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Overunity Machines Forum



Kapanadze Cousin - DALLY FREE ENERGY

Started by 27Bubba, September 18, 2012, 02:17:22 PM

Previous topic - Next topic

0 Members and 301 Guests are viewing this topic.

wings

Quote from: T-1000 on November 14, 2012, 03:52:29 AM
The pulsed stranding wave from coax cable will interact with EM field from L1 in coil and this is where you have effect.
Also the standing wave cannot be shielded with things like Faraday Cage and this is what exactly will happen with shield in coaxial cable.
I agree on the original TK the effect of the coaxial cable (resonance line) is to tune the frequency generated by the discharge with the inductance in such a way as to have standing wave.

http://www.rife-beam-ray.com/3.1mhz_coupler/index.htm

note: see the close copper contact before welding lead is no good for FE


(from this project [size=78%]http://www.rife-beam-ray.com/3.1mhz_match/index.htm [/size][size=78%])[/size]

http://www.google.com/patents/US4682125
http://www.google.com/patents/US2104916

Сергей В.

Привет всем !!

@wings It's not TK effect but NIKOLA TESLA RADIANT EFFECT !!

@Itsu You need to make Nano-Pulse like this one using КД226!!

Itsu try to back on КТ926А. Using driver inject all current which driver can give to base of КТ926А. Remove current limiting resistor in base and make base connection directly to output of your driver. Solder driver pcb on the base so base and emitter can hold driver pcb.

For the ferrite primary and secondary change transformation ratio. USe 1:3-1:4 rato. For example numer of turns 1:3-1:4; 2:6-2:8; 3:9-3:12 turns.
Try all rectification diffusion diodes with reverse voltage 300-400V or higher. If you can find try MUR460. You must get several old diffusion diodes or you can't get a DSRD effect.

ps. Make many experiments and give us video with positive results. 

Reg. Сергей В.

verpies

Quote from: wings on November 14, 2012, 05:42:47 AM
I agree on the original TK the effect of the coaxial cable (resonance line) is to tune the frequency generated by the discharge with the inductance in such a way as to have standing wave.
A short pulse does not create a standing wave if the reciprocal of pulse repetition frequency is shorter than the twice the length of the coax (times V.F)
10ns pulses repeating every 20000ns in 8m of coax (VF=0.66), certainly fall into this category.
See the attached animations.

wings

Quote from: verpies on November 14, 2012, 09:31:02 AM
A short pulse does not create a standing wave if the reciprocal of pulse repetition frequency is shorter than the twice the length of the coax (times V.F)
10ns pulses repeating every 20000ns in 8m of coax (VF=0.66), certainly falls into this category.
See the attached animations.

my comments was on spark system that contain lot of harmonics !
http://www.overunity.com/12328/radiant-electriciy-generated-with-spark-gaps-and-induction-coils-theory/msg327736/#msg327736
http://web.archive.org/web/20110726140534/http://www.hammondmuseumofradio.org/spark.html


but if you look to single square pulse also this have very large harmonics as described in this documents:

Ultra Wideband Signal Generation

"Commonly used signals for UWB applications are step-like pulse, impulse, rectangular pulse, monocycle and polycycle pulse."

http://www.microwavejournal.com/articles/print/653-ultra-wideband-signal-generation



added: Transmission Lines and Magnifiers[/size]


http://home.freeuk.net/dunckx/wireless/magnifier/magnifier.html


verpies

Quote from: wings on November 14, 2012, 10:02:19 AM
my comments was on spark system that contain lot of harmonics !
but if you look to single square pulse also this have very large harmonics as described in this documents:
Yes, a rectangular pulse can be decomposed into many sinewave harmonics, but what difference does that make?
Should I waste another hour to make an animation of a rectangular pulse being reflected in a transmission line?  ...or can you simply realize that it will never meet its own reflection at low PRF ?