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Stan’s Legacy

Saved circuits

A saved circuit is a set of parts in named positions — this cell, in this water, between these chokes on these cores. Opening one simulates it from its parts; nothing about how it behaves is stored, so a part corrected in the library corrects every circuit that uses it.

16 circuits, brought across from the Matrix app's library. Build your own in the simulator — and sign in to save it.

8XA

  • 8XA - 2x Parallel Plate

    Simple 2-cell parallel plate for doubled capacitance.

    • cell Plate - 2x Parallel 8" x 10"
    • water Distilled Water
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T106-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T106-2
  • 8XA - 3x Series Tubular

    3 tubular cells in series for higher voltage capability.

    • cell Tubular - 3x Series 3/4" x 8"
    • water Distilled Water
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T130-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T130-2
  • 8XA - 4x Parallel Tubular

    4 tubular cells in parallel for maximum capacitance.

    • cell Tubular - 4x Parallel 3/4" x 8"
    • water Distilled Water
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T106-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T106-2
  • 8XA - 5x Series Plate Stack

    5 flat plates in series for voltage multiplication.

    • cell Plate - 5x Series 6" x 6"
    • water Tap Water (Hard)
    • choke1 Bifilar Choke 1 - 100T AWG18 (Start-Start)
    • core1 Ferrite Toroid T200-2
    • choke2 Bifilar Choke 1 - 100T AWG18 (Start-Start)
    • core2 Ferrite Toroid T200-2
  • 8XA - 6x Parallel Joe Cell

    High capacity 6-cell parallel spherical array.

    • cell Spherical - 6x Parallel (High Cap)
    • water Distilled Water
    • choke1 Negative Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T130-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T130-2
  • 8XA - Film Cap Test

    Test profile using standard film capacitor instead of water cell.

    • cell Film Capacitor 100nF
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T106-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T106-2
  • 8XA - Single Flat Plate

    Basic flat plate water cell configuration.

    • cell Plate - Single 6" x 8"
    • water Distilled Water
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T106-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T106-2
  • 8XA - Single Joe Cell

    Single spherical Joe Cell configuration.

    • cell Spherical - Single 1" & 3"
    • water Distilled Water
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T106-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T106-2
  • 8XA - Single Tubular Cell

    Basic 8XA with single tubular water cell. Good for initial testing.

    • cell Tubular - Single 1/2" x 6"
    • water Distilled Water
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T106-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T106-2
  • Demo Cell

    Demo configuration using 1/2" x 3/4" x 3" SS304 tubular cell. Standard setup for VIC5 simulator testing.

    • cell Demo Cell - 1/2" x 3/4" x 3" SS304
    • water Distilled Water
    • choke1 Positive Choke - 100 Turns AWG18
    • core1 Ferrite Toroid T106-2
    • choke2 Negative Choke - 100 Turns AWG18
    • core2 Ferrite Toroid T106-2

VIC4

  • VIC4 - 4x Series Joe Cell

    4 spherical cells in series with transformer for high voltage resonance.

    • cell Spherical - 4x Series 2" & 5"
    • water Tap Water (Hard)
    • choke1 Bifilar Choke 1 - 100T AWG18 (Start-Start)
    • core1 Ferrite Toroid T200-2
    • choke2 Bifilar Choke 1 - 100T AWG18 (Start-Start)
    • core2 Ferrite Toroid T200-2
    • transformer Forward Mode 1:10 Step-Up
  • VIC4 - 7x HV Plate Stack

    High voltage 7-cell plate stack with transformer.

    • cell Plate - 7x Series (HV Stack)
    • water Tap Water (Soft)
    • choke1 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core1 MnZn Ferrite E-Core
    • choke2 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core2 MnZn Ferrite E-Core
    • transformer Forward Mode 1:10 Step-Up
  • VIC4 - Meyer 9x Tubular

    Meyer-style 9 cell series configuration with step-up transformer.

    • cell Tubular - 9x Series (Meyer Style)
    • water Tap Water (Hard)
    • choke1 Bifilar Choke 1 - 100T AWG18 (Start-Start)
    • core1 Ferrite Toroid T200-2
    • choke2 Bifilar Choke 1 - 100T AWG18 (Start-Start)
    • core2 Ferrite Toroid T200-2
    • transformer Forward Mode 1:10 Step-Up

VIC5

  • VIC5 - 6x Parallel Tubular

    Experimental VIC5 with 6-cell parallel array for high current.

    • cell Tubular - 6x Parallel (High Capacity)
    • water Tap Water (Soft)
    • choke1 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core1 MnZn Ferrite E-Core
    • choke2 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core2 MnZn Ferrite E-Core
    • transformer Forward Mode 1:5 Step-Up
  • VIC5 - 8x Extreme HV Plate

    Extreme high voltage 8-cell series configuration for specialized experiments.

    • cell Plate - 8x Series (Extreme HV)
    • water Tap Water (Hard)
    • choke1 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core1 PC40 Ferrite Pot Core
    • choke2 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core2 PC40 Ferrite Pot Core
    • transformer Forward Mode 1:5 Step-Up
  • VIC5 - 9x Parallel Plate Array

    Maximum capacity 9-cell parallel plate array for experimental high-current work.

    • cell Plate - 9x Parallel (Max Capacity)
    • water Rainwater
    • choke1 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core1 PC40 Ferrite Pot Core
    • choke2 Bifilar Choke 2 - 100T AWG18 (Finish-Finish)
    • core2 PC40 Ferrite Pot Core
    • transformer Forward Mode 1:5 Step-Up