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Overunity Machines Forum



user TURBO?s replication of Steven Mark?s TPU ?

Started by turbo, November 29, 2006, 04:13:49 PM

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0 Members and 10 Guests are viewing this topic.

HMM

Allright,

   I have ringing in the coils I can clearly see the signals adding to a bigger one but when I add a load it all diminishes.

I have found the 3 phase drive to put out more power but still no OU?

Best yet half bright 60w  ::)

later
Mike


giantkiller

Quote from: Grumpy on December 13, 2006, 09:55:12 AM
PULSES
Hi, I agree with the emphasis on pulses. They must be square dc. Thanks to Tesla. Fast rise time like c0mster had posted. Freq only matters to the physical dimensions of what you are driving.

I posted alot about this in past OU sites. So here goes:
Pulses Shorter than the magfield latency but off time greater than the inductance.  In other words let the previous canon ball hit the target before you fire another one. But right after it hits. That would be the coil diam also. And also the best point for the next pulse would be right after the latency is gone. Because you have to impact the coil with the full rise time from 0volts. This equates to the highest impact  from the harmonic pressure wave. In other words, you are taking advantage of the greatest aperature. I f you don?t, you lose the harmonics at the bottom part of the pulse.
Kapeesh?

Another single shot example is:
If you take a 4" pvc pipe. Wrap it allt way with 12# and no connections. Cap one end with a small hole just like a potato gun. You put a wad of black powder in then a wad of magnet powder. When you ignite the powder the force propells the mag through the tube. as the mag travels it gens a field which compresses at the end of the tube, A huge EMP is discharged. This an open ended Tcoil! Same principle as military air dropped EMPs and air born generator based EMPs. The difference for us is we are sending multiple pulses at the correct time.

Now think about this:
At both ends of Tcoils we have large cross sectional copper. In the middle section we have small cross sectional copper but higher % of surface area. The first coil is a pancake driven hard from the outside to the inside which gens large flux lines, they then cut across the 2 coil, middle section which has a high percentage of slicing the flux. The tube configuration is such that the electrons, and the every increasing fields gened, move to the empty part of the coil. Same as the pancake. Also field compression like a pancake coil travels towards the end. Can you say single wire transmission? At the end we have a huge reseviour of copper and those electronics would be compelled to react. Hence the huge generation there. Now you have generated a huge potential between the top of the device.

So basically you have a pancake in serial with a pancake with a copper reserve.

Now when you get the transmissions just right with multiple devices one can see what Hutchison is getting done.

Hope I didn't bore anybody...

Ya ever wonder why there are so many pictures of Tesla with his hand stuck to his face? He is pointing the sky!

--giantkiller. Focus on the field and you will see the force. ;)


NerzhDishual



Hello sharp overunity dot com guys!

Sorry but slightly off topic too:

@allcanadian
QuoteA little off topic here but I just bought a wattmeter and put it on a small portable stereo, it pulls 3 watts with everything off and 5 watts at 3/4 volume. That is the extent of the stupidity displayed by our current electrical engineers and pretty much speaks for itself.

This taunting remark about mainstream physics sounds very good to me. But I'm not sure to get it perfectly straight. Could you tell us more?

Best
Nolite mittere margaritas ante porcos.

Dingus Mungus

I'll take a stab at answering this question...

Basically the tranformers and LED's in the stereo are powered 24-7... Major energy loss when no work is being done. A good counter example is the crystal radio it requires no power even when doing work, you can use a linear amplifier that has minor power loss to hear it loud, but this method of reciever is no longer employed or developed because engineers get a slight inprovement in quality or use and are willing to accept major power losses to get these minor gains in user enjoyment. Rarely these days do any electronic devices get built to be energy savers, and the devices you do see labeled as power savers are still consuming power when not in use.

Buy one of these:
http://www.amazon.com/exec/obidos/ASIN/B000KHW1Y6/dealtime-ce-feed-20/ref=nosim

Test your home devices!

allcanadian

My wattmeter plugs in the wall and you plug something into it, it measures amps,volts,watts,Kwh,and max I,V,watts.
What I found is my called parasitic current draw I believe. Everything is drawing current when it is shut off, why is a basic radio drawing only 1/2 as many watts when everthing is shut off? That is 3 watts when it is off and 5 watts at 3/4 volume, that is bad engineering. And my fridge was drawing 34 watts and nothing was running and no the door was not open.
I mean no offense to any EE's here at least it means they are willing to learn. This old dog has learned quite a bit from this forum, but it's hard to explain to people what you know when you have worked with circuits since you were 8 years old and programmed computers starting on the Vic 20. I met a 2nd year computer tech who didn't know what the hell a logic gate was, can you imagine that!
Unfortunately all of the EE's I know just don't give a damn, they do there job the way they were taught, do as there told, thankfully I can come here and talk with intelligent open minded people and learn a thing or two, and learn I have.
Knowledge without Use and Expression is a vain thing, bringing no good to its possessor, or to the race.