Excitor-Array
As the sources put it
Voltage intensity or level across Excitor-Array (ER) can exceed 20,000 volts due to circuit (AA) interaction and is directly related to pulse-train (H) variable amplitude input.
Where it appears · 20
Documents 9
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Voltage Intensifier Circuit (60)
3× · introduced
…llapse ... forming pulse train (64a xxx 64n). Resonant charging choke (56) in series with Excitor-Array (160) of Figure (25) forms an inductor-capacitor circuit (180) of Figure (3-28) since Excitor-Array (66/67) a…
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LC Voltage
2× · introduced
…ain (H) of Figure (1-1) as to Figure (1-5) produces a step-charging voltage-effect across Excitor-Array (ER), as illustrated in Figure (1-3) and Figure (1-4). Figure (1-1) Figure (1-5) Figure (1-3) Figure (1-4) Vo…
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LC Circuit
2× · introduced
Resonant Charging Choke (C) in series with Excitor-array (E1/E2) forms an inductor-capacitor circuit (LC) since the Excitor-Array (ER) acts or performs as an capacitor during pulsing operations, as illustrated in…
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RLC CIRCUIT
2× · introduced
…ain (h) of Figure (1-1) as to Figure (9B) produces an step-charging voltage-effect across Excitor-Array (ER of t), as illustrated in Figure progressive function. Figure 1-1 Figure 9B Once the voltage-pulse is term…
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CIRCUIT COMPONENT INTERACTION
2× · introduced
…ow. LC CIRCUITFigure 1-2. LC Circuit Schematic Resonant Charging Choke (c) in series with Excitor-array (E3/E4) forms an inductor-capacitor circuit (LC) since the Excitor-Array (ER) of Gas Resonant Cavity (t) acts…
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Voltage Dissociation of The Water Molecule
1× · introduced
Placement of a pulse-voltage potential across the Excitor-Array (ER) while inhibiting or preventing electron flow from within the Voltage Intensifier Circuit (AA) causes the water molecule to separate into its com…
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Gas Destabilization Process
1× · introduced
Placement of a pulse-voltage potential across the Excitor-Array (ER) of Gas Resonant Cavity (t) while inhibiting or preventing electron flow within the Voltage Intensifier Circuit (AA) causes the Gas Atom of Argon…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
4×
…e direction of the schematic arrow. LC Circuit Resonant Charging Choke (c) in series with Excitor-Array (E1/E2) forms an inductor-capacitor circuit (LC) since the Excitor-Array (ER) acts or performs as a capacitor…
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RE: Electrical Particle Generator
1×
…g Transformer (m) Blocking Diode (f) Resonant Charging Choke (c) (Resistive Coil-Wire R7) Excitor-Array (ER) Secondary Pickup-Coil (n) (Resistive Wire-Coil R4) "Tuned" Resonant Charging Choke (y) (Resistive Wire-C…
Bench findings 11
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Choke and Excitor-Array form LC circuit
2×
The Resonant Charging Choke (C) in series with the Excitor-Array (E1/E2) forms an inductor-capacitor (LC) circuit, since the Excitor-Array (ER) acts as a capacitor during pulsing operations (Fig 1-2, Fig 1-1).…
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Resonant charging choke and Excitor-Array form an LC circuit with water as dielectric capacitor
2×
Resonant charging choke (56) in series with the Excitor-Array (66/67) forms an inductor-capacitor circuit (180); the Excitor-Array acts as a capacitor because natural water (68) between the opposing electrical pla…
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Resonant Charging Choke and Excitor-Array form an LC circuit
2×
Resonant Charging Choke (c) in series with Excitor-Array (E3/E4) forms an inductor-capacitor (LC) circuit, since the Excitor-Array (ER) of the Gas Resonant Cavity (t) acts as a capacitor during pulsing operations.…
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VIC electron flow is inhibited during ionization pulse
1×
During the pulse-voltage application across the Excitor-Array, electron flow within the Voltage Intensifier Circuit is inhibited or prevented, enabling the ionization effect on the gas atom rather than current con…
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Unipolar pulse-train produces step-charging voltage effect across Excitor-Array
1×
…shown in Figure (1-1) and Figure (1-5) produces a step-charging voltage effect across the Excitor-Array (ER), as illustrated in Figures (1-3) and (1-4).…
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Voltage across Excitor-Array rises progressively from ground-state then resets
1×
Voltage intensity across the Excitor-Array increases from zero 'ground-state' to a high positive voltage potential in a progressive function; once the voltage pulse is terminated or switched off, the voltage poten…
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Excitor-Array voltage can exceed 20,000 volts via circuit AA interaction
1×
Voltage intensity or level across the Excitor-Array (ER) can exceed 20,000 volts due to circuit (AA) interaction, and this level is directly related to the pulse-train (H) variable amplitude input.…
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Pulse voltage across Excitor-Array dissociates water by pulling away orbital electrons
1×
Placement of a pulse-voltage potential across the Excitor-Array (ER) while inhibiting electron flow from within the Voltage Intensifier Circuit (AA) causes the water molecule to separate into its component parts b…
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Unipolar pulse-train produces step-charging voltage across Excitor-Array
1×
…f Figure 1-1, as related to Figure 9B, produces a step-charging voltage-effect across the Excitor-Array (ER of t).…
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Excitor-Array voltage can exceed 20,000 volts
1×
Voltage intensity or level across the Excitor-Array (ER of t) can exceed 20,000 volts due to circuit (AA) interaction, and is directly related to the variable amplitude of the input pulse-train (h).…
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Pulse-voltage across Excitor-Array ionizes argon gas atom
1×
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 gas atom to become a positively charge…