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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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baroutologos

Quote from: semenihin-77 on December 05, 2011, 01:54:02 PM
Delamorto video_#1

http://www.youtube.com/watch?v=5xgnTeOoyM4

As told, the bulb method is totally in-conclusive in estimating real power... but purelly from personal experience in the field, i have the impression that Kacher's output combined with inverter's, is more than what one should expected but seeing individual bulbs brightness at each mode (plain kacher mode or plain inverter mode).
Just interesting...  nothing more

Note, the sparking kacher is a sign of losses. Kacher's input can be as much as 20 watts or so, but its capacitative coupling and lamp power transfer could be below 50%.
Semenhih, says that his inverter takes 15 watts (i would swear it takes more than that). So if, say, it takes 15 watts Kacher alone should output below 10w (pretty obvious in comparison)

Anyway, i find it amusing! :)

verpies

Below are my interpretations and rephrasings of the tuning instructions pertaining to a device using  ferrimagnetic core from a TV deflection Yoke.
I would appreciate any clarifications and verifications of the issues and additions marked in blue color:


***********************************************************************
Do not concentrate on particular frequencies but on the tuning process itself.
The same frequencies will not work an all devices since every ferrite and every winding has slightly different properties . 

To tune the Yoke device use the following steps:

1. Connect the output of a frequency sweeping Signal Generator to the 15-turn winding (the generator can be connected to the 50-turn winding as well, but connecting it to the 15-turn winding makes the tuning process easier)

2. Connect the transverse 1-turn "U" shaped winding to the input of a Spectrum Analyzer (A computer based spectrum analyzer is adequate)

3. Find a frequency peak above 1MHz  of the largest magnitude on the Spectrum Analyzer. Let’s denote this frequency as F1

4. Disconnect the Signal Generator and the Spectrum analyzer (connected in points 1 & 2 above)

5. Connect the output of a Signal Generator set to frequency F1 (sine, square or rectangular/duty?) to the transverse 1-turn "U" shaped winding.

6. Connect the 50-turn winding to the input of a Spectrum Analyzer and look for a frequency peak with the largest magnitude,  that is not caused by an exponentially decaying ringing waveform and besides the frequency F1.  Let’s denote this frequency F2.

7. Disconnect the generator from the transverse 1-turn "U" shaped winding (connected in pt.5)

8.  Connect the output of a Signal Generator set to frequency F2 (sine, square or rectangular/duty?) to the 50-turn winding.
     Does the input of the Spectrum Analyzer remain connected to the 50-turn winding ALSO (together with the output of the Signal Generator), see pt.6 where it was connected and never disconnected ?
  a) If the output of a Signal Generator is connected to the 15-turn winding instead, the frequency/spectral response of the signal induced in the bifilar winding does not change much, but its amplitude becomes higher.  The latter may be helpful with some measurements.

9. Connect the bifilar winding to an oscilloscope and a small incandescent light bulb in parallel. Be careful as the high voltage induced in the bifilar winding may damage the test equipment (if the voltage is too high then use a voltage divider or a scope probe of an appropriate voltage rating). The light bulb also helps to lower this voltage.

10. Slightly vary the frequency of the Signal Generator connected to the 50-turn winding in order to find the maximum voltage amplitude induced in the bifilar winding, as observed on the oscilloscope. Make sure that the signal induced in the bifilar winding does not represent an exponentially decaying ringing waveform and resembles a sine wave as closely as possible.

11. Repeat pt.10 with the output of the Signal Generator connected to the 15-turn winding.

12. Connect a second Signal Generator set to ~50 Hz sine wave without disconnecting the first generator connected in pt.8 and adjusted in pt.10 & pt.11. The output of this ~50Hz generator will be denoted as the modulating frequency F3.

13. Vary the frequency of the ~50Hz generator in order to obtain the highest amplitude of the signal induced in the bifilar winding and have the waveform induced by the first high-frequency generator ride-on-top of the ~50Hz sine wave from the second generator.

14
. Connect a more powerful incandescent light bulb to the bifilar winding (or a light bulb if no light bulb was connected before in pt.9 ). This will also lower the induced voltage in the bifilar winding.

15. Fine tune F2 and F3 in order to obtain the brightest light from the light bulb. At this point the bulb should be dissipating approximately 150W of power.

16. Apply high voltage sparks from a flyback transformer to the transverse 1-turn  "U"-shaped winding via a spark-gap. Was the 1-turn "U"-shaped winding left disconnected between pt.7 and pt.16 ?  if “not” was there a parallel capacitor connected to it?
   a) Keep in mind that applying sparks from flyback to the 1-turn U-shaped winding causes much higher voltages to be induced in all windings, including the 15-turn and 50-turn windings where the Signal Generators are connected, thus those generators are in danger of being damaged. Protective buffers are highly recommended in order to protect the Signal Generators.
   b) With the HV sparks at the 1-turn U-shaped winding the bifilar winding should be able to output approximately 1KW, which can be verified with a chain of stronger incandescent light bulbs in series.

17. The ferrite material of the yoke core may change its properties during the operation of the device affecting the F1, F2 and F3 frequencies, thus the first Signal Generator should be capable of outputting signals above the common 2MHz limit of many signal generators.
   a. It might be interesting to sweep the signal generators connected in pt.1 from 1-50MHz in order to probe the frequency characteristics of the core and windings.
   b. Note that not every ferrite material and shape may function well.
   c. Keep in mind that strange effects might happen including extreme, unknown and enormously strong fields and radiations, that might or might not affect the health of the experimenter/operator, albeit adverse effects have never been scientifically confirmed.

Magluvin

Quote from: xenomorphlabs on December 05, 2011, 03:17:56 PM
Can anyone recommend a good site to find replacement/equivalent  transistors?

@Magluvin: What transistor type did you use?

I got a couple of russian transistors but not the KT805AM.
It has an ftrans of 20 MHz and most of the other transistors i come across
only have like 1-3 MHz and a power rating of 30 Watt.

No, not using transistor yet. I still have to look up this Kacher setup.

My pics show a simple standard, neon transformer(small from printer/scanner light, rectified to the disk caps then spark to 2 turn primary.

Gotta do laundry tonight, will have a couple hours after.  ;]

Mags

jbignes5

 I just got word from my other experiments that crystals will generate more conduction between to metals when they are permanently compressed. I am wondering if this is what this guy is doing. The copper is pulling on itself to close and squeezing the ferrite rod in a rhythmic way. It is compressing the channels inside of the ferrite material and making them conduct more, then less, then more. He is drawing more energy into the ferrite that way or through it. The direction of flow is controlled by the Tesla induction shield which is biased on. When the swing goes off it is almost instant and this causes a plume of the network to puff and travel out when it hits the surface.


I saw this video about water rings that dolphins, whales and even humans can do under water. Strangest thing I ever saw.


http://www.youtube.com/watch?v=ig0ENGq7AZk


I suspect this is what we are doing here or want to be doing.

And this maybe? http://www.youtube.com/watch?v=QrgTtZXuj4w&feature=endscreen&NR=1

wings

Quote from: jbignes5 on December 05, 2011, 06:56:09 PM
I just got word from my other experiments that crystals will generate more conduction between to metals when they are permanently compressed. I am wondering if this is what this guy is doing. The copper is pulling on itself to close and squeezing the ferrite rod in a rhythmic way. It is compressing the channels inside of the ferrite material and making them conduct more, then less, then more. He is drawing more energy into the ferrite that way or through it. The direction of flow is controlled by the Tesla induction shield which is biased on. When the swing goes off it is almost instant and this causes a plume of the network to puff and travel out when it hits the surface.
I saw this video about water rings that dolphins, whales and even humans can do under water. Strangest thing I ever saw.
http://www.youtube.com/watch?v=ig0ENGq7AZk
I suspect this is what we are doing here or want to be doing.
And this maybe? http://www.youtube.com/watch?v=QrgTtZXuj4w&feature=endscreen&NR=1
there is something similar "ring electrons" in Ken Shoulder experiments the electrons ring run at ballistic speed the impact on metals is similar to cold fusion (trasmutation) you can see the effect here:
http://www.svn.net/krscfs/An%20EVO%20Scope%20for%20Electrolysis%20Projectile%20Measurement.pdf
http://www.rexresearch.com/ev/ev.htm
http://blog.hasslberger.com/2007/10/ken_shoulders_evos_exotic_vacu.html

probably not applicable to our experiments here ....

Ken Shoulder site where you can download files on his experiments:
http://www.svn.net/krscfs/