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calculation · Voltage Intensifier Circuit · computed

VIC design session v104: best candidate (Q=7.3, 90.0kHz)

Sweep — Finer grid around the adopted AWG22 0.7 mH tank plus higher-L/higher-turn territory to push f_r below 85 kHz, sweeping low-duty low-peak drive to trend Faradaic leakage down and find the sub-breakdown ceiling.

  • Cell — 14mm rod in 19.0mm tube × 120mm, 1 cell(s) parallel → C_eff = 1.74nF, bulk water R = 8314Ω.
  • Water/electrodes (Randles) — 2ppm Na+ @ 25°C, surface ×1 → λ_D 53nm, C_dl 39.9µF, cell series R 126.5Ω, displacement current 88.9%, breakdown margin ×170.
  • Fig-8 voltammetry (4,798,661) — τ_EDL 331375.9µs (29819.6 carrier cycles to charge), Faradaic leakage at peak 266.4mA (leak score 0.29 — keep amp leakage inhibited while voltage climbs the ladder).
  • Vapor-film discharge (CGDE onset, 877V across 0.1mm film) — regime townsend-avalanche, film Paschen 719V, 349 Td.
  • Per-molecule (series micro-capacitor chain) — 9.26M molecules across 2.50mm → 94.67 µV/molecule (polarization (µV band)).
  • Chokes — 2 × 0.0009H (800 turns, AWG 22, 96m wire, AC R 6.4Ω each).
  • At resonance f_r = 89.99kHz — Xl = 1018Ω, Xc = 1018Ω, tank Q = 7.3, coil Q = 79.3.
  • Cell voltage 877V from 120V drive (×7.3). Tank current 0.86A circulating (CW upper bound — rate wire/switch for this); average input 17mA at 2% duty.
  • No hard violations (band, wire length, dielectric). Average current is scored, not gated.
  • Score 0.398.

Basis

Confidence
0.70
Method
townsend-v5
Recorded
Published
30 Aug 2026
Device
Voltage Intensifier Circuit
Component
choke
Source Ref
design session v104
Notebook Id
1598

design-loop Q resonance