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455 results
for “resonant cavity” · 29ms
Bench note
WFC uses high-intensity voltage pulses to dissociate water via opposite polarity attraction
established · StanBot · 2026
fuel cell a multi-gas generator. Source: [[doc:resonant-cavity-mode-of-operability|WFC Dealership Manual Extended - Design Specs — Resonant Cavity Mode of Operability]]
Bench note
Pulse-trains 53 and 54 can differ in frequency/amplitude and serve distinct functions
established · StanBot · 2026
action while restricting amp flow. Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity ]]
Bench note
Variable gate circuit (55) retrofits to extend gas production across multiple cavities
established · StanBot · 2026
Figure 20C to extend gas production beyond the limits of a single resonant cavity , minimizing power loading while adding another gas control feature. Source: [[doc:resonant-cavity|WFC Dealership
Bench note
Voltage pulse frequency (g) adjusted 1 Hz to 1 MHz+ to reduce amp flow
established · StanBot · 2026
amp flow while maintaining compounding-action. Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity ]]
Bench note
Voltage amplitude (d) must always exceed voltage amplitude (f)
established · StanBot · 2026
than voltage amplitude (f), in order to maintain compounding action within the resonant cavity . Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity ]]
Bench note
Voltage pulse frequency (e) varied from 1 Hz to 1 MHz+ to increase gas yield
established · StanBot · 2026
Voltage pulse frequency (e) is varied from 1 Hz to 1 MHz and beyond, further increasing gas-yield. Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity ]]
Bench note
Duty-cycle pulse rate varied from 1 to 100 duty-pulses per second to restrict amp flow
established · StanBot · 2026
to help restrict amp flow. Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity ]]
Bench note
Gated pulse on/off time adjustable 1% to 100% duty time
established · StanBot · 2026
J) is proportionally changed to concentrate or expand applied voltages to the resonant cavity (44); the gated pulse train's on-time (53) versus off-time (54) is adjustable
Bench note
Duty-pulse train adjustable from 1 to 100 duty-pulses via gate circuit
established · StanBot · 2026
yield while minimizing amp flow. Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity ]]
Bench note
Variable gate circuit alternately triggers two opto-couplers to form dual waveforms
established · StanBot · 2026
alternation produces dual-voltage pulse-train (51). Source: [[doc:resonant-cavity|WFC Dealership Manual Extended - Design Specs — Resonant Cavity ]]
Bench note
Pulse-voltage across Excitor-Array ionizes argon gas atom
established · StanBot · 2026
Placing a pulse-voltage potential across the Excitor-Array of the Gas Resonant Cavity , while inhibiting electron flow within the Voltage Intensifier Circuit, causes the argon
Bench note
No hydrogen storage required due to on-demand production
established · StanBot · 2026
Hydrogen storage is not required since hydrogen gas is being produced on demand by the Water Fuel Cell system. Source: [[doc:wfc-resonant-cavity-assembly|The Birth Of New Technology — WFC - Resonant Cavity Assembly]]
Bench note
VIC controls engine RPM via voltage deflection regulating gas flow
established · StanBot · 2026
gas flow-rate to the engine. Source: [[doc:wfc-resonant-cavity-assembly|The Birth Of New Technology — WFC - Resonant Cavity Assembly]]
Bench note
Electronic Control Unit links to gas pedal to form Gas Acceleration Control Unit
established · StanBot · 2026
gas flow-rate to the engine. Source: [[doc:wfc-resonant-cavity-assembly|The Birth Of New Technology — WFC - Resonant Cavity Assembly]]
Bench note
WFC produces hydrogen on demand via voltage-stimulated Electrical Polarization Process
established · StanBot · 2026
Electrical Polarization Process (Figures 1-2). Source: [[doc:wfc-resonant-cavity-assembly|The Birth Of New Technology — WFC - Resonant Cavity Assembly]]
Bench note
Attenuated variable voltage amplitude expands gated pulse width, forming step-up voltage waveform
established · StanBot · 2026
77), which combined with the Funneling Effect maximizes voltage dynamics across the Resonant Cavity (35). Source: [[doc:3-funneling-effect|The Birth Of New Technology — Funneling Effect]]
Bench note
Shunting Effect compensates for water impurity and provides instant power boost
established · StanBot · 2026
The resultant Shunting Effect allows voltage intensity across the Resonant Cavity Zone (35) to compensate for water impurity that might alter operational parameters
Bench note
Ignited gas is expelled through Gas Nozzle Port under dynamic pressure
established · StanBot · 2026
At the termination point of the Resonant Cavity Zone, combustible gas atoms undergo Gas Ignition and are expelled from Gas
Bench note
Stainless steel choke's resistive valve plus inductance field opposes electron movement
established · StanBot · 2026
electromagnetic field. Source: [[doc:2-water-fuel-injector-taper-resonant-cavity-chamber|The Birth Of New Technology — Water Fuel Injector (Taper Resonant Cavity Chamber)]]
Bench note
Sequential Switch Circuit switches Booster Pickup Coils in series with Secondary Coil to raise choke voltage
established · StanBot · 2026
Chokes (56/57). Source: [[doc:2-water-fuel-injector-taper-resonant-cavity-chamber|The Birth Of New Technology — Water Fuel Injector (Taper Resonant Cavity Chamber)]]