Dual-pulsing circuit integrates with VIC to drive resonant cavity
established · StanBot · 2026
gas production beyond simple voltage attenuation via compounding-action (particle impact) within the resonant cavity.
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488 results for “resonant cavity” · 47ms
established · StanBot · 2026
gas production beyond simple voltage attenuation via compounding-action (particle impact) within the resonant cavity.
established · StanBot · 2026
The Electron Extraction Process, labeled (BB) and shown in Figure 1-7 (corresponding to Figure 20JX), is hereinafter referred to as 'The GAS RESONANT CAVITY.'
established · StanBot · 2026
The dielectric properties of Argon Gas (dielectric constant 1.000545 @ 23°C) between electrical plates (E3/E4) form the capacitor (ER) of the Gas Resonant Cavity (t).
established · StanBot · 2026
Water's dielectric value provides resistance to amp flow, allowing it to function as an integral capacitive element (the Resonant Cavity) within the VIC Circuit.
established · StanBot · 2026
Pulse-Voltage repetition rate sets up the step-up electrical charging effect because the Resonant Cavity functions as a capacitor due to the dielectric value (resistance to amp
established · StanBot · 2026
The Resonant Cavity Zone (35) has a gradually decreasing cross-sectional circumference (85), acting as a
established · StanBot · 2026
Injected water fuel-droplets (48a-48n) surround the outer surface area of the exposed positive probe (33) while entering the Taper Resonant Cavity (180), as illustrated in Figure (3B) and Figure (14).
established · StanBot · 2026
In terms of assembly, the gas resonant cavity (410), electron extraction circuit (270), and optical lens (121) together form the gas processor (260).
established · StanBot · 2026
laser energy (electromagnetic energy having zero mass) is injected into the Gas Resonant Cavity (410) via optical lens (121), superimposed onto the gas ionization process and
established · StanBot · 2026
Stainless steel voltage plates (E1/E2) physically form voltage zones (66/67) regardless of the geometric shape or configuration of the resonant cavity.
established · StanBot · 2026
To reach maximum gas-yield, the resonant cavity is shaped as a tubular structure — typically a 0.50 inch diameter tube
established · StanBot · 2026
to water) to the water bath (68) is prevented by encapsulating the resonant cavity (57) in delrin material (72), an electrical insulator to high voltage that
established · StanBot · 2026
core (53), secondary coil (52), switching diode (55), resonant charging choke (56), resonant cavity assembly (170), natural water (68), and variable resonant charging choke (62) together
established · StanBot · 2026
Voltage levels (22a...22n) control the applied voltage potential across Resonant Cavity Assembly (120) of Figure (3-22) through voltage amplitude control circuit (50), which
established · StanBot · 2026
U.S. Patent #4,936,961, issued June 26, 1990, covers the Resonant Cavity Voltage Intensifier Circuit (VIC).
established · StanBot · 2026
Exposing expelling laser-primed and electrically charged combustible gas ions exiting the Gas Resonant Cavity to a thermal-spark or heat-zone causes thermal gas-ignition, releasing thermal explosive energy
established · StanBot · 2026
called 'The Hydrogen Gas Gun' and is placed on top of a Resonant Cavity Assembly, as illustrated in Figure (1-17) as to Figure (1-18).
established · StanBot · 2026
Displaced combustible gas atoms exit the waterbath and pass through the Gas Resonant Cavity (T), then are exposed to a separate pulsating laser energy-source (V) at
established · StanBot · 2026
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
established · StanBot · 2026
NO2 (940) exposed to the Electrical Polarization Process (160) via the Gas Resonant Cavity (140) undergo the same molecule-to-atom separation, liberating oxygen (O2) for reuse.