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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 125 Guests are viewing this topic.

AlienGrey

I found this on the Don Smith thread,
If you can find the tread there is a very informative video
If anyone builds it let me know if its overunity or not
Hoppy notice the wires dawdling off to the grid on the left Ha Ha!!  :'( ;D ;D

magpwr

Hi AlienGrey,
I got a simplified circuit of Akula which drastically reduce the total component count at interrupter stage.I/C used is 74AHC132 or 74HC132.
The output of the attached custom implemented circuit need to be connected to TC4428(Dual driver,one inverted) powered by 12volts.Both input of TC4428 is tied together.
There are various settings which kapanadze coil will produce stable output from output  if tesla/kacher is powered up with 60watt bulb and around 20nf capacitor in parallel .But i am using pulse for now which will be switch to Akula circuit for "higher kacher explosive current".The only advantage pulse driver circuit gave me is flexibility in controlling the kacher frequency litttle higher or lower from the resonant freqeuency of kacher.But this is not recomended approach since plasma from kacher isn't glowing like yellow/orange which is also high current.

These are the settings which i am getting stable results before going to Akula kacher interrupter circuit.
I have implemented 3 types of kacher driver in my circuit since each design has it's own advantages and disadvantages.
Akula circuit would need around higher input "35volts" to 60volts in order to reach around 3.5kv(minimum) to see effect.The pulse circuit of mine use just 12volts to obtain around 3.5kv.

These are the settings which output will suddenly appear stable.It's main reason i am still using interrupted pulse is to derive a fix kacher frequency during testing stage.

Kacher 1.761Mhz 1.767Mhz  Each Pulse 272ns 274ns wide   interrupted pulse 80us wide

Kacher 1.748Mhz  Each Pulse 272ns 274ns wide   interrupted pulse 77us wide

Kacher 1.724Mhz  Each Pulse 280ns  wide   interrupted pulse 78us wide

-----------------------------------------------------------------------

AlienGrey, i need to know if you are living in a grounded/landed property.I can reveal on how to test the kapanadze coil with a signal generator like Akula tuning video but made simpler to understand.The only disadvantage i am living in a high rise building with a single ground the pipeline and I got max amplitude around 1.78Mhz for kapanadze coil using signal gen with scope.



Take example 1780000hz divide by 60 to get around 29.666khz(L/C resonance frequency after 3 turns).Then this is divided by 3 using 4017 or my microchip pic using 4xCLC (Not dependent on microchip clock speed shown in my youtube)to get around 10khz.I have not tried your divide by 3 version which looks easy to implement.


The highest stable frequency I got from kapanadze coil was 178khz which looks like a sine-wave but the amplitude drop to around 2Vpp.Another stable frequency obtained was 26khz to 29khz.



The NTC resistor is very very important as shown in Akula circuit I am using 20Ohms NTC  which produce better stability than 10Ohms version.I'm not sure if I should get higher NTC value like 100 Ohms at 25c. or remain as it is.
NTC resistor will get warm slowly if kacher powered on.

I have also started slowly inserting ferrite rod at kapanadze end it somehow reveal to me if my kacher frequency is close to desired frequency.After which ferrite rod will be removed.

NickZ

   Magpwr:   Thanks for your report.   The Akula interuptor circuit is what Geofusion had built up and was used in the last of his videos, along with the Akula type of mosfet driver circuit, that he posted on YT. Yet, he was trying to get it to self run. But, at that time was not working to produce those results, yet.  After that, he has not come back to show anything more about that device. Perhaps he has hit on it, by now. Or maybe not.
    I wanted to know more, concerning his results, after the last videos, as he seamed to be very close to hitting on it.
    What I had in mind was to continue with the Stalker interuptor type Kacher design. Which both Itsu and I were hot on that trail, and he had even sent me some of the main components to finish the build. This is still on my to do list, and the already previously built device is waiting to be remoded over to the interuptor Kacher driver circuit.  Instead of the simple katcher circuit by Ruslan, which is what I been using previously.   I just need some motivation, to continue on.   Mean while I have been working on the "diode loop" idea from Dr. Stiffler, for my  crystal oscillator driver, to better understand the relation between matched and unmatched coils and oscillators. As the proper sync is everything. And if tuning and things are just slightly off, self running is not going to happen. 

   Here is a scope shot of Stalker's circuits, showing how they sync up, and the circuit that he used, (both diagrams for the interuptor Kacher circuit. Which is the circuit that I will be building up, next.
   Notice how on the scope shot of the Kacher's signal, it fires on the negative valley of the induction circuit's sine wave.

AlienGrey

Hi i do have a ground earth available.

I notice you're using a train of pulses as far as I can fathom out a recovery time is required after each one, do you get any gain with your set up?

like a 1 microsecond pulse and a wait of approx 1.2 MHz wait till the next pulse but it needs to be stable re Master IVO  untried as yet
perhaps its a case of all the harmonics piled on top of each other at zero crossing overlapping yet another experiment.

If your using a pic chip like a F84 drive it with 4 Mhz  count 102 no-ops (a no-op is a no operation of one cycle) then 1 micro sec pulse (not sure you can do that on the same
port though for long might need to feed into Aculas snap circuit to see if produces the effect they have been trying to tell us about


Hoppy

Hi Nick, Alien,
Good to see you back in the asylum.  ;)
Geeks corner was getting a bit heavy. I was missing the circuit diagrams.