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Overunity Machines Forum



Selfrunning Free Energy devices up to 5 KW from Tariel Kapanadze

Started by Pirate88179, June 27, 2009, 04:41:28 AM

Previous topic - Next topic

0 Members and 620 Guests are viewing this topic.

v8karlo

 How to test field of the coil:
Attach led diode to small cap and put it in field. If there are electrons in the field , led diode start to shine.
It can be static field of capacitor of course. We all testing the fields that way.
Does anyone ever asked the right question?
Can we put capacitive coils inside the strong field of Tesla coil or HV capacitor and get power on the output??
Well seems to me Kapanadze did!






The first circuit is designed for generating electricity by transferring the electro magnetic field occurred at the first bobbin with the electric energy received from the independent initial power supply, to second bobbin. 

And as the second circuit, due to the high magnetic field received from the first bobbin, there occurs a magnetic field difference between the bobbins. 

The magnetic field difference occurred between the second bobbin and first bobbin stabilized by the help of frequency stabilizer within this circuit line.  As stabilizing the magnetic field difference by the help of frequency stabilizer,

this circuit line also converts the energy which is moving [/color]
independently in the air[/color] (from nearby HV cap, “statical field”)[/color]
[/color]at the second bobbin designed within this line to electric energy.
[/color]
Exit energy is sum of energy from first bobbin and HV field from capacitor or in the early designs Tesla coil high pressure field.[/color]
In other words transformer have to be in strong field when operate (part of it have to be in that field), and the output (second bobbin) is sum of first bobbin field and strong cap field.[/color]
[/color]
First and second coils are wound in opposite directions and they are pure capacitive coils in that arrangement.[/color]
[/color]

This electric energy formed by the second bobbin adjusts the necessary frequency (220 V-50 Hz or 110 V-60 Hz) for use, by the help of second frequency adjuster designed at the bobbin output.  This generated electric energy is transferred to the intended usage area via exit points   Through the circuit cables connected to the exit points, the device feeds itself with the generated electric energy.  This mentioned process eventuates 102 seconds after the device is got started.  After this process, the time relay power switch designed at the input of the device breaks the initial energy supply.  After this stage, the device generates the energy independently.

v8karlo

I am using this setup for 2 years when I discovered it, but never been able to get output
of 23 A like Kapanadze did.
My last setup can gain 980 mA /1200V from 250mA / 12 V input from PC power supply with
help of backfeed. (mosfet based 2-25 kHz freq, very small Duty Cycle 4-10%, it cant be done
with bipolar tran., effect is very weak, but with Irf840, cheap one - no problem)
After a year I come back to this forum to look whats new and looking to those new pictures
only today occured to me that instead of backfeed maybe can use independant field of
HV Cap or another coil with strong field.

I been around this forum for 3 years now, but never posted nothing.
So , I am posting now my discoveries about inductive to capacitive conversion
coils. Maybe we all together link that to Kapanadze setup and make that
23A output.

Kapanadze is real, because I use this setup for 2 years.
Any 1:1 trafo can be rearanged to be capacitive.
At frequencies around 18-20 kHz it is enough to wind only 20-25
turns on each coil.

Effect is weaker on air core, so I was always prefer ferrite in
my experiments.



Hoppy

Quote from: v8karlo on August 16, 2012, 12:02:53 PM

My last setup can gain 980 mA /1200V from 250mA / 12 V input from PC power supply with
help of backfeed.

Hi v8karlo,

Was the output 1200V loaded or unloaded and if unloaded did you record the loaded voltage?

Hoppy

v8karlo

I measured this without load, only V-meter + 2uf / 2000V cap at the output.


Hoppy