Figure 7
As the sources put it
Figure 7 is another alternative arrangement in a preferred illustration of the invention.
Where it appears · 67
Patents 15
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
8× · introduced
…ention herein. Figures 6A, 6B, 6C and 6D - Various Theoretical Bases for Atomic Phenomena Figure 7 is an electrical schematic of the voltage source for the Base resonant cavity. Figure 7 - Base Voltage Source…
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A control and driver circuits for a hydrogen gas fuel producing cell
4×
…ntrol means including a gated pulse frequency generator (Figure 6): a phase lock circuit (Figure 7); a resonant scanning circuit (Figure 8); and the pulse indicator circuit (Figure 9) that control pulses tran…
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Hydrogen Generator System
3×
…llustrates the principles of the ‘present. invention in its most simplified embodiment. a Figure 7 is theppreferred embodiment shown in Figure 1 except in this illustration, the view is perspective. Fizgure 8…
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Hydrogen Aeration Injection System
3×
…a further application of the present invention in a regenerative energy feedback systen. Figure 7 illustrates the voltage potential as applied to several plates. Figure 8 is a graph illustration of the burni…
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Hydrogen Generator System
3×
…6 illustrates the principles of the present invention in its most simplified embodiment; ‘Figure 7 is the preferred embodiment shown in Figure 1 except in this illustration, the view is perspective; Figure 8…
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Electrical Generator Utilizing Magnetized Particles
3×
…Figure 6 is another alternative arrangement in a preferred illustration of the invention. Figure 7 is another alternative arrangement in a preferred illustration of the invention. Figure 8 is another alternat…
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Electrical Particle Generator
3×
…Figure 6 is another alternative arrangement in a preferred illustration of the invention. Figure 7 is another alternative arrangement in a preferred illustration of the invention. Figure 8 is another alternat…
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Resonant Cavity Hydrogen Generator That Operates with a Pulsed Voltage Electrical Potential
2×
…t shown in Figure 1. Figure 6 is another alternative structure to that shown in Figure 1. Figure 7 and 7A are an array of exciters, such as shown in Figure 1, in a preferred embodiment. Figure 8 is an array o…
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Hydrogen Gas Injection for Internal Combustion Engine
2×
…re 6 is a cross-sectional side view of the fuel injector system in the present invention. Figure 7 is a side view of the fuel mixing chamber. Figure 8 is a top view of the air intake valve to fuel mixing cham…
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Hydrogen Injection System
2×
…a further application of the present invention in a regenerative energy feedback system; Figure 7 illustrates the voltage potential as applied to several plates; Figure 8 is a graph illustration of the burni…
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Controlled Process for the Production of Thermal Energy from Gases and Apparatus Useful Therefor
2×
…ssages 12 Relevant to Claim. No. 13 x US,A, 4,233,109 (NISHIZAWA) 2 11 November 1980, See figure 7 and entire specification. A US,A, 4,406,765 (HIGASHI ET AL) 27 September 1983, See abstract and figure 7. A,P…
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Hydrogen Gas Fuel & Management System For An Internal Combustion Engine
2×
…ture containing hydrogen in accord with the invention and its fuel gas management system. Figure 7 shows the electron extractor circuit used in the air processor section to ionize and maintain the ionization…
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Resonant Cavity for a Hydrogen Generator
1×
…a flame could not be sustained and backfire may occur. Hence the port size is limited. In Figure 7, the ports 57 may be greater in size than the individual port 2 of Figure 3. The individual outputs are not u…
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ydrogen Gas Injection Apparatus for Internal Combustion Engine
1×
…n. Figure 6 shows the side sectional view of the fuel injection device of this invention. Figure 7 shows the side sectional view of the fuel mixing chamber used in this invention. Figure 8 shows the sectional…
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Electric Particle Generator
1×
…d tube 30 passes through all three of these secondary windings in a straight arrangement. Figure 7 illustrates the structural configuration of the coil windings. The windings of the pickup coil are lined up i…
Documents 7
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Propagating Electrical Stress
4×
…electromagnetic coupling field (Rp1) of Figure (7-8) due to its self-inductance (640) of Figure 7-3B) crosses over and passes through electrically ground connected Resonant Charging Choke (62), as so illustr…
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Fuel-Gases / Quenching Tube
2×
…A3) is activated by Gas Acceleration Control Unit (B/F), as illustrated in Figure 2 as to Figure 7 Figure 2 Figure 7 Voltage Intensifier Circuit (A3) is interlocked with Safety Control Circuit (D) through Ele…
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Taper Resonant Capacitor (ERt)
2×
…oints (E9a)(E9d) respectively determined by below expressed equation: (see diagram 720 of Figure 7-11) Where, (D) is diameter cross section of cylindrical surface at designated point (E9a - E9n), (x) being ma…
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Circuit Resistance
2×
…ration Process (530) of Figure (5-6). (530) of Figure (5-6) see VIC Matrix Circuit 690 of Figure 7-8 as to Water Chan (760) of Figure (7-15), once again 690 of Figure 7-8 (760) of Figure (7-15)…
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Voltage Amplitude Switch-Off
2×
…hing-in or switching-out the member of Secondary Coil-cavities (505a xx 505n) (see 740 of Figure 7-13) in direct relationship to Taper Resonant Voltage surfaces (E9/10) of Figure (6-2) which acts and performs…
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8-2 - Traveling Voltage Wave-Guides
1×
…electrically connected with resistive liquid (85/Re) (forming Resonant Water Gap "Cp" of Figure 7-8) propagates the transmission of Traveling Voltage Wave-Form (57) of Figure (6-2) as to (770) of Figure(8-1)…
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Operational Parameters of the Invention
1×
…ge potential (see Figures 9A, 9B and 16...Va, Vb, Vn) across the zones, as illustrated in Figure 7. Again, hydrogen gas is produced exponentially as voltage potential increases. The pulse voltage frequency po…
Bench findings 45
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Plate Inductance is L1 and L2 in series with the Resonant Capacitor
2×
…ance of Inductor (L1) and Inductor (L2) in series with the Resonant Capacitor (140-170 of Figure 7-6, corresponding to 690 of Figure 7-8).…
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Pulse off-time is adjusted to compensate for magnetic coupling field rise/fall to produce unipolar waveforms
2×
Pulse Off-time (T2, Figure 7-8, related to item 620 of Figure 7-1) is adjusted to compensate for the rise and fall of the magnetic coupling field (71), producing applied Unipolar Wave-forms (64a through 64n)…
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Capacitor-Gap (Cp) width spacing in Tubular/Taper Resonant Cavity is typically .010–.060 inch
2×
The VIC-VB circuit (620, Figure 7-1) allows reduction of Capacitor-Gap (Cp) (616, Figure 7-11) width spacing (57 of Figure 3-25 ~ 35 of Figure 6-2), typically .060 to .010, as illustrated in the Tubular Reson…
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Output voltage waveform acts as a pulse-frequency doubler due to inductor coil's collapsing magnetic field
2×
…nductance Reactance (FL) of Inductor Coil (56, Figure 3-22): when the magnetic field (FL, Figure 7-3b) collapses, it re-cuts the coil-wrap (L1) during each pulse off-time (T2), producing a second unipolar vol…
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Water's dielectric value (Re) is approximated via Capacitance Equation Eq.22
2×
…Eq. 9 is further approximated in the Capacitance Equation (Eq. 22), illustrated as 650 of Figure 7-4, relative to the Tapered Voltage Wave-Guide (720) of Figure 7-11.…
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Water's dielectric value is part of the VIC's amp-restricting capability
2×
…ts capability of restricting amp flow during Voltage Pulsing Operation (49a...49n of 620, Figure 7-1) as depicted in the VIC Matrix Circuit (690 of Figure 7-8).…
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VIC circuit (60) uses copper wire-wrap Resonant Charging Chokes with a Switching Diode to enable Electron Bounce and Step Charging
2×
…conjunction with Switching Diode (55) to encourage the 'Electron Bounce' phenomenon (700, Figure 7-9), promoting the Step Charging Effect (628, Figure 7-7) by preventing electrical discharge of the Resonant C…
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Inductors L1/L2 must exceed capacitor reactance to maximize voltage deflection
2×
Inductors (L1/L2) should always have larger Reactance than Capacitor (ER, Figure 7-2) in order to maximize amp restriction, enhancing 'Voltage Deflection' (SS'-617a...617n-RR') shown in Figure 7-4.…
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Capacitor ER should remain small due to water's dielectric value for max thermal explosive energy yield
1×
…0) to prevent gas ignition inside the traveling voltage wave-guide (590, Figure 6-2; 730, Figure 7-12).…
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Secondary Pickup Coil resistance (Rl) combines coil resistance and coupling field strength
1×
Rl, the resistive value of Secondary Pickup Coil 52 (Figure 7-8), is combined with the magnetic field strength of primary coupling field 71 in direct relationship to inductance field strength Rp, which is set…
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Secondary coil built from multiple bobbin cavities wired in series
1×
…nnected in series arrangement (505a-505n), each adhering to equation (Eq 20), as shown in Figure 7-10 (710).…
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Electron Bounce Phenomenon sustains induced voltage without electron discharge through choke coil 62
1×
…ctrons from entering the Secondary copper wire-zone (52) via Choke Coil (56), as shown in Figure 7-9 (700).…
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A minute, negligible amp leakage occurs in practice due to electronic component limitations
1×
…drogen Fracturing Process when subjected to the Traveling Electrical Voltage Waveforms of Figure 7-12.…
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Voltage variance achieved by switching Secondary Coil-cavities in/out
1×
…g-in or switching-out members of the Secondary Coil-cavities (505a–505n), shown at 740 of Figure 7-13, in direct relationship to the Taper Resonant Voltage surfaces (E9/10) of Figure 6-2.…
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Taper Resonant Voltage surfaces act as a Voltage Amplifier
1×
…gure 6-2 act and perform as a 'Voltage Amplifier' when the Compressional Wave-form (B) of Figure 7-12 is intensified at Exit Port (32) of Figure 6-2.…
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Altering voltage surface shape increases thermal explosive energy yield beyond applied excitation voltage
1×
…aces (35b/35c) relative to Linear Voltage Surfaces (35a), as illustrated in item (730) of Figure 7-12.…
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Lower water contaminant levels produce higher thermal explosive energy yield
1×
…her energy-yield (gtnta through 85a-85h to gtntn), as illustrated in Water Chart (760) of Figure 7-15.…
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Magnet coil-wire is longer than stainless steel coil-wire and is wound on top of it
1×
…coil (SS56/62) to maximize mutual inductance coil-field (Rp2, adding Rp1+Rp2) as shown in Figure 7-8.…
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Coil capacitance and mutual inductance help maintain/increase pulse voltage amplitude while SS resistance further limits amps
1×
…-Wire further resists amp flow not inhibited by the self-inductance fields (Rp1+Rp2), per Figure 7-8.…
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Fuel-Gas Processor acts as Gas Ionization Chamber when VIC (A3) activated
1×
…3) is activated by the Gas Acceleration Control Unit (B/F), as illustrated in Figure 2 vs Figure 7.…
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Fuel-Cell Assembly retrofits to car engine without modification
1×
The Fuel-Cell Assembly of Figure 7 is directly retrofitted to the car engine without engine-change, because the patented Hydrogen Gas-Mixture matches the burn-rate of Alcohol, dropping from 325 cm/sec to 44 c…
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Covalent bond termination (Electrical Polarization Process) occurs at Voltage Level E
1×
…ciation is directly related to applied voltage — higher voltage yields higher gas output (Figure 7), with variable voltage fields exceeding hundreds of volts during fuel cell operation.…
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Resonant Charging Chokes (56) and (62) create coupled electromagnetic field causing amp restriction
1×
The high pulse-voltage energized Resonant Charging Choke (56) of Figure 7-1/8XA creates an electromagnetic coupling field (Rp1) that crosses over and passes through the electrically ground-connected Resonant…
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Connecting Amp Inhibiting Circuit to step-up transformer forms the VIC
1×
…sifier Circuit (VIC, Figure 8XA1), as illustrated in the VIC impedance network schematic (Figure 7-1) and VIC Matrix Circuit (7-8).…
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Bifilar coil distributed capacitance/inductance produce compounding magnetic field-strength causing voltage enhancement
1×
…= C2a...C2n) and distributed inductance (FL1a...FL1n = FL2a...FL2n) of the bifilar coils (Figure 7-3, VIC Diagram AA) produce a compounding effect of increasing electromagnetic field-strength (Rp1a...Rp1n = R…
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Water dielectric turns the Resonant Cavity into a capacitor within the VIC, enabling >40kV output
1×
…he dielectric value of water (78.542), which becomes an integral part of the VIC circuit (Figure 7-4, item 650); the resultant voltage enhancement can exceed 40 kilovolts, instantly converting water droplets…
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Stacking additional Dual Choke Coils enhances voltage while keeping amp-surge minimal
1×
…Voltage Potential of Electrical Stress is enhanced, per the Voltage Performance Graph of Figure 7-14.…
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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 a…
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Electron sink/grid coordinated with resonant cavity pulsing via synchronization circuit
1×
…this extraction is synchronized with the pulsing electrical field of the resonant cavity (Figure 7) via an interconnected synchronization circuit (Figure 8B), connecting point 'A' of each circuit.…
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Incoming pulse signal is electrically linked to a Water-Gap Capacitor with water dielectric
1×
…tage pulse signal (49a...49n) is electrically linked with the Water-Gap Capacitor (Cp) of Figure 7-8, which has a dielectric liquid of water (85) between its plates.…
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Matched choke resistance prevents coil-ringing during pulse off-time
1×
…enomenon (EbP) to occur without amperage influxing within the VIC Matrix Circuit (690) of Figure 7-8.…
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Negative Voltage Pulse Train forms via Electron Clustering Effect, equal in magnitude to positive train
1×
…tage Pulse Train (67, 602a...602n) is formed by the 'Electron Clustering Effect' (631) of Figure 7-9, producing a Negative Electrical Voltage Intensity (67) equal in magnitude to the Positive Electrical Volta…
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Secondary Voltage pickup coil (52) physically separates the two Resonant Charging Chokes
1×
The Secondary Voltage pickup coil (52) of Figure 7-8 displaces and separates the Resonant Charging Chokes (56/62), positioning them on opposite ends of the Secondary Pickup Coil.…
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Two VIC variants (60) and (620) both restrict amp flow during programmable pulsing but operate differently
1×
…(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), but o…
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VIC Voltage Enhancement Circuit (620) uses stainless steel wire-wrap coils to form unipolar gated pulse-wave without signal distortion
1×
VIC Voltage Enhancement Circuit (VIC-VB) (620, Figure 7-1) incorporates stainless steel wire-wrap coils (614/615) to form a unipolar gated pulse-wave (64a...T3...64n) without signal distortion or degradation…
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Diode (55) sits between Secondary Pickup Coil (52) and Resonant Charging Choke (56) acting as an open switch during pulse off-time
1×
…Choke (56) to act as an electronic switch in the open position during pulse off-time (T2, Figure 7-8), preventing reverse electron flow when Inductor (L1)'s collapsing electromagnetic field (FL1) produces ano…
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Stainless steel coil-wrap resistive wire is ~11.6K ohms per coil
1×
The stainless steel (s/s) coil-wrap (614/615) resistive wire value (Rs1/Rs2) shown in Figure 7-8 is typically 11.6K ohms per coil, an amount sufficient to inhibit current flow oscillation in relation to circu…
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S/S coil-wrap conducts voltage potential via skin effect across its surface
1×
…transmits Voltage Potential across its circumference surface area (skin effect) (66/67 of Figure 7-11, referencing 590 of Figure 6-2), producing a Voltage Wave-Guide phenomena (57 of Figure 6-2).…
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Inductors L1-L2 act as Resonant Charging Chokes forming the Resonant Voltage Effect Circuit
1×
Inductors L1-L2 (Figure 7-6), placed on opposite sides of the water-capacitor ER, act as Resonant Charging Chokes (614/615) and together form the Resonant Voltage Effect Circuit (670).…
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Stored energy is controlled by input voltage amplitude and gated pulse frequency
1×
…oltage Potential as attenuated or varied via Voltage Amplitude (Vo, Va, Vb-Vf, Vg-Vn, per Figure 7-13) and/or Gated Pulse-Frequency (49a-49n, T3, 49a-49n), or both.…
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Step Charging Effect occurs when pulse off-time is less than on-time
1×
Inductance Reactance effectuates the 'Step Charging Effect' (680, per Figure 7-7) when the Pulse off-time (T2) is less than the Pulse on-time (T1).…
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Resonant cavity gap-size must be sufficient to allow the Quenching Effect
1×
…e (35) sufficient enough to allow the 'Quenching Effect' to take place, as illustrated in Figure 7-12 (730) and Figure 3-40 (370).…
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Capacitance of the water cell is a function of plate area, plate spacing, and water permittivity
1×
…en plates (in inches), and the permittivity (Eo) of water's dielectric property (85), per Figure 7-6/7-8.…
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Surface area of tapered resonant cavity computed from longitudinal length and circumference points
1×
…ircumference surface point (b = E9a) where the tapered surface starts, per Figure 6-2 and Figure 7-11 (720).…
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Circumference surface points determined from cylindrical diameter using pi
1×
…ion (D) of the cylindrical surface using the mathematical constant (x) = 3.1416 (pi), per Figure 7-11 (720).…