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Stan’s Legacy

TonyWoodside

188 posts · 11 more in threads this archive does not carry · writing between Jun 2010 and Apr 2017

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.

WFC VIC

#130 · date not recorded

Speaking of WFC's acting like diodes, I have observed several of my cells taking on diode characteristics. Such as if I take my multimeter and set it to the "tone" test setting, it will only give a tone and conduct in one direction. I've also tested my cell with a diode tester and it acted just like a diode acts when being tested. Very strange stuff. I would like to see the avalanche effect occur at very low current ;-)

carpenter technology ss wire

#7 · date not recorded

The wire doesn't look coated. i came across a roll of SS Wire yesterday. It was made by Sears Roebuck, Cat. No. 6757 which is 0.004" 18-8 Stainless Steel wire and it measured around 30 ohms per foot, but its not coated either.

Gated Frequency Generator

#17 · date not recorded

All of the bobbin cavities have to match in inductance with the primary coil’s inductance for the desired frequency the user is aiming for. This way makes sure that all coils hit resonance at the same time. Since the primary has the strongest magnetic field it leads the way for all other magnetic fields to add to its magnetic field strength.

So something like this, The gate frequency matches the resonance of the coils and the 2nd resonant frequency matches the resonance of the water. So the 2nd resonant frequency is inside the gated frequency.

Example. Say the coils resonate @ 500 Hz and the water resonates at 5khz. So you would superimpose a 500 hz frequency over the 5khz so that the coils and water hit resonance at the same time!!!

In this example the Sec = 1H, L1 = 1H, L2 = 1H, which gives Ltotal = 3H and the capacitor would equal 3.38nF. This would make the resonant frequency of the coils 500 Hz and the cell 5khz and they would hit resonance at the same time.
Gated Pulse = 500 Hz
PLL Freq. = 5kHz

Gated Frequency Generator

#14 · date not recorded

The only thing I can think of right now is that the gate pulse is used to promote the step-charging effect in the cell. it also can control the charge/discharge rate of the cell. There may also be a need to allow a definite relaxation time after each pulse, to increase the period in which the ionized charges may recombine and hydrogen and oxygen may be collected.

Gated Frequency Generator

#12 · date not recorded

A gate pulse controls the number of pulses produced by the resonant frequency generator sent to the primary coil during a period determined by the gate frequency of the second pulse generator. The gate can be connected to a pressure sensor that can be placed in the Resonant Cavity which also includes a gas outlet. The gas pressure sensor is operatively connected to the circuit to determine the rate of gas production with respect to ambient gas pressure in the water capacitor enclosure.

When the maximum gas pressure is reached in the resonant cavity, the sensor will send a signal to the gated pulse generator which will stop the pulses from being applied to the primary of the transformer until the pressure in the resonant cavity drops to a safe point.

Heres the logics for the circuit.

(http://www.globalkast.com/images/tonywoodside/Fig.6_logics.PNG)

Gated Frequency Generator

#10 · date not recorded

So Don are you referring to the Injector setup or Resonant Cavity setup? The reason I ask is cuz in the Injector setup, the gate can be used as a trigger for the injector gate to allow water into the injector.

Gated Frequency Generator

#9 · date not recorded

The gate pulse is super imposed over the resonant frequency to form the Pulse Train which will make it fully adjustable. The gate pulse can also be used to extract the electrons from the water during OFF time so that when theres no pulses being applied to the cell the EEC will be active and will pull the free electrons out of the water. Its also used to increase the charged voltage in the cell. The Pulse Train be comes widen while pulse off-time width becomes smaller. Conversely, opposite pulse shaping occurs when its calibrated in revers order.

Gated Frequency Generator

#6 · date not recorded

Not sure if I've ever read anything on this in Stan's patents, but the gate also can be used to set the pulse train to allow the pulses to go to the cell as to charge the cell based on the RC Time  Constant (TC) of the capacitance. For example a coil with the resistance of 10k ohms in series with a capacitor of 1uF, the TC = RC = 10k * 1uF = 10 msec for 1TC. 1TC will charge the capacitor to  63% and it takes 5 TC to fully charge the capacitor to X volts. So therefore the pulse train should be 50msec long, which is a frequency of 20hz @ 50% duty cycle. Just thought I would through this out there. Stan shows this is his patents but never really says this. Hints Step-Charging!!! You vary the duty cycle of the Gated Pulse to allow the number of resonant pulses to charge the capacitor or cell. In my example you would have to vary the duty cycle of gated pulse to around 80% to fully charge the capacitor.

(http://www.globalkast.com/images/tonywoodside/TC.JPG)

Gated Frequency Generator

#3 · date not recorded

It controls the number of the pulses produced by the resonant frequency generator sent to the primary. In addition, the gated pulse frequency generator may be operatively interconnected with a sensor that monitors the rate of gas production from the cell and controls the number of pulses from the resonant frequency generator sent to the cell in a  gated frequency in a correspondence with the rate of gas production. So basically it controls the rate at which gas is produced and the formation of the pulse train.

(http://www.globalkast.com/images/tonywoodside/Fig.6.png)

LC Resonance question.

#3 · date not recorded

All of the bobbin cavities have to match in inductance with the primary coil’s inductance for the desired frequency the user is aiming for. This way makes sure that all coils hit resonance at the same time. Since the primary has the strongest magnetic field it leads the way for all other magnetic fields to add to its magnetic field strength.

So something like this, The gate frequency matches the resonance of the coils and the 2nd resonant frequency matches the resonance of the water. So the 2nd resonant frequency is inside the gated frequency.

LC Resonance question.

#2 · date not recorded

the gate pulse is used to promote the step-charging effect in the cell. it also can control the charge/discharge rate of the cell. There may also be a need to allow a definite relaxation time after each pulse, to increase the period in which the ionized charges may recombine and hydrogen and oxygen may be collected.

Bobbin material for vic?

#4 · date not recorded

This is the VIC coil that I'm currently finishing up. It has the SS 430FR wire for the Chokes, which measure 11.7k ohms.
(http://www.globalkast.com/images/tonywoodside/S.Meyer_6-1_VIC_Coil.jpg)

Complete beginner queston......

#12 · date not recorded

ok this is my theory on the purpose of the Gate pulse. When you have the depletion layer form on both electrodes, it will get larger and larger as the  voltage increases. At some point the voltage will make the depletion layer large enough that the two will meet and cause a bridge between the two electrodes. This will cause a dead short condition and current will flow and voltage will drop and you will have a loss of resonance. So this is where the gate comes into play, it limits the depletion layer from getting too big and causing the bridge between the two electrodes.
The B+ & B- depletion layers causes a pulling force on the molecule and  the stripping of the electrons and when the gates switch off, the atoms will link back up as diatomic hydrogen.

Custom u cores anyone?

#34 · date not recorded

they are 0.125" thick, 3" x 3" square slabs....here's the part #I349-40/.125

Custom u cores anyone?

#32 · date not recorded

The powder iron cores that I tested where specially made by MicroMetal, but like I said it only gave me an inductance of around 350mH
The gate is only a mean for controlling gas output, in later design actually it is probably substituted by the injectors signal... think about it...
What about the stepcharging?

From my understanding, the "Step Charging" that Stan refers to is just a way of saying charging a capacitor with pulses, in a step method other than just charging a capacitor with a single applied voltage.