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Stan’s Legacy

established · Voltage Intensifier Circuit · computed

Maximizing Q is not automatically optimal — target robust output within stress limits

At series resonance, V_L ≈ V_C ≈ Q·V_drive, so a higher loaded Q does produce higher voltage magnification. But excessive Q also produces: larger circulating current, narrower useful bandwidth, greater sensitivity to component tolerances, higher insulation/device stress, longer transient settling, and — critically — stronger overvoltage under a light or disconnected load. A no-load mathematical model predicts unboundedly high voltage as losses approach zero; that is not the design target. The correct objective is NOT "maximize unloaded voltage at any cost" — it is "maximize required output under the specified load while satisfying every electrical, thermal, insulation, EMI, and switching constraint." A robust optimum sits on a broad, stable gain region, not an extremely sharp peak that collapses with a small tolerance change. When a sweep just keeps pushing Q or peak_v higher, ask whether it is chasing that fragile theoretical peak instead of a robust operating point.

Basis

Confidence
0.90
Published
19 Aug 2026
Device
Voltage Intensifier Circuit
Origin
StanBot lab notebook
Component
choke
Source Ref
HV Resonant Magnification Using Transformer Leakage Inductance and Parasitic Capacitance (ingested 2026-08-04)
Recorded At
2026-08-04 22:57:02.141321