Why ask me to repeat something if you're not going to comment this time either? Just change the subject again.
Sorry I'm getting a little testy. When I join a group, it's hoping to get some discussion. I'm not interested in posting a blog strictly about my own ideas. I think I should step back and take a break.
It would be a loss if you should decide to leave..I understand the wish for more discussions. I also would like that. On other forums, it is also very quiet....I check them once in a while. What is your goal? Can pm me....
A bi-filar coil has an output which contains two different phases. The phase angle depends on the relative lengths of the two windings. With both wires the same length, the phases are at 180. The output wire could keep on winding, by itself, until that wire is, for instance, a quarter wavelength longer than the input wire which is wrapped side by side throughout its shorter length. Nikola's patent shows the outer wire extending an extra 90 degrees around the perimeter, but this doesn't necessarily give rise to a 90 degree phase difference in the signal. That wire could wrap on around a couple of times, or more, depending on the desired phase variance, and the overall wire lengths.
When both wires have the same length, running the single wire output through a full wave rectifier will double the intensity of the potential. Or a single LED on the output will chop the bottom of the phases, leaving the same biphasic frequency. (With a DC offset, both complete phases will pass through the cell).
The effect the phase variance has depends on the substance. A given substance will require a characteristic phase angle. If all you want is a longitudinal wave, use 90 degrees. Then each molecule will experience a field which compresses, then expands, as each wave passes.
Brian, if i understand your video explanation, you hook up a squareware function generator positive output with one lead to that tiny bif coil and then from there is one wire going to the diodes and cell. I am correct here?
I changed the leds for super fast diodes. The results are the same. Adding a coil or capacitors didnt improve. So i doubled my secondairy coil in size. That gave me higher voltages. Results in bubles a bit better. But not really hho pops after ignition...
It works now much better. I got some highfrequency switching high power transistors.... That works! The circuit is still a little onstable, but stable enough for the coming tests.
Here another video... A 8 watt tl bulb goes fully bright The circuit does 18v on 0.3 amps.
When i touch the solder on the plus wire, i get jolt... See also how the bulb is still shining when it goes over the batterys... As the whole circuit goes Tesla....and radiates...
The tiny transistor gets hot.... The lightbulb gets on So, at least a babystep has been taken. This tiny tesla does not visually ionize the air, but the gas bulb shows a radiant field of energy!
My first attempt failed with getting a mini tesla circuit working... Maybe my transistors are no good or my secondairy coil.... Monday i can get me some transistors.... The one i used sofar: Ksp44 C945
Brian, those are very very cool test,s you did. I am proud on you. Never give up, i would say. You are the first showing high voltage on the electrodes of a Meyer test setup. I never seen anything like this before.
My comments : i think that your coil between the cell and diode, is picking up power from the secondairy. That closes that part of the circuit.
Question: can you try separating the cell with diodes and coil , from the high voltage transformer? Just use a long wire between them. At least 2 meters would be good. I wanna know if you see bubbles with that distance..
Man....!!!! Wow!!! Those sparks show a voltage of at least 10kilovolts....
you also will have zero volts across the water in that way
Equivalent circuit of a capacitor - fuel cell. Make the resistance Re = 200 Mega ohms and you can supply 2 kilo volts. Where Re is the insulation resistance Circled in blue in the picture
Yes i know that the wfc is a very leaky capacitor. I just wanted to point out that the hho gas is HIGLY CONDUCTIVE.....
Goodluck with putting kilovolts on a running hho cell. I hope that you have a life insureance. ITS DANGEROUS