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Overunity Machines Forum



IST! NEO ZAP! TECK Breakthrough ....

Started by innovation_station, December 13, 2008, 03:23:34 PM

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0 Members and 4 Guests are viewing this topic.

innovation_station

lets see you can use a door bell a buzzer a vibrator a relay a spark gap a motor ....  hummmm

lol

i can go on and on ... 

i would perfer if it had 0 junk in it !

it is then almost  dummy proof !

lol

ist

great work !
To understand the action of the local condenser E in fig.2 let a single discharge be first considered. the discharge has 2 paths offered~~ one to the condenser E the other through the part L of the working circuit C. The part L  however  by virtue of its self induction  offers a strong opposition to such a sudden discharge  wile the condenser on the other hand offers no such opposition ......TESLA..

THE !STORE IS UP AND RUNNING ...  WE ARE TAKEING ORDERS ..  NOW ..   ISTEAM.CA   AND WE CAN AND WILL BUILD CUSTOM COILS ...  OF   LARGER  OUTPUT ...

CAN YOU SAY GOOD BYE TO YESTERDAY?!?!?!?!

gauschor

I'm stuck again. I tried to check the kicks on an oscilloscope (borrowed...) and they were quite large. However then I tried to put on other loads instead of the LED:

A small e-motor or a small bulb requiring only 600mW. Unfortunately none of them could be powered by the kicks and both didn't show any reaction at all. So although I could power dozens of LEDs it is not possible to power anything else :(
Clearly the amperage is the missing thing. And the peaks don't seem to deliver enough of amperage, so they are consumed like chocolate. How to go on now? ... :s


innovation_station

A DIODE AND A CAP .. OR THE MAGNET ... AND TRY AGIN .... 

IST

now what if the driveing cap was the output cap such as seen in my video below ..

http://www.youtube.com/user/innovationstation#p/u/32/FVs_7uCbkbQ
To understand the action of the local condenser E in fig.2 let a single discharge be first considered. the discharge has 2 paths offered~~ one to the condenser E the other through the part L of the working circuit C. The part L  however  by virtue of its self induction  offers a strong opposition to such a sudden discharge  wile the condenser on the other hand offers no such opposition ......TESLA..

THE !STORE IS UP AND RUNNING ...  WE ARE TAKEING ORDERS ..  NOW ..   ISTEAM.CA   AND WE CAN AND WILL BUILD CUSTOM COILS ...  OF   LARGER  OUTPUT ...

CAN YOU SAY GOOD BYE TO YESTERDAY?!?!?!?!

gauschor

It has taken some time since I was struggling with loose connections very often, and a transistor died :(
Also I wanted to get 100% sure (again...) that the LED was not lit up by the transformation effect within the transformer I used (8V input, 220V output). Therefore I exchanged the transformer with a small bifilar aircoil (no core) with an 1:1 ratio - and it worked great.

Last time you suggested that I need to implement a diode and a cap. I hope I made it correct when you look at the picture attached?
Now in your video clip you show how the caps are charged with voltage when pressing a switch very shortly: because this circuit is switching very often, I guess I should get a rise of voltage as well. I did get one, although my capacitor is very small. Does this output (green text in the pic) compute with what you have been expecting?

But now, although I get this kind of voltage what can I do with it? Are the "kicks" stored in the caps or what?

innovation_station

Quote from: gauschor on May 08, 2010, 01:45:59 PM
It has taken some time since I was struggling with loose connections very often, and a transistor died :(
Also I wanted to get 100% sure (again...) that the LED was not lit up by the transformation effect within the transformer I used (8V input, 220V output). Therefore I exchanged the transformer with a small bifilar aircoil (no core) with an 1:1 ratio - and it worked great.

Last time you suggested that I need to implement a diode and a cap. I hope I made it correct when you look at the picture attached?
Now in your video clip you show how the caps are charged with voltage when pressing a switch very shortly: because this circuit is switching very often, I guess I should get a rise of voltage as well. I did get one, although my capacitor is very small. Does this output (green text in the pic) compute with what you have been expecting?

But now, although I get this kind of voltage what can I do with it? Are the "kicks" stored in the caps or what?

im sorry in my video .. THERE IS NO TRANSISTOR  ... 

THOSE ARE MY RESULTS PER INDIVIGUAL PULSE ..

PULSE IT 12VDC ... DRAIN CAP HUNDREDS OF VOLTS ..

REPETE ... 

: )

IST

WITH OUT CAP USES 160 MA 12VDC ..   it operates best at lower speeds ..  also in that demo video i used 19vdc 4 amp supply
To understand the action of the local condenser E in fig.2 let a single discharge be first considered. the discharge has 2 paths offered~~ one to the condenser E the other through the part L of the working circuit C. The part L  however  by virtue of its self induction  offers a strong opposition to such a sudden discharge  wile the condenser on the other hand offers no such opposition ......TESLA..

THE !STORE IS UP AND RUNNING ...  WE ARE TAKEING ORDERS ..  NOW ..   ISTEAM.CA   AND WE CAN AND WILL BUILD CUSTOM COILS ...  OF   LARGER  OUTPUT ...

CAN YOU SAY GOOD BYE TO YESTERDAY?!?!?!?!