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Overunity Machines Forum



Magnet coil cores, demagnetization power and Lenz delay.

Started by synchro1, June 09, 2013, 11:07:49 AM

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synchro1

Look at JLN's 2sGen. We see magnets, a coil wraped nano perm toroid and an output coil. Look at the output interval compared to the pulse width on the scope shot. It's 7 or 8 times as long. The DPDT relay needs the same ratio of output to pulse lag time to recover all the power from the demagnetization of the magnetite core in the GAP power coil of kEhYo. The demagnetization output is generated on the quanta plane through an atomic reordering process. JLN calculates a COP of 8 x OU from that scope shot. This is simple to achieve by reducing the rotor magnets to 2, and leaving the DPDT relay normally closed to output to the storage for 180 degrees. 

synchro1

Quote from: minnie on November 30, 2014, 05:12:58 PM


   My question is: How can you delay something that has happened?
   How can you employ something which depletes your prime objective?
                           John.

You create distance. The further a gun's fired from your ear the longer it takes for the noise to reach you.

synchro1

Here's the link to the GAP motor video. kEhYo has a Hall effect sensor and mosfet powering one strand of a bifilar coil, the other strand gathers output from the pole reversal. My design calls for a single wire coil and a DPDT Reed Relay. The relay wires to the battery for the neutralization pulse, then goes normally open to a storage capacitor.

https://www.youtube.com/watch?v=sxrJoGZy1to

Here's a link for a DPDT Reed Relay:

http://uk.rs-online.com/web/p/reed-relays/3491774/

The Reed Relay has eight pins. Two of the pins are for mounting and are inert. The GAP motor would have the two neutralization coils in series, leaving two leads which would solder to the center pins. The battery in series with a potentiometer would attach to the normally open pins on one end, and the storage capacitor in series with a fast switching diode would attach to the normally closed set of pins on the other end. The Reed Relay triggers from one pole and that's the pole you want to face out from the monopole rotor. You can easily test the relay for the closed side with a battery and 12 volt light bulb. Also the trigger pole polarity.

MarkE

Quote from: synchro1 on November 30, 2014, 04:54:50 PM

F=MA, Force equals mass times acceleration. When the rotor speeds up the force increases.
Sure it is and does, but that does not equate to JLN's set-up evaluating the supposed LENZ delay that he claims.  We could start with the fact that if anything were affected it would be the Faraday Induction.  Lenz refers only to the direction of induced current, not whether or not induction occurs or is somehow delayed.  But the big deal here is that he is just changing coupling coefficients in an inefficient system and noting where he gets better or worse results.

MarkE

Quote from: synchro1 on November 30, 2014, 05:49:03 PM
Look at JLN's 2sGen. We see magnets, a coil wraped nano perm toroid and an output coil. Look at the output interval compared to the pulse width on the scope shot. It's 7 or 8 times as long. The DPDT relay needs the same ratio of output to pulse lag time to recover all the power from the demagnetization of the magnetite core in the GAP power coil of kEhYo. The demagnetization output is generated on the quanta plane through an atomic reordering process. JLN calculates a COP of 8 x OU from that scope shot. This is simple to achieve by reducing the rotor magnets to 2, and leaving the DPDT relay normally closed to output to the storage for 180 degrees.
Synchro1 I plotted the V*T area of both the on pulse and the flyback pulse and they match as expected.  Energy only comes out of the coil when the voltage is above the supply (red in the picture).  Energy goes into the coil when the voltage is below the supply (green).  The oscillations represent energy sloshing back and forth between the inductance and parasitic capacitance of the circuit.  The rest of the time the coil is neither taking energy from the power supply nor taking it from the load.  This is acting like an ordinary voltage boost converter.