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Overunity Machines Forum



Common batteries are free energy sources

Started by Tesla_2006, October 30, 2006, 07:57:12 AM

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0 Members and 1 Guest are viewing this topic.

mondrasek

Relay build #5 took care of all the outstanding mechanical issues that I could think of.  I swaged the aluminum pivot tube so it has less clearance on the carbon fiber pivot pin.  I also used 34 gage magnet wire from the ends of the 24 gage coming off the switch plate common connections back to the connectors that plug into the base to eliminate the drag that was bugging me again.  Even with this mod the wave form is not symmetric when scoped at lower frequencies (15~30 Hz).  So I can only believe that the push and pull force of the solenoid on the perminant magnet is not equal, due likely to the two different poles of the PM being at different distances from the center of the solenoid while switching.  Unless there is some other unsymmetrical aspect to this build now.  The only way I can think to get around this would be to use two solenoid coils and two magnets so it would push and pull at the same time both ways, or limit it to just pushing or pulling on each side.  Setting that up to be completely symmetric would likely be more than I could stand at this scale (to small).

I've trimmed the switch arm back over the day until she is running at about 100Hz.  I cannot measure exactly since the trace on the o-scope is not stable unless I add a cap, and then it sounds like it changes frequency a bit.  Not really sure.

Throughout the weekend all 4 batteries have slowly been dropping in voltage.  Sometimes one goes up while the others go down.  I have had it stable with no drop in voltage for over 2 hours when running at about 80Hz, but well withing measurement error I believe.

FYI, I have screwed the "relay" to it's base to minimize losses to vibration.

One interesting thing is I cannot measure some of the batteries unless I hook up the scope or a cap.  The voltage will jump around +- several volts unless those are in the circuit.  I connect the scope only to take voltage readings now since the scope must be loading the circuit.

M.

Mem

Quote from: Tesla_2006 on October 30, 2006, 07:57:12 AM
Common rechargeable batteries are free energy devices, is not neccesary build a special battery, I get many kilowatts from battery banks for many years without recharge that and I want resume here my experience
In all electric circuit there is 2 main laws, energy conservation law ( Kirchoff voltage ), charge conservation ( Kirchoff current), this last law is bad in use, when we connect a battery to a resistive load there is a charge flow between the poles, that charge for that law don't loose but goto the opossite pole for get the equilibrium, negative and positive charges go in neutral condition, in any electric circuit the charge in the system
go in conservation, if we move the charges from the battery to the load and then from the load to the battery the energy flow will be for ever
Nikola Tesla at the ends of the 19 century was using common batteries of that epoque for power his remote control vehicles, he build vessels with DC motor
powered form a bank of 4 batteries, that vessels was designed for travel arround the world for go to any place powered only for that battery bank and never
that batteries go in discharge, Tesla known the charge principle of conservation and know how recycle that charges for get the permanent motion of current in the circuits
In a battery there is 2 currents , the electronic current flow out the battery and an ionic current flow inside the battery, that ionic current is composed of
more inertia than the electrons flow out the battery ,then when we open the circuit the electronic current go fast to zero, but the internal ionic current go slow
to zero and then if we open a circuit when a battery is in charge it remains in charge for a certain time
A battery is like a condenser but is not a condenser in the exact term, but when there is a current from a battery it discharge and when a current goto a battery
it charges, for get that charges flow between the battery and the load we must to have at least 3 batteries as show in the following

Case A

*********Rload*********
*                                    *
*            -----> I             *
2                                    *
*                                    *
*                                    3
*                                    *
1                                    *
*                                    *
*                                    *
**********************

1,2,3 are the batteries, 1 and 2 in series, positive of 1 join to negative of 2 and positive of 3 join to positive of 2

When the system start 1 and 2 are fully charged for example 12V and 3 is discharged or with low voltage, for example 1 Volt, then there is a current flow across the resistive load
and the initial voltage in the load 24 V at maximun power, then 3 begins in charge and 1 and 2 begins in discharge but always in all time the total charge in the system is the same, charges
outgoing from 1 and 2 are received for 3, if that configuration is permanent the system get the equilibrium and the current go to zero but always the charge will be the same in the system
For sure there is a constant current flux the system never must go in equilibrium, then when 3 is being charged we change the configuration to the following

Case B

*********Rload*********
*                                    *
*                -----> I         *
1                                    *
*                                    *
*                                    2
*                                    *
3                                    *
*                                    *
*                                    *
**********************

In this position 1 and 2 begins discharged at the same voltage and 3 with the few voltage got before cause now a low current for the load but 3 begins in charge because there is the same internal current
than in the case A in the internal of 3, 1 follow giving his charge, 2 begins in charge, the total charge follow constant and then we go to case C


Case C

*********Rload*********
*                                    *
*                -----> I         *
3                                    *
*                                    *
*                                    1
*                                    *
2                                    *
*                                    *
*                                    *
**********************


Here 1 restore his charge from 2 and 3, 2 remains in charge for the intertial internal currents


and so in the next conmutation we have a new cycle in the case A but charge is the same, if the internal intertial currents don't was considerated 3 will be with the same charge and voltage but if we design the conmutation
frequency is the adecuated 3 finish with more charge and there is more charge in the system but with or without taht charge excess the system remains in constant discharge-charge autopowered for ever
My firsts tests was with little Ni-Cd batteries of 9 V and bulbs and the system never stop for months
With this 3 batteries the load voltage may be inadecuated for a specific load 24 V in load for 12 V batteries

For get the maximun performance Tesla then use 4 batteries in the following setup


Case A


*********Rload*************
*                                      *   *
*                  -----> I         *   *
2                                      *   *
*                                      *   *
*                                      3   4
*                                      *   *
1                                      *   *
*                                      *   *
*                                      *   *
**************************

1 and 2 in series , 3 and 4 in paralell, 1,3,4 have the same negative pole, 3 and 4 are in serie with diodes for don't existence of currents between them, at start all batteries are full charged and so, 1 and 2 go in discharge passing his charge to 3 and 4
and if all the batteries are the same and of 12 V there is 12 V in the load ai maximun current I and power, then after a certain time the setup changes to the case B


Case A

**********Rload********
*   *                               *
*   *                               *
*   *             I <-----       *
*   *                               3
1   2                               *
*   *                               *
*   *                               4
*   *                               *
*   *                               *
**********************

Now changes, 1 and 2 in paralell with his diodes and 3 and 4 in series, 3 and 4 return the charges to 1 and 2 and I invert his direction to maximal power and so the cycle repeats and the system remains autopowered for ever


Depending of battery quality the system for many kilowatts remains autopowered for years not only for the charge conservation law, beside for the inertial ionic current effect appears a excess of charge

I test and use this devices with resistive load and DC motors and DC / AC converters

Control circuits are oscillators and power actuators are diodes and transistors
Of course batteries are not designed for eternal life but with this methods you never need recharge in all his useful life

In consequence any common battery is a free energy device


Thanks
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pese

ANY TRYING , to construct an working concept since 2006 (i follow
this) ist damned to unworking. Evebn to do this with relay,
(any diode and transistor produce additionally losses  with voltage drops).
So you must only first to  remember (see the loading instruction on
each Panasonic dry-lead battery). (o othe you will see instruchtions)
It must be loaded with near 20 % higher voltages over the nominal voltage
(14,4 /12,0)
It must be load with near 20% more corrent as the nominal A/h value
so an 7A/h wit  0,7Amp for 12 hours  (nit 10 !)

The battery is unload if the undervoltage is 10% (or 20?) under nominal
voltage of the battery.

Even in ANY WAY it have in ANY WAY more losses in the battery to load an unload,
so you have not any chance  to make from losses an gain.

Open your eyes and your mind. It is easy to accept this
Gustav Pese
Skype Member: pesetr (daily 21:00-22:00 MEZ (Berlin) Like to discussing. German English Flam's French. Special knowledges in "electronic area need?
ask by messey, will help- so i can...

Pirate88179

See the Joule thief Circuit Diagrams, etc. topic here:
http://www.overunity.com/index.php?topic=6942.0;topicseen