established VIC
Resonant Charging Choke (47) to ground completes the VIC
A Resonant Charging Choke (47) connected from the negative voltage zone (44) to electrical ground (48) completes the Voltage Intensifier Circuit 9XA per schematic 20YA.
Bench
1,315 published findings from the ongoing work — what has been established, calculated and observed at the bench, each traceable to the session that produced it.
established VIC
A Resonant Charging Choke (47) connected from the negative voltage zone (44) to electrical ground (48) completes the Voltage Intensifier Circuit 9XA per schematic 20YA.
established VIC
The voltage zone surface areas (44/45) of the Resonant Cavity Assembly (Figure 12) form the capacitance value of the assembly, with natural water inside the cavity providing the dielectric between the...
established VIC
The Voltage Intensifier Circuit 9XA electronic interfacing circuit consists of a Secondary Pickup Winding (42, resistive wire coil), Blocking Diode (14), Resonant Charging Choke (43, resistive wire co...
established VIC
In the Dual Voltage Resonant 'Q' scheme, a Low Amplitude Pulse Voltage Frequency (54) is injected between the Pulse Voltage Frequency (53) to keep an electrical charge on the water molecule during Res...
established VIC
By varying applied voltage amplitude in direct relationship to a variable pulse voltage frequency, the Resonant Cavity Structure can take different shapes to maximize voltage stimulation of the water...
established VIC
The ability of an inductor and a capacitor in a series-resonant circuit delivers a voltage several times greater than the input voltage.
established VIC
Resonant Action occurs when the Voltage Intensifier Circuit (9XA as to 20YA) sets up a circuit condition whereby the inductive reactance components (43/45) and capacitive reactance components (44/47),...
established VIC
The resistive value of the wire-coil (47) prevents amp flow while performing in like manner as a Resonant Charging Choke.
established VIC
Another Resonant Charging Choke, resistor component (47), is placed between the negative voltage zone (44) and circuit electrical ground (48) to help maintain the resistance value (voltage level) with...
established WFC
Distilled water is an insulator to the flow of amps; natural water has less than 20ppm of any type of contaminates and maintains a high dielectric constant.
established VIC
The component arrangement of the Voltage Intensifier Circuit (9XA as to 20YA) retards or prevents amp flow through the circuit.
established VIC
Capacitance is formed between conductor plates 44/45 (voltage zones) since the dielectric value (insulating medium) of natural water is relatively high, opposing changes in circuit voltage until store...
established VIC
Stainless Steel Material T304 forming voltage zone (45) does NOT chemically interact with liberated hydrogen, oxygen, and ambient air gases in natural water when exposed to a voltage potential during...
established VIC
The high voltage output from the Resonant Charging Choke (43) forms a Positive Electrical Voltage Pulse Potential (voltage zone) across surface area (45) immersed in natural water, per the step-chargi...
established VIC
The resistive value of the Charging Choke (43) acts as a resistor, further preventing amp flow in the circuit.
established VIC
The Resonant Charging Choke (43) is a Modulator Inductor which sets up an oscillation at a given charging frequency (voltage pulsing rate) with the effective capacitance of a pulse-forming network in...
established VIC confidence 0.80
The Resonant Charging Choke is identified as component (43), a resistive wire coil, within the Electronic Interfacing Circuit of the Voltage Intensifier Circuit.
established VIC
Blocking Diode (14) conducts electricity in one direction only (the direction of the schematic arrow), preventing electron flow or movement toward the Secondary Pickup Winding (42) during Positive Vol...
established VIC
Since electrons are negatively electrically charged, electron (amp) flow always moves toward positive electrical potential when allowed to do so.
established VIC
The Secondary Pickup Winding (42) is a resistive wire-coil that allows a voltage potential to form across it via electromagnetic induction, while the resistive (Ohm) value of the coil wire acts as a r...
established VIC
The purpose of the VIC circuit operational parameters is to form opposite Electrical Voltage Zones while restricting amp flow during the Electrical Polarization Process, which splits the water molecul...
established VIC
The Resonant Charging Choke (43), connected to electrical ground, forms and completes the Voltage Intensifier Circuit 9XA as referenced in schematic 20YA.
established VIC
The Resonant Cavity Assembly (4) has an inner surface (45) forming a Positive Electrical Voltage Zone and an outer surface (44) forming a Negative Voltage Zone. Natural water inside the cavity provide...
established WFC
The resonant cavity fuel cell can produce more than 115-cc/min of gases at one amp leakage.
established VIC
The voltage intensifier circuit of Figures 9, 9XA, 9XF, and 9XG are functionally the same as Figure 20C, the toroidal voltage intensifier circuit of Figure 20YG, and the rotary voltage intensifier cir...
established WFC
To prevent electrical discharge of gas particles when the resonant cavity (44) and gas attraction zones (57) are submerged in natural water, the fuel cell housing is composed of electrical insulating...
established WFC
Adding more accelerator tubes (56a through 56n, Figure 20B) per resonant cavity stage increases gas yield further; varying the gate switch circuit (58) or sequentially switching accelerator tube array...
established WFC
By repeating the gas attraction process (Figure 20A) many times, charged gas particles increase in velocity since sequential gate circuit (58) applies greater voltage potential per gas attraction stag...
established WFC
To increase particle collision, accelerator tube (56) of Figure 20A is placed between resonant cavity stages (Figures 20 and 20D); expelled charged gases move through oppositely electrically charged p...
established WFC
The geometrical gas production rate peaks out or stops when water flow rate into the resonant cavity becomes constant or reduced during gas production.