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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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Void

Quote from: verpies on March 09, 2016, 02:37:01 AM
Below is a schematic of 1-turn distributed winding that could be spanning the entire circumference of a toroidal core.

Hi Verpies. Ok, I see what you meant by parallel windings now. Thanks.

itsu

Quote from: verpies on March 08, 2016, 06:29:27 PM
It's my fault for being ambiguous.  I meant for this cap to be across the drain and the VCC of the primarys' windings center-tap.
Is the USB cable unshielded?

No problem,  here the same screenshots, now without (1) and with (2) a 100pF cap across 1 primary (drain to Vcc) with the 4 stacked ceramic magnets half way this primary ontop of the yoke split:

By the way, the spectrum analyzer is a DSA815-TG, so with the tracking generator option.

Not sure the mouse cable is shielded, its a logitech, so normally it would i guess, but no screws visible to open it up.
I have wound an EMI clamp-on toroid at the USB port plug of the cable, but it still locks up.

I have a feeling however its the keyboard USB cable next to the mouse which is causing it (hangs the USB logic), so i have to use another EMI clamp-on to confirm this.,
EDIT, ok, yes, after also using a clamp-on toriod on the keyboard plug, no more lock-ups untill now.
 
Itsu

lost_bro

Good day all:

Just wanted to post some very interesting reading material: If you want to really get into the basic mechanisms involved with coil resonance(s), I have attached an U.S. patent from March of 2010 dealing with *double* resonant systems, or as some say 'resonance within resonance'.
This is some of the *BEST* reading material I have come across with a plethora of information in one document. You might want to read it a number of times to actually grasp the scope of application........  I believe that this is what applies to the D.S. replication and probably has applications in relation to the Ruslan device as well.

I find very interesting the differentiation between L/C resonance and 1/4 wave resonance........  this patent give an iterative development cycle /method (actual steps involved) of combining the two resonances in one coil for the *preferred* results.

enjoy........

take care, peace
lost_bro

Jeg

Thanks lost bro.

Verpies, Itsu
Attached are my drain voltages using the lossless clamp. Primaries are wounded like in case 2 above. The high voltage peak has been reduced enough down to 178V even not completely. 12T per primary wounded across the whole circumference. About a cm space between each turn.

What do you think about the oscillations at the blue drain when mosfet is conducting?

Why do you think now my gate signals are spiking like that?   

verpies

Quote from: itsu on March 09, 2016, 08:53:17 AM
No problem,  here the same screenshots, now without (1) and with (2) a 100pF cap across 1 primary (drain to Vcc) with the 4 stacked ceramic magnets half way this primary on top of the yoke split:
Most of the peaks have moved in response to the added 100pF capacitance so they must have been a result of some LC resonance or the driving waveform harmonics.

However the dip marked with the purple asterisk did not move and that might be an indication of some energy absorption in the
core or a standing wave.

So please put two identical capacitors across 2 primary halves (drains to VCC) and experiment with different pF values of these capacitors while observing whether that dip (trough) moves.

Quote from: itsu on March 09, 2016, 08:53:17 AM
By the way, the spectrum analyzer is a DSA815-TG, so with the tracking generator option.
Oh, so you can do low power sinusoidal frequency sweeps of the yoke windings without worrying about harmonic distortions of the driving waveform.
This is worth doing when you have the gear for it.

Quote from: itsu on March 09, 2016, 08:53:17 AM
EDIT, ok, yes, after also using a clamp-on toriod on the keyboard plug, no more lock-ups untill now.
So it seems that is it worth to choke or place ferrite beads on all "antennas" leading to the computer.