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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 241 Guests are viewing this topic.

jeanna

Hi crowclaw,

Would you be able/willing to make a little drawing of this?
I have some circuits that easily oscillate at 208khz, and I would like to start with them. The resonance cap looks like a 105 (1000000pF = 1uF).
I hope it does not need to be Mhz and I hope I can get this going with 208khz, but I could use help with it. (A pic for starters  :D )

I have thought this should be possible for a while.
I have been wanting to make an immersion heater from some of my secondaries, but since I am pretty new to all this, I could use some specifics.
I appreciate the principles you have just described, but I am still not able to use those words and make something that will heat up.

thank you.

jeanna

Goat

Quote from: crowclaw on November 14, 2009, 12:11:05 PM
@ Goat,

Sorry I didn't reply to your question regarding a single turn primary. Driving  HF signals fed from an oscillator into an inductive loop can produce very high AC currents of several amps. The DC requirements of the power source for the oscillator can be in the order of only an amp or so. Hence the high reactive energy currents (low impedance to AC) set up within a single loop coil is not reflected in the DC current demands from the supply circuit. As an example a single 16" loop of  copper pipe in a LC parallel circuit suitable tuned to match an oscillator operating at around 1Mhz can run extremely HOT with a resultant AC current in the order  of 15_20 amps. The DC power supply can operate around 12 volts at an  amp or two by careful design.  Cheers Paul.  Regards Merv

Hi Merv

No need to apologize for anything and thanks for the response, what you wrote was very insightful, as you mentioned there's always the "careful design" design factor, I appreciate your honesty.

But I still have a few questions...

1.  If we were to build a heater based on the "16" loop of  copper pipe in a LC parallel circuit suitable tuned to match an oscillator operating at around 1Mhz" what would the whole circuit look like?  How do we come up with the values of the components?

2.  The NST mentioned by D. Smith only runs at 20kHz, can you boost them to 1Mhz?

3.  (Not heater question) Do you think the circuit as shown in the end of video 4 and 5 would function if you were to put it together as shown?

Regards,
Paul

Peterae

Guys
We have covered a lot of this stuff on this thread
http://www.overunity.com/index.php?topic=7837.300

You will see one of my replications half way down, it's been a while since i have done anything to it, as i dare not power this baby up in my flat full of modern equipment in case of damage, but am in the process of building a work bench in an isolated area away from modern tech.

Peter

crowclaw

@ Jeanna
@ Paul

Thanks for your replies. I will gladly help with drawings as soon as I get chance. In the mean time have a look here:-
http://www.youtube.com/watch?v=2ODW-ntPHSU
The video demonstrates the principles of electro magnetic energy transfer. The primary consists of a single turn (In this case copper pipe) while  the secondary; also a single turn but of smaller dimension. By tunning the secondary to the fundamental frequency of the oscillator into resonance, maximum electromagnetic coupling between the two coils can be achieved. As a result of the energy induced into the secondary, a low voltage filament lamp acts as a load and as demonstrated lights up quite brightly when in close proximity to the primary. This transformer action using the air as the core is similar to Don Smiths inductive coupling arrangements from the HV oscillator.  Merv


jeanna

Thank you crowclaw for an interesting video.

I tried the link to induction heating on steve's site but it was a blank page... darn!

In the second segment you hold the smaller second coil at the parallel angle and it lights in the center and at 180 degrees but there is an angle looking like 45 but not quite where the second light goes out.

I have seen this angle change something on a joule thief toroid.
It is hard to define and hard to hold it in the right place, but I have had a neon light there and not other places; and a bunch of times the scope probe when held right around that spot showed either a lot more or a lot less than other spots.
I think this is related to what you showed.

Do you know what that is?
No one else has either seen it or showed it to my knowledge.

Also, what is making the power on that circuit?
Is it the wall?
I hope it is pulses and not the wall.  ;)

thank you,

jeanna