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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 82 Guests are viewing this topic.

selveti

i wonder why people are posting mixed diagrams from kapanadze, non of them is correct.... if u really have something useful post it but i dont agree with alot of people here are just posting different diagram  and non of them is working


steadyfield

decided to re-build the device again that I've failed to replicate 2 years ago.

I've rewound the grenade MAIN coil. now I'm gonna to wind the inductor on the grenade MAIN coil. I have some questions regarding the device:

1. The grenade coil I'm using now is 37.5 meters. Does the wire length of the inductor coil have to be half of 37.5 meters (=18.75 m) ? Is it OK to use 10~11 m wire length?
2. I've seen on some of the device schematics that the ground wire should also be 18.75 meters. Is it a MUST? I live in a high-rise apartment, about 20+ floors, can I use a shorter wire (for example, a few meters) for the ground wire?

thanks a lot.

AlienGrey

Yeah when i ran some tests 2 years ago 1/2 wave (1/2 of 40 meters or 37.5 the winding on the core, not the tails)
worked for me but i got a far better gain with 40 meters!  Oh, and it gets hot, look at Nicks vids his tube sags like
a should have gone to Specsavers museum add 8) , Color used alloy tube with a slit along its length.
Not tried it with 1/4 or 1/8 wave you might not get much gain if any. Try it with a scope and SG

steadyfield

to AG:

so the wire length of your inductor is 20m/18.75m? That will be 4 layers, which is different from the Ruslan's (2 layers).
What about the length of your ground wire?

also, did you use the 28T winding on the yoke? In some schematics, the 28T winding is rectified and filtered to power the kacher/tesla. In some other schematics, the 28T yoke winding is connected in series with the grenade MAIN winding.

to all:

about the failed replication years ago, a MOSFET-driven kacher is used, powered by a boost converter, with ground wire connected to the negative power rail. The base of the tesla secondary is connected to the driver chip (UCC37322) that drives the MOSFET. The EN pin of the driver chip is connected to the control board to trigger it. There were no 28T winding on the yoke, and only the 3T winding is used to drive the series C+inductor. The grenade MAIN winding is directly rectified to power the load. The control board (PLL was not used, 4046 used only as a VCO) that I designed has a huge drawback, that is, the pulse width of the push-pull driving signal is not adjustable and is fixed at 50%. By experimenting the setup, I found something strange, which was, the MOSFET-kacher can be triggered to self-oscillate at the [positive period+negative period] or [positive period only] but it cannot be triggered to self-oscillate at the [negative period only]. I did not see any interference between the kacher/tesla and the push-pull. By turning on the kacher/tesla with the push-pull already running, the bulbs only lighted up a little and the increment of light output can be barely seen (might be equivalent to a few voltage rise in RMS).

so I'm now wondering if the important points are [28T winding] + [HALF wave rectification] + [less than 50% pulse width of the push-pull] and decided to re-replicate it.  and maybe the kacher/tesla should also be tuned to the resonant frequency of the grenade?

Is there any other points to get the amplification effect?