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Cockroft-Walton Voltage Multiplier Calculation Javascript

Cockroft-Walton Voltage Multiplier
The checkboxes below "reduce ripple" mean the following:
Ripple can be reduce if one makes the capacitors larger in direction of the input, namely
  • C1 = C2 = number_of_stages * C
  • C3 = C4 = (number_of_stages - 1) * C
  • C5 = C6 = (number_of_stages - 2) * C
  • C7 = C8 = (number_of_stages - 3) * C
  • ...
Capacitor voltage rating: double input peak voltage DC (e.g. input 300Vp -> minimum voltage rating for the capacitors = 600VDC)


Single Wave Cockroft-Walton Voltage Multiplier: VOLTAGES

Input peak voltage = V
frequency = Hz
capacitors = μF
number of stages =
load current = mA
reduce ripple
drop voltage = V
ripple voltage = V
Real output voltage = V

Full Wave Cockroft-Walton Voltage Multiplier: VOLTAGES

Input peak voltage = V
frequency = Hz
capacitors = μF
number of stages =
load current = mA
drop voltage = V
ripple voltage = V
Real output voltage = V

Single Wave Cockroft-Walton Voltage Multiplier: CAPACITOR from DROP VOLTAGE

frequency = Hz
max. drop voltage = V
number of stages =
load current = mA
capacitors = μF



Full Wave Cockroft-Walton Voltage Multiplier: CAPACITOR from DROP VOLTAGE

frequency = Hz
max. drop voltage = V
number of stages =
load current = mA
capacitors = μF

Single Wave Cockroft-Walton Voltage Multiplier: CAPACITOR from RIPPLE VOLTAGE

frequency = Hz
max. ripple voltage = V
number of stages =
load current = mA
reduce ripple
capacitors = μF

Full Wave Cockroft-Walton Voltage Multiplier: CAPACITOR from RIPPLE VOLTAGE

frequency = Hz
max. ripple voltage = V
number of stages =
load current = mA
capacitors = μF





Last-Modified: Fri, 04 Apr 2008 23:06:12 GMT

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