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Overunity Machines Forum



Understanding electricity in the TPU.

Started by wattsup, October 18, 2009, 12:28:42 PM

Previous topic - Next topic

0 Members and 13 Guests are viewing this topic.

Magluvin

Sparks   so are you saying that when the tpu lights a bulb, that it is not of the same energy content as when a real 100w per say is lighting the bulb?  =]  It lights the bulb, but with less energy than it appears to be?  trix.

Mags

forest

no, I think sparks said that filament is producing some force which makes argon atoms acts like little hammers on filanment or maybe I just took that wrong

giantkiller

@Light bulb,
It is a different energy. When the bulb lights up this new way it is cool and white, not yellowish and hot. And the new way works under water. E.V Gray did his demos with children, lightb bulbs and water.

@Wattsup,
In the last test with the iron core I connected the primary(gold) and secondary(red) in series then the secondary(red) sits inside the primary(gold), Mobius style. Then the air bobbin as a third air coupled, air core winding. I can alter the primary too. Slap happy simple. I have added caps to tank it but didnt spend enuff time. I will post a pic. It is pretty much like the jpg.

In the bobbin test the turns on the bobbin are in parallel with the primary turns so this is straight transformer coupling. The Led only picks up half the cycle. Interesting little configuration. It doesn't work at a distance so this is not wireless that is why placement and alignment are so critical.

Was above my knees in alligators this weekend so I am free this week to continue on.

ramset

Giant Killer
Quote:
@Light bulb,
It is a different energy. When the bulb lights up this new way it is cool and white, not yellowish and hot. And the new way works under water.
------------------------------------
Underwater Now that sounds very cool!
White and "cool"
would love to play with that!
Hopefully we can have a TPU school soon!
I think you would be quite the "professor" G K

That would be nice!

Ahh... If only it was a perfect world....

Chet
Whats for yah ne're go bye yah
Thanks Grandma

wattsup

Quote from: sparks on March 30, 2010, 07:40:09 AM
  For ionization to occur you need to produce emwaves aka photons of a definite wavelength.  The ionization will occur with the greatest yield of free electrons dependent not on the intensity of the wave but on the nature of the wave.  SM's kicks are of a high frequency nature.  A light bulb heats the filament into infrared emission (not very efficiently either)  the photons emitted then are absorbed by the argon gas.  This causes the electrons in the inert gas to be ionized but their free flight is of a very short duration so the oscillation in and out of the atom causes a higher frequency photon to be emitted in the form of visible light as the electrons return to the atom.  Now if the filament becomes an efficient antennae then the argon gas would be stimulated with less input energy.

Maybe I could chunk it out in laymen terms or wattsup terms. lol
What this is saying is a description or answer to my video question. What is happening in the filament.

You apply a voltage to the bulb, which is the source energy or electromagnetic waves entering and heating the filament and creating an EM field. The filament then gets red hot and emits photons that collide with the inert argon gas that creates the light or the ionization of the inert argon gas that produces light. Hmmmm. This would mean that the photons leaving the filament would then have to return to the filament otherwise the filament matter would have changed its atomic weight and the type of mass would no longer be the same. Also, the inert argon gas would have to revert back to its original state. That I have a problem with. All of those photons and electrons leaving the filament will change the valence of the matter. Being encased in a bulb vacuum, those photons would definitely have nowhere else to go but to migrate back to the filament to reform its original matrix. I don't know. It is very hard to picture it. But that is expected with such a question.

@GK

Good going with your tests.

I posted a picture of my next toroid here because it is also relative to what @gotoluc is doing in his Self Running Coil thread.

http://www.overunity.com/index.php?topic=8892.msg235321#msg235321

The way I originally connected the totoir bucking is like the SEC. and PRI. Bucking connections, but, look at the connections for the SEC. and PRI. Gotoluc connections. This is increasing the coil inductance by many fold meaning more mag field to play with.

So my idea is simply to do the same thing with this toroid and air coil LEDS, but this time, I will have a secondary coil in there to send all the secondary power back to source while lighting up the LEDS. Simple enough.

Oh, hope you had some alligator repellant.

@All

Also, I am putting here a diagram of my next circuit tests and will definitely need help to polish it up, but the main idea of the circuit is to follow the Tesla Ozone Patent for pulsing the Toroid with higher voltages and see if more energy can be sent back to source to both pulse the toroid and keep the battery voltage the same. That would be a major coup. I have tried this many times with standard relays and much lower frequencies and I can tell you it produces high voltage up to the 1500 volts range. The principle of function is rather complicated but in general, the mosfet is there so the capacitor can pulse one way and the inductor pulses the other way at each on/off of the mosfet, so you get two pulses for the price of one.

I have lettered the circuit for anyone who wants to give explanations or connection modifications.

The only real hindrance with these damn Mosfets is the flyback return that will happen in this circuit. It will want to rush right through the mosfet and back to the positive of the battery. This circuit will show you all about what inductance can really do. lol

Just to make sure guys know the difference between BEMF and flyback, this little video spells it out very well.
http://www.youtube.com/watch?v=yi7cmUpMdX8&feature=related