If you put a capacitor that is 10 times biger than the other in series basically you end up with smaller capacitance than the smaller capacitor... if you get the signal to oscillate only with the head capacitance you will get a changing frequency... if you get a capacitive coupled drive in this way you get a stable resonance that will fluctuate not much than 10 percent... for example..
he is not interested in the capacitance of body actualy he just couple capacitively to have a fixed freq to work with, such as the load variation wont affect the carrier... he even uses a feedback to make the carrier auto tuned...
one is the PLL, it takes its signal from a voltage controled oscillator VCO the voltage that controls it goes to pin 9 its from 1v to vcc-1... the frequency is determined by the capacitor and resistor relation, it also allow you to have an offset of the fequency such that the band where it can lock can be varied... i think this is R2 going into pin 12... pin 11 goes R1 and pins 6 and 7 goes the capacitor... the resistors or pots terminate in ground 0v.. the frequency is independent therefore meaning it oscillates disregard of its in resonance or not.. the frequency going out also gets into the pll phase comparator... the phase comparator works on edge detection. you also need a feedback from where you take the signal to compare with on the other input of the phase comparator... the output of the phase comparator is filtered and feedback into the pin 9 VCO... the phase comparator will charge up or discharge the filter capacitor accordingly with phases diferences creating a phase locked loop... the loop may have delay on the feedback side that may need to be compensated for geting proper absolute perfect resonance..
is important that you understand the phase relations of the pulse you are applying and how you get the feedback... the feedback signal must come from what you are trying to resonate.. depending on the coupling method etc...
I will try that, i thought also of using a big cap in parallel with the full wave bridge rectifier too, and a resistor in series... but i will try this thing about the capacitor too... I should calculate from the voltage and frequency right?
Cool steve, measure the resistance by applying dc voltage and measure the amperage... i used 110 v there was 35ma flowing ... I believe i can get less than that if i make many flushs on the cell with the pure water...
I finishing to paint my new cell it will have 6 stainless steel tube pairs being the outside tube covered in its outside with varnish and the inside of the inside tube also coated with varnish (those for transformer) I did a test with hot water and it didn't seem to come of.. . i hope it don't lead to problems with the conductivity of the water.. but as it is an insulator i guess i will not have problems... They look like gold remember the color of stan tubes... is just like honey gold..
i made this to get a better ratio of resistance and capacitance... my tubes witch i used for measuring the resistance was not insulted and was about 4 inches long having 1 inch diameter the inside tube and 2mm gap ...
This would explain the cell with variable distance utility too...
And this might also explain the tube cuts... To reach precisely the same capacitance for each tube... to match the frequency with the transformer...
I just got a surprise, my friend brought me 6 tube sets 304 material, the inside tube 1,56 cm outside diameter, long 50cm and outside tube have 1,7cm of inside diameter, this give me a gap of about 0,6mm or 0,023inchs thus my capacitance is around 27,5 nf per tube being 6 tubes will become around 166,5nf...
frequency would be around 12khz thus my inductor for the 6 tubes together would be around 1mh...and XL would be 78
Now to allow the damping factor to be low a good deal of resistance must be present in the secondary of the transformer at least i guess
Now i need to solder the tubes to their bases and
Now i would like to get some acrylic tubes to enclosure the cels ( the inside of the inside tube and outside of the outside tube) and another to put all the cells inside...
I went to the store to buy the diodes and the mosfet and i ended up buying some fuses and an igbt caled irgp30b120kd-e 1200v 30 amps
I was afraid that the irfp250 burned because a spike than i will find how to make a snubber well avoid burning this igbt witch was a bit expensive. .
I will solder everything up and i show you the scope
You will see the spikes... than
i need to add the second diode to create the step charging effect...
than is a matter of inputing voltage up to here the hydrogen will blow out of the bottle...
My friend engineer is going to make some tubes for me i think he will make three tubes sets with 1mm gap...
This way i can vary the capacitance...
The unipolar pulses are really interesting as seems full wave bridge rectified but the pulse is being generated by the collapse of the field in the coil.. as together with the spike...
I found that the magnet dont cause mutch effect on this new transformer.. i believe that is because the primary winding is much wider than the other i tested before.. So the exact effect of the other transformer was having the primary about 3 cm wide and the magnet being 1cm between north and pole...
I got the exact pulse wave form meyer showed... thru the water thought. Using the big green inductor connected the way i showed in that drawing... vic by sebosfato
now i just need to get into resonace...
I tried to attack on the 110 volts line but my dimmer burned in 5 seconds got also my irfp250 burned too... i will go buy a fuse and will connect straight to the line again=)... i will buy some of them... And i need to go buy some more diodes and mosfets...
Is because i don't have a variac so im connecting straight to the line..
I just found that if i get a magnet close to the primary coil of my toroidal transformer with the polarities paralleled with the coil i get strange effects on current and voltage being induced on the secondary....
In one case the current will drop 4 times meaning it will consume 4 times less current while raising the voltage a little bit,
and on the
Other case the current will drop just a little and voltage induced will almost double.
This might be one way to get Real over unity, because if you think about both effects could be useful in a variety of cases...
I'm editing a video that i made here and will post in some minutes...
Hope you enjoy...
I'm not sure its over unity and probably is not... However is very strange... You have to agree.
It probably has to do with the electron bounce effect , stan talk about and
the creation of a switchable path of magnetism controlled by the pulses... when the pulse is off, the permanent magnetism is allowed to enter into the coil...
I have a friend who have a patent for the generation of h2 and 02 and it uses palladium second him, we calculated the price to construct a little device, and was around 7keuros at that time, and palladium and platinum were responsible for almost half of this value. the other half was for the rectifiers and the rest for the capacitor and pumps, magnets...
palladium have the ability of absorbing hydrogen ions. or deuterium ions...