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Overunity Machines Forum



Some thoughts on how the TPU might work.

Started by dfro, November 26, 2007, 07:43:29 PM

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0 Members and 10 Guests are viewing this topic.

wattsup

@Grumpy

I was expecting your typical Grumparian Brush Off.
Oh well.

Grumpy

Quote from: wattsup on December 28, 2007, 06:17:18 PM
@Grumpy

I was expecting your typical Grumparian Brush Off.
Oh well.

I expected you to ignore the facts presented - a transformer does not run with gain - it increases current or voltage at the expense of voltage or current respectively.
It is the men of insight and the men of unobstructed vision of every generation who are able to lead us through the quagmire of a in-a-rut thinking. It is the men of imagination who are able to see relationships which escape the casual observer. It remains for the men of intuition to seek answers while others avoid even the question.
                                                                                                                                    -Frank Edwards

wattsup

@Grumpy

I don't want to get into a shouting match with you. Your grand revelation of how a transformer does not produce any gain is so revealing, I think the world should stop turning. So new. So innovative. So helpful. As usual. If you cannot see past that, then OK, I understand.

EMdevices

Boys, what's happening to us?

Have we been TPUed to death?   LOL  :D

EM

P.S.  The TPU is obviously a "transformer" of sorts that runs with gain, it "transforms" an input signal or signals into an output signal consisting of AC signals riding a DC offset.

The uniqueness here is the DC offset due to the rotation of the fields.  Get rotation, get DC, no rotation no DC.

EMdevices

Interaction of magnetic-dipolar modes with microwave-cavity electromagnetic fields

E.O. Kamenetskiia, Corresponding Author Contact Information, E-mail The Corresponding Author, A.K. Sahab and I. Awaic
aDepartment of Electrical and Computer Engineering, Ben Gurion University of the Negev, Beer Sheva 84105, Israel
bCelestica Inc., 844 Don Mills Road, Toronto, ON M3C 1V7, Canada
cFaculty of Science and Technology, Ryukoku University Seta, Otsu 520-2194, Japan
Received 27 September 2004;  accepted 29 September 2004.  Communicated by R. Wu.  Available online 12 October 2004.

Abstract

We discuss the problem of magnetic-dipolar oscillations combined with microwave resonators. The energy density of magnetic-dipolar or magnetostatic (MS) oscillations in ferrite resonators is not the electromagnetic-wave density of the energy and not the exchange energy density as well. This fact reveals very special behaviors of the geometrical effects. Compared to other geometries, thin-film ferrite disk resonators exhibit very unique interactions of MS oscillations with the cavity electromagnetic fields. MS modes in a flat ferrite disk are characterized by a complete discrete spectrum of energy levels. The staircase demagnetization energy in thin-film ferrite disks may appear as noticeable resonant absorption of electromagnetic radiation. Our experiments show how the environment may cause decoherence for magnetic oscillations. Another noticeable fact is experimental evidence for eigen-electric-moment oscillations in a ferrite disk resonator.