Skip to content
Stan’s Legacy

established · Voltage Intensifier Circuit · computed

Model the choke + cell as two coupled resonators, not one isolated LC

An HV resonant transformer/tank system is better understood as two coupled resonators (primary/choke side, secondary/cell side) exchanging energy through mutual inductance M = k·√(L₁L₂), 0 ≤ k ≤ 1. Two coupled resonators generally produce two natural frequencies (mode splitting): a lower-frequency mode (roughly in-phase energy exchange) and a higher-frequency mode (roughly out-of-phase). As coupling k increases, the two resonant peaks separate further. Therefore maximum HV output does not necessarily occur at the isolated primary or isolated secondary resonant frequency — it may occur at one of the coupled-system modes instead. A design that only resonates the "nominal" isolated L and C of one side, ignoring the coupled system, can miss the real operating point. A deliberately resonant transformer may even use a slightly lower coupling k than "ideal" so the resulting leakage inductance becomes a useful part of the tank.

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 22:57:02.1441