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Overunity Machines Forum



Bloch wall disconnect and reconnect. The final design!

Started by giantkiller, October 29, 2009, 02:31:19 PM

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0 Members and 14 Guests are viewing this topic.

giantkiller

Cleared the hv off the bench. Going to reproduce Wattsup led resonance tests.
Pulled out my Linear technology http://cds.linear.com/docs/Reference%20Design/dc590B.pdf
Driver, usb, and JDO300 fet boards to drive a bucking 1.xxxxxx Mhz coil with garden wire core(iron). Strictly 12 RV batteries.

Found out my usb hub was fickle. Spent months trying to fix the JDO300 controller I built. Lightning strike(no, really!).
Bought a new hub and back up and running.
The linear technology software only has a text entry for 1k to 68mhz. Can't do sweeps. I put scope on LED coil to see higher p2p when adjusting. When I find resonance on air coupled LED coil I will move it around to get the led to light. But when you get bang on the USB crashes. That is just the way it is.

To find resonance of all my other coils would take too long. I will pull the JDO300 controller out and see if it is truly busted and try to use it. I need sweep function and automation.

The thing I have been missing is a frequency genny greater than 1 Mhz. Necessary for coils of low windings.

giantkiller


wattsup

@GK

Thanks for your comments on the Understanding thread.

I could never get around all the required EE to do pulsing on my own, like you can do. That's why I need my pulse generator and sometimes the power supply and a single mosfet to do higher voltage pulsing.

But once you start doing these simple coil to coil pulsing with leds right on the coils and moving the coils around, this will show you things in real time that no scope or volt meter can show you. And by doing this simple thing, will eventually give you better and better ways of coupling the coils.

I will do a Video 6 this week with much much more leds and now that the preliminary introduction is done, this time I will be showing voltage and amperage. What I have seen in general is that the pulsing amperage rides around 0.20 amps when the coil is not at responance and when the leds are not lit up. But when you hit the right frequency, amperage drops down to 0.01 amps and the leds light up. I am saying LEDs in plural because I just got two small banks of multiples LEDS plus I am using two LED flashlight heads full of LEDS also and all are lighting up very nicely. I blew a single led so I know I am on a good track.

But all I really wanted to show guys is to get off your scopes and meters and just use LEDS to see the finer couplings. Take out your old builds and see them come to life anew. You see, as soon as you put your scope probe onto the coil or your volt meter, this already changes the whole sense/load situation and can give you false impressions of what is really going on.

Also, guys doing the JT stuff should start using outer coils with LEDS as this will give them proof of more output then they can ever see on their scopes or meters.

Anyways, the simple coil I am pulsing in is just dual lamp cord that is horizontal wound about 9-10 turns then connected bifilar. By pulsing this, it seems the whole space inside the coil is filled with coupling potential coming from all angles since all my coils that originally needed their special frequency and angle are all lighting up at the same time and in many frequency ranges. This means that whole space is constantly being filled with north/south alternations that any coil should catch just by being in the space.

But the most perplexing thing is sometimes a coil will light up only when it is exposed to one field, in most cases the south field, and for me, this means the natural Earths north field, since I am in Canada, must be playing on the other side of the coil to maintain an equilibrium of energy potential or I don't know exactly what. But it is there.

Ultimately, I see in the future that I will need a power grabber circuit. Basically I see it working like this.

At start all smaller transition caps are discharged into a holding larger capacitor.

Let's say you have 10 small caps all discharged.

You start catching only one volt in the first cap, then you switch to the second cap to catch another volt, etc., untill all 10 caps are charged.

The small individual isolated caps are then switched into series and this makes 10 volts that is then discharged into a larger holding cap. I think the smaller caps can use germanium diodes and the bigger cap can use a regular diode. I can catch 1 volts million of times but I can't do anything with them cause the cap will only charge up to 1 volt. So we need a way to catch single volties, group them, then hold them in a higher volts. For me, that is the easiest way to make free energy because there are many ways to make or catch from the abient field a 1 volt charge. so imagine if you had 10 x 10 starting caps, and 10 holding caps, that then go into series and all dicharge into a final  holding cap of 100 volts. All done with 1 volt of endless energy available all around you. It just takes the guys with the right brains to make it happen. It won't be me cause I just don't have the EE know how, but I do have the logic end of it. lol

Enjoy and keep well.

wattsup

ramset

Whats for yah ne're go bye yah
Thanks Grandma

giantkiller

Tonight I lay the coil on the EGA screen. Then add and remove the scope to see the dramatization.
Otto stated before 'No steel or iron in the coil'. I can extend the scope probe with a small era phone as a probe in the near field.

If a diode is seen as a straight piece of wire in both directions to radiant energy then any metal in the field becomes a magnetic sink. You never see it.