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Overunity Machines Forum



Dr Ronald Stiffler SEC technology

Started by antimony, April 25, 2017, 09:09:27 AM

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0 Members and 16 Guests are viewing this topic.

NickZ

    Guys:
    Here's a video that I just made.
   
     Double diode loops, continued:     
     https://youtu.be/_WVQ0VeIMsg   

    I made another video also, but I'm not able to post a link to it here, as it keeps putting the same link as the video above.

NickZ

   Here's a link to the second video that I made a couple of nights ago. Sorry, my camera doesn't do well in low lighting conditions.
   Showing how the loops ground wires can also help in tuning the performance of the diode loop/led bulbs's output.   https://youtu.be/imIJgRUHeP0

seychelles

THANKS FOR THE CIRCUIT DIAGRAM NICKZ.

mikrovolt

 Dr Stiffler uses either a battery or transformer based power supply
having low noise, which in turn powers his SEC exciter that outputs wireless RF.
The led light being only one of the applications of new and useful.

Years ago, some were considering building a power supply 30 Vdc having less than (.01% ripple)
I found an instruction manual of a current limiting supply kit uses a standard 24V transformer.
https://img.staticbg.com//file/products/201505080459530-30Vinstall.pdf

Relating output of Brightness over the Internet has been a challenge. We often use objective comparison ?
This picture shows digital meter Volt and mA reading the output of a switching supply that is powering an led.
I think the led is a 1 watt which is 3.19 * 0.3368 = 1.074 watt measured at output of the meter.
The question still remains: Does the SEC do a better job of lighting and why and how it can be shown ?

I am not sure if there is an issue using the meter on the pie tin receiver. Possibly V meter is connected
to led and the tank rather than the led and the earth ground, then where would the mA connect ? 
Maybe a capacitor before the led might be the right direction ? it seems endless. The supply output in Watts
along with an led optical detection scheme for a given distance between transmitter and receivers might be easiest.
https://youtu.be/aFvAhr2WRnw



NickZ

  Mikrovolt:   Of course it would help, to know the exact power being used, compared to the brightness being provided by it.  But, I think that for now, we need to obtain some USE ABLE light output, first.  Other wise, what's the point.   
  We already know that the crystal oscillators can run on less that 100mAs, possibly even less than 50mAs, while lighting a load of gutted AC led bulbs, from small batteries.   However, the problem has been that little output, (lumin levels) has been noticed on most of these tests using the AC led bulbs.
    We don't know if the Docs led bulbs are running at similar brightness as the grid powered led bulbs, or only at 1/4 the lumins, as I see with my set up.  I had at one time placed a 1w led bulb flashlight bulb next to my set up, and it blows the diode loop, away.  But, lately I have been obtaining higher lumins levels. Which are starting to look more use able, and are lighting my house to some degree, while basically being used as night lights, working all night long.
  The main thing is obtaining a similar brightness, or close to it, as the grid powered led bulbs. As dim bulbs running of just a few mA, are of no practical use. And then work on making the circuit, self run itself. Otherwise, we are not saving much, if anything by using this system.  Of course, the Dr. Stiffler double loop circuit can always be run off of a solar panel and a small  battery. But then, that would not be exactly "free", as those additional things cost a bit to purchase, in order to have free energy.  As compared to a self running crystal oscillator, lighting some leds, needing No batteries, and No solar panel. 
Which is what I'm working on, now.