Added: 4 years ago
From: Truthbeeknown
Views: 29,009
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  • Soooo will this thing run my toaster or what? Please respond Im starving!!

  • I have been looking at this stuff for a couple of days. As usual there are some claims of free energy but lack of anything convincing. When you load your motor ot turns slower, hence it's not doing more work. Volts is not real indication of power, you have to look at amps too. People spend a lot of time constructing these things yet fail to actually learn if they are over unity.

  • NASA been using it [this technique] for decades, but they don`t profess overunity yet!

  • no i saw this on tv. this guy was being denied his invention by the government because of the oil companies. basically there's a magnetic field around every wire that has electricity flowing through it and what he's did is find a way to use that energy as well. and i guess it's substantial. he started with 110 and multiplied it or something.

  • From his web site it seems it went into production. Hope it do gets out to the public as a formal product!

  • It doesn`t look very explanitary...

  • ok...

  • Spagetti anyone?

  • Got cheese?

  • The collection of emf into a cap bank from the primary and fired thru the secondary probably increases the torque, not the speed. Speed could be altered thru timing and higher input voltage. Am I correct to assume that the secondary coil also produces a emf spike that can be harvested or does it simply 'end' there? Also, instead of Reed switches, could a Bedini type of trigger (with a transistor) be used instead on the secondaries? If yes, do you get better results with the Reeds?

  • An answer to each sentence. Yes... and again yes. Yes, it is reused back to same cap. Yes.. and again, so far as I've tested yes.

  • lol your not one of those yes men are you? as for a better question is this an ssg motor or rather does it use the same circuit as an ssg motor?

  • He's made a more efficient electric motor, from what I've gathered, which is pretty cool considering the state we're in with electrical motors on the horizon.

  • i vote for permanent magnets. anybody have been thinking to crate the ideal voice recognition who will replace the manual switches?

  • u need some voltage in the beginning? how strong it is?

  • "what is 'known' NOT to work"

  • Great video!!

    Stay with it-- we all need scientist-engineers who are willing to build things... some that work-- and some that don't -- without paying attention to what is 'know' NOT to work!!

  • I'm not sure I get what you are saying. Read the description here of the video. It does work exactly as described.

  • How the hell do you expect to gain more power from a collapsing magnetic field than was used to create it in the first place? You might as well try using a step up transformer to feed the higher voltage back into the lower primary voltage and claim you are creating more power than you are using!

  • I'm not sure if people actually READ anything any more.. I NEVER claimed what you are saying on this experiment. Also, your question is quite loaded which would take more than 500 words to get you on the same page in understanding some basic laws of physics of which I'm not prepared to spend the time on right now... sorry.

  • how do you make each coil?

    what type of magnet wire are you using?

    how many feet of wire?

    how much volts/amps per coil?

  • What you ask is of, most is documented on my web page. You can get there from my youtube channel page.

  • Use "Magnetic Field" to generate electricity is "Ancient Technology"...It has a lot of disadvantages,it spend large amount of Kinetic energy generate electricity,to create large amount it needs large space and we can't improve it...

    Do you believe that is possible convert almost 50% of all matter in pure electricity,using a simple process?!

    This is what you can call "Advanced Technology"...

  • I'm not quite sure what you are saying, and how this is relevant to my video.. but that's okay.

  • I hate to tell you this, but for all your hard work you are not really proving anything. Once the tank caps are charged they represent no load to the battery or the motor. So all that you are doing is charging up the motor and the tank caps. 'Charging up the motor' because the spinning rotor of the motor is a mechanical capacitor.

  • The battery charges up the mechanical capacitor of the motor, and the electrical tank caps.

    When you put a load on the motor, the rotor slows down, resulting in less friction (i.e.; energy) being lost in the bearings. You provide the extra friction with the load to dissipate some more energy.

  • The new total load is almost the same as the original load due to friction when the rotor is spinning at full speed. Hence the current drain on the batter remains approximately the same.

    Have fun!

  • And a pop quiz question: How come the tank capacitors were charged to a higher voltage when a single diode was used?

  • I know the answer.. because I built and tested this unit.. if you feel you know the answer, just say so...

  • Sure, the diodes act as 'peak detectors' for the inductor spikes, allowing you to charge the capacitors to a higher voltage. That's how AM radio works.

  • No, you are wrong.

  • Please explain then.

  • Please read though all the comments... I'm sure you'll figure it out on you own...

  • "New"? "old"? not sure what you are referring to ... doesn't matter to me really...

  • "old" is the motor running freely with no load. "new" is the motor running at a lower speed with some sort of external load. In both cases the power dissipation is roughly the same, hence approximately the same current draw from the battery.

  • I don't know what you are trying to get across here to me. Your assessments are kinda vague and true.. all I states about this motor is what is in the description. It does *exactly* what the description says.

  • "The battery charges up the mechanical capacitor of the motor, and the electrical tank caps."

    Wrong on the second part...

  • I skipped a step. The caps are charged by the coils that get their energy from the spinning rotor. However the spinning rotor gets its energy from the battery. Therefore ultimately it is the battery that charges up the tank caps.

  • "The caps are charged by the coils that get their energy from the spinning rotor"

    WRONG!!!

    Look, you clearly don't understand what is going on here.

  • Well, I am under the impression that you have magnetic reed switches that are timed to connect the extra coils to the tank capacitors when the extra coils are kicking back a voltage spike. Am I understanding correctly?

  • Maybe your are, but you aren't articulating back to me that shows that you do...

  • This experiment shows exactly what I said in the description. I never said or mentioned "proof" of anything about this design other than what I stated.

  • didn't really understand WHAT load you put into the system. Was it just your fingers squeezing the shaft? great work!

  • I didn't load the shaft on this one... I hope the description was enough to understand what i was doing here...

  • Wow that is Cool!!! How about placing the pick up coils symetrically around the motor so that the drag is constant? Can't wait till the next vid.

  • They are not "pickup coils.. but feedback coils that use the collapsing field from the primaries . Glad you liked it.

  • Are you willing to offer any guidance ie the size of your tanks and are you backfeeding the emf to charge another battery

  • I'll try to answer as best I can. The tank is two 75V caps in parallel. One 25,000mf and the other 10,000mf, but it really does not matter too much on the mf rating.. mostly the V rating as you can see.

  • Darn 500 work limit! No, I'm feeding the collapsing magnetic field(cmf) of the primary coils to the tank, and then running the secondary coils of the tank. I later found out that I could feed the cmf from the secondaries back to the same tank cap, but I don't have a video of this. There are more details on my website which is linked from my front page here on youtube.

  • thanks for all your help thus far

  • Great.... can't wait for the next vid..

  • '-)

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