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Overunity Machines Forum



Partnered Output Coils - Free Energy

Started by EMJunkie, January 16, 2015, 12:08:38 AM

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0 Members and 202 Guests are viewing this topic.

shylo

Tinman,  Interesting, Just a question ,you wound the core with 2 seperate windings, were they cw and ccw?
Thanks artv

tinman

Quote from: shylo on May 22, 2015, 03:37:43 AM
Tinman,  Interesting, Just a question ,you wound the core with 2 seperate windings, were they cw and ccw?
Thanks artv
Shylo
I am lost as to why people think that winding one wire CW and the other CCW makes any difference,when all you need do is swap polarity at the end points in the windings to achieve the same effect.

The part that interest me the most is the continual power output of the secondary right up until the next input pulse from the primary. Imlooking more into this,as this makes me think that what is going on inside a toroid is not fully understood in the way the magnetic field is acting.

As you can see on the primary coil,we get an inductive kickback spike opposite in voltage(normal situation)to that which is supplied--and then a slight ring after the spike. But from then on until the next pulse of power,the voltage across the primary is 0. BUT the power continues to flow through the secondary and through the load after all power has been disipated on the primary,and it is at a complete rest state.

MarkE

Quote from: tinman on May 22, 2015, 07:26:01 AM
Shylo
I am lost as to why people think that winding one wire CW and the other CCW makes any difference,when all you need do is swap polarity at the end points in the windings to achieve the same effect.

The part that interest me the most is the continual power output of the secondary right up until the next input pulse from the primary. Imlooking more into this,as this makes me think that what is going on inside a toroid is not fully understood in the way the magnetic field is acting.

As you can see on the primary coil,we get an inductive kickback spike opposite in voltage(normal situation)to that which is supplied--and then a slight ring after the spike. But from then on until the next pulse of power,the voltage across the primary is 0. BUT the power continues to flow through the secondary and through the load after all power has been disipated on the primary,and it is at a complete rest state.
If you have an LCR meter you can determine the inductance and the L/R time constant in the circuit.

tinman

Quote from: MarkE on May 22, 2015, 08:15:36 AM
If you have an LCR meter you can determine the inductance and the L/R time constant in the circuit.
No-dont have one of them.

tinman

So to explain the two scope shot's below.

I have wound another winding around the outside of the core,so as it has the same length of wire to that of the inner winding's-->(not the same amount of turns-same amount of wire).I am using two identical incandescent bulbs as the load on each output coil-both running at the same time.
The first scope shot shows the blue trace across the primary winding,and the yellow trace across the output coil that is wound around the outside of the core-right along side the primary winding.
As you can see,the output power to the load go's to zero when the primary coil stop's ringing

The second scope shot is with the yellow trace moved from the load on the outer winding to the load(globe) on the inner winding. You can clearly see that even after the primary coil stop's ringing,a current is still flowing from the output coil that is in the center of the core.

The next step is to wind a coil around the outside of the core that has the same number of turn;s to that of the two coils on the inner core-->which is 30 turns,so as our amp turns are equal.. At the moment,the outer output coil has only 10 turn's,as that is all i could get with the length of wire that equaled the length of wire on the inner core coils.

But regardless,it can be clearly seen that the inner coils are recieving a changing magnetic field for a far longer period to that of the outer coil. This transformer is far more efficient than a standard toroid transformer-in that it uses far less wire to achieve a greater output. It also shows that the magnetic field exist 100% of the time toward the center of a toroid,while the magnetic field around the outside of the transformer core ceases to exist when current stops flowing through the primary winding.