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Overunity Machines Forum



Patent # 390,721 Dynamo Electric Machine

Started by jbignes5, April 16, 2013, 02:31:05 PM

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jbignes5


reference: http://www.teslauniverse.com/nikola-tesla-patents-390,721-dynamo-electric-machine

The premise behind this device is that the magnetic is a loosing battle. No amount of lead in and lead out will facilitate the energy extraction we need. So the only other option is the utilize the electric field to generate a current flow that is more then it takes to generate the excitation field. This is done via the electric fields ability to excite masses into a heavy current flow. Some of this is based on fold dynamics when looking at the electric field and how it causes real current to flow in conductors when supplied with adequate stimulation.

Here is the start of my adventure...

jbignes5

 I decided to start with the field coils of the generator. Although I have bought a good amount of stuff already for the unit as a whole most of the build is not complete. So I thought the field coils would be a place to start.


Pictures:

#1 is of one half of the excitation field coil. This is an iron round stock of 1 inch thick. The iron is soft iron and probably not the best to use for such a core but it was as close as I wanted for the prototype.

#2 is half way through winding the first 1/4 field coil. This one is wound counter clock wise going from left to right in this picture. The clockwise is determined by looking at the left end circumference.

The core was wrapped in black electrical tape.

jbignes5

Picture 1: This is a shot of a final coil measuring 1/4 the circumference of the half circle core. The core is 16 inches round from the outside, end to end. So I decided to leave a 1inch gap in between phase quarters. This is for the housing of the core in the final clamshell design I chose for the unit. The 1 inch gap is for a brass connector that will clamp around the core and hold it to the top half of the clamshell.

The total wraps of the first coil is 31 groups of 5. That should be 155 winds per 1/4 coil.


Picture 2: This is a shot of the wire needed to connect to the other side of the bifilar design of matched coils. I have thought more about the wire going under the other wind and hence figured I'll use an over method to go over the other wind and connect to the matching coil pair opposite the current winding on another half of the core.

jbignes5

 These pictures are of the wire itself.


picture 1 is of the wire I am using for the field coils. The wire came from a spool of 50 foot cat5 cable. The wire turned out to be very special. It is magnetic and coated with copper So I should be able to get a better electric field out of this kind of wire. Since the magnetic will be trapped inside of the core of the wire and the much bigger core of the field windings there should be very little magnetic field outside of these two items (wire and core).


Picture 1 and 2 show magnets clinging to the wire itself that is wrapped around a paint roller.

jbignes5



in my scheme of things this is a generic layout of the prototype that was initially put together. Basically the unit is a direct copy of the original patent but the magnets have been transposed from external to internal of the exciter generator section.

the exciter generator was changed in order to facilitate a no cogging feature to the generation of the high voltage section. With equal pull on both poles of the magnets this will reduce the resistance to turn by the shaft of the whole unit.