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Light Source from MVP (Magnetic Voltaic Potential) by TLG-team

Started by dr.blue, April 05, 2017, 02:47:44 PM

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dr.blue

Light Source from MVP (Magnetic Voltaic Potential) by TLG-team
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The work and information contained herein is released under the CC BY-NC-SA license.

MVP (Magnetic Voltaic Potential)


MVP can be observed and measured between two separate earths, actual or synthetic. The MVP varies depending on location, distance between the earths and their orientation to the earths N-S poles.

A MVP can be created using the (planet) earth, when inserting two pieces of conductive metal rods in the ground a MVP can be measured between said two rods. The rods must be placed in increments of 30m from each other and aligned in the earths N-S direction. The larger the distance between the rods, the larger the MVP. 

MVP can also be found in almost any contemporary housing, using the Earth from the electrical installation and/or radiator and/or water pipe and/or antenna and/or metallic structures etc. etc. The MVP found is observed to vary between ~30-140V and can be either a DV (Direct Voltage) i.e. fixed, or AV (Alternating Voltage) i.e. oscillations can be observed.

Where there is MVP, there is no current, but that does not imply that there are no energy, on the contrary. The simple reason for the absence of current is; there are NO electrons present, and since electrons are the matter that current is made of, the result is; no electrons = no current.

The energy is not measurable due to the lack of appropriate lab equipment here, but can easily be observed, in this case we can produce light with the help of the experimental E2 circuit.

The experimental E2 Circuit

Please see the attached schematics for the experimental circuit (e2-schematic.png), it is extremely simple, it consist only of a LED panel attached to two earths. This type of circuit is henceforth known as the EII or E2 circuit.

A picture of the actual circuit in operation is attached (4panelA.jpg). What can be observed is that the LED panels (There are four LED panels each 24 LED's in series in each cluster) lights up very brightly, and that the meter reads 0.00mA when the nominal consumption for these LED panels is total 40mA @ 60V. A beneficial side effect of the electron absence can be observed in the LED panels, they do not increase in temperature while operating, no observable heat is produced.

A bonus picture is also attached (bonus-16panelsA.jpg), it shows an E2 circuit with a diode-bridge connected to 16 LED panels (4 clusters of 4 panels in each cluster, and 24 led's in series in each panel) in parallel i.e. 384 LED's in total. Again, nominal consumption 160mA @ 60V, actual consumption 0.00mA.

Guide for reproducing the experimental E2 Circuit

• Make sure you can measure a MVP
• Use LED's that has a nominal voltage below MVP
• Not all LED's will work due to differences in the manufacturing process, so you will need to experiment with a handful of different types.
• Note that the MVP will adapt to the lowest nominal voltage e.g. if you measure 100V MPV and use a 3V LED, the MVP will drop to 3V. If you connect a 12V LED and a 3V LED in parallel, only the 3V LED will light up. But if you connect two 12V LED's in parallel, both LED's will light up.

Call for Community Research Contribution

We would be greatly interested in any observation (however trivial it may seem) that you make when you have reproduced the experimental E2 circuit, together with as much as possible of the following information:

• Types of LED's used, preferably with information about manufacturer and data sheet
• Measured MVP
• Types of Earth used
• Scope screen shots of the MVP, if any oscillations are suspected or observed
• Location, preferably with lon/lat coordinates
• 24 hour log of the MVP, minimum 1 sample per 60 seconds

We have successfully powered up some low-power electronic consumer devices using MVP, if you performs such experiments, we would also be interested to learn what worked for you and what didn't.

You are encouraged to post your results in this forum, so that others may benefit from them too.

If you intend to develop commercial applications based on our work, you will obviously need to obtain a commercial license from us, and most importantly, you will likely require our consultancy services. Please do not hesitate to contact the undersigned in either case.

Kind regards

dr.blue, the TLG-team

hartiberlin

Well done.
I have such potentials between my heating pipe and the groundline of my cable TV connector on the wall...
so you sometimes also get an electrical shock, when you touch these both poles... This is also why
TV-Cards in PC sometimes die...when you connect the tv cable from the cable TV conector from the wall, which
has a different ground connection than the PCs grounded input grid supply...
Stefan Hartmann, Moderator of the overunity.com forum

TinselKoala

@dr.blue

Quote• Location, preferably with lon/lat coordinates

--but you forgot to tell us where _you_ are located. Do you perhaps live in a location that uses SWER system for electricity distribution?

https://en.wikipedia.org/wiki/Single-wire_earth_return


Also, I can assure you that if your LEDs are lighting up, there is current flowing, no matter what your meter might be saying.

dr.blue

Quote from: hartiberlin on April 05, 2017, 06:32:11 PM
I have such potentials between my heating pipe and the groundline of my cable TV connector on the wall...

That's great, please let us know what you can achieve with a couple of LED's.

dr.blue

Quote from: TinselKoala on April 05, 2017, 06:50:44 PM
Also, I can assure you that if your LEDs are lighting up, there is current flowing, no matter what your meter might be saying.

Thank you for your sentiments. I'm not here to debate nor change your belief system, I hope you can appreciate that.