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Overunity Machines Forum



Confirmation of OU devices and claims

Started by tinman, November 10, 2017, 10:53:19 AM

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0 Members and 39 Guests are viewing this topic.

gyulasun

Hi a.king21,

Thanks for the copied pages from RF's book  as an answer to my 'phase conjugate mirror' question. 
Probably these materials were brought into the 'FE world' first by Tom Bearden, then John Bedini also
referred to Kron's papers in his early web pages http://emediapress.com/johnbedini/icehouse.net/john1/ 
and now Itsu mentioned the book by Paul LaViolette too. This kinda precedence is ok though, not my point.   
   
The problem is that the circuits (that are equivalent to a certain Schrödinger differential equation) shown from
Figure 1 to Figure 7 in friedKRON.png from Rick's book page have nothing to do with Rick's kit 
(transmitter-receiver circuit) you have been mentioning here and Itsu replicated.   

Those circuits in Figures 1 to 7 were LC networks, driven by a generator from one side and / or had a generator
inserted into the middle part of the network as shown in Figure 4/b, here is the original Kron article:
http://www.quantum-chemistry-history.com/Kron_Dat/Kron-1945/Kron-PR-1945/Kron-PR-1945.htm 

and see another full Kron paper here: 
http://www.quantum-chemistry-history.com/Kron_Dat/Kron-1945/Kron-JAP-1945/Kron-JAP-1945.htm 

So my opinion is apples are compared to oranges. But please do not be discouraged by me: show your setup
with input and output power measurements so that its uniqueness (i.e.  COP > 1)  be revealed. 

Gyula

AlienGrey


itsu


I got my gaussmeter, which is an el cheapo electromagnetic radiation tester (GM3120) and which i know is being
used in combination with this Big coil testing.

It can measure Electric fields in V/m and Magnetic fields in uT.

An overload led (flashing) and beeper warns when radiation levels are unsafe (very often!).

Anyway, here a short introduction, see video.

I will do some tests the next days including the ones mentione by A.King21 earlier.

Video here:  https://www.youtube.com/watch?v=DgjEDVbfVJQ


Itsu   

itsu

Quote from: a.king21 on June 11, 2019, 10:06:12 AM
Itsu:  One further point.  When the phase conjugate mirror occured the coils went stone cold and the earth wire went stone cold. Also the big coil went stone cold.


Try this.  Measure the gauss on your big coil at start up.
Tune the big coil in and out of resonance. What does the gauss meter show?


Then attach a ground wire to the negative of your big coil at resonance . what do you see?
Then attach the ground wire to the positive of your big coil - what do you see?
Turn on a plasma ball and compare the gauss measurement.  What do you see?
Turn on a HV module and measure the gauss.  What do you see?


Some quick test as mentioned above, still using the battery operated FG directly to the big coil LC, see circuit above.
No probes attached other then a loose probe laying ontop of the coil to indicate resonance.

# Using the gaussmeter without ground on the big coil, in and out of resonance.
# Then with a ground to the top of the coil, in and out of resonance.
# Finally with a ground lead to the bottom of the coil, again in and out of resonance.

Video here: https://www.youtube.com/watch?v=CiN6Bd9rJAk

# adding a plasma globe into the mix which, not surprisingly, adds to the emitted RF.

Video here: https://www.youtube.com/watch?v=s9iDNMmteKM

Itsu

rickfriedrich

Greetings everyone  :)
As I decided to post some historical information on this forum today I found the response ignoring the important subject and pointing over to this discussion about my work and Resonance kit. So I thought I would post a picture of the biggest expansion of the kit done so far. Last week I had three meetings that went very well and the following pictures I took of about 75 coils being powered by one big transmitter. I didn't have time to properly set this all up so the coils are not in ideal positions. This shows what you can do with no organization. I presently have about 160 coils so I may take the time to set them all up in one big display in an upcoming video. I was able to have a good display in California last year where I was doing the phase lock in which allowed me to add many ferrite coil loads directly to the transmitter while the input went down. I did the same sort of thing at the Midwest Expo down in Indiana this year where the meter continued to go down to I believe 0.004A at 4V while we loaded down the transmitter. I never got to fully set up as everyone crowded around the whole time.

Of course this is only showing the basic form of transmission. The proper way is not like this but with a secondary within or outside around the primary like Don Smith. But this demonstrates what Don showed and was aiming for in his first model with 4 secondaries. Only this is easier and safer to do. I know y'll want overunity here but the kit was meant to teach the basics of resonance at a safe level. The red LED gives you an opportunity to notice very subtle changes. You need to learn those things first before you hurt yourself at higher power levels. I decided half way through making the kit to not only make it an overunity focus, but to also unfold the several themes related to resonance. It certainly is not a perfect kit free of mistakes, but everyone has been satisfied as far as I know. I'm still learning from it myself, and will probably continue for years even though I have all the free energy I want. We can thank Don Smith for pointing to the original kit which I have significantly improved upon. The original just came with 7 pages about Faraday's laws and showed basic transmission and crystal radio. However it was interesting to find an apparent typo when they refer to the second receiver coil as coilS with an s on the end. Maybe a hint that you could add more coils. So the truth is that I could add as many coils as I could make from here to California that would be like relay coils WITH LOADS. So these pictures give you a small taste of that.

The setup was the exact #10 stranded wire that Don Smith often used (many of which I have replicated). This was made on a 5 gallon bucket to give you the diameter. The 9 coils around it (there was a tenth that we were to put on a higher level but held it on top with it's bright bulb load not affecting the other loads) were for customers and made up of #18 wire on a 6" pvc cut tube having the same inductance and capacitance as the smaller coils (I believe 152uh with 100pf quality caps). These bigger coils naturally have higher Q which translates to higher actual gain. And yes, resonance IS A GAIN. Don't let people fool you about that.

Ideally you would properly space all these coils so that they all become both transmitters and receivers in a sympathetic relationship with each other in a way like the London bridge that was falling down (haha, no, the London millennial bridge). Once this is locked into place then we do in fact have what Kron talks about in a different context, and where you can remove the input as it is self-sustaining. And more than that, you can add loads to the transmitter and even reverse the input. This usually requires several coils around the transmitter because the output of the transmitter drops off at the square of the distance so enough has to come back into the transmitter to accomplish that (considering that you have transmission radiating almost in all directions and usually we are only placing coil just horizontally around it).

The loads off the 10 bigger coils (one not shown) were bright 3W LED bulbs, and another one was powered below off a regular coil which isn't seen in the picture. So I had at least 11 of these big LEDs and almost 70 small LEDs powered. I also added ferrite coils with these bigger bulbs that brought the input power down without lowering the loads. So for 80ma at 12V that was an okay demonstration. It's the 1 watt challenge.

Anyway, I'll post another video of all the coils running when I get caught up with other pressing matters.
Rick

Quote from: itsu on June 13, 2019, 04:32:57 PM
Some quick test as mentioned above, still using the battery operated FG directly to the big coil LC, see circuit above.