(1060)
Electrical Crossover Switching Circuit
Also written Electrical Crossover Switch Circuit · Electrical Crossover Circuit · pulse switching cycles
Where it is first named
Voltage intensity (952/953) is, therefore, directly determined by the number of turns of each coil (957/958) as to the applied voltage amplitude of incoming pulse-wave ( ... xxx Vn) (1060) of Figure (11-2c).
How it is written
- (1060) 6×
Drawings 3
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gated pulse-voltage waveform (1020) of Figure (11-2) · Voltage Flexing Process
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When (B+/B+ - B-/B- / 1030B) switch function is activated, switch terminals (T1/T2 - T3/T4) are closed. · Electrical Crossover Switching Circuit
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The figure it sits on · VIC Switchover Circuit
Where it is named · 6
VIC Switchover Circuit 2×
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Voltage intensity (952/953) is, therefore, directly determined by the number of turns of each coil (957/958) as to the applied voltage amplitude of incoming pulse-wave ( ... xxx Vn) (1060) of Figure (11-2c).
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Varying the gated pulse-width (T4A f T4B), attenuating voltage amplitude (xxx Vn), and the Switchover pulse frequency rate (Sopr), collectively determines the rate by which the water temperature rises as the water medium (68) travels through the Differential Voltage Wave-Guild (1040), as so illustrated in (1060) of Figure (11-2) as to (1040) of Figure (11-6).
Electrical Crossover Switching Circuit 4×
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Electrical Crossover Circuit (1060)
To reduce the number of Voltage Intensifier VIC-Circuit to the use of only one VIC Coil Assembly (1003) while encouraging the utilization of using a Voltage Repelling Force (W - W') and/or (TT'), Electrical Crossover Circuit (1060) of Figure (11-7) is, now, electrically placed between VIC Coil Assembly (1003) and both Differential Voltage Wave-Guilds (1030A / 1030B), as so illustrated in (1050) of Figure (11-7).
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Electrical Crossover Switching Circuit (1060)
The Electrical Crossover Switching Circuit (1060) singularly places either a Positive Voltage Potential (1014) across both Voltage Zones (E18/E14) and/or a Negative Voltage Potential across Voltage Zones (E17/E16) or vise versa.
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Electrical Crossover Switch Circuit (1060)
In terms of operational parameters, Electrical Attraction Force (S-S' / R-R') and Repelling Forces (T-T' / W-W') can be applied simultaneously or applied in a time sequence of events as Electrical Crossover Switch Circuit (1060) reverses the voltage polarity from one Differential Voltage Wave-Guild (1040B) to another and completely separate Differential Voltage Wave-Guild (1040A) of similar or like configuration
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pulse switching cycles (1060)
... causing "Particle Oscillation" as a "Energy Generator" by way of "Physical Stress" undergoing pulsating "Electrical Stress" whenever pulse switching cycles (1060) is electrically activated by incoming trigger pulse frequency (1019/T4a xxx 1019/T4n), as so illustrated in (1050) of Figure (11-7).