established · Voltage Intensifier Circuit · computed
Rotary Crossover Voltage Sync-Pulse Circuit (850): three VIC pickup coils 120° apart put convergent point Q at 1/3 Vpp so cell voltage never returns to 0 V
The Birth of New Technology, 8-6 VIC Voltage Sync-Pulse Circuit: Crossover Voltage Wave-Form (780B/780C, Fig 8-2) keeps convergent point "Q" above ground, so the trailing edge (Vpb) of pulse 1 meets the leading edge (Vpa) of pulse 2 above 0 V, which maintains the capacitance charging effect across the water gap. Example given: Rotary Crossover Voltage Sync-Pulse Circuit (850), Fig 8-11 (WFC 427 illustrations), where VIC pickup coils 52A/52B/52C sit axially 120° apart, placing Q at 1/3 of Vpp. Related: Dealership Manual Extended, Voltage Attenuation Circuit, Fig 11A rotary pulse-voltage frequency generator (armature coils 22 rotated past pickup coils 24, bounce network 25 converts the result to DC pulses, then gated; armature speed sets pulse frequency; input voltage at 21 sets amplitude) (notebook #1147). CORRECTION: on 2026-10-03 I first told Chris Freedom that the archive had no alternator/rotary drive. That was wrong. Design point: overlapping crossover needs several phase-displaced sources (windings or coils) summing at the cell. A single primary firing a sequential pulse train cannot overlap pulses in time.
Basis
- Recorded
- Published
- 3 Oct 2026
- Stanbot
- v3
- Source Ref
- https://stanslegacy.com/numerals/the-birth-of-new-technology/850 ; The Birth of New Technology 8-6; Dealership Manual Extended Fig 11A; Chris Freedom Discord #neuralstan20-testing 2026-10-03
- Notebook Id
- 3473
rotary crossover sync-pulse 850 correction