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@otto
This is based on what @EM said about some of my questions regarding his ambient HV loop/led I asked what would happen if he wound a control coil around the loop and he said he tried it. When the CC was simply shorted, the loop lost its ability, and that this was a very normal effect expected since the CC's own induction causes a potential on its own over the loop. But this is exactly great to know that you can cause such a change with only shorting a non energized control coil. This means easy non-destructive switching is possible.
You see, since @EM is working the HV theory, he will still need to explain the reason for Control Coils, given that he now knows a shorted CC kills the loop, that CC has to be used in another way to make his theory still valid.
My own test with FTPU ring/CCs indicates that the coupling level is very high, almost 1:1, when DC pulsed, so I would expect the same coupling level regardless of the energy used.
I have also tried lately with @agentgates Rodin coil wind idea with two winds over the ring and this did nothing more, but I will try it again in a few other variations just to make sure. lol
Sometimes one little change makes all the difference in results. If you take the @EM loop idea and match to @agentgates idea, then this could work in reverse. An outer @EM loop wound over a Rodin coil. As ambient energy is received in the @EM loop, it induces current in the Rodin coil. Or the Rodin coil could be used like the @EM loop. All these are logical possibilities but I cannot test any of them without a working @EM loop. lol So I just continue what I am already doing. lol
@AC
That is a very interesting effect. But there may be a difference here with a loop versus a straight wire, since a loop could be considered infinite length. I don't really know for sure. but in my view, the @EM loop is working simply because the north/south fields alternate over the loop, Most probably at the AC fields blotch wall is the only place where you have a chance of physically seeing the north/south close enough together to simultaneously act on the loop, this induces a current in the loop but it also changes the polarity positions on the loop, and if it does that, then it is actually re-biasing the loop at each cycle. Now if a CC could cause the loop to demagnetize when shorted, then there should be some great ways to play around with this since you would be in a great position to maximize ambient inrush current. But first you need a functional @EM loop, something I do not have at this point so all we can do is give some ideas to @EM as furtherance.
Something like, wind a cc over the @EM loop. Take a small small transistor. Put the cc through the collector/emitter. Splice a wire onto the @EM loop and connect the other end to the transistor base. As the loop collects ambient power, it supplies an impulse to the transistor base that connects the cc that neutralizes the @EM loop, that releases the base, that re-energizes the @EM loop, etc, etc. You may need a capacitor in there somewhere to hold the base for the 60 hertz frequency period, that I don't know for sure.
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