Akula lantern no4 investor edition

  • Last Post 21 July 2019
cd_sharp posted this 21 February 2019

Hey, friends, sorry for the long absence.

I wish to continue the work I did here:


Here is my target:

I believe this is one very important device and it's very similar to the no 4 lantern. Akula added a coil and he did that for a very good reason. I'll be back..

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cd_sharp posted this 22 February 2019

Here is the device video:

and the best shots I could find or extract:

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cd_sharp posted this 22 February 2019

We have the input coil, just like in lantern no 4, with CW orientation from bottom to top.

On top of it is the second coil, also CW.

On the other ferrite leg there is the third coil, also CW. From the magnetic fields point of view, this means the third coil can be wrapped CCW if it's done on top of the input coil. We've seen this already in Lantern No4, the input coil is CW and the output "coil(s)" is CCW.

cd_sharp posted this 23 February 2019

Guys, I'm naming the coils

L1 is the input coil and it's the one on the bottom, right on the ferrite core. L2 is above.

L1 and L2 have the same orientation and almost the same inductance.

L3 has the opposite orientation, so it's "producing" current. Then what could be the purpose of L2?

Why did Akula split the second coil into 2 different coils?

I also notice the LEDs are blue, they conduct at a slightly greater voltage drop than the white LEDs. Could it be a common reason for changing the LEDs?

YoElMiCrO posted this 23 February 2019

Hi all.
I think the phenomenon of energy gain
it is the one that makes reference to N.E Zaev.
I'm investigating it.
I'll tell you when I finish doing it.
Does anyone know which material the core is made of?



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cd_sharp posted this 23 February 2019

Hi, buddy,

I think it's old TV flyback ferrite. The core does not matter that much. It does not have to be the same.

The energy gain in this lantern is, most likely, because of the current interactions that flow through L2 and L3. Some transistors are not only what they seem, they have capacitance.

The LED also is a little more than a diode that can emit light. It has capacitance and it's also like a varistor.

The rest is only experimentation, spending time (which is so hard to find these days for me) to make the two tanks reach LL resonance.

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cd_sharp posted this 24 February 2019

Are the LEDs in series (like in lantern No 4) or in parallel?

It's obvious they are in series, otherwise we would see only the cathode of each LED in the above picture.

He hid the back of the circuit (that's why he added the screw), but he cannot hide the common sense details.

cd_sharp posted this 21 April 2019

Hi, my friends

I'm waiting for some parts for the Delayed conduction experiment. So, I thought not to waste time, I'm back on this project. Let's see some weird effect. Below the 2 coils I wound another, the same orientation as L1 and I'm using it with just one end connected to the cap anode.

What is going on? The coil is not carrying any current. Now I remember I've seen at least one GLED device with some copper foils open ended.

Why is one end helping and the other working against our device? No idea.

I also remember Chris has a video with some open ended coils:

I felt like when seeing an UFO. If anyone has any explanation, I'm all eyes and ears.

Thanks guys

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cd_sharp posted this 01 May 2019

Hi, everyone

Here is my latest progress:

We have 3 coils, one strictly input, the other 2 are in POC setup. The circuit schema is here .

It's not self running, but I'm very pleased I found a way to bridge the gap between Lantern no 4 and the one in investor meeting.

Next up, I'm thinking on something bigger. Stay tuned..

Thanks guys

Aetherholic posted this 02 May 2019

Two observations which may or may not be relevant to these types of circuit.

  1. LEDs will rectify any RF impinging upon them with a slight delay due to their internal capacitance especially with switched fields.
  2. I noticed that in at least one of the original circuits there is a ceramic capacitor very close to the ferrite core which also receives a charge via field interaction with the core. (found during a first replication attempt)

So in my opinion the physical layout of the components is also important.


Aetherholic - One truth, One field

cd_sharp posted this 20 July 2019

Hey, guys,

Here is an older result, limited by the number of blue LEDs I had. Notice the very low input voltage and almost 0 current.

I noticed that the light emitted does not decrease as I add more LEDs bulbs in parallel. The more LEDs are in, the bigger the capacitor must be.

It's a promising avenue to which I hope to come back some day.

The schema is here .

Jagau posted this 20 July 2019

Well done cd


Vidura posted this 20 July 2019

Amazing CD ,one of this circuits which according conventional electronics would not work, but actually is capable of pumping current from environment. Good work!

Chris posted this 20 July 2019

My Friends,

Fantastic Work CD!

Only so much power can be taken from a Magnetic Field with a Magnitude of X. To get the Magnetic Field up, greater Core Cross Sectional Area is required.

Most here already know this. wink

You guys are awesome! You are the reason We are Truly Light Years Ahead of the Other Forums!

EDIT: A special note, only Members of our Elite Builders Team can access the schematic/circuit to protect against plagiarism.


Dadrev posted this 21 July 2019

A special note, only Members of our Elite Builders Team can access the schematic/circuit to protect against plagiarism.




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