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Overunity Machines Forum



Selfrunning Free Energy devices up to 5 KW from Tariel Kapanadze

Started by Pirate88179, June 27, 2009, 04:41:28 AM

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0 Members and 41 Guests are viewing this topic.

andrea76

Quote from: Zeitmaschine on July 10, 2012, 07:10:05 PM
Please translate into all major languages as soon as possible. ::)

you can see three coils  in the vide at min 0:35.http://www.youtube.com/watch?v=90W00Yt_PLk.
probably in the others videos  the coils is UNDER the rotating discs.are Tesla Transformer?? the energy from the interaction of 2 T.T. is high frequency and KApanadze in the starting of his experiment did not know how to use it.(he used to rotate an alternator for the ac 50hz output).Continuing the experiments has be found that by coupling to an inverter he had an output of 50 hz and ................

FreeEnergyInfo


sparks

     The three things in the box in the preceding post are Tesla step-down coils.  They use an electrostatic displacement current to work.   As I said in a previous post the electrostatic displacement current is not your conventional electrons in a pipe flow.  This is open circuit design.  It has to be otherwise you will never ever ever get more in than out.  Put a capacitor in the middle of a circuit with two conductors extending out from the capacitor.  Charge the capacitor from a battery with an oscillscope attached to either end of the capacitor extended terminals by just mechanically closing the circuit.   See what appears there.  Then discharge the capacitor clip one end of the wire so it is shorter than the other.  Set your oscope to its highest frequency response.   See if you get a kick to show up on your scope.  You can use two identical lengths of iron wire and it will lower the frequency response range. start clipping one until a spike goes clear off the screen.  Then you get a little power from the ambient.  Meanwhile as you can see you are left with a fully charged capacitor you can dump back into the supply if you know how to build a voltage gain circuit so that a 4 volt charged capacitor can charge a 6 volt battery.
Think Legacy
A spark gap is cold cold cold
Space is a hot hot liquid
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Jury1

Quote…This is open circuit design…
My modest attempt to get the response of the medium using the principle of an open circuit…
http://www.youtube.com/watch?v=bEdNEFLrWWg
scheme of the device
http://s001.radikal.ru/i195/1207/ff/7a46e1d26bca.jpg

anandml

HIGH VOLTAGE FREQUENCY FILTER:
(1)   The mains rectified 300V DC approx is switched on and off through a transformer.   The MOS-FET act as a switch.   The switching speed can be between 25kHz and 100kHz.   The PWM (pulse width modulator) controls the duty cycle of the switching frequency which is similar to a square wave that has variable width.   The transformer is specifically designed for switching frequencies of approx 50kHz.   High frequency transformers are very small and therefore have little mass.

(2)   The secondary of the transformer reduces the switched AC pulses to a lower voltage,   plus isolating the mains to ensure electrical safety.   The diode then converts the secondary pulses to the required polarity.   The secondary Electrolytic capacitor smoothes out the 50kHz DC pulses to an almost perfectly smooth DC supply.

(3)   The secondary Voltage is fed back into a comparator within the pulse width modulator (PWM).   The PWM then automatically adjusts the width (Duty cycle) of the turn on and off pulses to the power MOS-FET   which acts as the high frequency switch, controlling the current Amperes through the primary of the high frequency transformer,   which in turn corrects the voltage at the secondary to insure that the output DC Voltage is exact.

The high switching frequency gives the switch mode power supply a unique advantage of providing a near perfect ripple free smooth and regulated DC supply Voltage   that does not decrease in Voltage as extra current is required.

However switch mode power supplies are extremely complex.   The high switching frequency technology is in the Rf radio frequency band.   This causes major headaches to technically manage containing Rf radiation from the printed circuit tracks and connecting wires within the circuit getting to the outside world and causing Rf noise contamination in radio and TV.   Also the circuit operation is extremely fragile,   and if any fault occurs (no matter how small) it contaminates almost every sector of the circuit.

Switch mode power supplies are non user serviceable, failures are simply dealt with by trashing the power supply and purchasing a new one.   Attempting to service a switch mode power supply is virtually out of the question, except for fanatics who have infinite time.   The technology is so complex and fragile that reliable operation after 7 years is not always expected   but considered a blessing.   As the world converts to using switch mode power supplies and PWM Class D audio amplifiers, they will eventually end up as the dominant mass of rubbish land fills.