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Owned by Krasimi

Allistar Center

133 members • Free

This is the Metafusion community blending Technology with Consciousness, Science with Metaphysics. We connect what seems to be polarity into one idea.

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73 contributions to Allistar Center
Here is the Garber File for the Fibonacci Spirals
Just placed the order for the Fibonacci spirals on https://jlcpcb.com/ you can download it from here and also see what Options I chose when placing the order. The total cost is 203 Euro including delivery and VAT for 5 pieces. I hope this call allows us to print the Fibonacci spirals (Flash Matrix) easily, without the need to assemble it with polycarbonate and copper wire and soldering it manually, which is pretty hard and takes time, and is more expensive per piece. Notice that up to now I was using 1mm copper magnet wire but now in the PCB we are using 1 oz copper thickness: 35 µm (1.4 mil). This seems way tinner but it is external and is not coil, because of that we can run almost 4 amperes, which is way more than we actually need. (1 mm wide, 1 oz copper trace (external layer, 10°C rise): ~3–4 A. Most IPC-2221 based sources give ~3.5–4 A). The PCB option is also 1.6mm thick Material Type: S1000H TG155 instead of 9-10 mm policarbonate used so far, this will reduce the distance between the copper hemispheres and increase the capacitance to some degree. If you decide to place an order for yourself, you need to choose Surface Finish: ENIG, which will allow you to choose copper edging that is necessary to make the inner and outer rings, where both sets of the spirals are connected (see the images attached) If some of you manage to create the 30 cm Copper hemispheres, I can send him one of these PCBs because there are 5pc and I might not be able to use them all.
Here is the Garber File for the Fibonacci Spirals
0 likes • 21h
The disc is 300mm , but the ask me to add additional layer for the copper edging and now Im speaking with the designer to do this and reupload the file The inner hole is 60 mm diameter . The copper edging aka the inner and outer rings thta connect both sets of the spirals on top and bottom is 2 mm wide.
0 likes • 21h
@Fluxite None The spike will be inside a quartz crystal and you can see that the 2 of the spirals on top are ending with 2.5mm circles with 1mm hole inside , at that place wont have a mask, and the idea is to solder 2 wires of 1mm thickness. They will then be connected to the central rod, like extensions of the flat PCB spirals. The same idea is from the other side but they will be perpendicular to the first two spirals. This idea is described in the book with an image of an Archer, Quote:"Any directional motion in a sphere reflects on its opposite radius." This idea explains why 2 of the contracting spirals face each other, or are mirroring, and the other 2 are doing the same. In the second image, we can see that the vectors going in are opposite each other, like contracting spirals, and the ones going out are also opposite or mirrored.
Here is Improved version STL files for the cones
What is improved? A small ring 3 mm thick with a 20mm diameter and 7 mm hole is added to the top of each cone to serve as a guide and create perfect alignment with the copper spikes at the exact center of the configuration. (Look the first image At the bottom, the Spiraling sections are trimmed, and this allows a flat base for better adhesion with the 3D printing Bed. Without this adjustment, I`m not sure if it's even possible to be 3D printed with FDM printer. You can download the Files from here if you want, and also a small 19.5 Degree cone is added as well, with 33.3cm height for those of you who want supper low budget option to experiment. This 19.5 Degree STL can be used as a mold for Fiber Glas or Kevlar, Carbon Fiber or other composite materials to create the cones and later use it as a base for the copper wire, which might be 0.35mm thickness. Basically, to use the same method that I created the previous cones, but smaller and with thinner wire. The Idea here is to create 2 or 3 Identical cones and see if they can transfer the power over a greater distance or can be used to activate the space-time antennas instead of using standart Tesla Transformer. The total cost for all 5 files was a bit less than 200Euro including shipping and the order is placed today. We can now see if this can actually be printed with PETG, and if yes what will be the quality. If these files are working, anyone can print them and make the cones very easily.
Here is Improved version STL files for the cones
STA cone
Not gone, just busy~! This is my new cone design. It resonates at 2.757mHz. Working on the next one. The goal is to get them both resonating at the same frequency before connecting them together.
STA cone
1 like • 17d
in what whay you measure the resonant frequency Ken?
1 like • 4d
@Fluxite None Are you going to use 1/4 inch copper connector and tin to join the pipes I gues later on? Looking forwar to see the other cone and how you will intersect it. Great job Ken
Spherical Energy Gain
I belive N.Tesla wanted to replicate this idea with the Tesla Towers, making the entire planet into a sphere where the signal from one tower is multiplied and can be received to any point of the surface tnesion. In this way the Earth is like a conductor which is hyperconductive and emit the power or the signal in all directions at ones. This is also the main idea behind the Spherical Space Time Antenna. In Alchemical manual is called the True Principle of Multiplications
Spherical Energy Gain
0 likes • 14d
@Himanshu Mhatre Yes very good analogy.
0 likes • 14d
@Fluxite None Yes that is correct. But is more about the size of the Merkaba and the numbers of fractal iterations to be big enough. The Sphere just following the size the bigger it is the better because all effects are scaling wity the size. I mean that specific specific size is not really ao important although it can be, but in general the size it what create the leverage.
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Krasimi Kolev
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180points to level up
@krasimi-kolev-5656
I love to explore the mystery of this infinite life and to merge the oposites in a harmonious way.

Active 21h ago
Joined Aug 28, 2025