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Overunity Machines Forum



Real OU-Effect to Share with everyone!!!

Started by Magnethos, February 02, 2009, 08:37:03 PM

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hartiberlin

I am remembering doing some tests some years ago, where I taped a coil to a charged up 10.000 uF electrolyte cap and wondered, when I drew this way a good fast spark during a fast tap, that the voltage of the cap did not decrease much. I had reported this already somewhere over here in the forum, but I am now on the PDA and cant find it now. It really depends on the mechanical switching and how fast you do it and what kind of sparking is built up during the short contact.
Too bad I never measured it quantitatively at this time..
Regards, Stefan.
Stefan Hartmann, Moderator of the overunity.com forum

Magnethos

There is a big problem here. There are 2 kind of theories. Classical Electro Magnetic (CEM) and the 'alternative' (but true) theories of Lindemann, Bedini and others.
If people look at this technique thinking about the CEM, they will say this is impossible.

But if we open our mind to the true theory, then this tecnique is an infinite source of energy. As NRG says, we can't look for 'overunity devices' using Classical EM theory.

Magnethos

I think the next device can show free energy effect:

The theory.
1. Anyonce can replace the battery and use other source to get potential (voltage). My idea is to build an antenna to tap potential from the Earth's.
Schematic: Free energy from thin air.
http://www.metacafe.com/watch/915226/free_electricity_from_thin_air/
http://www.youtube.com/watch?v=EYYysBEwA6w
  * We can add as much antennas we need. Maybe using 2 or 3 we can get 24 Volts. Amperage isn't important. We only need voltage. NRG used a capacitor instead of a battery for input. So, we can use an antenna instead of a battery.

2. Automatic switching
Every time we recharge a cap, the discharge time depends on the device. If the device need 1000 Watts, then the capacitor charge will be lost faster that if we want to run a 50 Watts device using the same cap. So, the automatic switching Switchs on/off constantly to recharge the caps. If the device we have connected to the output needs more power, then the switching time will be faster because we need to draw more power.
Some days ago I built a Hulda Clark zapper. That device is a Pulsed DC, Square Wave circuit of 40 Khz.
1 second / 40,000 Hertz = 0,000025 secs, switching time.

3. Capacitor Bank (in parallel)
Capacitors in parallel increase the capacitance of the circuit. We can use 250 Volts (for Europe) capacitors. if we put 10 (250 Volts @ 300 uF) we will have 250 Volts 3000 uF. It's good to use a capacitor bank because it's easiest with some caps instead of using only 1.

I think I have explained this ok, if you have any doubt, then ask me.

alan

It would be nice to see a test of how far you can go with this, for example, how many caps in parallel (like above) can be charged using a single primary cap until depleted.
great work Mr NRG  ;D

newton2

Hello Honoured Profiles and The Honoured Administrator of This The Honourable OU-Forum !

Well, NOW a quite otherwise Idea is introduced to be discussed per Replies to Replies;thanks about THIS opportunity to could discuss "some" about socalled "counter-EMF"/"H-Flux-changes-caused-EMF" , and else , related to a socalled "Selfinductance" ....the Original Topic (Page 1) + a later on co-Topic (to clearerly emphasize about the Observed Circumstance) :

MOST BRIEFLY :
when the Accumulator is "switched"-on to begin charge-UP the Condenser , so also "flows" a "short-while" electrical current through the Coil ; if the "switch-on->switch-off"-period is "made" "short-time" compared to the socalled "Time-Constant"-of-the-Condenser-with-Selfinductance-in-series and if per "Fingers-manual-let-wire-ends-connect-on->off"touch just most quickly a connection is made....
THEN the H-flux having been "built-up"-"in"-THe-Coil´s-internal-Area HAS TO BEE ABRUPTLY QUICK CHANGED TO "NIL-H-flux" causing a very quickly CO-original-electrical-currents-directions-"HiTensions"-"Pulse" ABLE to CHARGE the Condenser to several Hundreds volts (because of the Condenser´s fairly little capacitive value to the Coil´s Self-inductance´s fairly "large" value of some 10´s of milli-henries).......
A POSSIBLE SWITCHMODE-ACTING WITHOUT INVOLVING A "FLYBACK-DIODE" HAS BEEN DEMONSTRATED DUE TO VERY QUICKLY ON-OFF CONNECTING THE WIRE-ENDS PER MANUAL ACTIONS   (a little sparks-arc makes the low enough Air-Gaps-resistance for to enable the ONE-ACT-SwitchMOde-Step.......) !

If allthough the connection is made TOO "long" ON , then the Condenser is charged FURTHER up per
LC-serial-resonant acting , though THEN the L-current becomes at first "nill" , then will "go" CONTRA
"FLOWING" through Coil while DE-charging the Condenser......IT IS THUS IMPORTANT TO MAKE THE SUITABLE SWITCH-ON-OFF-connections-time for PROPER Function....To Say : neither TOO quickly "short" nor TOO "long" for to obtain the "wanted" observed voltage-built-up in Condenser per one-step-action !

WKR & have Yourselves a nice Day !

And Thanks about Your All important Participations to THe Honourable Course of OU !