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Stan’s Legacy

Figure (11-7)

Electrical Crossover Switching Circuit

How it is written

  • (11-7)

Drawings 2

On this figure 8

Where it is named · 4

Electrical Crossover Switching Circuit

  1. 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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  2. 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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  3. ... performing Voltage Switchover Logic Functions (B+/B+ / 1030B - B-/B- / 1030A Switchover B-/B- / 1030B - B+/B+ / 1030A) of Figure (11-7) during each and every sequential voltage pulsing cycle (T4A - T4B - T4A - T4B and so on).

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  4. ... 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).

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