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Overunity Machines Forum



Successful TPU-ECD replication !

Started by mrd10, June 12, 2007, 05:12:47 AM

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0 Members and 18 Guests are viewing this topic.

Bruce_TPU

Rich,

I have one document that said the size wire stranded, and the new pdf that says copper enameled.  So it was my bad for not see the discrepency and using the older doc for myself.

I will use the Thin stranded wire that I have for my control coils.  It was hard to find, so I will try it and see if it makes a difference.

Thank you, :)  Peace!  LOL
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.

chrisC

Rich:

Thanks for the inputs. My intent was not to put Lindsay in a difficult position. If the technology (controller or not) is indeed patented under a different assignee or the subject matter is classified under a different class/sub class in another country other than the US or PCT, then that is OK, in the sense that if the patent protection does not include the US or Europe, then maybe only the Australians(?) will not be permitted to copy the design per se?

I've been going through the ups and downs of my own patents, especially when it comes down to getting infringers to take license! Well, when it gets down to real $, the ugly side of humanity often shows the true side!

cheers
chrisC

c0mster

Z_P_E
You are correct, if the pulse width is less the secondary reacts to the change just as if the pulse is to long, or if there is a dc offset. The spikes in the tpu spread out are the oscillations in the coils. The pulse I believe, needs to have a correlation with the length of the primary. 4 things to consider 1: the rise time to create a changing voltage 2: fall time related to rise time 3: pulse duration and 4: off duration or 3 & 4 =duty. Tesla used a dampened sine wave in his primary coils to allow the secondary to ring. Were Tesla's coils not weight constant? He used a spark gap to create a fast rising voltage with short on time. If you study a bit on static electricity you will see it is only electricity when the electron in neg charge item is finding it?s buddy the proton. I could go on and on but I think it?s time for me to be quiet and get back to the lab.   ;)


Here is the pdf I followed

Cam

wattsup

@anyone

On the circuit diagram there are 7 grounding signs. Are all these going to the 12vdc (8th) ground terminal or are some isolated to another power source. I need to know this to figure out how and when the bemf can travel back to the void.

It would have been good to show the actual grounds connecting, like Tesla or Erfinder circuit never uses a simple ground sign. The shown grounds indicate a ground to a physical mass like a chassis. This is part of the circuit and is important to understand how the bemf gets its cue to implode back into the void.

Also on the circuit there seems to be three redundant lines leading to the ZERO point from the primary to secondary junctions. Those junctions can simply be parallelled leading to the Zero and the frequencies can be parrelled leading to the Zero also. It would remove a lot of clutter from the circuit. Unless I see this wrong in which case please clarify is possible. You know, not all of us are electronic wizards, but we do have enough background to understand and apply.

MeggerMan

Hi All,
I think I have figured out what it was that the guy from Macedonia may have been trying describe to us, a double diode that looks like a mosfet would be ideal if used as shown and sorts out numerous problems of back emf and so forth: