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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

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0 Members and 111 Guests are viewing this topic.

elementSix

Hey Zeit,  I was thinking that I might be able to use two transistors, Like a NPN and PNP.  To create a short across the spark gap and maybe thru a capacitor.  For the impulse generator.  But Im not sure it would work right or it would burn up the Transistors.  Maybe a couple of SCR's like the ones used in CDI'S.  Have any thoughts on that?

x_name41

here my old post for N. Tesla materials and maybe Akula device

br549

Quote from: T-1000 on October 02, 2013, 01:48:11 PM
If you would bring Geiger counter near Tesla coil it would scream :) The inert gas is being ionized near exciters intensively.
Also to identify what is emmited exactly the better equipment is needed so you could see type of emission and what particles are ejected. Usualy they are alpha particles around coils and surrounding electronics in excited mode but also you might find something unusual.

Cheers!

The emissions are not coming from the coil, they are being emitted from the battery (Note video  http://youtu.be/LXtYB4PDXf4). When I check the coil with the giger counter, there is no emissions. The only place I can detect emissions is from the battery. The results (emissions) are the same when I place a sheet of aluminum between the giger counter head and the battery.
Your right about better equipment. My dear old daddy always said "You Can't Make Ice Cream with Horse Shit", but since I am operating on a limited budget for my free energy hobbies, I'm trying to make due with what I have on hand. Some times it's not Ideal but if I ever get any meaningful results I will have to consider buying a better piece of equipment. I believe that with all the shielding and testing that I have done that the giger counter and voltage / current readings across the Colman tube (still working on that! :-[) should be a good first indicator of NMR. When I run the device without the Colman tube in place, and the giger counter set on the most sensitive scale (X1), and go through the frequency range (100 to 500 mhz at around 50 watts) there is no interference of false readings from the giger counter. So I am hoping that means that there will be no activiity on the giger counter (and volt meter) unless there is NMR activity. As most projects like this, time and experimenting will tell.
As Always:  Have a Good Day. :)

Zeitmaschine

Quote from: dllabarre on October 02, 2013, 03:40:11 PM
Are these 2 transformers identical to each other?
DonL
Yes. But I have the certain feeling they shouldn't. The output side should rather be suitable for a current of 50Hz.

The grounding of the input transformer can be replaced with a metallic object. A small lamp connected between the transformer and this metallic object flashes sometimes in the moment of connection, so -as it seems- there is a current coming from nowhere and going to nowhere, but it is still a current capable of powering a small incandescent light bulb.

Further I think a spark gap is not necessary. It will only cause the lamp to flicker (not observed in any Kapanadze demonstrations).

If it were possible to connect the coil of an ordinary 50Hz transformer to high voltage without disrupting its isolation ...

... maybe less high voltage could be the key ...


DreamThinkBuild

Hi All,

Here is a patent from 1884 with a different inductive setup.

US 297924: APPARATUS FOR THE PRODUCTION AND UTILIZATION OF SECONDARY ELECTRIC CURRENTS

https://www.google.com/patents/US297924

It looks like they were trying to use a pulsed dc source of constant current through a central conductor and having the b-field inductively couple the lines parallel to it reducing the -N loops of Lenz (Fig 2 side view & 3 front view).

If we go by this formula for the b-field around a wire: B=perm*I/2*pi*r, we would want the highest current for highest tesla field near the parallel wires. A pulsed homopolar generator or other constant high current supply might be a more efficient driver?

http://hyperphysics.phy-astr.gsu.edu/hbase/magnetic/magcur.html

Litz might be good for a simple test, isolate one wire as the conductor and parallel the rest through a 1ohm load, keep it straight then pass some pulsed DC through and see what the output is. Then try wrapping it around an iron core and testing again.

For giggles using the formula if we have a 10mvdc@6000amp power supply (60watt), I=6000amps r=.001 @ 1mm the b-field would be 1.2Tesla. A 1.2Telsa field cutting the outer wires at a short pulsed 500hz should generate a nice voltage.

Any ideas or will this just end up melting? :)