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Passive Components
Forum I want to make a capacitor discharge tool
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  • passives_featured
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Related

I want to make a capacitor discharge tool

jw0752
jw0752 over 7 years ago

I want to make a capacitor discharge tool for use in an industrial application where the voltage may be as high as 400 volts and I have no idea what the maximum capacitance may be. I have been weighing the pros and cons of different resistor values. Then I thought, Why not ask some of the best engineers on the planet? If you have some insights for me it would be appreciated.

 

John

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Top Replies

  • mcb1
    mcb1 over 7 years ago +8 suggested
    Sounds like it's for a switch mode power supply. Most of them are 470-1000uF, and to prevent damage you'd want to restrict the current to 1A. R= E/I so 400/1 = 400 ohms. Discharge from here https://www…
  • jw0752
    jw0752 over 7 years ago in reply to jc2048 +7 suggested
    Hi Jon, As promised I have run some experiments after returning home. I have taken a 2000 uF 200 Volt capacitor and charged it up. The formula for energy in a capacitor is 1/2 CV^2 which works out to about…
  • jw0752
    jw0752 over 7 years ago +7 suggested
    Last Post: I put the unit together this afternoon using the advice and wisdom from my Forum friends. The series resistor was lowered to 330 ohms and wattage increased to 5 Watts. I discharged the 2000…
Parents
  • mcb1
    0 mcb1 over 7 years ago

    Sounds like it's for a switch mode power supply.

    Most of them are 470-1000uF, and to prevent damage you'd want to restrict the current to 1A.

     

    R= E/I so 400/1 = 400 ohms.

    Discharge from here https://www.electronics-tutorials.ws/rc/rc_2.html

    t= R (ohms) x C (in Farads)  t= 400 x .oo1 (1000uF) = 0.4 secs.

    5T is considered fully discharged so 5 x 0.4 = 2 secs.

     

    I'm sure you can either add it or make it from a couple of probes with the resistor in series.

     

    Mark

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  • mcb1
    0 mcb1 over 7 years ago

    Sounds like it's for a switch mode power supply.

    Most of them are 470-1000uF, and to prevent damage you'd want to restrict the current to 1A.

     

    R= E/I so 400/1 = 400 ohms.

    Discharge from here https://www.electronics-tutorials.ws/rc/rc_2.html

    t= R (ohms) x C (in Farads)  t= 400 x .oo1 (1000uF) = 0.4 secs.

    5T is considered fully discharged so 5 x 0.4 = 2 secs.

     

    I'm sure you can either add it or make it from a couple of probes with the resistor in series.

     

    Mark

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  • jw0752
    0 jw0752 over 7 years ago in reply to mcb1

    Hi Mark,

    Thanks for the information and the analysis. I was thinking of a higher value resistor but your advise has made me rethink this. It will be better to discharge more quickly as one of the things that most people lack is patience and a shorter discharge time will be a plus.

    John

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