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Overunity Machines Forum



RESONANCE EFFECTS FOR EVERYONE TO SHARE

Started by gotoluc, December 03, 2008, 01:26:15 AM

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gotoluc

Quote from: najman100 on December 18, 2008, 12:09:39 AM
Hell Luc
so now it is midnight and i watched your vid great as always  ;D.
I have suggestion:
We need to standardize the electronics .
aside of the flip flop we need a small inverter that you connect a transformer in reverse so you will have an output of 110 v ,the input should be around 8.0 volts with this inverter we should control the voltage input so if we need less than 110 volts  . i hope Grounlookp will provide us with the answer to this .
next after you find the resonance in your configuration we should disconnect the signal generator  and here it come another circuit a small signal generator with matching frequencies .
so we have 3 circuit that are powered from the same source the flip flop the inverter and the small signal generator and then we can measure the consumption and see if we have unity or over unity .

Thank you
Najman


Hi Najman,

glad you liked the videos ;D

I will continue the development but it would be nice to have others replicating the effect also.

I just saw Groundloop's new diagram and he has done an excellent job as usual!... I just supplied him with all the parts details and he will integrate them in the diagram to which I will post as soon as that is done or when I wake up :P

Thanks for sharing your ideas!... we will get there quickly if we work together ;)

Luc

gotoluc

Quote from: TinselKoala on December 18, 2008, 12:26:00 AM
The video of tonight's performance:
http://www.youtube.com/watch?v=5tW2g4KinuA

Hi TinselKoala,

Great job!...thank you for taking the time to make and post your well done video ;) ... I like your Simpson meter ;D

Are your inductors tuned to resonate at the same frequency?

I'm glad you are enjoying the circuit and sharing your results with us.

Here are links to videos and information that user Armagdn03 has done to help share the benefits of coil resonance. This is what got me back into testing coils and resonance effects... but this time I'm seeing results.

watch this video first: YouTube - Energy Propagation

watch this video second: YouTube - Take two

And here is some more information you can read: Pg. 1

Enjoy and thanks for sharing.

Luc

TinselKoala

By the way, I just looked at the voltage trace on the oscilloscope, from the battery positive lead, while running the experiment. The trace is nearly flat at the battery voltage, with only a very small (say 2 or 3 percent) ripple just at the leading edge of the trigger pulse. I expected it to be much spikier but it's not. And if fed with a big cap like in gotoluc's configuration, I would expect it to be even less spiky and ripply. SO I think you could, in fact, get a valid DC ammeter reading from this position, in spite of Groundloop's comment. Regardless, I'll be actually trying the exact setup tomorrow, and I will meter from the location I suggested, with whatever equipment is necessary to get a valid reading.

TinselKoala

"Are the inductors tuned to the same frequency?"
We are tuning the primary oscillations to the secondary's resonant frequency, with the signal generator. In a traditional Tesla system with a spark gap, a capacitor, and a primary coil, the primary is tuned into resonance by lengthening or shortening the turns. This maximizes power transfer from the primary's step-up transformer supply, to the secondary. The secondary is also tuned by length and by its terminal capacitance, a toroid or sphere. In the h-bridge system we are tuning the primary by driving it at the secondary's resonant frequency directly, without the need for a cap and gap.
I think.
So, yes and no. I'm tuning the oscillations of the primary, in order to match the natural resonance of the secondary.
If you have an oscilloscope, you can see the natural primary frequency as the little ripples on the corners of the driving pulses, at high frequencies. My short TBC coil has quite a high natural frequency, I'm sure it's in the high tens of megahertz. The bifilar secondary that I'm using has a 1/4-wave resonant frequency of about 1.4 MHz when used on a conventional Tesla system.
If I was trying to use two secondaries like you are doing, I would match them just as you have done, by looking at inductance first, then by doing essentially what we are doing here: drive a short primary with the signal generator directly, look at the secondary's output with the scope or meter, sweep freqs till you see a peak in the secondary voltage. Add or remove turns as needed so that both coils peak at the same freq.