Fully Independent Adams Motor Replication

This motor is a successful over-unity cold current design. The constructor wishes to remain anonymous. He also warned me, these pictures show an early version, and significant modifications were subsequently undertaken. Exact mechanical efficiency numbers are not available, but they are clearly well over 100%. The constructor so far measures his performance by the amount of back-emf he can pull off relative to input - 97%. Which is absolutely astonishing! Secondary windings could most easily be added to the stators to push that number well past 100% - battery charging in excess of motor draw, is clearly no problem. The constructor also notes the benefits of alternate N/S Muller type setups. But I was most interested to read his comments on pulse duration, and the importance of fine tuning this parameter for best results.

555 Timer Hydrogen Generator

Construction Notes:

• Timing and pulse width are critical.

• To obtain best results, patience and perseverance may be required.

• A timer and rheostat was used to control pulse duration. 555 circuitry can also be useful.

• When you get up to 2-3 thousand RPM, you must adjust the pulse width down.

• The higher the voltage, the shorter the pulse width.

• The higher the voltage, the more efficient the unit becomes.

• Best results were obtained using magnetite cores and bifilar windings

• I have two connected rotors, one is all N faces out, and the other alternate N/S faces.

• The alternate N/S configuration, has proved itself to be capable of manifesting a greater electrical output than the N/N configuration.

• If one dumps the back EMF directly into a secondary coil you can achieve about 1/3 more torque, which allows you to take more off the back end.

• I have not quite been able so far to run the unit on one rotor, and collect enough back EMF to keep a battery up. When I get the unit up to about 3-4 thousand RPM with 80-100 volts with no load, I can recover 97% of the input simply from the back emf spikes. At this point you must balance any load on the back end to push the unit into o/u.

• The bifilar windings make it much easier to take the back EMF off, single windings require capturing then separating and switching the back EMF back to the source. Which I found not to be very efficient. It is much easier to just dump the secondary windings onto a bridge then to the source.

• I have not yet been able to properly measure the mechanical output of the unit, but I believe it is a significant o/u result.

• I believe based upon my results to date, that the configuration given in the Adams patent of 8 rotors and 7 stators is more efficient. I note with interest, Mr Muller has incorporated this type of setup into his units.

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