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Overunity Machines Forum



Controller circuit for Hilden Brandt motor needed..

Started by hartiberlin, May 19, 2007, 12:56:53 PM

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0 Members and 3 Guests are viewing this topic.

lwh

Thanks for the video Nali.  Is it one of yours?  I seem to remember it from earlier on in one of the Hildenbrand threads.

Obviously I don't have an answer for your question as to whether this effect can be applied to produce a gain in a motor or transformer.  I was however under the impression it was the timing of the switching that was the stumbling block in those kinds of applications.

Not being very knowledgeable in any of the sciences relating to the search for free energy, maybe I take too simplistic a view of things like the varying of a magnets strength as shown in the video you provided.  But it seems to me, if all you need is a 1.25volt\.8amp power source to at least double a magnets strength, there should be some way to make those magnets move something that can generate that 1.25volt\.8amp or more.  Is this too simplistic an assumption?  Isn't it just a mechanical engineering (which I also know nothing about) problem? 

Also, in the initial stages, does a device utilizing this switching effect have to be a motor as such in order to prove that a self-running motor could be made by using that effect?  I'm thinking along the lines of a gravity-wheel type setup, which, incidentally, Jack also said he had a simple design for but which he never came forward with.

Sorry if my questions are too obvious.  I'm just trying to understand why even an arrangement of devices like those shown in your video couldn't be arranged to generate the power required to (effectively) switch the magnets on and off, and so, make the arrangement self-run.

Les.


wattsup

@Nali2001

Yep your video(s) were pivotal in us understanding Jacks device.

I am also curious,in your video, the bar with the magnets that you are adding to the U core, What if you simply wind a coil on that bar, even only 20 turns of 14 gauge insulated electrical wire. Wind on the bar between the magnets, then connect the added coil to a capacitor of good mF value via a charge diode. Then pulse the U core coil and check the cap with your meter if it will rise in voltage. If you are only pulsing 1.5 volts into the U core coil and you manage to raise the voltage in the capacitor to higher then that, then there is a good sign this is a way to go.