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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 22 Guests are viewing this topic.

ronotte

Hello Bruce,

I'm waiting for a much better tests documentation! so go-on, clear the mess onto your table, put the Mosfet heat-sink NEAR the ECD (it means : in contact) then start your tests safely using firstly, just to search for freqs, PS voltage of no more of +6V. So you can have all the required time to setup Oscillator's level, freq sweet point (just start with an high range (100 -200KHz) it's easier and you don't risk to smoke anything! ..then medium range and only at the end the most dangerous low freq (20-80KHz).

But please put your scope probe on Phase point to look for sinus!.

Roberto

Earl

Roberto,

aahhh, you are meaning the drain to source intrinsic diode in each FET?
Because of large voltage change on drain, this reverse-biased capacitance could act as a varicap and also introduce a large capacity change during rise and fall times.  This may be a factor which is non-negligible.

This effect might change if using MacedoniaCD and Bob.R's two series diodes.
Interesting experiment to compare with 2 series diodes -  and with none.

This would not be present in a vacuum tube switch.

Regards, Earl
Quote from: ronotte on July 04, 2007, 05:53:01 AM
@Earl,

In ECD THERE's a MIXER and it's highly non-linear (logical kind mixer): all Mosfet's Drain pins are connected together.... there all the frequencies are indeed mixed and putting a scope probe there (ZERO point) you will see every kind of said by-products they make almost impossible to synch the scope trigger! There you can also appreciate some of the main mixing envelopes as if you select the right scope 'time line' it is possible to appreciate the main produced sum & differences frequencies just looking at the waveforms's envelope.
Roberto
"It is through science that we prove, but through intuition that we discover." - H. Poincare

"Most of all, start every day asking yourself what you will do today to make the world a better place to live in."  Mark Snoswell

"As we look ahead, we have an expression in Shell, which we like to use, and that is just as the Stone Age did not end for the lack of rocks, the oil and gas age will not end for the lack oil and gas, but rather technology will move us forward." John Hofmeister, president Shell Oil Company

ronotte

Hi Earl,

this 2 diodes for 'isolating coil' after turn-off time is  somehow new and is intringuing me...I had already planned to check the effect. I'll do it easily probably this evening !.
I'll report on it.

Roberto

Bruce_TPU

Thank you Roberto!

I think perhaps we have the ECD control coils wired incorrectly.  Have you looked at the "simplified" diagram in the FAQ, to wire the ECD?  Is it accurate?  If so, I will follow that, and rewire on next attempt.  Also, what fried our driver, was some of the leads we soldered to it touched and it smoked.  No problem, we have plenty. 

I recommend to anyone building the circuit to use the other driver that Jason is using, simply for ease of use.  This driver is a booger to hook up because it is so tiny.  (for us inexperienced electronic people)

I also still think someone could make a mint, selling some of these, preassembled.  ;)

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.

ronotte

@Bruce,

please make reference to attached pdf for detailed ECD only dwg. For any problem PM me.

Roberto