Dual Voltage Resonant "Q" - Part 2
Dual Voltage Resonant "Q" · 2024
ground (48) to help maintain the resistance value (voltage level) within the Resonant Cavity during charging. The resistive value of said wire-coil (47) prevents amp flow
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The patents and their transcriptions, four forums, the bench notes and the glossary — one index, ranked together, so a claim in a patent and the thread arguing about it come back side by side.
455 results for “resonant cavity” · 30ms
Dual Voltage Resonant "Q" · 2024
ground (48) to help maintain the resistance value (voltage level) within the Resonant Cavity during charging. The resistive value of said wire-coil (47) prevents amp flow
Dual Voltage Resonant "Q" · 2024
coil) (42) Blocking Diode (14) Resonant Charging Choke (resistive wire coil) (43) Resonant Cavity Inner Surface (45) (forming a Positive Electrical Voltage Zone), Resonant Cavity Outer
Reference numerals · Single Voltage Resonant "Q" · 2026
surface area, voltage zone, voltage surface area, Electrical Voltage Zones, Resonant Cavity Assembly, Resonant Cavity Inner Surface
Reference numerals · Dual Voltage Resonant "Q" · 2026
voltage zones, capacitive reactance, negative voltage zone, Electrical Voltage Zones, Resonant Cavity Assembly, Voltage zones surface area, Resonant Cavity Outer Surface
Reference numerals · Dual Voltage Resonant "Q" · 2026
inductive, surface area, voltage zone, voltage zones, Electrical Voltage Zones, Resonant Cavity Assembly, Voltage zones surface area, Resonant Cavity Inner Surface
Reference numerals · The Birth Of New Technology · 2026
Resonant Cavity, Resonant Cavities, Resonant Capacitor, Gas Resonant Cavity, Furnace Nozzle Assembly
established · StanBot · 2026
and electrical ground (48), helps maintain capacitance value (voltage level) within the Resonant Cavity during voltage pulsing, with its resistive wire-coil value acting as a resistor
established · StanBot · 2026
ground (48) to help maintain the resistance value (voltage level) within the Resonant Cavity during charging. Source: [[doc:dual-voltage-resonant-q-part-2|WFC Dealership Manual Extended - Design Specs — Dual Voltage Resonant
established · StanBot · 2026
yield (Figure 20D vs 20C). Source: [[doc:resonant-cavity-mode-of-operability|WFC Dealership Manual Extended - Design Specs — Resonant Cavity Mode of Operability]]
established · StanBot · 2026
aiding the compounding (resonant) action. Source: [[doc:resonant-cavity-mode-of-operability|WFC Dealership Manual Extended - Design Specs — Resonant Cavity Mode of Operability]]
established · StanBot · 2026
tuning-in resonant action regardless of the shape and dimensional size of the resonant cavity (44). Source: [[doc:circuit-function|WFC Dealership Manual Extended - Design Specs — Circuit Function]]
established · StanBot · 2026
As shown in Figure 20D, resonant cavities are stacked exit port to inlet port to accelerate compounding-action per stage. Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity]]
established · StanBot · 2026
Voltage amplitude (f) is varied to sustain compounding-action within the resonant cavity (44) and is adjusted according to cavity size; an increase in voltage
established · StanBot · 2026
varied to increase gas-yield; after step-up, the applied voltage range to the resonant cavity (44) is from less than one volt to 5,000 volts or more.
established · StanBot · 2026
forms an inductor-capacitor (LC) circuit, since the Excitor-Array (ER) of the Gas Resonant Cavity (t) acts as a capacitor during pulsing operations. Source: [[doc:circuit-component-interaction|The Birth Of
established · StanBot · 2026
as illustrated in Figures 2-4. Source: [[doc:wfc-resonant-cavity-assembly|The Birth Of New Technology — WFC - Resonant Cavity Assembly]]
established · StanBot · 2026
58) from being impaired or altered while being electrically transmitted to the Resonant Cavity (180) of Figure (14) via electrical tabs (71) and (72). Source: [[doc:2-water-fuel-injector-taper-resonant-cavity-chamber|The
established · StanBot · 2026
ohmic) load. Source: [[doc:2-water-fuel-injector-taper-resonant-cavity-chamber|The Birth Of New Technology — Water Fuel Injector (Taper Resonant Cavity Chamber)]]
established · StanBot · 2026
Pulsing operations. Source: [[doc:2-water-fuel-injector-taper-resonant-cavity-chamber|The Birth Of New Technology — Water Fuel Injector (Taper Resonant Cavity Chamber)]]
established · StanBot · 2026
series with Resonant Charging Chokes (56/57) placed on opposite sides of the Resonant Cavity Zone (35), together forming the Resonant Pulsing Circuit (110) of Figure (7)