Addition on Charge Separation

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  • Last Post 11 April 2019
Vidura posted this 24 February 2019

here some more information , that I think could be relevant on the Charge Separation topic. I post it on Tier II becaus it seems to be that Sergey had some Troll Issues ,  reason why he covered the exiter inductor in his experiments with a paper. 

He developed this device first as a SS. spark gap replacement. Here is the translated doc attached:

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Vidura posted this 24 February 2019

It seems to be critical that the switching device have the proper gate saturation time on order that it works, he states that some devices work for a limited time only and others not at all. Here an additional doc of a switch which works well and some explanations.

regards VIDURA.

 

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Chris posted this 24 February 2019

Troll Police here, more than happy for you to post on the Charge separation thread and I will have a field day with Trolls!

May as well keep it all together wink

The others coming, new comers, can see a one chunk dataset.

   Chris

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Vidura posted this 03 March 2019

Hi Friends, Some additional details about solid state switching. The critical parameter of the switche is the effective fall time of the output current, the faster the switch turns off, the more longitudinal wave energy will be released(if there is a delay in the gate signal doesn't matter).We can compare it with a water pipe, where a valve is closed very suddenly, a pressure wave will occur in all directions, on one side of the valve positive and on the other negative. Also potential and inductance are main parameters. We should be aware that the faster the change of current flow the higher the voltage spike and the resulting radiant impulse, values can become very high in spite of low supply voltage. Eventually the switch will avalanche or break down. Recommended to begin with low voltage for testing. This information could be helpful for other circuits where fast switching is required. If we need to use a reversal diode(body diode) a good improvement is to add an external UF diode in parallel to the switch and block the internal body diode with a low voltage shottky diode, as the internal diodes are usually much slower recovery. I can't upload images from my phone, so to clarify: Add a shottky diode in conducting direction between the hiside rail(or inductor) and the drain of the MOSFET. Connect an antiparallel UF diode to hi side rail(inductor) and the source of the MOSFET. The latter has to be at least the same voltage rating as the switch, the Schottky diode can be low voltage.

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Vidura posted this 05 April 2019

For all who are working practically on switched devices here a short addition regarding the switches: Although I believe that the superfast switching is not the only way to achieve AU, I'm quite sure that many of the discussed devices are depending on it.

The most critical parameter is the FALLTIME of the switch(maybe under certain circumstances the rising puls give a similar effect),

the switch can be a quenched sparkgap or a high speed semiconductor. Experiments have shown that the critical falltime is around 20ns. When I was revising datasheets I found that the only transistor I have in stock wich maches this criterium is the IR730 with 15ns falltime. Then beside the device used by Sergei Deyna many of the SIC mosfet from CREE meets the criteria , some as fast as 4 ns.

(Graham Gunderson used this recommending strongly the original from CREE)

The other critical parameter is the voltage rating, as due to the high BEMF a low voltage device will avalanche and the radiant effect will not be present.

Hopefully this will be useful for some,

Regards VIDURA.

Vidura posted this 11 April 2019

Still looking for a appropriated switch for some experiments in relation to the radiant energy effects, it is really hard to get some components here in argentina,I could not find suppliers for SIC mosfets till the moment, only some very expensive RF mosfets that meets the parameters until now, but I found this one in the search on internet for those who are interested to make some experiments with this fast switching caracteristics, it is available in civilized countries for around 3$ , 950V rated with a  switching risetime of 7ns and falltime 5ns as fast as the expensive SIC mosfets. IPA95R450P7 from Infineon. I hope to find a local supplier.

Vidura 

 

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Chris posted this 11 April 2019

Hey Vidura,

Fall time is only as good as the circuitry driving Switch, same with rise time. Because the Switch ( Mosfet ) has a Capacitance, this capacitance needs to be Charged and Discharged in accordance with the Capabilities.

Resistance ( R ) times Capacitance ( C ) is equal to Time ( t ) in seconds. The RC Time constant.

The Fastest Circuit I have used is one I have already shared:

Reliable and Flexible Switching System

 

The Mosfet Fall Time is honestly not all that important. I have used budget Mosfet's and still got good results.

What is more important, is how we control the Magnetic Field's Slapping together.

   Chris

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Vidura posted this 11 April 2019

To be more clear I will add some information regarding the radiant impulse effect. Firstly it is a requirement to have a very low inductance on the switched coil, ideally cancelling the magnetic field by some method (reduced impedance effect, opposing coils or similar). The effect is produced by the inertia of moving charge carriers, and the magnitude of the impulse pressure directly related to the speed of switching off. This is why Tesla quenched his spark gaps. I want to remark that it is not critical if there is a delay in the driving circuit, this has no influence in the magnitude of the longitudinal impuls pressure wave. Also the gate charge delay is not that critical, as the speed of the switch to cut off the flowing current when reaching the treshold gate voltage. Of course a hard and sharp switching is preferred for achieving THIS specific effect. When I got the appropriate components I will post some experiments or respectively replications here, related to the effect of charge separation. Of course this is not the only way to separate charges, there are many other means, which do not require fast switching, as also many machines which operates on different effects. Regards Vidura.

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