Body
George! Absolutely correct! Joel & I were able to charge capacitors in
the field of the MRA with only one lead attached to ground potential. If
you pulse one side of a capacitor there is a definite displacement that
occurs in the dielectric. BTW! where the charge is stored (not on the
plates).
On 7/6/2018 12:44 AM, george gray [email protected] [EVGRAY] wrote:
> Mick,
>
> Tesla also could charge capacitors near a spark gap. He could also
> hold a capacitor in proximity to the spark gap and charge it to a very
> high capacity. In fact, he could charge them until their capacity was
> exceeded and an explosion would occur. Considering all of these
> effects, he realized this technology would allow for the wireless
> transmission of power.
>
> George
>
> On Friday, 6 July 2018, 1:15:31 am AEST, Mick [email protected]
> [EVGRAY] <[email protected]> wrote:
>
>
> Sven,
>
> Determine if the mosfets are hot or the heat sinks are hotter.
> Sometimes with these strange energies the heat sink is too hot to
> touch and the fet can be touched no problem. Maybe you have infrared
> thermometer and can test each temperature easily.
>
> From my experiments with the low voltage wireless energy I have found
> the effect is superior if the whole system is in a resonant loop
> rather than being forced to resonate outside of it's natural phase by
> a 555 or equivalent.
>
> I am filling motor run caps capacitors at 140 volts from two feet away
> with a power supply of 10 v 400ma input using a rectenna.
>
>
>
> On 7/5/2018 6:16 AM, [email protected] <mailto:[email protected]>
> [EVGRAY] wrote:
>>
>> Hello everyone,
>>
>> I have continued to work on the pushpull converter and now have a
>> frequency range of 37Hz to over 400Hz which is certainly sufficient
>> for my heavy iron core transformer. Pulse width is adjustable from
>> 780μs to 6ms at 37Hz. I think a lot can be experimented in this area.
>>
>> Since I did not want to repeat the same mistakes as at that time, I
>> concentrated strongly on the driver control and had to say if I
>> increase the supply voltage for the mosfets at some point a point
>> comes where there are dropouts after a long search, I took out the
>> gate resistance at some point and the error with incandescent lamps
>> was gone, now I am with 2 transformers as inductance testing and from
>> now I increase the pulse width and a channel slowly starts to
>> flicker, with lower voltage it is better again and the same current
>> at higher frequency, it is also worse.
>>
>> I have also hung ferrite beads on the gate lines and had a super
>> clean signal but with very small pulse width, the signal collapsed,
>> the ferrites seem to act as gate resistors, unfortunately there are
>> no small pulse widths to produce
>>
>> I soon have the feeling that the low voltage supply does not create
>> or am I wrong.
>>
>> Mosfets are IXFN44N100P
>>
>> The mosfets are very hot despite the large heat sink at just 4 amps
>> although they are designed for 37 amps per Mosfet I find that very
>> strange.
>>
>> Best regards
>>
>> Sven
>>
>
>