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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 218 Guests are viewing this topic.


magpwr

Quote from: xhacks on August 05, 2014, 01:25:51 AM
@magpwr Check this: http://goo.gl/pj25yb and this http://goo.gl/PghHwW

hi xhacks,

Thanks for showing me the link.
I think the original experiment was conducted in the 80s then late 90s JLN Lab.

The only kind of capacitor which can handle that kind of AMPS is  CELEM(Mica) or EUROFARAD(Non mica) shown in your  virtual demonstration which is also my concern.

At least we now know officially there is "ou" for those experiment especially the JLN Lab version where there is many measurement being done.Too bad they were sticking with sine-wave and using 1mH back then.

For me it would be easy to settle the inductor portion to achieve 100uH with the lowest possible lost imaginable with the use of "nanocrystalline toroid" which is the most expensive toroids i ever purchased around 1 year ago.

Just picture this using "1" turn loop test on  nanocrystalline toroid gave me around 44uH/turn.Since <5 turns is needed to easily achieve 100uH the resistive lost would be negligible.
Only should be concern on toroid size which was design to handle certain level of Amperage.
Winding should be bifilar eg:18awg on toroid.These nanocrystalline toroid can also handle high frequencies more than 200khz.


I find that cost of really good capacitors is really astronomical especially if you need to buy more than 1 $$$ capacitor.

It all depends on how much power you need in the end. :D

Once we achieved high power "ou" base on narrow pulse base on actual experiment conducted.Only then we can start to figure out the self loop portion at the later stage. :)

This would make Akula high power device obsolete by comparison since his device is much more complicated to setup/tune just to achieve the similar desired "effect". :D :D




NickZ

  Here is another previous Akula video:
https://www.youtube.com/watch?v=f1tJ2Vt0MYM
 
  As I can't understand much, I post this video with the hope that some of you will.
I think this was prior to his self running devices, but show some scope shots that may help to see what may be going on at that point.
  As we get further along with these tests, as well as some hands on experimenting, some of us may just pick up on how the self runners are being achieved, even if only by trial and error, or just by accident.

magpwr

hi xhacks,

This is my version 4.5 of the longitudinal experiment which produce exact same result as version 4 .But this is the most simplified version i can think of using lower component count. :D

2 x 100uH inductor connected in parallel  =50uH.

I will use new topic once i started on the experiment. :D

NickZ

   Guys:
   I've been working a bit on my Mazilli/yoke circuit,  along with my version of the Akula Air Core coils. This air core below, is a new coil. Using a 1 1/4 inch drain pipe as the new former, which the Exciter coil's pvc pipe (on the left side) fits right over.
   
   To the Mazilli crt I added the new UF series 18v, 5 watt zener diodes. Plus I also changed the two cross over diodes which are UF series diodes now. 
However, I'm still getting the Fet heating issue, to contend with.
   
  I also built a new Akula Air Coils set up, but I ran out of the white wire, and of the red coil wire, also. To be able to finish both the resonator coil (red center coil), as well as the white output coil (right coil). So, I'll need to get more wire ASAP.
   
   I connected up the induction crt part of Akula coils (resonator) to the red yoke output coils, to see what theywould do at that point, even without all the needed turns.
  Running just the Mazilli oscillator induction crt, connected to the air core, does shine the bulbs, now.  But, I'm only just using a couple of tuning capacitors to tune the yoke output coil (red yoke coil), to the air core's resonator coil (center red coil).
I still need to obtain more of the right 0.22uf 650 volt poly caps, for actual resonance tuning, also.
   Here's a picture below, of where I'm at with this right now. 
   The connections of the separate pulser crt "chopper" will be also be done next.
   Any suggestions for this pulcer circuit are welcome, but, without the nano sec. adjuster, or duty cycle, for now. As those parts will have to be ordered from the U.S., and this will take some time, as I have to wait for a friend to come in Sept., that will bring them to me.