Voltage Intensifier Circuit
Also written voltage intensifier circuit
As the sources put it
Figure (3-22) Figure (3-23) Negative electrical ground (61) of voltage Intensifier circuit (60) of Figure (3-22) is electrically isolated from primary electrical ground (48) of Figure (3-22).
Where it appears · 130
Documents 46
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Voltage Intensifier Circuit (60)
6× · introduced
…avity assembly (170), natural water (68), and variable resonant charging choke (62) forms Voltage Intensifier Circuit (60) of Figure (3-22), as illustrated in Figure (3-22) as to Figure (3-23). Figure (3-22) Figure (3-23) Negat…
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Instant Explosion of Water
5× · introduced
…ntensity" to "instantly" releases thermal explosive energy (gtnt) from natural water. The Voltage Intensifier Circuit takes advantage of the "Electron Bounce Phenomenon" to trigger Hydrogen Fracturing Process without amp influx…
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Water Fuel Injection System
3× · introduced
…gases (45) during an increase of applied voltage amplitude (Vo x Vn) of Figure(32) as to Voltage Intensifier Circuit (110) of Figure (7) and Electron Extraction Circuit (120) of Figure (8). To lower Energy-flame temperature si…
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Water Fuel Injection System - Page 2
3× · introduced
…es (45) during an increase of applied voltage amplitude (V0 xxx Vo) of Figure (4-2) as to Voltage Intensifier Circuit (110) of Figure (4-9) and Electron Extraction Circuit (120) of Figure (4-10). Figure (4-9) Figure (4-10) To l…
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Propagating Electrical Stress
3× · introduced
…mp restricting characteristic of said Amp Inhibiting Circuit (970) of Figure (10-1) as to Voltage Intensifier Circuit (60) of Figure (3-22), the spiral-wrapped coils (Resonant Charging Chokes 56/62) being paired together, also,…
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WFC Exhaust Air Reclaimer
3× · introduced
…with U.S. Environmental Protection Agency (EPA) clean Air Act similar in construction to Voltage Intensifier Circuit (110) of Figure (4-9), WFC Exhaust Air Reclaimer (900) of Figure (9-1) utilizes opposite electrical attractio…
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Voltage Amplitude Control Circuit (50)
2× · introduced
…to twelve (12) volts (regulating battery voltage) is applied across primary coil (26) of Voltage Intensifier Circuit (60) of Figure (3-21). Second regulator stage (28) simply acts and function as a gas regulator (33) by preven…
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Fuel-Gases / Quenching Tube
2× · introduced
…el-Gas Processor (E) that performs and functions as a Gas Ionization Chamber when another Voltage Intensifier Circuit (A3) is activated by Gas Acceleration Control Unit (B/F), as illustrated in Figure 2 as to Figure 7 Figure 2…
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CIRCUIT COMPONENT INTERACTION
2× · introduced
…ectrically isolated (no electrical connection between primary and secondary coil) to form Voltage Intensifier Circuit (AA). Voltage amplitude or voltage potential is increased when secondary coil (n) is wrapped with more turns…
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Atomic Interaction to Voltage Stimulation
2× · introduced
…charge and is called a negative ion. Voltage potential within an electrical circuit (see Voltage Intensifier Circuit as to Figure 1-1) can cause one or more electrons to be dislodged from the atom due to opposite polarity attr…
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Gas Processor
2× · introduced
…ed by Electron Extraction Circuit (270) of Figure (3-34) which function in like manner to Voltage Intensifier Circuit (60) of Figure (3-22) except amp consuming device (390) (such as a light bulb 11_2) placed between Resonant C…
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Water Fuel Injector (Taper Resonant Cavity Chamber)
2× · introduced
…ring thermal gas-ignition (180) of Figure (14). (390) of Figure (41) (180) of Figure (14) Voltage Intensifier Circuit (220) of Figure (18) allows Electrical-Stress variation (SS' = RR' / TT' = UU') since voltage Intensifier Cir…
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Voltage to Amp Differential Ratio
2× · introduced
…itional Dual Choke Coils (56/62 _ SS56/62) are included in the stacked coil-array forming Voltage Intensifier Circuit (970) of Figure (10-1) as to (620) of figure (7-1) blocking diode (55) of Figure (3-34) Figure (10-3A) Voltag…
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VIC Switchover Circuit
2× · introduced
…to the fact that both primary coil (957) and secondary coil (958) comprising and forming voltage intensifier circuit (990) of Figure (10-3) are together bifilar wrapped in equal length. voltage intensifier circuit (990) of Fig…
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In Summation
2× · introduced
…gized sub-critical combustible gas ions to come together during thermal gas ignition. The Voltage Intensifier circuit brings on the "Electrical Polarization Process" that switches off the covalent bond of the water molecule wit…
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Quartz Tube Configuration & Operational Parameters
1× · introduced
…y, establishing functional parameters of Optical Thermal Lens (980) of Figure (10-2) when Voltage Intensifier Circuit (VIC Circuit) (10-1) is electrically connected to Voltage Zones (ER) (66/Ell-67/E12). Remember, Voltage-Sync…
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In Application of Usage
1× · introduced
…0) of Figure (3-42) (85) of Figure (3-26) (520) of Figure (5-3) (100) of Figure (4-8) The Voltage Intensifier Circuit (110) of Figure (4-9) brings on the "Electrical Polarization Process" (160) of Figure (3-26) that switches of…
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Wobbling Effect
1× · introduced
…igure (11-1) titled “Neutron Electrical Polarization Process” as to Figure (10-1) titled “Voltage Intensifier Circuit”. When applied, the opposite voltage fields (E15/E16) overcomes the electrovalent bonding force (qq’) that ex…
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Mid-East crisis lends urgency to development of Water Fuel Cell - September 13th, 1990
1× · introduced
…arts that will be completely miniaturized for the retrofit system. It is tied to the VIC (Voltage Intensifier Circuit) which has been updated for the third time and is currently being installed beside the water storage tank in…
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Voltage Dissociation of The Water Molecule
1× · introduced
…cross the Excitor-Array (ER) while inhibiting or preventing electron flow from within the Voltage Intensifier Circuit (AA) causes the water molecule to separate into its component parts by, momentarily, pulling away orbital ele…
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Resonant Action
1× · introduced
…uating voltage amplitude (Vo xxx Yn) in conjunction with pulse-width (65a xxx 65n) allows voltage intensifier circuit (190) of Figure (3-23) to tune-in and match the resonant characteristics or resonant frequency of water bath…
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Gas Destabilization Process
1× · introduced
…y (ER) of Gas Resonant Cavity (t) while inhibiting or preventing electron flow within the Voltage Intensifier Circuit (AA) causes the Gas Atom of Argon (Ar) to become an positive charged ion by pulling away orbital electrons fr…
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Steam Resonator
1× · introduced
…-46) is inserted into Fuel Cell (120) of Figure (3-24) and thermostatically activated via Voltage Intensifier Circuit (165) which directly applies an alternate or opposite (166/167) electrical voltage pulses (during amp restric…
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Water Fuel Injector
1× · introduced
…l0) not only functions as a "voltage wave-guide" (570) but, also, acts and performs as a "voltage intensifier circuit" when applied gated pulse-frequency (64a xxx 64n) travels the length of conical cavity (570) toward exit port…
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Using Water as Fuel
1× · introduced
…the water molecule being subjected to sub-critical state during thermal gas ignition. The Voltage Intensifier Circuit brings on the Electrical Polarization Process that switches off the covalent bond of the water molecule witho…
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VIC Matrix Circuit
1× · introduced
…Intensity" to "instantly" release Thermal Explosive Energy (gtnt) from natural water. The Voltage Intensifier Circuit takes advantage of the "Electron Bounce Phenomenon" to trigger Hydrogen Fracturing Process without amp influx…
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Pulsing Transformer
1× · introduced
…ectrically isolated (no electrical connection between primary and secondary coil) to form Voltage Intensifier Circuit (AA) Figure (1-1). Voltage amplitude or voltage potential is increased when secondary coil (A) is wrapped wit…
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WFC - Resonant Cavity Assembly
1× · introduced
…g engine RPM by way of voltage deflection through a patented electronic circuit called a "Voltage Intensifier Circuit". Hydrogen Storage is "Not" required since hydrogen gas is being produced on demand. Original Content Image…
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Analog Voltage generator (40)
1× · introduced
…of Figure (3-5) which is is electrically linked to primary coil (26) of Figure (3-22) of Voltage Intensifier Circuit (60) of Figure (3-5). Figure (3-22) Figure (3-5)…
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Resonant Propagation
1× · introduced
…cy (46) of Figure (5-5) is adjusted to "tune-in" to the Dielectric Resonance of water via voltage Intensifier Circuit (60) of Figure (5 -3); (46) of Figure (5-5) (60) of Figure (5 -3) whereas; applied voltage amplitude (Vo xxx…
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Resistance (Rs)
1× · introduced
…26) (650) of Figure (7-4) ... allowing the dielectric value of Water (Re) to be a part of Voltage Intensifier Circuit (110) of Figure (4-9) capability of restricting amp flow during Voltage Pulsing Operation (49a xxx 49n) of (6…
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LC Circuit
1× · introduced
…een the electrical plates (E1/E2) forms the capacitor (ER). Water now becomes part of the Voltage Intensifier Circuit in the form of "resistance" between electrical ground and pulse-frequency positive-potential ... helping to p…
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Appendix 4
1× · introduced
…el rate ÷ 100 injection cycles / sec = .0074 ml or 7.4 μl Water Droplet / injection cycle Voltage Intensifier Circuit(Tab 38) 40,000 volts @ 1 ma = 40 watts of applied electrical power 40 watts ÷ 12 volts battery = 3.3 amp/hr.…
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Dual-inline RLC Network
1× · introduced
…te polarity voltage zone (E2) further inhibits electron movement or deflection within the Voltage Intensifier Circuit. Movable wiper arm fine "tunes" "Resonant Action" during pulsing operations. Inductor (D) in relationship to…
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Electrically Charged Water Molecule
1× · introduced
…magnetic force is dependent on the movement of charged particles in a electrostatic field voltage Intensifier circuit (190) of figure (3-23), now, allows voltage to dissociates water molecule (85) by overcoming electrostatic bo…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
2×
…ectrically isolated (no electrical connection between primary and secondary coil) to form Voltage Intensifier Circuit (AA). Voltage amplitude or voltage potential is increased when secondary coil (a) is wrapped with more turns…
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A Perspective View on Water as Fuel: An Endless Source of Clean Energy
2×
…e disassociation or splitting of the water molecule was aided by the invention of the WFC Voltage Intensifier Circuit®. The VIC is especially designed to keep amp leakage to a minimal level to allow the voltage potential of opp…
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ENERGY of the FUTURE - R&Z - Vol 2 No. 3, 1991
2×
…to twelve (12) volts (regulating battery voltage) is applied across primary coil (26) of Voltage Intensifier Circuit (60) of Figure (20). Second regulator stage (28) simply acts and function as a gas regulator (33) by preventi…
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World wakes up to water fuel invention - July 31 1991
1×
…The water fuel put into the injector is exposed to a high voltage pulse frequency via the Voltage Intensifier Circuit technology and an L-shaped frame gate is utilized to control the amount of water fuel going into the system.…
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Mid-East crisis lends urgency to development of Water Fuel Cell - October 29th, 1987
1×
…The ongoing work continues on the mechanical processes and components, including the VIC (Voltage Intensifier Circuit) and mold injection technologies. Meyer believes the public has shown a great interest in his work, as indica…
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State of Unbalance
1×
…opposite voltage potential, as so illustrated in (550) of Figure (5-8) by the use of WFC Voltage Intensifier Circuit as so defined in WFC memo 426 titled “VIC Matrix Circuit.” This applied pulsating electrical stress actually…
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Table Of Tabulations
1×
…lculation on determining the electrical power input required to electrically energize the Voltage Intensifier Circuit per injection cycle. Tab 39:Calculation on determining the liquid-volume of a "Water Droplet" required to run…
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Amp Inhibiting Circuit Vs Voltage Enhancement
1×
…antly convert water (droplets) into thermal explosive energy (gtnt), as so illustrated in voltage Intensifier Circuit Diagram (Figure 1-18). Both VIC Dual Single-Coil (Figure 1-19A) and VIC Bifilar-Wrap Coil (Figure 1-19B) func…
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RLC CIRCUIT
1×
…te polarity voltage zone (E4) further inhibits electron movement or deflection within the Voltage Intensifier Circuit. Moveable wiper arm fine “tunes” "Resonant Action" during pulsing operations. Inductor (y) in relationship to…
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Electrical Polarization process
1×
…of Figure (3-29) as to Figure (3-26) while inhibiting and preventing electron flow within voltage intensifier circuit (190) of Figure (3-23) causes water molecule (210) of Figure (3-27) to separate into its component parts (rel…
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Mega Watt Gas Yield
1×
…e purpose of further destabilizing the mass/electrical equilibrium of said gas atoms. The Voltage intensifier Circuit simply prevents electron replacement during voltage stimulation. The specially treated combustible gas ions a…
Transcripts 1
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Deer Creek - Conference Center - Sterling, OH - Transcription - Part 2
2× · introduced
Deer Creek Conference 1985 - Part 2 (30-60 min) Stanley A. Meyer - Sterling, OH 1985 The Voltage Intensifier Circuit [30:01] We invented a new patented electronic circuit design. I don't get into this design — I don't tell you…
Bench findings 78
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Toroidal and rotary VIC variants perform the same amp-restricting/voltage attenuation function
3×
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 circuit of Figure 20YH, all pe…
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Two VIC variants (60) and (620) both restrict amp flow during programmable pulsing but operate differently
2×
Voltage Intensifier Circuit (60) of Figure 3-22 (Memo WFC 422 DA / WFC 420) and Voltage Intensifier Circuit (620) of Figure 7-1 are both specifically designed to restrict amp flow during Programmable Pulsing Operations (49a-49n…
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Water acts as resistance in the VIC, restricting electron flow
1×
Water becomes part of the Voltage Intensifier Circuit functioning as a resistance between electrical ground (67) and pulse-frequency positive potential (66), helping to prevent electron flow within the pulsing circuit (60).…
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Pulsing core aids amp restriction while VIC is tuned to water bath resonant frequency
1×
The pulsing core (53) aids amp restriction while the Voltage Intensifier Circuit (190) is tuned—by adjusting the pulse train's pulse-frequency (63) via the pulse frequency generator (70)—to match the resonant frequency properti…
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Electron flow within the VIC is inhibited during voltage application to Excitor plates
1×
…oltage potential (65) is applied across the Excitor plates while electron flow within the voltage intensifier circuit (190) is inhibited and prevented, a condition necessary for the water dissociation process to occur.…
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Voltage amplitude and pulse-width attenuation tune the VIC to water's resonant frequency
1×
Attenuating voltage amplitude (Vo–Vn) together with pulse-width allows the Voltage Intensifier Circuit to tune-in and match the resonant characteristics/resonant frequency of the water bath, since the water bath maintains its d…
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Electron Extraction Circuit functions like the VIC but adds an amp-consuming device
1×
The Electron Extraction Circuit (270) functions in like manner to the Voltage Intensifier Circuit (60), except an amp-consuming device (390), such as a light bulb, is placed between the Resonant Charging Choke (56) and the Gas…
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VIC applies alternating voltage pulses across plates E5/E6 to drive Steam Resonator
1×
The Voltage Intensifier Circuit (165) directly applies alternate/opposite (166/167) electrical voltage pulses, with amp restriction, in a sequential manner across voltage plates E5/E6 to activate the Steam Resonator.…
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VIC used for Atomic Degaussing via pulsating electrical stress
1×
The WFC Voltage Intensifier Circuit, as defined in WFC memo 426 'VIC Matrix Circuit,' applies a high pulsating 'Electrical stress' across an unstable radioactive atom via opposite voltage potential (illustrated at 550, Figure 5…
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Reference to WFC Memo 426: VIC Matrix Circuit
1×
WFC memo 426, titled 'VIC Matrix Circuit,' defines the Voltage Intensifier Circuit configuration referenced for applying pulsating electrical stress to atoms as shown in Figure 5-8, item 550.…
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Increasing voltage amplitude raises flame temperature while managing fluid displacement
1×
…s maintained or reduced, during an increase of applied voltage amplitude (Vo x Vn) at the Voltage Intensifier Circuit (110) and Electron Extraction Circuit (120).…
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Voltage Igniter Stage and VIC/Extraction Circuit jointly initiate the Hydrogen Fracturing Process
1×
The Voltage Igniter Stage (180) working with the Voltage Intensifier Circuit (110) and Electron Extraction Circuit (120) performs functions simultaneously to initiate and trigger thermal explosive energy-yield beyond normal gas…
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VIC inhibits electron flow, forcing electron ejection from water atoms during polarization
1×
…rogen atoms (77a/77b) and oxygen atom (76) and causing electron ejection (230), since the Voltage Intensifier Circuit (110) inhibits and prevents electron flow from entering the gas ignition process (180).…
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VIC operates at 40,000 volts at 1mA applied electrical power
1×
The Voltage Intensifier Circuit applies 40,000 volts at 1 milliamp, equating to 40 watts of applied electrical power.…
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VIC inhibits electron flow (amp restriction) to enable Electrical-Stress variation
1×
The Voltage Intensifier Circuit (220) of Figure (18) allows Electrical-Stress variation (SS'=RR'/TT'=UU') because it inhibits electron-flow (amp restriction) into the voltage triggering process (210) of Figure (17) feeding the…
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VIC controls engine RPM via voltage deflection regulating gas flow
1×
…controlled by way of voltage deflection through a patented electronic circuit called the Voltage Intensifier Circuit, which regulates hydrogen gas flow-rate to the engine.…
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Fuel-Gas Processor acts as Gas Ionization Chamber when VIC (A3) activated
1×
…gh the patented Fuel-Gas Processor (E), which performs as a Gas Ionization Chamber when a Voltage Intensifier Circuit (A3) is activated by the Gas Acceleration Control Unit (B/F), as illustrated in Figure 2 vs Figure 7.…
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VIC (A3) is interlocked with Safety Control Circuit via Electronic Control Unit
1×
Voltage Intensifier Circuit (A3) is interlocked with the Safety Control Circuit (D) through the Electronic Control Unit (B).…
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VIC operates at 40,000 volts at 1 mA, drawing 40 watts
1×
The Voltage Intensifier Circuit applies 40,000 volts at 1 milliamp, equaling 40 watts of applied electrical power.…
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VIC power draw requires 3.3 amp/hr from a 12V battery
1×
40 watts divided by 12 volts battery equals a 3.3 amp/hr current draw capacity for the Voltage Intensifier Circuit.…
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Pulsing transformer steps up voltage during pulsing operations
1×
…erations, with the primary coil electrically isolated from the secondary coil to form the Voltage Intensifier Circuit (AA).…
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Argon gas acts as resistance limiting electron flow in the pulsing circuit
1×
The Argon (Ar) gas molecule/atom becomes part of the Voltage Intensifier Circuit as a form of resistance between electrical ground and pulse-frequency positive-potential, helping prevent electron flow within the pulsing circuit…
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Variable inductor-coil (y) inhibits electron movement in opposite polarity voltage zone
1×
…e polarity voltage zone (E4), further inhibits electron movement or deflection within the Voltage Intensifier Circuit.…
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Moveable wiper arm fine-tunes resonant action
1×
…e wiper arm on inductor (y) fine-tunes 'Resonant Action' during pulsing operations of the Voltage Intensifier Circuit.…
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Pickup coil (n) is made of resistive wire-coil (R4) contributing to total VIC resistance
1×
…oil (n) is also composed of resistive wire-coil (R4), the total circuit resistance of the Voltage Intensifier Circuit includes this resistance value.…
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Pulse-voltage across Excitor-Array ionizes argon gas atom
1×
…s the Excitor-Array of the Gas Resonant Cavity, while inhibiting electron flow within the Voltage Intensifier Circuit, causes the argon gas atom to become a positively charged ion by pulling away orbital electrons from the gas…
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VIC electron flow is inhibited during ionization pulse
1×
During the pulse-voltage application across the Excitor-Array, electron flow within the Voltage Intensifier Circuit is inhibited or prevented, enabling the ionization effect on the gas atom rather than current conduction.…
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Dual-pulsing circuit integrates with VIC to drive resonant cavity
1×
A dual-pulsing circuit (components 33, 34, 38, 39, 40) is integrated with the Voltage Intensifier Circuit (Figure 9) as shown in Figure 20C, to enhance hydrogen gas production beyond simple voltage attenuation via compounding-a…
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Resonant charging choke to ground completes the VIC circuit
1×
The Resonant Charging Choke (43), connected to electrical ground, forms and completes the Voltage Intensifier Circuit 9XA as referenced in schematic 20YA.…
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Resonant Charging Choke (43) is a resistive wire coil component
1×
…s component (43), a resistive wire coil, within the Electronic Interfacing Circuit of the Voltage Intensifier Circuit.…
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Component arrangement of VIC 9XA/20YA retards or prevents amp flow
1×
The component arrangement of the Voltage Intensifier Circuit (9XA as to 20YA) retards or prevents amp flow through the circuit.…
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Resonant action occurs when inductive (43/45) and capacitive (44/47) reactances are balanced
1×
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), or circuit impedance, are…
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VIC electronic interfacing circuit components identified
1×
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 coil), Resonant Cavity Inner…
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Resonant Charging Choke (47) to ground completes the VIC
1×
…47) connected from the negative voltage zone (44) to electrical ground (48) completes the Voltage Intensifier Circuit 9XA per schematic 20YA.…
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VIC transformer: copper primary coil, resistive secondary coil, transformer-paper wrap, air-gap coupling
1×
In the Voltage Intensifier Circuit transformer, the primary coil is copper wire and the secondary coil is resistive wire, both insulated to prevent shorting; the two coils are joined on the ground side, wrapped only with transf…
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Pickup coil (56) uses resistive wire to restrict amp flow within VIC (60)
1×
Pickup coil (56) is composed of resistive wire, restricting amp flow within the voltage intensifier circuit (60), per WFC Tech Brief Section 4 (Voltage Attenuation Circuit Design Specs).…
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Two VIC circuits (60) and (70) drive opposing Excitor Plates forming the Steam Resonant Cavity
1×
Voltage Intensifier Circuit (70) is an exact duplicate of circuit (60), applying duty pulse (48) to a second Excitor Plate (69) on the opposite side of the same water molecule; together circuits (60) and (70) form Voltage Inten…
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Voltage Intensifier Circuit (VIC) drives the Electrostatic Generator applying opposite voltage to screen-grids
1×
The Electrostatic Generator (6), referred to as Voltage Intensifier Circuit (9XA), applies opposite voltage potential to the screen-grids (4/5) during the Gas Filtering Process to separate positive and negative gas ions.…
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VIC prevents electron replacement during the polarization process
1×
The Voltage Intensifier Circuit (VXA) prevents electron replacement on the polarized gas atoms, and the water molecule is exposed to the same voltage stimulation process.…
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Connecting Amp Inhibiting Circuit to step-up transformer forms the VIC
1×
…Figure 8XA) to an external pulsing voltage source such as a step-up transformer forms the Voltage Intensifier Circuit (VIC, Figure 8XA1), as illustrated in the VIC impedance network schematic (Figure 7-1) and VIC Matrix Circuit…
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VIC Diagram AA topology: gated pulse train through blocking diode into bifilar chokes forming resonant cavity capacitor
1×
In Voltage Intensifier Circuit Diagram (AA), a gated variable amplitude pulse train (49a...49n) passes through a blocking diode into Resonant Charging Choke (56, primary) and Resonant Charging Choke (62, secondary), which are b…
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Six Voltage Intensifier Circuit bobbins were manufactured in the UK to Stan Meyer's specification
1×
Six Voltage Intensifier Circuit bobbins, manufactured in the UK at Stan Meyer's request, arrived and were confirmed to be of the necessary quality, indicating the VIC bobbin design could be replicated by an external manufacture…
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VIC is battery-driven and throttle-responsive, generating high voltage low current pulses
1×
Under computer control, the Voltage Intensifier Circuit is energised by a normal 12V car battery to generate high voltage pulses at very low current (…
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Pulsing transformer steps up voltage amplitude during pulsing operations
1×
…steps up the voltage amplitude or voltage potential during pulsing operations within the Voltage Intensifier Circuit.…
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Primary and secondary coils are electrically isolated in the VIC transformer
1×
…ally isolated from the secondary coil (no electrical connection between them) to form the Voltage Intensifier Circuit (AA), as shown in Figure 1-1.…
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Variable inductor-coil (D) mirrors inductor (C) but ties to opposite polarity voltage zone (E2)
1×
…rity voltage zone (E2), which further inhibits electron movement or deflection within the Voltage Intensifier Circuit.…
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Voltage Intensifier Circuit (FIG. 7) provides excitation voltage as current-restricting source
1×
A voltage intensifier circuit such as shown in FIG. 7 is used as a current-restricting voltage source to provide the excitation voltage applied to the resonant cavity, sustaining atomic elongation prior to gas ignition.…
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Water Fuel Cell (per US 4,936,961) supplies the hydrogen/oxygen gas mixture, regulated by VIC
1×
…olume of water (9), producing a hydrogen/oxygen and non-combustible gas mixture (10). The Voltage Intensifier Circuit (12) regulates voltage amplitude, pulse frequency, and gated pulse frequency associated with operation of the…
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Voltage Intensifier Circuit acts as current-restricting voltage source for resonant cavity excitation
1×
A voltage intensifier circuit (Figure 7) is used as a current restricting voltage source to provide excitation voltage to the resonant cavity, sustaining atomic elongation of gas ions before ignition, while an interconnected el…
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Voltage Intensifier Circuit (item 12) regulates voltage amplitude, pulse frequency, and gated pulse frequency for the fuel cell
1×
The voltage intensifier circuit 12 regulates voltage amplitude, pulse frequency and gated pulse frequency associated with operation of the fuel cell 7, and is interconnected to the gas management module (referencing US 4,936,96…
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VIC induces Electrical Polarization Process to switch off water's covalent bond
1×
The Voltage Intensifier Circuit brings on the Electrical Polarization Process that switches off the covalent bond of the water molecule without amp influxing.…
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Resonant Action occurs when pulse voltage frequency tunes to water's Dielectric Resonance via the VIC
1×
…tem 46, Figure 5-5) is adjusted to 'tune-in' to the Dielectric Resonance of water via the Voltage Intensifier Circuit (item 60, Figure 5-3).…
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VIC triggers Electrical Polarization Process that switches off water's covalent bond without amp influx
1×
The Voltage Intensifier Circuit (110) brings on the 'Electrical Polarization Process' (160) that switches off the covalent bond (550) of the water molecule without amp influxing.…
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VIC uses Electron Bounce Phenomenon to trigger fracturing without amp influx
1×
The Voltage Intensifier Circuit takes advantage of the "Electron Bounce Phenomenon" to trigger the Hydrogen Fracturing Process without amp influxing, meaning water dissociation occurs via voltage effects rather than current flo…
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VIC exploits Electron Bounce Phenomenon to trigger Hydrogen Fracturing without amp influx
1×
The Voltage Intensifier Circuit takes advantage of the 'Electron Bounce Phenomenon' to trigger the Hydrogen Fracturing Process without amp influxing, and the Taper Resonant Cavity functions as a Voltage Amplifier when interlink…
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Water's dielectric value is part of the VIC's amp-restricting capability
1×
The dielectric value of Water (Re) is a functional part of the Voltage Intensifier Circuit (110 of Figure 4-9), contributing to its capability of restricting amp flow during Voltage Pulsing Operation (49a...49n of 620, Figure 7…
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Stacking additional Dual Choke Coils enhances voltage while keeping amp-surge minimal
1×
…additional Dual Choke Coils (56/62 + SS56/62) are stacked into the coil-array forming the Voltage Intensifier Circuit (970, Figure 10-1), amp-surge is kept to a minimal level while Voltage Potential of Electrical Stress is enha…
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VIC Circuit electrically connects to Voltage Zones enabling Optical Thermal Lens function
1×
When the Voltage Intensifier Circuit (VIC Circuit, Fig 10-1) is electrically connected to Voltage Zones (66/E11–67/E12), it establishes the functional parameters of the Optical Thermal Lens (Fig 10-2).…
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Primary and secondary coils are bifilar wound in equal length for matched displacement
1×
Both primary coil (957) and secondary coil (958) forming the voltage intensifier circuit (990) are bifilar wrapped in equal length, causing both water molecules to be displaced at the same velocity since their masses and the el…
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WFC Exhaust Air Reclaimer is similar in construction to the VIC
1×
WFC Exhaust Air Reclaimer (900) of Figure (9-1) is similar in construction to Voltage Intensifier Circuit (110) of Figure (4-9), and is used to comply with the EPA Clean Air Act by eliminating Nitric Oxide NO gas from IC engine…
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VIC pulsing tunes to gas dielectric properties to trigger Covalent Switch-Off
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The Voltage Intensifier Circuit is pulsed sensitive (49a xxx 49n) to tune into the dielectric properties of an airborne gas molecule, activating Covalent Switch-Off phenomenon (550) by restricting amperage influx, causing Elect…
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VIC coil-assembly interfaces with Taper Resonant Cavity
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The voltage intensifier circuit (VIC) coil-assembly (580, Fig 6-1) is electrically interfaced with the 'Taper Resonant Cavity' (590, Fig 6-2), as schematically shown in Fig 3-22 relative to pulse core configuration (190, Fig 3-…
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Conical cavity acts as both voltage wave-guide and voltage intensifier circuit
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…sides (E9/E10) of the conical cavity function as a 'voltage wave-guide' and also act as a voltage intensifier circuit as the applied gated pulse-frequency travels the cavity length toward the exit port (32), with voltage amplit…
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Resonant, primary, and secondary bobbin assemblies combine to form the VIC coil-assembly
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…bbin assembly (504), and secondary bobbin assembly (506) structurally combine to form the Voltage Intensifier Circuit (VIC) coil-assembly (530), shown in Figure 5-6.…
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Water acts as resistance limiting electron flow in pulsing circuit
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Water becomes part of the Voltage Intensifier Circuit acting as 'resistance' between electrical ground and the pulse-frequency positive potential, helping to prevent electron flow within the pulsing circuit (AA) shown in Figure…
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Movable wiper arm fine-tunes Resonant Action during pulsing
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…per arm that allows fine tuning of the 'Resonant Action' during pulsing operations of the Voltage Intensifier Circuit.…
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Inductor (D) and inductor (C) electrically balance opposite voltage zones E1/E2
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…s the opposite voltage electrical potential across voltage zones (E1) and (E2) within the Voltage Intensifier Circuit.…
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Pulse voltage across Excitor-Array dissociates water by pulling away orbital electrons
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…ge potential across the Excitor-Array (ER) while inhibiting electron flow from within the Voltage Intensifier Circuit (AA) causes the water molecule to separate into its component parts by momentarily pulling away orbital elect…
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VIC triggers Electrical Polarization Process that switches off water's covalent bond
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The Voltage Intensifier Circuit brings on the 'Electrical Polarization Process' that switches off the covalent bond of the water molecule without consuming amps.…
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VIC patented as Resonant Cavity Voltage Intensifier Circuit under US #4,936,961
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U.S. Patent #4,936,961, issued June 26, 1990, covers the Resonant Cavity Voltage Intensifier Circuit (VIC).…
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Increasing fluid displacement and voltage amplitude raises flame temperature
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…duced, together with an increase in applied pulse voltage amplitude (V0), referencing the Voltage Intensifier Circuit (110) of Figure 4-9 and Electron Extraction Circuit (120) of Figure 4-10.…
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Voltage Igniter Stage works with VIC and Electron Extraction Circuit to trigger thermal explosive energy-yield
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Voltage Igniter Stage (180, Figure 4-5), together with Voltage Intensifier Circuit (110, Figure 4-9) and Extraction Circuit (10, Figure 4-10), performs several functions simultaneously to initiate and trigger thermal explosive…
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VIC inhibits electron flow from entering the gas ignition process
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The Voltage Intensifier Circuit (110, Figure 4-9) inhibits and prevents electron flow from entering into the gas ignition process (180), as further illustrated in Figure 4-8.…
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Voltage levels control applied voltage across Resonant Cavity Assembly via amplitude control circuit and primary coil
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…litude control circuit (50), which is electrically linked to the primary coil (26) of the Voltage Intensifier Circuit (60).…
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Variable voltage range of 1 to 12 volts is applied across the VIC primary coil
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…s, representing the regulated battery voltage, is applied across primary coil (26) of the Voltage Intensifier Circuit (60).…
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Laser Accelerator Assembly (20) attenuates battery voltage potential connected to the VIC
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…ttenuates battery voltage potential (32a xxx 32n), which is electrically connected to the Voltage Intensifier Circuit (60).…
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VIC formed by primary/secondary coils, diode, chokes, and resonant cavity
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…ly (170), natural water (68), and variable resonant charging choke (62) together form the Voltage Intensifier Circuit (60).…
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VIC negative ground is isolated from primary electrical ground
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Negative electrical ground (61) of the Voltage Intensifier Circuit (60) is electrically isolated from the primary electrical ground (48), preventing electron flow from the input circuit ground into the VIC.…
Patents 5
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A control and driver circuits for a hydrogen gas fuel producing cell
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…cell capacitor. Figure 9 - PLL Feedback Circuit Figure 10 shows the pulsing core and the voltage intensifier circuit that is the interface between the control circuit and the resonant cavity. Figure 10 - VIC Interface Figure 1…
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
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…0°F. To cause and maintain atomic elongation depicted in Figure 6C before gas ignition, a voltage intensifier circuit such as shown in Figure 7 is utilized as a current restricting voltage source to provide the excitation volta…
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Process & Apparatus For The Production Of Fuel Gas & The Enhanced Release Of Thermal Energy From Such Gas
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…00° F. To cause and maintain atomic elongation depicted in FIG. 6C before gas ignition, a voltage intensifier circuit such as shown in FIG. 7 is utilized as a current restricting voltage source to provide the excitation voltage…
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
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…NJECTION" CONSUMING PORT ELECTRONS COMBUSTIBLE GAS INLET VARIABLE 14 D.C. POWER SUPPLY 58 VOLTAGE INTENSIFIER CIRCUIT — VARIABLE —__ ALTERNATE “62 GATE CIRCUIT +] = 7! BLOCKING DIODE POT 59 83 Eg ELECTRICAL (LIGHT BULB) RESISTI…
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Hydrogen Gas Fuel & Management System For An Internal Combustion Engine
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…and central processing unit interconnected to sensors and controllers in the.system. The voltage intensifier circuit 12 regulates voltage amplitude, pulse frequency and gated pulse frequency associated with operation of the fu…