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FIGUERA'S AETHER MAGNETIC FIELDS LINEAR PUMP, REVIVED

Started by Ufopolitics, Nov 19, 2023, 03:39 PM

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Ufopolitics

Hello again,

Well, this time I am showing a PARALLEL-SERIES CONNECTION circuit, where I used Assisting Diodes, in order to GATE OUT only one way, as the Positive signals from Brush-Commutator develops the Sequence for each coil.

You must read my previous post, in order to FULLY UNDERSTAND the reasons why, I decided to Test this way of connections.

But, I will do the explanation about this New Diagram in detail. So, keep refreshing, because I will keep editing/adding to this post, below the image...


DUAL_SEQUENTIAL_GROUPS_EIGHT_COILS_ASSISTED_BY_DIODES_IN_SERIES_PARALLEL.png


Now, first, notice that I have ALL Coils in the Sequence connected to Negative, this means that now, the negative terminal will not be just one, and connected to only the Primary Coils, avoiding the Total Power to concentrate on this two coils.

Second, and I consider this is the most important part, observe how the LAST COIL on each sequence, receives a DIRECT FULL POWER AT THE END TRAVEL of Ascending or the Gain Mode, without the Diodes resistance added, like the rest, EXCEPT the PRIMARIES, which also receive FULL POWER. ON THE START and THE END of each sequence.

This new arrangement is crucial for a better handling and disbursement of Currents and the Total Power during operation. Mainly of the TWO more important Coils on the whole sequence, The FIRST and the LAST Coils, no matter how many coils you add here in between!!

And the main point here is to concentrate on, the Magnetic Field Spectrum behavior.

By KEEPING STRONGER the Two End coils of Each magnetic sequence chain, no matter if the "in between coils" are weaker, these Two Coils at each end, will maintain a FULL and STRONGER FIELD NETWORK, than before we had.

Of course, if you notice, the Primaries get FULL POWER, ONLY AT the START plus at the END of each FULL sequence (Ascend plus Descend), and so, at the LAST SEQUENCE STEP, the END COIL(S) (for both sequences) receive a Full Power connection from source.

But in order to avoid the Primaries to deter or starve on power, when sequential Brush contact travels to Mid Coils, being subject to Diodes Resistance adding...We can connect the Electrolytic Capacitor, I mentioned earlier at the beginning of this Disclosure.

This E-Cap will go right in between each of the two Primary terminals, and it don't need to be of high capacitance, but enough, in order to keep full power to these two primaries, just in the "mid-way" of Brush travel...

Of course, Diodes MUST BE FAST SWITCHERS, and that also can handle the Operational PULSED Voltages and Currents., and preferably, NOT to have a High Resistance.

that's all folks!!

Best Regards to All

Ufopolitics
Principles for the Development of a Complete Mind:Study the science of art. Study the art of science.
Develop your senses- especially learn how to see. Realize that everything connects to everything else.
―Leonardo da Vinci

Ufopolitics

Hello to All,

Well, I am back to work today on this new setup...

I already have found -like I mentioned before- a suitable coil, which I am going to use as Secondary, Part "y" and its steel core.
It is wound with 14 gauge, several layers, and have around 1.0 Ohms resistance...

It is better to wrap this coil with an Aluminum sheet, not a soft aluminum like aluminum wrap!!, but that have strength to give me a steady and strong flat surface.
From here I calculate the width of each coil along the length of these four (4) inches long coil.

Then each sequence coil will have around 1/2 inch (13mm) width...and height would be dictated by the number of turn/layers, that all the previously measured wire, will give me.

Also, it is better, if I build each coil separated from secondary, on a separate spool-mold that I build myself, with its internal diameter, fitting on the outer diameter of secondary.

ALL Eight Coils would be wound CCW...and when you reverse/separate Four for N and Four for S, they will face as opposite wound to each sequential group.

After I finish winding the eight coils, it is just a matter of testing all different types of connections that I have shown here.

This Method -like I mentioned before- could be tested "half way", meaning when you only have four coils connected, and watch output on Secondary.

It is also a great test, to disconnect one group of sequential coils from commutator, and excite just the other one, and observe the result of the other group, when connected to a voltmeter...you would be surprised... ;)

I will keep an images update of my build progress here...

Regards

Ufopolitics


IMG_0030.JPG



Principles for the Development of a Complete Mind:Study the science of art. Study the art of science.
Develop your senses- especially learn how to see. Realize that everything connects to everything else.
―Leonardo da Vinci

Ufopolitics

About the sequencing coils build...

These Coils on the Sequence- like I mentioned before as well- must be a high responsive coils when energized, they should build up a magnetic field as faster at the running RPM's system operates.
So, they can NOT be of high resistance like 10, 20 or 60 ohms...they are intermittent working coils, just like in a Brushed DC Motor Armature!!
Except that here, coils NEVER REVERSE Polarity, like in a typical Symmetrical Motor.

So, I am winding my sequence coils with 18 gauge, 80 ft, which gives me approx. 0.511 ohms

Now, if I use, 20 gauge for example, it would only be needed like 50 ft which gives 0.507 ohms...but it will have MUCH LESSER TURNS than using 18 gauge!!

And you all should know that the more turns in the coil we have, the stronger the field would be...right?

And that was just the difference between 18 and 20 gauge...

Regards

Ufopolitics
Principles for the Development of a Complete Mind:Study the science of art. Study the art of science.
Develop your senses- especially learn how to see. Realize that everything connects to everything else.
―Leonardo da Vinci

Ufopolitics

COIL#1...Seven more to go...It takes some time to prep the Mold/Spool...from here next is faster.


IMG_0032.jpgIMG_0034.JPGIMG_0035.JPGIMG_0036.JPG
Principles for the Development of a Complete Mind:Study the science of art. Study the art of science.
Develop your senses- especially learn how to see. Realize that everything connects to everything else.
―Leonardo da Vinci

Ufopolitics

Hello to All,

I had to correct the base inner diameter size for the sequential coils, I was not happy that it is too big, If you note the gap between Seq. Coil and Secondary...is too big, causing coil to be "totally loose"...NOT GOOD!!

And these sequential coils must be pretty TIGHT, when we slide it into Output Coil.

Please realize that I am doing it this way, to be able to show on a video, how they mount on Output Coil Secondary, plus to conduct tests halfway (just 4 coils, out of eight, or half sine), moving the coils in different positions.

But once that we have the exact parameters perfectly well, then we can wind it directly to Secondary, using just Spacers to contain each coils as we are winding them.

These coils I am making with 18-gauge, 80 ft length on a Diameter of 2 1/2 inches, gives me a Total of Eight [8] Layers, each layer having 12 turns. Total turns=96, Total Height= 8 mm

Resistance= 0.5 Ohms, remember you must know your Meter Internal Resistance, then deduct it from Total Resistance shown, for example my Inductance-Resistance Meter have an internal Resistance of 0.3-0.4 ohms, depending on Room Temp. Example: when I measured one coil this morning, it gave me 0.9 ohms...and IR on Meter was 0.4 ohms, so, Total Resistance on Coil= 0.5 ohms.

Unless we are measuring Resistance with a Hyoki, double Probe wires, or a very precise equipment...with very low internal resistance.

Inductance: On Air (Hollow Core) = 1.09 mH, Now, once I insert Coil on Secondary + Steel Core, it rises to 1,280 mH at edge(s) of Core, and at Center it goes up to 1,350 mH

Remember, when Temperature rises on Operation, resistance also rises a few milliohms...and so Inductance.

So, I believe the Sequential Coils with these parameters, should work fine, as far as generating a Strong Field, and very fast response...we will see...

When Testing it Halfway...

This Test is done in order to know IF You are building it right...before engaging in winding ALL the rest of coils...So, you do NOT waste your time!!

Basically, the ROOT to build a very Strong Exciting Field on a Sequence of Coils, when we are applying a PULSED CURRENT, lies on maintaining a SPECIFIC RATIO between Voltages and Current.

So, if we are getting an INPUT RATIO of 12-10 Volts and 8-9 Amps and Pulsing at High Speed (3000 RPM's) ...it is NOT GOOD!!

We have to have a Ratio, where Voltage is HIGHER, MUCH HIGHER than Amperage!!

Ideal would be like 100 Volts and 1-2 Amps...

Or 50V and 0.5 to 0.8 Amps...

A Strong Magnetic Field needs HIGHER Voltage than Amperage, in order to be great enough to Generate a strong Induction on Secondary!!

Basically, for this Design.

Also, have in mind, that when you add the other Half of Coils to have a Full Sequence, All these Parameters will lower down, basically, since you are adding more resistance to the circuit, it should lower Amperage even more, I could say it will divide it by 2, approximately, of what it gave you in Halfway Testing.

Regards

Ufopolitics
Principles for the Development of a Complete Mind:Study the science of art. Study the art of science.
Develop your senses- especially learn how to see. Realize that everything connects to everything else.
―Leonardo da Vinci


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