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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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d3x0r

Quote from: Сергей Ð'. on September 17, 2012, 12:41:10 AM
ПривеÑ, Itsu

I know DALLY DEVICE is Full Functional Self Running Free Energy Device and i hope so you will convince yourself soon. Dally continue his work on Second device. Now you know why he can't give precise info about coils coz doing this he must to unwind workable coils.

As ALL OF YOU have seen KAPANADZE'S TROLLS don't sleep at all. They did their dirty jobs. Ask them why they don't try to do own research like you did ??
Why all wait for full and complete schematic when nobody of them want to make own working free energy device with own hands ??

I CAN GIVE YOU A FULL FUNCTIONAL SCHEMATIC OF SOME COMPLICATED CIRCUITS AND PROOF THAT THEY ARE FULL WORKING DEVICES. HOW MANY PEOPLE CAN MADE CHECKED AND VERIFIED DEVICE AND MADE HIM TO WORK FROM THE FIRST TIME ?? OR IN OTHER WORDS HOW MANY YOUR DEVICES WERE WORKED FROM THE FIRST, THEN YOU FINISHED SOLDERING. DO YOU KNOW THAT SOME HI-TECH MICROPROCESSORS HAVE WORKING MISTAKES AND BIG CORPORATIONS HIDE THEIR DEFECTS IN HOPE TO SELL AS MANY AS CAN !! I KNOW FOR SOME VERY SERIOUS ERRORS IN HIGH TECH DIGITAL SAMPLING OSCILLOSCOPES!! WHY NOBODY DON'T SCREAM ABOUT THIS HI-TECH DEVICES AND PUBLICALLY CALL THEM FAKES !! DON'T ANSWER ME, ANSWER YOURSELF !!

..............

Itsu now about DALLY device.

Dally's oscillograph still didn't came so we must wait for oscillograms and measurement of his working device.

I did some little research and find english parts for electronic.
Instead КР1554ЛА3 use quad 2-input NAND gate 74ABT00. КТ926 can be changed with 2SC3264e. Instead КÐ"203А use 1N5408. You can connect in series several diodes for example 4 -10 and more to get Very High Voltage Nano Pulse. For more forward current make a parallel conection on several series diode. You need a very speed oscillograph to catch nano pulses and to calculate rise and fall time of Nano Pulse.

Ferrite Ring Ðœ6000НМ К7mm Ñ... 4mm Ñ... 2mm is good and i think you can find it. Good and Quallity ferrites rings can be found in older multisynch monitors. A teflon PTFE wire also can be found in them.

Some orentational data for coils:

L1 - wind with 0.2 mm - 0.4 mm about 820 turns !!
L2 - wind with 0.6 mm - 1.2 mm about 310 turns !!
L3 - wind with coaxial RG 58 A/U, Z=50 about 40 turns !!
L4 - wind with 2.5 mm - 4mm HV insulated wire or make a good HV insulation between layers.

Diameter of plastic pipe 4.6 - 5 sm.

For ATX find old computer ATX power supplies and try several. DALLY found one usefull from five he have found. So also experiment need to be done here with ATX.

Here is complete PCB of DALLY DEVICE. PCB was doing Bronepoezd from our forum http://realstrannik.ru/forum-strannikov.html
I think it's OK but need to be checked again. Thousand eyes better see than two !! :)

Удачи всеÑ... благ !! :)




Please more about the torus Tr2; I can guess... that winding 1 and 2 are the same, and 3 is at least 10:1 of the primaries; but given a input of 12v and out of 150, you'd say but that's 12.5:1 at least! but from working with joule thieves and recognizing a similarity, it's going to be a pulse that will swing larger than 10:1 (probably).. 150+ isn't hard with a joule thief...  Although I'm not sure it would be required to swing both directions; Generator TL494CN - I guess they work like a seasaw based on a frequency generated by TL494... 


But what's the ballpark for winding 4 on that? The same high voltage would be my first guess... Oh I guess I forgot that L1 would be an AC with the swinging...

verpies

Quote from: Сергей Ð'. on September 17, 2012, 12:41:10 AM
I did some little research and find english parts for electronic.
@Сергей
I'd like to thank you for taking your time to translate this information into English.
I can appreciate how much work this is for you.

Hoppy

Quote from: Сергей Ð'. on September 17, 2012, 12:41:10 AM

For ATX find old computer ATX power supplies and try several. DALLY found one usefull from five he have found. So also experiment need to be done here with ATX.


Удачи всеÑ... благ !! :)

Surely a suitably rated transorb (transient suppression) diode across the 150V supply line would protect the ATX PSU? I'm basing this on the report that he was 'blowing' his PSU's.

Hoppy

itsu

Quote from: verpies on September 16, 2012, 04:29:32 PM
Just a piece of advice.

There are two easy ways of determing the resonant frequency of an LCR circuit (including self-resonant coils):


verpies,

again great info; i was indeed using method 1 using a square wave (to see the transition from square wave to sine wave during resonance), but also normally double check with method 2.

I am sure i used both, but will recheck, using method 1 with sine wave input, thanks.

Regards Itsu

verpies

Quote from: Сергей Ð'. on September 17, 2012, 01:23:33 AM
Close switch P and sweep your signal generator sinus output to get resonance i.e. maximum peak to peak value on your oscillograph. Write this frequency as FR1.
Itsu almost did it that way, but with a square wave stimulation.

Quote from: Сергей Ð'. on September 17, 2012, 01:23:33 AM
ps. Itsu don't made HV nano pulses measurements without HV 1000:1 Calibrated Oscillograph probe. You can burn your Digital Owon Oscillograph.
Might be a good idea.

Quote from: Сергей Ð'. on September 17, 2012, 01:23:33 AM
Byw did Owon fixed the bug (math. error) in their Oscillographs ?? You have some problem with your Oscillograph when you have bought it, how i can remember !!
Yes, Itsu had a nasty problem with the firmware of his oscilloscope. It would multiply the the 2 channels by multiplying pixels on his screen instead of multiplying the ADC outputs.  This led to such high quantization errors during channel multiplication that his instantaneous V*I power measurements were unusable. 

I hear that many manufactureres of oscilloscopes take this bad shortcut and the only way to stop them is not to buy oscilloscopes built that way - just check for this slipshod feature before you buy.