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40v to 250v pulsng a ac capacitor

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  • 40v to 250v pulsng a ac capacitor

    I made a generator for my bedini energizer just to see what I could get on a cap and not effect
    rpm on the energizer. With the cap connected I was getting around 38 volts. Then I connected
    a a/c cap before the diode bridge, my dc cap volts increased to 40 volts. Then I started pulsing
    the a/c cap using a magnetic switch and the magnets on my energizer and the voltage on
    the dc cap shot up to 250 volts. I was just pulsing the ac cap in and out of the system.
    It did decrease the rpms of my energizer, just by a couple hundred rpms or so.

    Was I doubling or tripling the generator output in to the diode bridge by pulsing the ac cap?

    Not really sure what is happening can any one give me a simple
    answer as what might be happening.

    Thanks Bill

  • #2
    Well...

    First thing is you missed a w in your name rofl...

    Besides that do you have a diagram that I can see of your setup... Nothing detailed just a basic diagram would suffice. This diagram should have the bedini setup in boxed form and then how you are using it to pulse the cap in and out of your pathway...

    A few questions:

    Is the ac cap being switched out fully? Meaning both posts? Or is one side still connected to your Bedini?

    I am assuming your dc cap is after the bridge?

    A few things I can say so far:

    The way you chose to do this is rather unique. I am starting to understand the method the more I read your post. It sounds like you are raising the base potential level of the dc cap by supplying a bigger bang via the ac cap before the bridge. lets say you are using a higher potential to pad the movement you would get if the ac cap was not there all the time.

    You say that you are switching out the cap and I need to know how you are doing that.

    Comment


    • #3
      Well first off my initials are WWW and my email used to be
      ww at wwdotme.com and it really messed everyone so I had
      to change it... LOL

      Ok here is a simple drawing.
      I'm just using the SGG to run the rotor with nsns facing
      magnets.

      Comment


      • #4
        Originally posted by wwdotme View Post
        Well first off my initials are WWW and my email used to be
        ww at wwdotme.com and it really messed everyone so I had
        to change it... LOL

        Ok here is a simple drawing.
        I'm just using the SGG to run the rotor with nsns facing
        magnets.

        Ok just as I thought. Well see the one side of the ac cap is still taking a charge even when not connected via the other leg. This might be a boon for you since you are charging the cap via 1 wire method... I'll check this with what I know and get back to you later it is very late here...

        Comment


        • #5
          If you connect a parallel cap with the coil it will go in resonance at a certain frequency which you can calculate with the standard formula.
          If you connect a scope over the tank circuit you will see a beautiful sine wave with much higher amplitude at resonance. If you could reach resonance the voltage would have gone up to much more than 40V.
          Normally when you SHORT the circuit with a read switch near TDC you get additional high voltage spikes that will charge your dc cap to that high voltage. I have never tried it like you explain with only disconnecting the ac cap.
          I have found that the resonance caused a lot of drag when you dump all the dc cap voltage to a battery.
          They say for example that if your resonant circuit produce say 24V and the spike charge the cap up to say 48V before you dump it to a 24V battery,The voltage on the dc cap will never go below 24V and you will have no drag.
          Not killing the resonance.
          This is of course something I must still try out on my Watson experimental machine
          F=0.159/sqr(L.C)
          Last edited by nvisser; 10-05-2010, 06:02 AM.

          Comment


          • #6
            I'll have to try that when I figure out how to pulse the cap back to a battery. Been looking through all the post to find info on a cap pulser
            that I can make. Only one I find is on the bedini schematic with the
            scr diode. and it also says something about a diode not in the drawing
            so i'm sure.

            The 555 timer I was able to get to work but getting it to dump the cap
            seems to be my stepping block so far.

            Thanks Bill

            Comment


            • #7
              try using....

              Try using a double throw switch on the magnetic switch. One with normally closed and magnetic switch to pull the other to dump the cap to the battery.

              Kinda like this: I.OI The I's are the copper tabs and the center O is the magnetic reed. The way i have it is the right I is the normally connected. When the mag pulls the O to the left I it connects to the battery. Just like in a relay.

              Comment


              • #8
                Correction

                Originally posted by nvisser View Post
                If you connect a parallel cap with the coil it will go in resonance at a certain frequency which you can calculate with the standard formula.
                If you connect a scope over the tank circuit you will see a beautiful sine wave with much higher amplitude at resonance. If you could reach resonance the voltage would have gone up to much more than 40V.
                Normally when you open the circuit with a read switch near TDC you get additional high voltage spikes that will charge your dc cap to that high voltage. I have never tried it like you explain with only disconnecting the ac cap.
                I have found that the resonance caused a lot of drag when you dump all the dc cap voltage to a battery.
                They say for example that if your resonant circuit produce say 24V and the spike charge the cap up to say 48V before you dump it to a 24V battery,The voltage on the dc cap will never go below 24V and you will have no drag.
                Not killing the resonance.
                This is of course something I must still try out on my Watson experimental machine
                F=0.159/sqr(L.C)
                Just a correction on this post.
                Normally when you SHORT the circuit with a read switch near TDC you get additional high voltage spikes that will charge your dc cap to that high voltage. See this video by Cody.
                YouTube - Radiant Energy From Generator Coil

                Comment


                • #9
                  Originally posted by wwdotme View Post
                  I'll have to try that when I figure out how to pulse the cap back to a battery. Been looking through all the post to find info on a cap pulser
                  that I can make. Only one I find is on the bedini schematic with the
                  scr diode. and it also says something about a diode not in the drawing
                  so i'm sure.

                  The 555 timer I was able to get to work but getting it to dump the cap
                  seems to be my stepping block so far.

                  Thanks Bill
                  See post242 of this thread for the easiest pulsing circuit. It will pulse at around 90V.

                  Comment

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