(47)
Resonant Charging Choke
Also written capacitive reactance · Resistor Component · wire-coil
Where it is first named
Voltage zones surface area (44/45) form the Capacitance value of said Resonant Cavity Assembly (4) of Figure 12. Natural Water inside said Resonant Cavity Assembly (44/45) provides the dielectric value between said voltage zones (44/45), resonant charging choke (47) to electrical ground forms and completes the Voltage Intensifier Circuit 9XA as to 20YA.
How it is written
- (47) 4×
- (44/47) 1× with (44) Electrical Voltage Zones
Drawings 2
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The figure it sits on · DUAL VOLTAGE RESONANT "Q"
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Component arrangement of said Voltage Intensifier Circuit 9XA as to 20YA retards or prevents amp flow. · Dual Voltage Resonant "Q" - Part 2
Where it is named · 5
DUAL VOLTAGE RESONANT "Q" 1×
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resonant charging choke (47)
Voltage zones surface area (44/45) form the Capacitance value of said Resonant Cavity Assembly (4) of Figure 12. Natural Water inside said Resonant Cavity Assembly (44/45) provides the dielectric value between said voltage zones (44/45), resonant charging choke (47) to electrical ground forms and completes the Voltage Intensifier Circuit 9XA as to 20YA.
Dual Voltage Resonant "Q" - Part 2 4×
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wire-coil (47)
The resistive value of said wire-coil (47) prevents amp flow while performing in like manner as a Resonant Charging Choke.