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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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Art Z., citfta and 135 Guests are viewing this topic.

kampen

Hello all, hello Dear Friend, 

Today the required protections diodes are all installed.

Wondering how I want to connect them for energy recovering?
That is a great question and an important one, because how we connect the capacitors determines whether we are really recovering useful energy from the coils, or just recycling noise.
I will explain step by step.
The Principle:
When a coil's current is suddenly interrupted, its magnetic field collapses, producing a reverse voltage spike (back-EMF).
If we route that energy into a capacitor (instead of letting it burn up in a diode or resistor), we can store some of that energy temporarily.....
Here the Typical Recovery Technology:
need three main parts:
Flyback or recovery diode(s):
These direct the collapsing current toward the capacitor rather than back into the supply.
The diode's cathode faces the capacitor's positive terminal.
Its anode connects to the coil's "switch" side (where current is interrupted)
Recovery capacitor:
Connected so that it charges with the same polarity as the supply.
The voltage will rise briefly each time a coil discharges.
Return path / equalization resistor (optional):
A small resistor or DC-DC converter can bleed or transfer that stored energy back to the main supply or ultracap bank.
Here is a simple schematic showing a safe, Single-Coil Energy-Recovery setup with one Capacitor.


FLYBACK_RECOVERY_DIAGRAM.jpg

DIODES_SETUP_IMAGE.jpg

Greetings, 

Alex

Ufopolitics

Quote from: kampen on Oct 27, 2025, 08:15 PMHello all, hello Dear Friend,

Today the required protections diodes are all installed.

[...]

Hello my Dear Friend,

I am very glad you already got all perts required to proceed with testing!!


Quote from: kampen on Oct 27, 2025, 08:15 PM
Wondering how I want to connect them for energy recovering?
That is a great question and an important one, because how we connect the capacitors determines whether we are really recovering useful energy from the coils, or just recycling noise.
I will explain step by step.
The Principle:
When a coil's current is suddenly interrupted, its magnetic field collapses, producing a reverse voltage spike (back-EMF).
If we route that energy into a capacitor (instead of letting it burn up in a diode or resistor), we can store some of that energy temporarily.....
Here the Typical Recovery Technology:
need three main parts:
Flyback or recovery diode(s):
These direct the collapsing current toward the capacitor rather than back into the supply.
The diode's cathode faces the capacitor's positive terminal.
Its anode connects to the coil's "switch" side (where current is interrupted)
Recovery capacitor:
Connected so that it charges with the same polarity as the supply.
The voltage will rise briefly each time a coil discharges.
Return path / equalization resistor (optional):
A small resistor or DC-DC converter can bleed or transfer that stored energy back to the main supply or ultracap bank.
Here is a simple schematic showing a safe, Single-Coil Energy-Recovery setup with one Capacitor.


FLYBACK_RECOVERY_DIAGRAM.jpg

Greetings,

Alex


Ok, related to CIRCUIT above on the Single Coil Energy Recovery, I am very sorry to disagree, but I believe there are some components set on the wrong place.

So, I ran an analysis of your circuit:

WRONG_CIRCUIT.png

If you have the (+/-) Source in a CLOSED CIRCUIT with COIL and DIODE (like on your Diagram)...The Coil will always be ON, (No matter if switch/FET is Open or Closed) and am showing the Positive Energy Flow with the red arrow within circuit.

Therefore, like I have mentioned before, we need to use the same BOOSTER Technology Circuit to apply it here.

And below is the way to allow the circuit to work 'automatically' every time the Switch or MOSFET is OPEN or CLOSED:

BOOSTER_CIRCUIT_CONFIG_0.png

So on above diagram, everytime we CLOSE the switch, or the FET  does by itself, based on the sequencing turn, the coil gets energized, it contributes to Magnetic Field displacement.

Then whenever switch (or FET) OPENS, then Coils REVERSES VOLTAGE, so Energy travels through Diode into Capacitor POSITIVE SIDE (Electrolytic Cap) NOT AC Cap!!

As Energy also gets from E-Cap to LOAD, that on this case - related to our setup- could be our INPUT CAP BANK .

HOWEVER, to do this right -for our Figuera Linear Setup- we will need TWO TYPE OF BOOSTER CIRCUITS.

1- Seven Circuits just like the above with an N-FET.
2- Another Seven Circuits for the Seven Terminal P-FET's.

Just because WE DO NOT HAVE A FIXED NEGATIVE GROUND on the LINEAR FIGUERA SETUP.

Then we will need to DESIGN A TYPE OF "DUAL BOOSTER CIRCUIT" which works with BOTH, P-FET and N-FET terminals, where we will need ONE per EACH Sequence Terminal.

In order we do not have a Common Ground.

On following post I will show a website where a deep analysis of Booster Circuit Layout and the way they function.

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

HOW BOOSTER CIRCUITS WORK

Ok, on this website you will find very detailed explanation about Booster Circuits, using Coils Reversed Voltages:



It is basically a simple diagram, very similarto the one I have shown previously, but, with more detail:

boost-converter-cct01.gif


So, on above image, the Switch is CLOSED, then Coil is energized, in our case is part of the ON SEQUENCING.

boost-converter-cct02.gif

On above image FET or Switch is OPEN, Coil reverses Voltage Polarization, Energy travels through Diode D1 filling E-CAP and LOAD. (Again, note that GROUND IS FIXED HERE).

boost-converter-cct03.gif

Third Stage: FET/Switch CLOSES again, EXCEPT, there is still Energy Stored on E-CAP, BUT DIODE is also NOT TRANSFERRING Energy, because Coil REVERSED BACK TO NORMAL FEEDING POLARIZATION.

And so on...and on, we will keep filling up the E-CAP, even if there is NOT A LOAD CONNECTED.

The only thing we got left to design here, is a DUAL BOOSTER CIRCUIT for EACH SEQUENTIAL COIL INDEPENDENTLY.

Using the same TWO FET's we have for each SEQUENCING GROUP (N-FET+ P-FET) and using two Diodes accordingly to the energy flow switching.

In My Honest Opinion, we will no longer need anymore the Diodes for each Terminal, but instead using them for the Dual Booster Circuit.

The E-CAP, could be a COMMON BANK, with just TWO MAIN DIODES that do not allow energy to return back to the switching circuit(s)

I am pretty sure it could be done and I will be also working on the simplest way to apply it for our Figuera Linear Setup.

Regards


Ufopolitics

EDIT: ALSO, we can NOT USE FIXED GROUNDS NOR FIXED POSITIVE LINES here, or else we will be KILLING the SEQUENCING ORDER.
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 again,

Ok, since I had all programs open and set them up with all components...I made the Dual Booster with Single Coil Diagram...in just One Image containing Steps One (FET's Closed) and Second Step with FET'S Open:


DUAL_BOOSTER_SINGLE_COIL.png


Ok, so, we have here TWO FET's...one P-FET (Top) and the other N-FET (Bottom).

Step 1- BOTH FET's CLOSED AT UNISON, Coil gets energized with Positive (+) on Top of Coil, as Bottom is Negative (-). Dual Blue Arrow pointing at Both Energy Flows (Positive & Negative)

Step 2- BOTH FET's OPEN AT UNISON, Coils REVERSES VOLTAGE or Negative (-) Top as Positive (+) Bottom. This allows Energy to flow THROUGH BOTH DIODES filling up E-CAP as also LOAD.  Dual Green Arrow pointing at Both Energy Flows  (Positive & Negative)

The Step 3 is simple to imagine...FET's CLOSE AGAIN as previously output Energy is LOCKED on E-CAP and LOAD, because Diodes are not allowing reversed flow, as Coil is Re-Energized again...

And so on...Step 1, 2, 3...repeat.

And of course, we are using the SAME P-FET and N-FET from our Circuit Boards...for each Sequential Group.

The next design here would be our COMMON E-CAP BANK...for ALL SEVEN BOOSTERS CIRCUITS, in order to collect of each Sequence the Energy.

But for that it needs to lay out ALL Seven Boosters and their respective coils....

Final Note: Anyways, I  could be wrong somewhere here (as I did it very fast) ...so please recheck it to make sure it is ok.

Regards

Ufopolitics

EDIT 1: One thing I noted about this circuit, is that we can NO LONGER use a Diode for each PFET and NFET to Coil, like before Kampen have it on his setup...since energy will SPLIT BACK BOTH WAYS to E-CAP and ALLOW BOTH FETS to get REVERSED VOLTAGES...not good!!
But I trust Kampen knowledge about his own circuit and ability to bypass this error...
Cheers
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

forest

Reminds me Tito L.Oracion "double ram" circuit from old energy amplification thread on overunity.com site. Unfortunately this thread is not archived anywhere and this simple circuit is lost


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