Tri - Coil Construction
WFC 425 - Taper Resonant Cavity · 2023
is placed on top of and in space relationship to primary coil cavity (504). Resonant bobbin assembly (503), primary bobbin assembly (504), and secondary bobbin assembly (506),
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211 results for “resonant cavity” · 14ms
WFC 425 - Taper Resonant Cavity · 2023
is placed on top of and in space relationship to primary coil cavity (504). Resonant bobbin assembly (503), primary bobbin assembly (504), and secondary bobbin assembly (506),
WFC 425 - Taper Resonant Cavity · 2023
interfacing voltage intensifier (VIC) circuit coil-assembly (580) of Figure (6-1) with 'Taper Resonant Cavity" (590) of Figure (6-2), as schematically illustrated in (60) of Figure (3-22)
WFC 425 - Taper Resonant Cavity · 2023
WFC 425 - Taper Resonant Cavity · 2023
Activation Process (590) of Figure (6-2) as to (100) of Figure (4-8) is achieved since amp flow is restricted to enter into Voltage Triggering Process (70) of Figure (4-5) by way of voltage intensifier coil-assembly (580
WFC 425 - Taper Resonant Cavity · 2023
Voltage wave-guide (570) allows the activation points (E9a xxx E9n) to transpire since wave-guide (570), now, functions as a Quenching Circuit (370) of Figure (3-40) to prevent gas ignition until the traveling gases (und
Gas Resonant Cavity · 2023
Estate photographs were used in conjunction with a pair of calipers. Screen was adjusted until a common reference point was ascertained. The reference point used was the known dimensions of the LED PCB width, being 1.00"
Gas Resonant Cavity · 2023
As of 5-2-23, the below STLs are currently being printed and tested. It is recommended until verification of the parts is completed, that the content herein should be for information only. Estate photographs were used in
Single 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
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
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.
established · StanBot · 2026
A variable pulsing circuit is set up that is capable of tuning-in resonant action regardless of the shape and dimensional size of the resonant cavity (44).
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
Voltage amplitude (d) is 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.
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).
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)
established · StanBot · 2026
the applied Resonant Voltage Intensity (Vo-Vn), as illustrated relating Figure 6-2 (Taper Resonant Cavity) to Figure 5-5 (Hydrogen Fracturing Process).
established · StanBot · 2026
Step Charging Effect (628, Figure 7-7) by preventing electrical discharge of the Resonant Cavity (140-170) since the Blocking Diode acts as an open switch during pulse