Announcement

Collapse
No announcement yet.

Confirming the Delayed Lenz Effect

Collapse
X
 
  • Filter
  • Time
  • Show
Clear All
new posts

  • Shadesz
    replied
    I don't know OUG, some of your videos are not adding up...

    Leave a comment:


  • Overunityguide
    replied
    Hello You All,

    Finally I have hooked up a Second Hand MOT (Microwave Oven Transformer)
    Directly to my frequency drive controller. To be more precise, it is connected to the frequency drive controller by a 2.2 Ohms resistor, so that I can show the primary amperage going to my primary. And that I am able to show the phase angle between the voltage and the amperage on the primary side of my MOT.

    I found that the results obtained are exactly the same as in my previous experiment about the home made transformer with a very high impedance secondary coil.

    So this time I only have used normal Off-The-Shelf components. So please see my New Video about the Delayed Lenz effect on:

    MOT Microwave Oven Transformer Delayed Lenz Experiment - YouTube

    It looks like my LED Light Bulb (load) on the secondary is running purely on reactive power by now!

    With Kind Regards, Overunityguide

    Leave a comment:


  • qvision
    replied
    I've upped a video of acceleration-under-load rather than just short-circuit.

    The rotor speed rises by only a few Hz, and the milliamps only go down by a few but the effect is there and will be amplified with higher impedance coils.

    Acceleration under load - replicating the Heins Effect ... - YouTube

    Leave a comment:


  • Allen Burgess
    replied
    Halo coil output.

    I ran the plumber spool magnet spinner over a red Radio Shack coil wire to a rectifier, and lit an LED got 7.58 volts and 1.75 amps D.C. coming out of that jasper. The power source was a 12 volt RS alarm battery at 12.25 volts. This is while speeding up! I believe the effect is doubled when the magnet poles have two coil ends to work from the "Lenz Delay" shift.

    This discovery led to my other nested coil core designs.l

    I dug up a picture of it. It's the blue plastic spool and magnet visable lower right. click on and magnify the picture. The spool has a hi inductance wrap and exhibits 2X"s the "Lenz Delay Propulsion". Attach the 7 volt LED thru a FWBR, and watch the spinner accelerate! This is a new generation in alternator design, that integrates LDP, "Lenz Delay Propulsion" and nested rotor.
    Last edited by Allen Burgess; 06-21-2017, 11:55 AM.

    Leave a comment:


  • qvision
    replied
    @ AB, what was the load type/resistance ?

    I wound a new coil today and ran the same tests for my rotor device, the results are fairly similar :

    AUL EFFECT 0.5 VOLTAGE RANGE TEST COIL 250mH 120 Ohms.xls

    What i wasn't expecting was this (i'm pasting my post from overunity.org.uk where i am a moderator by the nick of DeepCut) :

    "OK this is getting interesting, i ran the diametric spinner at 18 volts, i then put on a miniature light bulb i got from Maplin (can't remember it's rating), the frequency rose by 5 Hz and the current draw dropped by 5 mA.

    I'm looking for other loads to try, I CAN'T SLEEP NOW !"

    So, a real-world load (albeit a tiny one), with an increase in frequency/RPM and a decrease in current draw.

    I can sleep now

    Leave a comment:


  • Allen Burgess
    replied
    Halo's.

    Ringing an axeled magnet spinner with a hi voltage wrap will produce the propusion shift. Here's a quote from the first test under load:

    "I sucessfully wound and tested the Plumber Tape spinner spool coil. Eight and a third volts rectified D.C. output more from the core spinner coil than from the same amount of wire and wraps in a Radio Shack coil that only outputs three and a half volts held in adjacency. Over twice the voltage from the magnet spinner spool axel wraped with one skien of RS red magnet wire, then the amount on an output coil of the same siize held close to one side." That's because the spinner began to race from " Delay Propulson Effect", after the load was attached! The output was compared to an output coil causeing "Lenz Drag".

    Take an empty latex tape large blue PLUMBERS TAPE spool, wind it full of 30Awg, then power it up from a seperate power coil, and see what happens when you short the Halo Coil!

    A ring of 6 or 8 Halo coil satillite magnet spinners may power up enough from a prime mover spinner in the center, to cross the "Lenz Delay Threshold", and gain in acceleration when shorted!
    Last edited by Allen Burgess; 09-28-2011, 10:24 PM.

    Leave a comment:


  • Allen Burgess
    replied
    "Anyway I'm saying this because I've noticed that your input power didn't decrease while you were dialing from 200 to 950 Hz, which it should since the impedance of primary is going up. it's also possible that at 950 Hz you are getting close to a resonant or sub-resonant spot of your secondary. In that case it would mean that you would see an increased primary consumption in no load condition, and decreased primary consumption in load condition because the load, depending on its resistance, is shorting and diminishing the resonant condition".

    Mario's working theory describes just what we witness in the bifilar resonance
    video.

    Leave a comment:


  • hatchi
    replied
    @Joit

    Ok then, I will test the whole sets, i mean both, and post again. Thanks.

    Leave a comment:


  • Joit
    replied
    Indeed an interresting Video.





    [I guess the rule for the delay time would come down to the speed and physical size of the rotor pole magnet, not the amount of poles]

    I am no more than agree with you !!!

    Impressive.
    I come to an other Conclusion, i had once a CD Rotor with 2 Magnets, and the another with 6 Magnets, they got both he same Size.
    Both did spin at the same Frequency over a trigger coil inside, just the Rotor with 2 Magnets did turn faster then the 6 Magnets Rotors.
    Therefor i say, its more a a Case of how fast the Coil get charged, and how far the Push is, what it gives the Magnets.
    The Advantage or disanvatage is, that you have a pysically faster Rotor with lesser Magnets, but the Frequency from the Coil will be the same.

    Leave a comment:


  • qvision
    replied
    He is getting power to the LED via induction, his amp meter show no draw because of this !

    The coil is being powered by his frequency generator, and the LED (with it's own little core and a few wraps of wire) is taking power via induction.

    Nothing magial here.

    Leave a comment:


  • Allen Burgess
    replied
    Resonance.

    Interesting video:


    Resonance in a Bifilar Coil - YouTube

    Leave a comment:


  • hatchi
    replied
    To.Sydney

    [I guess the rule for the delay time would come down to the speed and physical size of the rotor pole magnet, not the amount of poles]

    I am no more than agree with you !!!

    Impressive.

    Leave a comment:


  • qvision
    replied
    @ OUG, i didn't see any phase shifting in the video, only an amplitude change, but it is hard to see with the PWM frequency in the way.

    @ Citfta

    Having ran staged voltage tests on both an Adams style rotor and a single diametrically magnetised magnet i now think the speed of the rotor doesn't 'cause' the effect.

    I have had the effect from 1100 RPM and all the way up to the max RPM of whatever device.

    It seems to me this is all about coil design, obviously more magnets is a higher frequency and therefore more power out, once a working coil design is achieved.

    Here are my results if you haven't seen them, i saved the spreadsheet scrolled to the right so you have to scroll to the left to see the start :

    AUL EFFECT 0.5 VOLTAGE RANGE TEST.xls

    DSC01433.JPG


    An addition to this, i did the maths for the speed of the magnet and the RPM's were just ridiculkous and nothing like what people were seeing on the bench.

    Here is the spreadsheet for that :

    lenzbend.xls
    Last edited by qvision; 09-26-2011, 12:32 PM.

    Leave a comment:


  • Mario
    replied
    Originally posted by Overunityguide View Post
    Transformer Delayed Lenz Effect - YouTube

    With Kind Regards, Overunityguide
    Hi Overunityguide,

    I see, that explains it

    It still would be interesting to put a probe on the secondary and compare the voltage phase between the two coils.
    Btw, here's an interesting site, sorry in case you've already seen it, check page 10 and specially the graphs on page 11.



    regards,
    Mario

    Leave a comment:


  • Overunityguide
    replied
    Originally posted by Mario View Post
    Hi Overunityguide and all,
    I've noticed that your input power didn't decrease while you were dialing from 200 to 950 Hz, which it should since the impedance of primary is going up.
    regards,
    Mario
    Transformer Delayed Lenz Effect - YouTube

    With Kind Regards, Overunityguide

    Leave a comment:

Working...
X