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Overunity Machines Forum



HI MACEDONIA CD I MADE SOME LIKE TPU IS FORKING MORE THEN INPUT

Started by MACEDONIA CD, November 03, 2007, 08:50:41 PM

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Dom

Ive made the two rings, showing both sides what they look like, there's 4 connectors mounted on the disk, the 4 sections of coil are terminated here, I retract information i mentioned in this post, I have 3 multimeters, two of them were reading .8ohms each coil, but the other multimeter was showing .2ohms each section, the .2ohms is about right, because in total i was reading .8ohms, almost 1 ohm.
So different multimeters can skew results, now its onto the cro.

:D

supersam


Dom

Hi super sam, from SM:-  . The technology is not magic and is in fact uses simple electronic concepts to achieve the demonstrated results. Therein lays the rub...

I'll be building two larger rings exactly like what you see there, same configuration.

Then i have at least some units to play with, I was looking at high voltage multiplier cct, this is the next step, the reason i say this is if you think back to the story SM mentioned about the imploding tv set which killed a young boy, well tv sets have high voltage systems in them, so its logical to conclude that this maybe the other piece of the puzzle. Plus the output dispalyed on SM multimeter is DC in nature.

I Have a friend doing some research in cold fusion, using high voltage multiplier to produce spark, he placed magnet ontop of the firing cylinder, which was wrapped on the outside with a coil and he noticed this 8hz hash.......so this is a good place to start.

keep the faith

Dom

innovation_station

be wise  >:(

as i have herd people have been hurt in the past

we dont need more do we?

if you notice the discharge in sm's videos..........  i hear it can bite

be wise  8)

IST

1 word of advice    TESLA ......

To understand the action of the local condenser E in fig.2 let a single discharge be first considered. the discharge has 2 paths offered~~ one to the condenser E the other through the part L of the working circuit C. The part L  however  by virtue of its self induction  offers a strong opposition to such a sudden discharge  wile the condenser on the other hand offers no such opposition ......TESLA..

THE !STORE IS UP AND RUNNING ...  WE ARE TAKEING ORDERS ..  NOW ..   ISTEAM.CA   AND WE CAN AND WILL BUILD CUSTOM COILS ...  OF   LARGER  OUTPUT ...

CAN YOU SAY GOOD BYE TO YESTERDAY?!?!?!?!

Dom

rubber gloves yes i know, and respect of things unknown, i do have electronics background, and electrical, but in any case, cannot become complacent.

Quote from SM:-

necessary to make the demonstrations you see on the video tapes available today. So in many ways we have early RCA color TV engineers to thank for my discovery of the power generator. I am sure they are all dead now but they did contribute.

So I did some research and found:-
http://www.rmcybernetics.com/science/high_voltage/voltage_mult.htm

Three stage CW multipliers, commonly known as tripler, were used in most of the early B&W and colour TV's. The voltage drops rapidly as a function of the output current. In some applications, this is an advantage. The output V/I characteristic is roughly hyperbolic, so it serves well for charging capacitor banks to high voltages at roughly constant charging power. Furthermore, the ripple on the output, particularly at high loads, is quite high.

Increasing the frequency can dramatically reduce the ripple, and the voltage drop under load, which accounts for the popularity of driving a multiplier stack with a switching power supply. A clever way to reduce ripple is to implement a full wave voltage doubler as shown below. This effectively doubles the number of charging cycles per second, and thus cuts down the voltage drop and ripple factor. The input is usually fed from a centre tapped ac transformer or MOSFET H-bridge circuits.

You can find more detailed information regarding this subject by visiting Blaze Labs   :-http://www.blazelabs.com/e-exp15.asp:-

The full wave CW

Increasing the frequency can dramatically reduce the ripple, and the voltage drop under load, which accounts for the popularity of driving a multipler stack with a switching power supply. A clever way to reduce ripple is to implement a full wave voltage doubler as shown below. This effectively doubles the number of charging cycles per second, and thus cuts down the voltage drop and ripple factor. The input is usually fed from a centre tapped ac transformer or MOSFET H-bridge circuits.