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Overunity Machines Forum



The TPU uncovered? (A PROBABLE technique.)

Started by pauldude000, April 09, 2008, 08:35:14 PM

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0 Members and 4 Guests are viewing this topic.

aleks

Quote from: agentgates on April 12, 2008, 12:05:28 AMThen just think of that what can be the speed of our electrons in our TPUs... and they are being driven by our inaccurate oscillators... I am not wondering they're destroying themselves after awhile.

Before creating a self-regulating pulsing one should at first separate coil pulses and Nessie "kicks". This means that each pulse should produce a detectable kick. After this has been achieved the control circuitry can be improved by measuring time between kicks and firing pulses when necessary.

As you have noticed, Nessie kicks (those sine-wave segments) are pretty wide in comparison to the kick. It means if you pulse too quickly, these segments will overlap leading to an ever increasing potential and to destruction. Of course, if kicks are too distant from each other, no constant oscillation is created and you are left with nothing.

agentgates

@infringer

Interesting article. What is the principal of this device? (I am still struggling to find a website)

agentgates

@aleks

I think you misunderstood.  :)

I try to add to my previous comment. For example, we have n driving coil segments on a single collector wire, which has equivalent number (n) of segments. We are certainly able to pick up those kicks somehow directly from the n-1 collectors, or if it's failing we can still pick them up by e.g. hall effect sensors. The idea is very similar to the principal of coil guns (http://en.wikipedia.org/wiki/Coilgun) where you have n coils after each other and you fire them when sensors can pick up the object in the barrel before their coils. If you swap the optical detectors to e.g. hall effect sensors and interconnect the end of your coil gun, you got a self-controlled TPU.

Neither frequencies nor pulse widths nor complex control circuits nor radiations, etc. will cause anymore headache. Minimum components you need: wires, n sensors, n MOSFETs, MOSFET drivers and a starting circuit that can be either a piezoelectric disk. You give it a push, the device will spin up and operate itself always on the best performance without any risks, even if the anomaly is related to Earth's magnetic field, even if it's suddenly changing or you turn the device upside down. I can not imagine more simple and painless way to operate it in practical applications like homes, vehicles, whole industries, or directly in portable devices like mobile phones, laptops, tools, etc.

aleks

Quote from: agentgates on April 12, 2008, 05:27:39 AMI think you misunderstood.  :)
It seems we all are not understanding each other. Hope, this won't be so for too long as we are doomed to find the least common denominator here.

Please understand my concept on picture.

Control coil runs high-voltage or high-current saw-tooth pulses. This produces Dirac delta spikes (transients) in phonon (acoustic) space, which automatically produce DC acoustic (gravity) potential field around the control coil. This potential field's intensity changes over time in gaussian curve shape - these are 'Nessie kicks' that represent potential field with unlimited energy meaning you may suck as much energy as you need without this potential field fading away. Of course, this field fades away by itself, so you need to support it by pulsing.

Collector coil is only used to take benefit from this potential field. The closer the collector coil or ring to the control coil, the higher the potential is on the collector coil. You also need a coil placed at a distance (but not too far) which works as a lower potential collector coil. You then need to interconnect these collector coils by placing desired load between them.

Collector coil is of course a collector wire. Otto uses a thick wire for collector.

aleks

Here is what fast pulsing produces

"Nessie" kicks overlap and give an extremely fast rise to the potential field.

Pic below merey shows a sequence leading to DC voltage output. However, if "Nessie" kicks are even more frequent, the mentioned fast rise may occur leading to various destructive consequences.