Secret of Stan
#8 ·
Seb,let you try with 3055 and h1d11 replace mosfet.maybe work.
19 posts · 4 more in threads this archive does not carry · writing between Jun 2012 and Oct 2013
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#8 ·
#2 ·
Aways good to see this kind of good feeling!Great Sebosfato.i'm waiting that good news.
soon i will post my conclusions from my experiments... can be really nice....
i found some things that were missing to complete those theories and put to work... soon i will come up with some good new i hope...
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i just put 2 plates inside distilled water.not isulate.
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900mH-->45mH.why? bemf come from coils,more winds is more bemf?In a simulation I have been able to prove that the gated pulse at resonance would actually charge a capacitor with a higher charge.
See attached image. There is a switch beside a relay that is being pulsed at 200hz. The resonant frequency of this circuit is 1.047khz. When the switch to activate the gate is off (closed), the max charge of the cap is about 50V. When the switch is opened, allowing it to gate, the cap charges to over 80V. The step up transformer is a 1:4 and the source voltage is 14V. Changing the duty cycle on the gate up to 90% increases the cap charge to up to 110V.
TS
Even further to this. If you decrease the impedance of the transformer from 900mh down to like 45mh, when gating, the cap voltage can reach >3kV!
TS
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In a simulation I have been able to prove that the gated pulse at resonance would actually charge a capacitor with a higher charge.
See attached image. There is a switch beside a relay that is being pulsed at 200hz. The resonant frequency of this circuit is 1.047khz. When the switch to activate the gate is off (closed), the max charge of the cap is about 50V. When the switch is opened, allowing it to gate, the cap charges to over 80V. The step up transformer is a 1:4 and the source voltage is 14V. Changing the duty cycle on the gate up to 90% increases the cap charge to up to 110V.
TS