Jay Lunke

My name is Jay Lunke. I have had an interest in free energy devices off and on since I was in high school. I first got interested when I was in one of my classes. I learned about the basic operation of the electric motor. I thought there has to be a better way to design a motor than the design in the text book. At the time I did not know that there were several hundred other motor designs that were out there. I am glad I did not know that because otherwise I may not of had an interest in improving motor designs. I bought several small rectangular permanent magnets to play with. For me nothing is more educational than hands on experience with handling the hardware. I was amazed to have one magnet in one hand with a second magnet in the other hand to feel the power of the magnets to each other. This would make me wonder how I could use this power in a motor design that did not need an outside energy to power it. I have to admit that most of my early energies were to come up with a design with no electrical energy power input to the motor.

Over the years of working with magnets, I decided that even if I came up with a Self-running all permanent magnet motor, that the power output for the cost to build the motor would be too great for the average person to be able to purchase. I have some of those motor designs in earlier books I have written. I have not personally built a successful all permanent magnet motor yet, but I have not built prototypes from all of my motor designs.

I used electromagnets with permanent magnets in my next round of designs. The reason I did this is because electromagnets can switch their magnetism on and off. I worked on designs that would use torque from more permanent magnets than electromagnets. The reason for this is because you use electrical energy to power the electromagnet, but the torque in a permanent magnet is free.

My five to one, permanent magnets to one electromagnet motor design for sure should be an over unity device. The torque from six devices to turn a rotor by only having to power one of those devices in my mind has to be more power than the losses in that system.

Now the down side of most of my early motor designs using electromagnets is that the electromagnet had to be an air core electromagnet in order to prevent negative torque in the motor movement from happening during the rotation of the rotor assembly. The core material in the electromagnet could create that drag or negative torque for the rotor rotation when the power to the electromagnet is turned off. The down side to coils without normal core material in them is that coils with air gaps cannot produce as much torque in them as a coil with normal core material in it. Different core materials and designs can make a large difference in the strength of the coils and the final product.

The key to magnetic power for over unity systems is that the torque to produce electrical energy requires a smaller torque than the torque produced by the motor with the same amount of electrical energy. The torque from permanent magnets working with the torque from the same number of electromagnets should be enough to be an over unity device in a great motor design. But I have not seen a verified magnetic motor design having a one-to-one, PM to EM, ratio achieving over unity status yet. That does not mean that they are not out there. I have designed motors with a lot greater torque ratio than that. The same is true for my generator designs written in some of my other books.

In case my designs with greater PM to EM ratios than one to one was not enough to generate over unity, I looked for even more ways to improve my motor designs. I was working with different coil designs to be used as loads when working on different generator designs and found out that the toroid coils would function a lot different than other coil types. The reason for this is that the core for most of the toroid coils are built in a ring so that the flux continues to flow around in the same core path. The impedance of the toroid coil measures a lot more in it than other coil types. What this means to me is that the toroid coil will produce more torque for the same amount of electrical energy than other coil types. The toroid does not have to be round. It can be in a square shape and the coil will function pretty much the same way as the conventional toroid coil. Now days to design motors with coils that function like a toroid coil has become a goal of mine.