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Overunity Machines Forum



Towards Realizing the TPU

Started by poynt99, September 03, 2008, 08:46:35 PM

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0 Members and 2 Guests are viewing this topic.

EMdevices

If we want to realize a tpu we need

1)  tuning hardware for around 5 to 6 kHz
2)  a source of ambient energy  (hint, hint  :)  )

To address the first point,  you will realize it is not so eazy to get low resonance with a decent quality factor from mere  coils and capacitors  (LC tank circuits)    What realy is needed is a high quality type of resonator and based on the clues from the videos,  these can be the mechanical/vibrational type.  Sonic speeds are so much slower then the speed of light and also the resistance (or loss) of energy in a tank is lower.  

A few type of devices can be built, and I belive have been built by SM,  but I can not escape the feeling that he mentioned  "bailing wire"  because it is critical.   If you read about magnetostriction and the Wiedemann effect (torsional effect)  you will realize how nicely it fits in.   Now we can couple magnetic fields at 90 degrees to each other and create strains and acoustic waves in a wire that is precut to a certain length to be resonant at that frequency.   Here's just one website that mensions magnetostriction type of sensors:    http://www.swri.org/3pubs/brochure/d17/magneto/magneto.htm

The OTPU could be using the vibrational properties of the rings, so simular concepts but different geometry.    

I get quite a bit of induction near power lines,  I'm working to build my resonator, and some of these acoustic resonators can have quality factors up to 70000,  which means the little voltage I might get induced in a simple coil can be amplifyed that much more.  (I get induction of 0.01 volts  not so far away from the lines, so imagine I multipy by 70 000, I would be getting 700 volts !!!!! )

EM

P.S. there are many different configurations for this magnetostriction effect.  We can drive the collector with DC and drive the controls with AC or vice versa.  Just to illustrate one configuration here's a diagram.  Here I drive the iron wire with DC voltage to impose a circular magnetic field inside of it.  The control coils then produce an oscillatory longitudinal field inside the wire.  The two fields will interact and produce a strain or wave of acoustic energy inside the wire that travels back and forth (only if the wire is magnetic).  At the right frequency it will resonate, and it will have high Q. (or low loss)   There are several patents out there utilizing this phenomena for high quality resonators.

sparks

    Tesla's secondaries look like helical resonators loaded with a torroidal cap sometimes spherical.   Driven at say a quarter wavelength or any other frequency insuring an antinode at the base and a node at the top.  A lot of energy can be stored in this standing wave field as each input signal adds to the energy intensity standing in this field.  How does this standing wave or dense energetic field relate to the rest of the ambient conditions?  The energy is not being radiated from the circuit but mother nature knows things are different  over there.  What is her response?   If we look at what Tesla was doing in his magnifying transmitter the standing wave goes undamped.  His special expensive ground transmitted a longitudinal em wave through the electron field of the Earth as the ground connection represents just an anitnode and the wave spreads out longitudinally in the Earth inductor.  This creates a standing wave pattern with nodes and antinodes along the spherical inductor.  Lets plop down  a ground connection and run it into another helical resonator.  Say the ground is on a nodal plane.  The resonator doesnt give a damn because it just recreates the standing wave along it's helical geometry with the nodes fallling at different geometrical spots on the helice.  The receiver helice tuned so that the node again ends up on the top of the helical resonator and the capacitor loading is identical to the transmitter.  Now you need to tap the sw.  The voltage between the nodes and antinodes is one way.  Or the current between the nodes and antinodes is another.   The transmitter remains undamped but not the receiver.  Mr. Tesla was getting his input energy for free mind you.

     Yes; I charged the condenser with 40,000 volts.  When it was charged full, I discharged it suddenly, through a short circuit which gave me a very rapid rate of oscillation.  Let us suppose that I had stored in the condenser 10 watts.  Then, for such a wave there is a flux of energy of (4 x 104)2, and this is multiplied by the frequency of 100,000.  You see, it may go into thousands or millions of horsepower.

Think Legacy
A spark gap is cold cold cold
Space is a hot hot liquid
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wattsup

@Mannix.
Quote from: Mannix on February 07, 2009, 05:29:12 PM
And just how fast are those electrons ??? are there other states???...................................................BINGO!
I don't know.................but I do know how to play BINGO. lol

@otto

OK here is a question.

Run with gain. A small transistor can run with gain because when I give it 1.5 volts on the gate it let's x amount of voltage to pass and as I give it more and more it will let more and more into the circuit and so on. Would this be
correct? So a simple transistor could be a simple escalator if left to its devices.

@EM

Thanks for your post. Yes it could be directly related to vibration since vibration is movement, no matter how small. You can turn a magnet inside a coil, you can make a coil that resembles a magnet with sections that pulse in sequence or.... you can vibrate a magnet inside a coil. All are forms of movement.

I am putting up a FTPU - Circuit #1 which is really the first one to show the relationships as I see it between the rings, the coils and the toroid. You will notice the parallel between your last diagram and this one, regarding the ring and coil. In your diagram you are showing the ring energized by a battery. In mine, I am energizing the ring via the natural induction that will develop off the polarities of the half toroid.

Transformers usually work from primary to secondary and as such the winds are different. When you have two identical winds on a toroid, this will permit a back and forth movement and make room for tremendous harmonic havoc.

Pulse the right half toroid will also pulse the outer coil and induction will happen through the toroid core and through the ring backwards to the other half toroid on the ring side back towards the other side. This is like a quadruple resonance potential. This will be my first build tests.

Now the circuit will change with the so many variables possible but in general, these are the components one would work with adding maybe two more components by the end of testing. I wanted to put this up as a basis to START.

The ring is simply a three loop mobius of thin insulated bailing wire (iron wire). The outer coils will have to be experimented for actual connection directions to establish a positive potential on one ring and negative on the other.

Let the fun continue.

sparks

   The simple charging of a capacitor can run with gain.  Tesla told us how a loong time ago.   Charge her up slow.  Let her go fast.   Make sure things oscillate a bit from your hammer blow.  Mother nature remembers.  What SM was doing is no different.  Charge up the cap.  Dump her into a  helical resonator.  Tap the current so you don't screwup the primary oscillations.  You can throw an arrow at a target or you can invest it into pulling a string on a bow.  Which is the biggest bang for the  buck/target.

Yes; I charged the condenser with 40,000 volts.  When it was charged full, I discharged it suddenly, through a short circuit which gave me a very rapid rate of oscillation.  Let us suppose that I had stored in the condenser 10 watts.  Then, for such a wave there is a flux of energy of (4 x 104)2, and this is multiplied by the frequency of 100,000.  You see, it may go into thousands or millions of horsepower.



Think Legacy
A spark gap is cold cold cold
Space is a hot hot liquid
Spread the Love

gyulasun

@sparks

I wonder how can you utilize the energy you receive through the sudden discharge?  This is the point in this, isn't it.

Starting with 10 W and then?  Please continue. 

Thanks,  Gyula