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Author Topic: What is Known about the TPU  (Read 589118 times)

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So I asked Google the question 'Electron mass raised with resonance?' (sounds like a potential Nobel prize to me):https://en.wikipedia.org/wiki/Electric_dipole_spin_resonance
My thinking is that resonance locks the electron in a quantised magnetic state in the flux raising the electron magnetic moment up a Bohr value thus increasing the magnetic field viscosity.Breaking sound with glass comes to mind. When the electrons are allowed to exist in a compound in their chaotic state the compound is stable. We then align the electron orbits hence their spin with every increasing wave power and the compound is disrupted into instability thus breaking apart. But when a compound is created with its electron state in coherence we end up with stronger than previous materials called nanostrucures.
So we have Aspden explaining it and Hutchison performing it. Pretty cut and dried.

   Thanks GK.  If I'm interpreting correctly, then said a different way:
* Electric/magnetic impulses in a neutral condition cause a symmetrical equal-and-opposite reaction.
* Electric/magnetic impulses in a dynamic condition (ie: while current is flowing) causes asymmetric diversions to this already existing flow.

One question I still have, is what types of impulses are most responsible for the effects?
* A:  Electric (voltage) impulses?
* B:  Magnetic (current) impulses?
* C:  EMF (total power) impulses?

(I would guess C, reasoning that HV circuits are often are used not because high voltages are required, but because they tend to generate the sharpest impulses.  However it may also be B, reasoning that HV also generates larger magnetic currents)

On a related note, if this interpretation is correct, one would imagine that dielectric displacement current could also be used as a dynamic medium to apply impulses to? (ie: a charging/discharging capacitor)
« Last Edit: 2018-06-10, 15:58:00 by Reiyuki »


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"B" magnetic wave interference between two waves creates large circulating currents in ferromagnetic material. I believe it could be done using copper as well, but not sure how the pickup works for that.
Two iron loops surrounded by a copper coil or coils, when driven correctly, will produce voltage with a high potencial current.

The above is the basis of my experiments in this field, pun intended.

Regards

Mike 8)


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Just a little fuel to the fire but hopefully seen as relevant or useful by some
Please read this before the rest and perhaps help clarify context.
Or even to discredit this approach would be interesting to me .
https://en.wikipedia.org/wiki/Spiral_galaxy

But how to arrange passive coils so that AC would create the revolving field centre ?
perhaps the ftpu had spirally wound quad sections ?
Perhaps if we make a perfect balance and upset it with a small magnet ?
Whatever the case the ftpu ,in my opinion was the likely cause of other information release which has been hacked and modified to be even more coherent than the broken pieces disclosed .
My approach is a centre torroid with litz wire which gives multiple windings with the same yet electrically isolated 0 and 180 phases which can be applied to the outer segments . and or outer racetrack( collector) . and or back to its self.
all very low power and looking for the spiral magnetic field that was known to occour at some distance with tpu operation. also any signs of self oscillation ( spin) but it is a chicken and egg scenario as it was for those who were involved.
sensitive magnetometers (tiny compasses if you like) are most useful .
This may be the only fact we have to work with bear in mind that this process was utilised by others yet no utilisation,ther must be a reason for that and it might not be what we would imagine from the outside lookin in.
My chronic fatigue syndrome came on in 2006 and i have very few good days of late . this is one of them.
I digress...
good luck to all ,whatever you visualize as this is more of a creative persuit that atechnical one however both apply .
Im sure that what i have described will make no sence to some .
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@3d:
Quote
I'm sure that what i have described will make no sense to some .
It is those that this makes to that can agree the aspects of the TPU are far reaching. I have never seen this much complexity or validity show forth from any charlatan.


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I found this movie on Amazon prime. I will watch it.
https://www.amazon.com/dp/B07B67QB7L?ref_=imdbref_tt_wbr_piv&tag=imdbtag_tt_wbr_piv-20
 This domain seems to be available.@szaxx, what was the title in the page? The book can probably be matched to the list in the next site.

Then I found this: http://tesla3.com/harold-aspden/
But the Aspden.org seems to have commandeered also.
Old Faithful. kind of:https://peswiki.com/powerpedia:harold-aspden
So I asked Google the question 'Electron mass raised with resonance?' (sounds like a potential Nobel prize to me):https://en.wikipedia.org/wiki/Electric_dipole_spin_resonance
My thinking is that resonance locks the electron in a quantised magnetic state in the flux raising the electron magnetic moment up a Bohr value thus increasing the magnetic field viscosity. Breaking sound with glass comes to mind. When the electrons are allowed to exist in a compound in their chaotic state the compound is stable. We then align the electron orbits hence their spin with ever increasing wave power and the compound is disrupted into instability thus breaking apart. But when a compound is created with its electron state in coherence we end up with stronger than previous materials called nanostructures.

So we have Aspden explaining it and Hutchison performing it. Pretty cut and dried. T.T.Brown demonstrating the viscosity by firing a Tesla coil into an aluminum disk and the disk focusing back the energy into the discharge point causing thrust.
What is truly interesting about Hutchison is he performed two events. Chaos and resonance. He pushed materials around(chaos) and he reordered electron bonding(resonance). Very far reaching findings.
And bringing it back around:https://www.scribd.com/doc/76567187/1995-Harold-Aspden-Discovery-of-Virtual-Inertia
Attached...

I managed to obtain Aether Theory before the site dissolved into the aether.
It's not yet compiled and as soon as it is, it'll be available to read. As it's given freely I can attach it if anyone is interested.
   

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Attach it.


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Attach it.

Found the Internet Archive version of the site.  It looks like they scraped everything ;D ;D O0:
http://web.archive.org/web/20171027044455/http://www.haroldaspden.com:80/


This may be the one you're looking for?
Aether Structure: https://web.archive.org/web/20161230082034/http://haroldaspden.com/the-physics-of-creation/10edpocch7.pdf
« Last Edit: 2018-06-12, 15:51:42 by Reiyuki »


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Perhaps this will do.
   

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What I have seen over the years and experiments is this in a nutshell:
The connecting field of two cabinet magnets has a flux strength value at a given distance. This can be duplicated using two coils. The power needs to be defined to match the gauss value of the magnets. The disrupting opposing gauss value then needs to be matched against the original field strength of the primary magnetic source be it magnets or coils. The secret is in looking at power line harmonics and transmission line reflections. The operator merely needs to pick a harmonic position, kick it lightly and in phase. You wanted to know the TPU secret?
This will cause a pumping operation that will build up in time. Remember SM stated 'too much in phase causes explosions' and 'watch out or you will draw lightning out of the sky'. Think discharge.
Now lets simply change the view point. When SM mentions something in a direction then simply reverse the logic or operation. He was willing to tell us everything but couldn't so he changed the labels and directions. Pretty simple.
Lightning from the sky = discharge from the TPU. Tesla coil, charge pumping.
Rotating magnetic field = the direction of the flux lines and not the moving of them around something. The reflections do that.
Two frequencies in = the resonant base frequency and the kick frequency.
The multiple, multiple, multiple windings around each other = The overlaping flux fields(think magnetic current/ Leedskalnin) that are the base frequency resonant field,  the harmonic itself and the kicker or in phase pulse somewhere in the harmonic overtone. We now have three frequencies. 

Forget all the complexities.   
Iron wire presents a core with low mass. Why? It is a collector that absorbs all magnetic energy around it from any angle. The wire aspect then turns the magnetic energy into current. The 90 degree coupling law does not apply here. We have an antenna, a core and conductor all in one. Another gold nugget.   

Its all about producing destructive power line harmonics from transmission line reflections.   

We can have 3 mediums to work with, the weak field from two cabinet magnets, two coils or three like Spherics showed or Otto's ECD, and transmission line reflections. 
Transmission line reflections are the same as magnetic fields reconstructing after being broken. Bing, bing, bing. Big clue here! 

For the new people, I have gone over this many times over the years. Now every test I do incorporates this. Otherwise you wont see any power. The real simplicity of failure is that our electronics knowledge always implies a ground. The inclusion of this one connection stops all TPU design progress. No grounding and no harmonic dampening equals destructive reflections. SM stated 'You connect ground you lose the operation'. Major insight here. The current design model is to reduce harmonics. This is incorrect. Choose your tank circuits and filters in the range of the harmonics you want to keep and you will destroy components, equipment and body parts without safety precautions. This will happen on your path to thumping. Think transformer vibration.   

Go forth and blow shit up.
« Last Edit: 2018-06-12, 22:47:13 by giantkiller »


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What I have seen over the years and experiments is this in a nutshell:
Bump



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Bump
Well, do you have an opinion about Giantkiller's post ?
   

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@ Verpies and all that have been trying to work out how this was done.


Well it does not come from power lines or Tesla coils.

Attached is the start and run schematic with two drawings showing power ground and the a b c coils relation.

It is just the way they are all connected. Ever turned a relay into a buzzer or better still three relays, or then again use thermonic valves or MOSFETS. Ah the magnets, not the way to go, magnets loose their power over time if used as a counter field, as SM found.

It is not rocket science, it is simpler than you think.


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"All truth passes through three stages. First, it is ridiculed, second it is violently opposed, and third, it is accepted as self-evident."
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As a general rule, the most successful person in life is the person that has the best information.
   

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Attached is the start and run schematic with two drawings ...
This attachment depicts a device with 6 separate windings, not counting the CMC.
a1, a2, b1, b2, c1, c2.
   

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This attachment depicts a device with 6 separate windings, not counting the CMC.
a1, a2, b1, b2, c1, c2.

Correct, all the 1s in one open toroid and the 2s in the other, but connected together as though a's are one coil for example.


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"All truth passes through three stages. First, it is ridiculed, second it is violently opposed, and third, it is accepted as self-evident."
Arthur Schopenhauer, Philosopher, 1788-1860

As a general rule, the most successful person in life is the person that has the best information.
   

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i see we will need to figure out the circuit and any doda's.  what still bites me is the so called flux capacitor that is suppose to put out dc.  the 2 terminals of the capacitor, each connected to one of the shorted bifilar windings, capacitor, bifi windings or what, i cannot conceive how a dc output could happen at those terminals. if it is so, then electrons must be transfered from one bifi winding to the other within the winding. through the wire insulation. there just cannot be an endless amout of electrons coming out of one terminals shorted winding, through a load and absorbed by the other shorted winding.  that part of this to me seems to be something i want to understand.


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i see we will need to figure out the circuit and any doda's.  what still bites me is the so called flux capacitor that is suppose to put out dc.  the 2 terminals of the capacitor, each connected to one of the shorted bifilar windings, capacitor, bifi windings or what, i cannot conceive how a dc output could happen at those terminals. if it is so, then electrons must be transfered from one bifi winding to the other within the winding. through the wire insulation. there just cannot be an endless amout of electrons coming out of one terminals shorted winding, through a load and absorbed by the other shorted winding.  that part of this to me seems to be something i want to understand.


mags

Mags, over the core is wound the 3 other coils as a trifiler. That means they are a part of the overall capacitance, core "2" wires "plates"  with direct capacitance to the 3 over wound coils without any added dielectric interference (all =capacitance).

The 2 core plates are constantly changing polarity and hence charge. The over wound coils a and c are constantly changing feed direction, the b coils pick up an oscillating current AC, this is the feed back.

All coils are wound in the same direction, but due to how they are connected, an a and c coil is bucking when the core discharges a back current.
What you have is a LC in parallel using 2 coils which are bucking ( core and an a and c coil). This will not resonate but is controlled by 2 of the mosfets which have an exact switching sequence.

A 3rd mosfet switches within this sequence which has a different switching "result".


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"All truth passes through three stages. First, it is ridiculed, second it is violently opposed, and third, it is accepted as self-evident."
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if it is so, then electrons must be transferred from one bifi winding to the other within the winding. through the wire insulation.
Furthermore, if it is so, then the type of wire insulation and their spacing matters.
   

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Furthermore, if it is so, then the type of wire insulation and their spacing matters.

The type of wire is important, first for resistance and second for heat resistance.

As you know if you take a copper wire which has many strands which are tinned individually, the resistance is lower than if not tinned. Copper conducts better than tin, so in a length of this wire the conduction is in the copper, and each strand is in parallel with the next, parallel resistances, therefore the overall resistance is very low.

The insulation should withstand the heating up of the wire in the core, why! because these are shorted coils inside an alternating over wound solenoid current, like an induction heater, high currents will circulate within the shorted coils, they are a loop.

A commercial unit has to be temperature controlled.

The core capacitance is only around 600-800pF, not very much and depends on the size of the coils.


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"All truth passes through three stages. First, it is ridiculed, second it is violently opposed, and third, it is accepted as self-evident."
Arthur Schopenhauer, Philosopher, 1788-1860

As a general rule, the most successful person in life is the person that has the best information.
   
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The type of wire is important, first for resistance and second for heat resistance.

As you know if you take a copper wire which has many strands which are tined individually, the resistance is lower than if not tinned. Copper conducts better than tin, so in a length of this wire the conduction is in the copper, and each strand is in parallel with the next, parallel resistances, therefore the overall resistance is very low.

The insulation should withstand the heating up of the wire in the core, why! because these are shorted coils inside an alternating over wound solenoid current, like an induction heater, high currents will circulate within the shorted coils, they are a loop.


Michael, will there be any commercial units be available in the future?
   

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The type of wire is important, first for resistance and second for heat resistance.
A wire (with its insulation) has many more properties than merely DC electric resistance and heat resistance. e.g. the thickness and permittivity of the insulation influences inter-turn and inter-layer capacitance greatly ...and there are many more properties at play.

The core capacitance is only around 600-800pF, not very much and depends on the size of the coils.
That is actually a large capacitance.  It is nothing to sneeze at - it heavily influences the "transmission line"-like properties of the windings  ...and signal propagation speed in these "transmission line"-like structures.

As you know if you take a copper wire which has many strands which are tinned individually, the resistance is lower than if not tinned.
I think you meant that the conductivity is lower than if not tinned.

Copper conducts better than tin, ...
Yes, thus the more copper the higher the conductivity which is inversely proportional to resistance.

...and each strand is in parallel with the next, parallel resistances, therefore the overall resistance is very low.
It is true that two strands in parallel have lower DC resistance than one such strand but it is false that a stranded wire has lower DC resistance than a solid wire of the same diameter.
This is so because of the air between the strands (blue) that takes up the copper's collective cross-sectional area and increases the wire's resistance. Air has a very high resistance.
If tin takes up the copper's collective cross-sectional area, then this also increases the wire's resistance, ...albeit not as much as air.



At high frequencies, eddy currents and the skin effect rear their ugly heads in bulk solid conductors and this can be mitigated by using a stranded wire in which the individual strands are isolated from each other.  Tin is not much of an insulator but it has a higher contact resistance than bare copper.  Oxidized tin exhibits even higher contact resistance than clean metallic tin.  Oxidized tin (SnO2) is a wide-bandgap N-type semiconductor (~3.6eV) and its junctions with other materials can form complex effects.
The proximity effect is an issue at high frequencies, too.



   

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A wire (with its insulation) has many more properties than merely DC electric resistance and heat resistance. e.g. the thickness and permittivity of the insulation influences inter-turn and inter-layer capacitance greatly ...and there are many more properties at play.
That is actually a large capacitance.  It is nothing to sneeze at - it heavily influences the "transmission line"-like properties of the windings  ...and signal propagation speed in these "transmission line"-like structures.
I think you meant that the conductivity is lower than if not tinned.
Yes, thus the more copper the higher the conductivity which is inversely proportional to resistance.
It is true that two strands in parallel have lower DC resistance than one strand but it is false that a stranded wire has lower DC resistance than a solid wire of the same diameter.
This is so because of the air between the strands (blue) that takes up the copper's collective cross-sectional area and increases the wire's resistance. Air has a very high resistance.
If tin takes up the copper's collective cross-sectional area, then this also increases the wire's resistance, ...albeit not as much as air.



At high frequencies, eddy currents and the skin effect rear their ugly heads in bulk solid conductors and this can be mitigated by using a stranded wire in which the individual strands are isolated from each other.  Tin is not much of an insulator but it has a higher contact resistance than bare copper.  Oxidized tin exhibits even higher contact resistance than clean metallic tin.  Oxidized tin (SnO2) is a wide-bandgap N-type semiconductor (~3.6eV) and its junctions with other materials can form complex effects.
The proximity effect is an issue at high frequencies, too.

Yes I agree with all you have said.

Have you realized that even though that capacitance is across the a2c2 series connection it will not resonate, it can easily be missed that the way those two coils are connected, they buck.


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Have you realized that even though that capacitance is across the a2c2 series connection it will not resonate, ...
No, I have not.
First of all, I do not recognize the a2c2 designations because I am using revised ones that are different.
Secondly, even if a capacitance does not participate in the lumped LC resonance it can still influence the speed of pulse propagation through the windings that surround it.  Parallel conductors with a capacitance between them always form a transmission line. Unterminated transmission lines always create reflections and reflections create standing waves with CW excitation.  All of this happens even in the absence of lumped LC resonance.

For example, a bifilar winding wound and connected as follows:


...will not generate any flux in the core, but it still acts as a coiled transmission line which is heavily influenced by the inter-turn capacitance.
This transmission line will generate inverted reflections from its shorted end and these reflections will take a finite time to propagate back to the source.

  Mechanical analogy of an EM wave
  reflecting from the end of a shorted transmission line.


@ Master Lurker
I think you have a video of a pulse reflecting from the end of a coiled transmission line like that.
If you can find it, please show it to Centraflow.
   

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This a link to one video but not the one of the still.

https://www.youtube.com/watch?v=S4y8zBGH0zY


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"All truth passes through three stages. First, it is ridiculed, second it is violently opposed, and third, it is accepted as self-evident."
Arthur Schopenhauer, Philosopher, 1788-1860

As a general rule, the most successful person in life is the person that has the best information.
   

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This a link to one video but not the one of the still.
https://www.youtube.com/watch?v=S4y8zBGH0zY
That's 5.3MHz + higher harmonics !  Non-Litz copper wire will suffer from a terrible skin effect (28µm) at 5.3MHz ...and shallower for the harmonics.

Too bad the scope is desynchronized. If you do not know how to trigger it on some peak in the "Normal" mode, then at least do a "Single"-shot mode.
Also, where were the probes connected when this scopeshot was recorded ?
   
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