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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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MACEDONIA CD

@zapnic
 
yes you are raid  AND FINALY PUT THERE COMPASS AND  LETS MOVE  THIS  SLYPY ELKTRONES  LET <<<  GIVE AS POWER    ;) ;) ;)


@OTTO  @ RENOTE @ EM DIVICE

SOMTHING SIMPLE EXPLANE>>>>>>  IST EASY TO MOVE ELKTRONES  ;) ;) ;) 
                                                            BUT IS HARD  TO MOVE ELKTROMAGNET FILD ;) ;) ;)


weri812

hi all
@ Wattsup

i did find this pdf on the yellow cap
hope this is what you all need
PUT YOUR MIND IN GEAR BEFORE  YOU PUT YOUR MOUTH IN MOTION

slapper

Thanks weri812.

For what it is worth I've had some experience with this type of capacitor, although not in that high of voltage rating. The structure of this capacitor is made to remain pretty stable in environments where there is exposure to vibration. They also have a high Q. I've worked with them in old telephones. On party-line systems the old mechanical ringers were tuned to a ring frequency with the combination of the ringer coil and capacitor; i.e., LC. They had to be stable during the ringing operation and hold it's value.

The other application that has been mentioned here is cross-over networks in speakers. Again exposure to vibration and used, in this case, for passing the higher audio frequency into the higher frequency speaker coil or tweeter. I'm not into audio that much but, again, it's used in an application exposed to vibration in a tuned system.

These capacitors will take a high rate of energy and well suited for snubber circuits.

So these capacitors are most likely involved in some sort of tank circuit. If we know the capacitance value will this allow us to assume that the coil it is used with has the same value in inductance.

Also, I'm curious if the audio is good enough to analyze in the video where Mark is showing Sparks. This may give us another clue if we can pull some frequencies off of that part of the video.

If this all has been brought up before please except my apologies.

Take care.

nap
we are not alone :)

wattsup

@weri812

Good find. Thanks.

@Slapper

Thanks for your input.

If someone can look at the video and estimate the capacitor dimensions, the pdf has measurements that could be used to approximate which of caps is being used. I would say in the 600vdc cap range and match to the dimensions would give the maximum uF value.

SeanTheLight

mac your english is not that bad, but your spelling is!       :)

(read it phonetically QUICKLY, if you are having trouble understanding him)

regarding where electron flow (overunity) comes from in the tpu, its a cascade effect caused by the properties of magnetic fields and electron flow in a wire and the ability of 2 rotating magnetic field, 1 from the top wire, 1 from the bottom wire, interacting with a wire between them made of a different material, to create spontaneous electrical flow.

THEORY: the electricity flowing through the wires creates a "pulsed" magnetic field by nature of the delay/oscillation caused by the material difference in wires 1,2,3, etc and wires a,b,c etc.

magnet creates electricity, remove magnet and electricity should stop. the magnetic field in the wire caused by the flowing electricity in that short time the hand held magnet was within the coil, allowed a cascade process to start.

so a tpu coil would look like this...........?

wire 1
wire a
wire 2
wire b
wire 3
wire c
wire 4

wire 1 is your "input" wire (pulses of dc)
wire c is your output wire (get usable electricity here)


electricity flowing through numerical wires (1, 2, 3), create a magnetic field. the magnetic field from wire 1 spins clockwise around that wire, and down into wire a (for the sake of argument. actual direction is not known to me). that same electrical flow continues around the coil and back to the same face of the coil, but it is now at "wire 2" (i should have used the word winding instead of wire maybe...easier to visualize for me this way though). wire 2 creates a clockwise magnetic field also, which spins up into wire a. the "kick" from these 2 magnetic fields hitting eachother in wire a causes an electrical flow at a right angle to their collision, which is the same direction that the coil windings (wires) are wound in. this causes a usable electrical flow to move in wire a, and that flow is added to by more and more kicks from the coil, as each pulse of electricity travels down the numerical coil.

to make this process self sustaining, you must be able to feed a pulse dc signal back into wire 1 (the top winding of the tpu). a small control circuit could probably be added at wire c, to route some of that voltage in efficiently timed pulses back into the tpu.

i can see this creating huge amounts of electricty, or heat.......but wouldnt it melt the coil windings before anything incredibly bad could happen? how much electrical/energy pressure can you create in an area before you get strange or hurtful effects?

this is all under the assumption that each wire in the tpu is kept insulated from the others. i assume diameter or mass or volume of materials may effect the tpu "kick" resonance.

is that correct mac?