J A V A T C
Version 13.1
© 2014 by Barton B. Anderson
Select options for the model
Select
Units
inches
cm
Ambient
Temperature
Fahrenheit
Centigrade
Secondary
Wire Material
Copper:
Aluminum:
Primary
Wire Material
Copper:
Aluminum:
Primary
Wire Type
Round:
Ribbon:
Primary
Capacitor
(uF)
Insert values for Ground Plane and optionally if coil is inside an enclosed space
Ground
Radius
Wall
Radius
Ceiling
Height
Insert values for the Secondary Coil
Radius 1
(LV end)
Radius 2
(HV end)
Height 1
(LV end)
Height 2
(HV end)
Turns
AWG:
Wire Dia:
Insert values for the Primary Coil
Radius 1
(LV end)
Radius 2
(HV end)
Height 1
(LV end)
Height 2
(HV end)
Turns
AWG:
Wire Dia:
Ribbon
Height
Ribbon
Thickness
Total
Lead Length
Lead Wire
Diameter
T O R O I D O B J E C T S
Toroid
Minor
Diameter
Toroid
Major
Diameter
Toroid
Center
Height
Connection
Topload:
Ground:
Count:
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S P H E R E O B J E C T S
Sphere
Horizontal
Diameter
Sphere
Vertical
Diameter
Sphere
Center
Height
Connection
Topload:
Ground:
Count:
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D I S C O B J E C T S
Disc
Inside
Diameter
Disc
Outside
Diameter
Disc
Height
Connection
Topload:
Ground:
Count:
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C Y L I N D E R O B J E C T S
Cylinder
Diameter
Cylinder
Bottom
Height
Cylinder
Top
Height
Connection
Topload:
Ground:
Count
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Auto-Tune:
Adjust Coupling:
SECONDARY COIL OUTPUT DATA
Secondary Resonant Frequency
Angle of Secondary
Length of Winding
Turns Per Unit
Space Between Turns (e/e)
Length of Wire
H/D Aspect Ratio
DC Resistance
Reactance at Resonance
Weight of Wire
Effective Series Inductance-
Les
Equivalent Energy Inductance-Lee
Low Frequency Inductance-Ldc
Effective Shunt Capacitance-
Ces
Equivalent Energy Capacitance-Cee
Low Frequency Capacitance-Cdc
Topload Effective Capacitance
Skin Depth
Fraga AC Resistance
Secondary Q
PRIMARY COIL OUTPUT DATA
Primary Resonant Frequency
Percent Frequency is Detuned
Angle of Primary
Length of Wire
DC Resistance
Average Space Between Turns (e/e)
Proximity Between Coils
Minimum Proximity Between Coils
Primary Inductance-Ldc
Cap Size Required for Resonance (reference)
Primary Lead Inductance
Mutual Inductance
Coupling Coefficient
Recommended Coupling Coefficient
Energy Transfer
Total Energy Transfer Time
P O W E R C A L C U L A T I O N S (not for DRSSTC)
Rated
Vin
Rated
Vout
Rated
mA
Hertz
Applied
Vin
Ballast
Current
Amps
(optional)
Rated Transformer VA
Transformer Impedence
Effective Output Voltage
Effective Input Current
Transformer Output Current
Effective Input VA
Resonant Cap Size
Power Factor Cap Size-PFC
Static Gap LTR Cap Size
SRSG LTR Cap Size
Voltage Across Cap
Recommended Cap Rating
Primary Cap Energy
Primary Instantaneous Current
Spark Length
Sec Base Current
R O T A R Y G A P D E S I G N
Number of
Stationary
Gaps
Number of
Rotating
Electrodes
Disc
RPM
Rotating
Electrode
Diameter
Stationary
Electrode
Diameter
Rotating
Path
Diameter
Presentations Per Revolution
Breaks Per Second
Rotational Speed
RSG Firing Rate
Time for Cp to Fully Charge
Time Constant at Gap Conduction
Electrode Mechanical Dwell Time
Percent Cp Charged When Gap Fires
Effective Cap Voltage
Effective Cap Energy
Terminal Voltage
Power Delivered to Gap
RSG Spark Length
S T A T I C G A P D E S I G N
Number of
Electrodes
Electrode
Diameter
Total Gap
Spacing
Electrode
Geometry
Round:
Flat:
Spacing Between Each Electrode
Charging Voltage
Gap Setting Arc Voltage
Field Strength
Volts per unit
Percent Cp Charged When Gap Fires
Time To Arc Voltage
Breaks Per Second
Effective Cap Energy
Terminal Voltage
Power Delivered to Gap
Static Gap Spark Length
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