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Overunity Machines Forum



How to make multiple Kicks

Started by Neo-X, November 23, 2013, 10:31:20 PM

Previous topic - Next topic

0 Members and 3 Guests are viewing this topic.

sm0ky2

If you want to learn how to make them:


Listen to Bruce, and build his examples
Practice
Learn how it works
Then build it the size you need for your purpose.


The shape and arrangements of components are not as
important as what is happening.
Look at the history, look at the facts, look at the original theory.
And think
I was fixing a shower-rod, slipped and hit my head on the sink. When i came to, that's when i had the idea for the "Flux Capacitor", Which makes Perpetual Motion possible.

sm0ky2

Test question:


1) Why is 5mm important the U.S. residential electricity industry?



I was fixing a shower-rod, slipped and hit my head on the sink. When i came to, that's when i had the idea for the "Flux Capacitor", Which makes Perpetual Motion possible.

Toolofcortex

Ok smoky stop confusing people.

Bruce_TPU

I'm not there yet but smoky was right on about the needed precision for the three frequencies.

I'll tell you what I think and give y'all a new nugget to chew on..

Did you know that it is possible to create a revolving magnetic field with these electrons?

I've done it. But way to slow. What if someone were to change Hertz to linear velocity?? And what IF someone then used mathematics to change linear velocity to angular velocity?

What if you wanted to make your angular velocity to be CLOSE to the speed of light but not 299 or the collector is destroyed so instead you tune just off of that to say 245?

Then what if you hit the needed three freqs to match the angular velocity needed to hit 245 MHz?

If each of the three freqs had a  component so that together each hit the angular velocity that gives a rotating field at 245 Mhz, you'd end up with three collector pieces each with rotation CLOSE TO the speed of light.

The math is there. And the input freqs would change with diameter due to the change of angular velocity.

So the three freqs would then have a mathematical purpose and intent to speed rotation. And not just arbitrary freqs.

But I can tell you this..
Certain freqs related to lightening have VERY STRONG magnetic fields that can be tuned into to generate a little electricity. This is where you must start by having the kicks interact with those magnetic fields.

My problem is I'm still throwing rocks instead of shooting bullets. I need SPEED!

Cheers,


Bruce
1.  Lindsay's Stack TPU Posted Picture.  All Wound CCW  Collectors three turns and HORIZONTAL, not vertical.

2.  3 Tube amps, sending three frequency's, each having two signals, one in-phase & one inverted 180 deg, opposing signals in each collector (via control wires). 

3.  Collector is Magnetic Loop Antenna, made of lamp chord wire, wound flat.  Inside loop is antenna, outside loop is for output.  First collector is tuned via tuned tank, to the fundamental.  Second collector is tuned tank to the second harmonic (component).  Third collector is tuned tank to the third harmonic (component)  Frequency is determined by taking the circumference frequency, reducing the size by .88 inches.  Divide this frequency by 1000, and you have your second harmonic.  Divide this by 2 and you have your fundamental.  Multiply that by 3 and you have your third harmonic component.  Tune the collectors to each of these.  Input the fundamental and two modulation frequencies, made to create replicas of the fundamental, second harmonic and the third.

4.  The three frequency's circulating in the collectors, both in phase and inverted, begin to create hundreds of thousands of created frequency's, via intermodulation, that subtract to the fundamental and its harmonics.  This is called "Catalyst".

5.  The three AC PURE sine signals, travel through the amplification stage, Nonlinear, producing the second harmonic and third.  (distortion)

6.  These signals then travel the control coils, are rectified by a full wave bridge, and then sent into the output outer loop as all positive pulsed DC.  This then becomes the output and "collects" the current.

P.S.  The Kicks are harmonic distortion with passive intermodulation.  Can't see it without a spectrum analyzer, normally unless trained to see it on a scope.

Bruce_TPU

Sorry.. Double post from above..
1.  Lindsay's Stack TPU Posted Picture.  All Wound CCW  Collectors three turns and HORIZONTAL, not vertical.

2.  3 Tube amps, sending three frequency's, each having two signals, one in-phase & one inverted 180 deg, opposing signals in each collector (via control wires). 

3.  Collector is Magnetic Loop Antenna, made of lamp chord wire, wound flat.  Inside loop is antenna, outside loop is for output.  First collector is tuned via tuned tank, to the fundamental.  Second collector is tuned tank to the second harmonic (component).  Third collector is tuned tank to the third harmonic (component)  Frequency is determined by taking the circumference frequency, reducing the size by .88 inches.  Divide this frequency by 1000, and you have your second harmonic.  Divide this by 2 and you have your fundamental.  Multiply that by 3 and you have your third harmonic component.  Tune the collectors to each of these.  Input the fundamental and two modulation frequencies, made to create replicas of the fundamental, second harmonic and the third.

4.  The three frequency's circulating in the collectors, both in phase and inverted, begin to create hundreds of thousands of created frequency's, via intermodulation, that subtract to the fundamental and its harmonics.  This is called "Catalyst".

5.  The three AC PURE sine signals, travel through the amplification stage, Nonlinear, producing the second harmonic and third.  (distortion)

6.  These signals then travel the control coils, are rectified by a full wave bridge, and then sent into the output outer loop as all positive pulsed DC.  This then becomes the output and "collects" the current.

P.S.  The Kicks are harmonic distortion with passive intermodulation.  Can't see it without a spectrum analyzer, normally unless trained to see it on a scope.