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Overunity Machines Forum



Crystal Cell Research

Started by plengo, October 29, 2012, 06:08:15 PM

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jbignes5

Quote from: plengo on October 14, 2013, 04:00:42 PM
I found this concerning batteries internal resistance (IR):


http://www.physicsforums.com/showthread.php?t=634808


http://data.energizer.com/PDFs/BatteryIR.pdf


http://www.power-sonic.com/images/powersonic/sla_batteries/pg_series/PG-12V200_11_Jan_12.pdf
http://www.power-sonic.com/images/powersonic/sla_batteries/ps_psg_series/12volt/PS-121400FR_11_Feb_21.pdf
http://www.power-sonic.com/images/powersonic/Info%20for%20PHR%20section%20of%20website%2011%20Nov%2015/PHR-12500_12_July_2.pdf




This all tells me that normal Lead Acid Batteries are around 3 to 5 mili-ohms. My cells has 26 Mega Ohms and still giving voltage and current. That's so strange to me.


I really need help here.


Fausto.


In traditional electronics this is known:


"In electrical engineering, the maximum power transfer theorem states that, to obtain maximum external power from a source with a finite internal resistance, the resistance of the load must equal the resistance of the source as viewed from its output terminals. Moritz von Jacobi published the maximum power (transfer) theorem around 1840; it is also referred to as "Jacobi's law".
The theorem results in maximum power transfer, and not maximum efficiency. If the resistance of the load is made larger than the resistance of the source, then efficiency is higher, since a higher percentage of the source power is transferred to the load, but the magnitude of the load power is lower since the total circuit resistance goes up.
If the load resistance is smaller than the source resistance, then most of the power ends up being dissipated in the source, and although the total power dissipated is higher, due to a lower total resistance, it turns out that the amount dissipated in the load is reduced.
The theorem states how to choose (so as to maximize power transfer) the load resistance, once the source resistance is given. It is a common misconception to apply the theorem in the opposite scenario. It does not say how to choose the source resistance for a given load resistance. In fact, the source resistance that maximizes power transfer is always zero, regardless of the value of the load resistance."

I am also having a real problem like you. Something is different with this type of cell, it is counter intuitive.

I think this type of cell is gonna need a converter like device. Something to give it more umph to specific loads.

I am gonna be working on Bifilar pancake coils to see if I can get that to work. Like a joule thief type of a setup depending on the load.

Are you still of the opinion that this is a ionic power transfer?

plengo

And one more video that I think is the beginning of a great journey on this Crystal Cell Research.


http://youtu.be/L9GovDUYIqM



I am showing one of Bedini's cell and indeed so far it is amazing. Excellent power output and no signs of corrosion. It is only Copper of good quality, Magnesium of the highest quality possible 99.99% and Alum, that's it.


Very easy to make and it really runs for a LONG time before needing a drop of water. Well, that's said.


Now, my research has reached a point of no return, i think. I am able to create an electrolyte that when totally dry (100%) presents good voltage and current. Not forever but pretty much for a week or so. Great ration weight/size to power output.


That is one, the second is that this same formula runs even better with water and the best, NO CORROSION of the metals.


I don't think I need quality Magnesium. I am testing with both qualities. My cell is more complicated and difficult to build at the size I am building but as bigger it becomes, easier is to build.


This new cell does not perform as good as Bedini's cell, i think, but mine is very, very thin and small. So let's see where it will make me go.....to the rabbit role.




Fausto.

Allwest

Well it has been awhile

I still have the bug of creating a high powered cell that lasts a long time

Now that it is finally raining I  have some time to play

I finally broke through the 2 amp cell range

http://www.youtube.com/watch?v=S9aZvMYzCP4

This cell has settled dry at about 350 Ma

e2matrix

Quote from: Allwest on March 04, 2014, 10:56:59 AM
Well it has been awhile

I still have the bug of creating a high powered cell that lasts a long time

Now that it is finally raining I  have some time to play

I finally broke through the 2 amp cell range

http://www.youtube.com/watch?v=S9aZvMYzCP4

This cell has settled dry at about 350 Ma
Impressive!   Is this made similar to plengo's?    Have you seen lasersaber's cell.   He did a nice video on how to build a cell that makes it very easy to follow.   I have it on my 'to do list'.    Lasersaber is at www.laserhacker.com if you want to take a look at how his is built.   Not saying it's better - just for info.   I don't think he's getting as much current as yours IIRC.

Allwest

Matrix,

Wow, Laser has a very nice dry cell, it would be nice to know what it finally settled down to on power (thanks for posting)

The cell you see is the result of many years of on and off study

You can see mix designs on both Fausto and mine YouTube video channels

This cell that I am currently working with (even though everything used is non toxic) can be dangerous, left shorted out it could be dangerous, it kinda feeds on itself, it got so hot it was vibrating