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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 155 Guests are viewing this topic.

magpwr

Quote from: TinselKoala on March 31, 2017, 10:36:53 AM
@mgpwr: OK< ty.

The high-frequency output from secondary, using LF input from primary, is probably due to resonant ringing, and to get this to work properly the secondary must be loosely coupled magnetically to the primary. This is how Tesla achieved HF outputs from his LF spark-gap-interrupted primary supply. The idea is this: the primary drive circuit produces a fast risetime and falltime short pulse at a relatively low frequency. This causes the secondary to ring at its higher frequency of 1/4-wave resonance and allows VRSWR (voltage rise due to standing wave resonance). Like striking a bell with a hammer. A single strike produces a lot of vibration cycles in the bell. If the primary is too closely coupled to the secondary this causes the secondary to induce back into the primary and damps the resonant rise. If the secondary and its associated capacitance are carefully built for "high Q" then there is little or no decay of the secondary ringing, until the next LF pulse comes along from the primary.
But this is different from the way modern solid-state TCs work, where the primary is pulsed at the same HF rate as the resonant frequency of the secondary. So you get a primary pulse and a secondary sinus cycle, just one, and then another primary pulse comes along. In this setup the primary can be much more closely coupled to the secondary since you aren't worried about mutual damping.
I think the circuits you are working with are trying to do the first, older Tesla method of pulsing primary at a relatively low frequency with short pulses of fast rise and fall times, and allowing the secondary to ring freely at its higher quarterwave resonant frequency. So you might try actually reducing the electromagnetic coupling constant "k" between primary and secondary. Also think about "Q" of the secondary and try to maximize that with careful construction and low-loss components after the secondary output.

Just my "two cents worth" based on my experience with TCs and SSTCs and drive circuitry. Good luck!

hi TinselKoala,

I have managed to come up with this visual presentation which i have drawn in around 10 minutes.
This is how i correlate the singing bowl with kapanadze coil base on the result i have achieved.

Please see attachment.Maybe only a Physics Prof can understand the visual inner working of kapanadze coil.

--------------------------------------------------------
The above concept is similar to the Akula first self-running but unstable device without Earth which was presented in his backyard.

The internal tank coil of the earlier device was set at around 150khz for the kacher\tesla coil and the mini kapanadze coil in the middle of the pvc pipe.
But the applied frequency was exactly 1/3 of the tank circuit which is approx 50khz.

For the older device if the pwm was functioning at 50khz using inverter supply 220volts.This cause the let call it "tank circuit" in the middle of PVC pipe to resonate at it's resonance frequency say 150khz.
Matematically both this frequency 50khz and 150khz needed to be in sync if we are taking about 3rd harmonics.

My only theory related to the older Akula device-
Why Akula previously mentioned the older device was unstable was because of dift in resonance frequency or pwm frequency likely cause by drift in capacitance within capacitor whenever there is change in capacitor temperature.

The only way to solve the frequency drift problem even for pll base circuit is to use "Mica capacitor" where frequency stability is highly "desirable".

---------------------------------------------------------------------------
There are other topic i would like to discuss like "Dave Lawton circuit" HHO presented in my youtube years ago where my knowledge in pll was limited back then.
Related to the pin 11 and pin 12 resistors to use for maximum HHO production at pll resonance and getting circuit lock indicator led to be lit.
But time is limited for me to focus on HHO and space constraint,safety.

Since you have worked with pll...

That's all for this weekend..... :D time..... :(

SolarLab

Also; some/many of the technical details (including the mathematics) are given in the links
below, including several instructive Mathcad based animations. These will assist in detailing
the design analysis and engineering...

Quote from: SolarLab on February 07, 2017, 11:05:54 AM
F.Y.I.

Combining several recently posted "information sources" might assist in
an increased understanding of the concept of FE - CE, BTG, over-unity
(call it what you will). These are postulations presented by their authors but
their theories, IMHO, are quite viable and the empirical references tend to
bare this out.

- http://gorchilin.com/articles/?lang=en the entire site, including Calculations,
and, in particular, these two papers:

- http://gorchilin.com/articles/free/magnetic?lang=en parts 1, 2 and 3;

- http://gorchilin.com/articles/energy/pull?lang=en

- Vasiliev's book (see post #16635 or #16636 in this thread); the entire book,
but in particular Chapters 12 and 19.
http://overunity.com/12736/kapanadze-cousin-dally-free-energy/dlattach/attach/162249/

I repeat these resources again since this valuable information may
have been missed or overlooked...

The rewards will be well worth the time you spend reading and
comprehending the concepts presented!

I could simply regurgitate simplified portions of the material here but that would, in my
opinion, be counter productive and likely quite confusing. The authors have done a much
better job in detailing their assertions than I could do in a piece meal fashion on this thread.

Have a productive day and all the best...

FIN

SolarLab

F.Y.I.

Since it might be easy to overlook the importance of pulse
generated harmonics and how they relate to the overall operation
of the Standing Waves; Gorchillin also provides some underlying
theory and interactive calculation animations in his "Calculations"
section.

http://gorchilin.com/calculator/?lang=en

FIN

NickZ

   It does look like the same or similar type of TL494 circuit as what I am working on. Adrian's push pull driver, (first blurry image below). 
 
   I've got my TL 494 push pull circuit connected up and running.  But, it's overheating the mosfets,  big time. Any ideas as to what to do about it.
   Here's a couple of pics of my set up as it looks right now, (2nd and 3rd images) below.

soliman



I've got my TL 494 push pull circuit connected up and running.  But, it's overheating the mosfets,  big time. Any ideas as to what to do about it.
   Here's a couple of pics of my set up as it looks right now, (2nd and 3rd images) below.


Hi,
Try to reduce duty cicle.
or it is noised