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Stan’s Legacy

Steve

1,613 posts · 384 more in threads this archive does not carry · writing between Dec 2007 and Dec 2025

An identity on IonizationX as it was harvested, not an account on this site. Nobody here has claimed it, and nothing connects it to a person by name.

Dear all,

Just to make a point:
Do you know what happens if you add a coil in series with a capacitor?

I hope you say: it doubles the voltage across the capacitor...
Now try to do that with a watercell........

Transformers

#7 · date not recorded

another way to drive yr primary coil of a vic coil.

Transformers

#4 · date not recorded

Thanks steve


I have found many good info about the boost converters with 555, http://www.dos4ever.com/flyback/flyback.html


http://www.maxim-ic.com/app-notes/index.mvp/id/2031




I'm having problem to generate my high voltage to the cell so i thought of using the primary in series with the secondary than use the snubber action to raise voltage and send to the cell... the transformer in this boost mode will have almost 100% efficiency...


Nice links!

Transformers

#1 · date not recorded

Here some info on transformers with calculations..

Steve
I place this topic before, but i received almost no response.
Maybe i have to explain this better.
When you pulse the first tube, you also charge the coil.
When the pulse is off, the coil discharges. That discharge is a high voltage pulse of the collapsing field.
In this setup you are getting 2 pulses for the price of 1.
It provides a much better efficiency!

There is a vid on youtube that explains it a bit with use of a lightbulp.
http://www.youtube.com/watch?v=ZJI6iW_qsk8&feature=related

In stead of putting the bemf pulse into the same tube, i used a second one for it.

The working is as follows:
You charge with a squarewave the coil.
The coil is the resistance for the electron flow.
You pulse the coil.
In parallel is one tube cell to pick the first charge, when voltage goes up in the circuit.
When the pulse is gone of the circuit, the coil will discharge and you get an reversed current.
Polarity changes and you catch the reversed charge with the capacitor.
Across the capacitor is tube nr.2
This second tube will only produce hydrogen when there is BEMF.

components are:
coil = primairy coil of MOT or similair coil with minimal 0.5mm thick wire
capacitor = bipolar capacitor of minimal 250V 
Diodes = anything that can handle 250V and some amps
Frequency = around 1 khz or higher..
Gating = play with it

br
Steve
I have been told that the "brown mug" can be prevented in a flat plate electrolysis cell by putting a porous membrane between the plates so that the  two gasses cannot combine in the water.  The holes in the membrane are small enough to let water through but not the bubbles.
Something like nylon mesh was suggested.   Of course this would not be practical in a Meyer tube type cell,  but if true might suggest what the brown stuff could be ( a byproduct of oxygen and hygrogen gasses mixing in relatively impure water loaded with all kinds of nasty crap) .   

I have heard quite a few theories as to what it the brown stuff is,   but unless these can be substantiated with a actual chemical analysis of the stuff... they remain only theories to me.   I certainly would not claim to know without a chemical analysis.   



 

Good post.
I also wanna know this...At the moment its just using waterfilters...

Steve

New DC resonant charging circuit

#15 · date not recorded

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c 416 224 416 304 0 1.0E-8 -1.2675553006208302
w 416 224 480 224 0
w 416 304 480 304 0
d 208 224 240 224 1 0.805904783
l 240 224 288 224 0 0.01 -1.7763568394002505E-15
w 320 304 416 304 0
w 288 224 416 224 0
v 144 304 144 224 0 0 40.0 360.0 0.0 0.0 0.5
w 144 304 208 304 0
159 208 224 144 224 0
R 176 208 176 112 0 2 3000.0 5.0 0.0 0.0 0.5
w 208 304 320 304 0
A 144 304 48 256 0 0 40.0 5.0 0.0 0.0 0.5
g 416 224 416 128 0
o 0 1 0 35 979.7766621314685 4.898883310657343 0 -1

Brian,

You added an Antenna towards your schematic.
Can you explain why you did this?

Steve

New DC resonant charging circuit

#13 · date not recorded

Why does it work in a simulation but not in reality  :-\
$ 1 5.0E-6 0.23009758908928252 51 5.0 50
c 416 240 416 320 0 1.0E-8 700.655449046733
w 416 240 480 240 0
w 416 320 480 320 0
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l 240 240 288 240 0 0.01 -1.3877787807814457E-17
w 320 320 416 320 0
w 288 240 416 240 0
v 144 320 144 240 0 0 40.0 360.0 0.0 0.0 0.5
w 144 320 208 320 0
159 208 240 144 240 0
R 176 224 176 128 0 2 3000.0 5.0 0.0 0.0 0.5
w 208 320 320 320 0
o 0 1 0 35 979.7766621314685 7.475102707912206E-5 0 -1
o 7 1 0 35 640.0 9.765625E-5 1 -1


I hope to give it a shot this week...

New DC resonant charging circuit

#11 · date not recorded

here a new Stan based setup.
The voltage across the cap charges higher then applied voltage.
The resistor is for leaking charge, but cannot simulate a WFC perfectly...

Cap and coil and frequency match.
The result is that amps and volts are 180 degree out of phase.
Hmmm, who said that his system was working with 180 degrees phase difference between volts and amps?
yes STAN MEYER...

$ 1 5.0E-6 0.23009758908928252 51 5.0 50
c 416 240 416 320 0 1.0E-8 21.46768997989414
r 480 240 480 320 0 3806.0
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w 416 240 480 240 0
w 416 320 480 320 0
d 208 240 240 240 1 0.805904783
l 240 240 288 240 0 0.01 -1.2134390714457766E-15
w 320 320 416 320 0
w 288 240 416 240 0
v 144 320 144 240 0 0 40.0 36.0 0.0 0.0 0.5
w 144 320 208 320 0
159 208 240 144 240 0
R 176 224 176 128 0 2 15500.0 5.0 0.0 0.0 0.5
o 0 1 0 35 61.23604138321678 0.03827252586451049 0 -1
o 9 1 0 35 40.0 0.1 1 -1
o 1 1 0 35 69.99202319305638 0.02187250724783012 2 -1






New DC resonant charging circuit

#1 · date not recorded

Hi,

Here is a working DC resonant charging circuit.
The voltage across the Waterfuelcell is al least twice of the input voltage.
In my case almost 30Vpp against a 10v input.

You might pull the conclusion that the waterfuelcell acts like a small battery or capacitor.

Tune the circuit till you reach the highest voltage across the waterfuelcell.
USE ONLY TABWATER OR DESTILLED. NO CHEMICALS ALLOWED IN HERE.

Type of diode: Not important. Only heavy enough for the amps you use
Type of coil: in my case 25 winding of 1mm wire on a metal lamel core. 1mH
                    Just play with some cores you have.
Type of FET: Not important. Any N type will do. The lower the internal resistance the better. Your choice depends on voltage and amps.
Frequency: try to stay above 1khz with tuning. My test was done around 10khz.

Steve


http://www.tpub.com/content/armymunitions/mm50058/mm500580088.htm

http://www.richieburnett.co.uk/dcreschg.html#resonant

http://teslahv.com/DC%20Resonant.htm




Hi,

To make life a bit easier, i redesigned today the Dave lawton circuit.
I used the 556 timer in stead of 2 pieces 555 timer.

Output can be put into a mosfet, or transitor .......

br
steve