the diagram below.
I have replicated the simple Kacher design by Ruslan and is what I still have on hand. That was what was first used by Ruslan, then Stalker, and then Adrian, for their earlier versions of their self-runners. I doubt that the controllable Kacher is more powerful, even though it is frequency and duty cycle controllable. It can also be run from the 28t coil, and rectified, then sent to the Kacher input. As it pumps the Katcher far more efficiently
The tests I have been doing are because I wanted to show how unstable the high voltage 'feedback' winding is when connected to the 2SC2500 transistor base as a self-energized oscillator, the 'earthy' end has to   go to earth via a none return diode and needs locking to a position in the push-pull cycle the high voltage must be + positively charged that's common knowledge amongst  the Lithuanian 'guys' as 'ac' EHT does nothing  the locking 'HF' oscillation appears to be the magnification factor and yet in some circuits is only 3 times and talks about harmonics too many unsolved secrets at the moment I do feel 'color' is the only one giving answers. But if we keep on winding him up he will just give up on us and that would be unfortunate. The only control circuit I know that works is the Sergey design.

NickZ

   AG:   I don't understand what it is that you are trying to show, or prove. But, if you think that color is the only one giving answers, then why don't you just ask him.
   I have explained what I have done and have shown in my videos. But, as I don't follow the Sergey design,  I can't understand what you mean about this feed back thing that you mention. I see no feed back path or circuit on the above diagram that you posted.
   I stick with the Stalker diagrams and designs, instead.

T-1000

NickZ,


The akula's controllable katcher with 100-150V on Tesla coil primary was used in latest Geo videos. The only critical point there is voltage divider on transistor base which is limiting max voltage to safe range.
So it doesn't go in smoke.


Obviously we need quite range of HV depending on earth/air conditions for ionisation. Without it there will be no effect.


And the positive high voltage need to be on grenade so circuits showing direct ground connection from it are killing voltage.


Cheers!