(23)
Analog Voltage Level Output
Also written gas volume signal · voltage output
Where it is first named
As pulse width (17ax) of signal (19) changes so does analog voltage level output (23) of Figure (3-14).
How it is written
- (23) 4×
Drawings 18
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Stanley A. Meyer Page. 23 of 28 · WFC 417 — WFC 417
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Carries this number · Magnetic Field Enhancement
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Figure (3-23) · Voltage Intensifier Circuit (60)
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Figure (3-23) · Voltage Dynamics
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Carries this number · WFC 422DA - Illustrations
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Carries this number · Water Fuel Injection System
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Carries this number · Electronic Circuit Design
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Carries this number · Electronic Circuit Design
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Carries this number · Electronic Circuit Design
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Carries this number · Electronic Circuit Design
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(190) of Figure (3-23) · Tri - Coil Construction
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(750) of Figure (7-14) · Inductance (FL)
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Inductance Pulsing-Core (190) of Figure (3-23) · Inductance Reactance (Rs - Cd - FL)
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(see diagram 720 of Figure 7-11) · Taper Resonant Capacitor (ERt)
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Carries this number · Electron Bounce Phenomenon
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The figure it sits on · Analog Voltage generator (40)
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The figure it sits on · WFC 422DA - Illustrations
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3-14 WFC Voltage Ignition Wire · Voltage Intensifier Coil Assembly
Where it is named · 4
Analog Voltage generator (40) 3×
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analog voltage level output (23)
As pulse width (17ax) of signal (19) changes so does analog voltage level output (23) of Figure (3-14).
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The resultant and varied voltage level (22a xx) varies smoothly over a continuous range of voltage valves (22a xxx 22n) rather than in discrete steps, as illustrated in linear graph (23) of Figure (3-14).
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voltage output (23)
In terms of functional-ability and purpose, analog circuit (40) of Figure (3-5) provides a variable (controlled) voltage output (23) in direct relationship to light gate (9) displacement which, in turns, sets up and controls Resonant Action (160) of Figure (3-23) that produces Fuel Gases on demand.
Voltage Amplitude Control Circuit (50) 1×
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gas volume signal (23)
Regulator stage (27) of circuit (50) converts battery voltage potential (29) of Figure (3-6) via electrical terminal (31) of Figure (3-5) as to Figure (3-6) into a analog voltage signal (32) of Figure (3-15) which corresponds to but is electrically isolated (crossover voltage from two separate power supplies) from incoming gas volume signal (23) of Figure (3-14), as shown in Figure (35).