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Overunity Machines Forum



Re-Inventing The Wheel-Part1-Clemente_Figuera-THE INFINITE ENERGY MACHINE

Started by bajac, October 07, 2012, 06:21:28 PM

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0 Members and 25 Guests are viewing this topic.

darediamond

Somehow some way, I think, the first 3 major thing to make any Overunity Transformer work is to make sure:

1. You make your Primary Winding to generate Etremly High Flux and the only way I know to do that is to apply Tesla style of Winding. So you must use at least 10 to 30 strands or above of any gauge you wish to use. And note that between 100 and 200 turns produce the Strongest Flux though you can go higher in relation to your input voltage and core size.
Furthermore, you should separate each layers of your primary winding and secondary windings too with appropiate insulator which means an insulator as thich as the magnet wire you intent to use. But generally, plastic cellotape is better than paper. If the tape is not as thick as the gauge of your wire, simply re-tape the area over and over to achiece the desired thickness. Another advantage of using plastic tape is that it holds your windings firmly and that firmness aids high capacitance too and capacitive is one of the keys.

2. You cancel Lenz Law in your Set-up. This is a Major Key because onze you achieve this, then overunity is 70% bound to occur. So simply mould a the type of core Thanes Heins invented or if you wanna go the way of Mr. N. Ramaswani, then you wind one Primary Clockwise and the other primary anticlockwise to negate Lenze effect to pave way for the flow of Flux in the correct WAY.

Other things I'm considering is instead of using AC to power the System and therby such heavy Wattage, can't the Primary bé Pulsed with an High Voltage low amp input and still get AC at the secondary much like in inverter?

I think if this is possible then Optical Switch will bé employed to Switch the Primary and the Primary must bé wound with Thin Copper gauge or Heave Kilogram of say AWG#26 or #30 or #31 to allow for high resistance needed for High Voltage usage at vero low miliamp.

So in a nut shell the Primary will then bé using say 540VDC at 0.05A or even 1000VDC or higher depending on the Resistance of the Primary coil finished winding and still produce extremly powerful Flux to the well prepared Secondary(wind to form Capacitor) to produce upward of 1000W.

Another benefit in Pulsing the primary will bé the production and capturing of Radiant Energy which will help cool the system and further allows for complete Looping using Diodes and Capacitors that matches the voltage of the incomming Back EMF.

Most times, the Back EMF is always in Ten fold withouth you loosing ang forward amperage. So when you pulse your Primary with say 500V 5mAh, you will get as back EMF at least 500VX5mAhx10!!!

So all you need do is to make a Lenzless High Voltage stepdown transformer and connect it to your E.M.F Capaturing Capacitors and from the transformer to Rectifying diodes and from there to filter capacitors and from there to your Super Capacitor Bank and Or Battery provided the output Voltage from the H.V Lenzeless stepdown transformer fits your Bank charging Voltage.

All the way from Nigeria, Dare Diamond say hello to the Whole house.

NOTE: No human invention is perfect so also my sayings above. So they can bé modyfied for corrections where anyone think I am wrong.




darediamond

To generate High Otput Wattage in the Ramaswani great invention without inputing high wattage as high as 60W, High Voltage Pulsing DC is needed because Voltage is the Major Driver not the Current.

In High Voltage pulsed Motors, one of the ways to surpress lenze includes usage of High Voltage!!



To curb saturation of the core using DC, then buy powderd Iron from Chineese Manufactures if you can't get it in your countries local Iron manufacturing companies, 2-Part or 3-part Resin or.  Any other Epoxy and mix them together to Mould your core.

See people, moulded core can withstand Higher Voltage at Higher frequency or oscillation.

Use thin gauge for your Primaries.

When using Mosfet to Switch on and off the Primaries, connect in Parallel High Voltage AC Capacitors to Suck any B.E.M.F or Spike so as not to get your Mosfets fried!!

The extreme capacitance build-up in the primaries conditioned them excellently to absorb the Ambient Energy which multiplies the Output of the Secondaries Enormously. So YOU MUST use nothing less that 10 strands or even more as high as 30 to make your Primaries and connects there leads in SERIES.

Wind your primary in capacitor style by separating each layers with Plastic Tape( I have already stated the benefits in this)

Also, when winding your Primaries, make sure the strands falls side by side to increase the capacitance.



antijon

Hey guys, I'm following a hunch here.

If you look at the image, we have a phasor of a resistor in series with an inductor. Now a perfect inductor has inductance, and zero resistance. So ideally, devices based on inductors, such as a transformer, cause the current to lag the voltage by 90 degrees, due to high reactance.

However, because there is a resistance in series, the resistance offsets the reactance, causing the lag to be less than 90 degrees. So looking at the phasor again, if the resistance were higher than the reactance, we could eventually reach zero current lag.

So I'm starting to think the reason Figuera made his commutator was twofold.
1. So the exciter current could be powered by DC.
2. The variable resistor, and series of inducer coils, reduced or eliminated the reactance.

Getting into this, in his other motionless patent he mentions,
Quoteuntil the present, none has tried to change, at industrial scale, from zero, the magnetic power of the excitatory magnets or electromagnets of a running machine.
This strange quote seems that he implies alternating the exciter current of a generator to produce the same results. When considering the generators of the day, with their large exciter coils, what would the results be?

So, is it possible to create a generator, or simply a transformer, powered by AC? I'm curious to know if the turns ratio still applies if you had a larger resistance than reactance (zero current lag)? ???

hanon

I think this is an easy way to get the two signals: using a magnet  (or DC inductor) + AC signals to modulate the strength of the final magnetic field. While one field is increasing in strength (adding the magnet field  plus de AC magnetic field) the other field is decreasing in strength (the AC field substracting from the magnet field). Later, when the AC is reversed, the situation is the contrary in each inducer. You will get two opposite signals.