首台撓場器的誕生

The birth of our first torsion field generator

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Aqive is a group of pioneers in the torsion force civilization, and a maker of torsion fields, studying how they are generated. Co-founder Prof. Si-Chen Lee, former President of National Taiwan University, proposes that a torsion field is neither an electric nor a magnetic field, but a field produced when the spin of an object twists the structure of space-time. On his account, electrons rotating rapidly in the circuit of a torsion field coil can also generate such a field, which is not shielded by any natural material and leaves a residual effect behind it.

In the early 1980s the Russian scientist Akimov, working from the same theory, successfully built a torsion field generator using a helical copper coil and the interaction of a perpendicular H magnetic field and E electric field. It consists mainly of a magnet, with a coil (inductor) and a capacitor coupled in series to form an RLC oscillating circuit, somewhat resembling a Tesla coil. Akimov's generator produces a Poynting vector S=[E * H] that spirals upward along the conical coil structure, indicating the direction of rotation of the output signal.

Following Akimov's design, co-founders Prof. Si-Chen Lee and Dr. Hsiung-Kuang Tsai, together with Bruce Liao, who heads the torsion field laboratory, built a torsion field generator of their own. The first version was made with actual copper wire for the circuit and the helical coil, which made it hard to reproduce.

Bruce Liao therefore turned to KiCAD EDA, laying out a PCB with the torsion coil and its associated circuitry. This removed a number of external variables, made the design far easier to reproduce and improved its precision. Transistors in series raise the current gain and so the current in the coil; a variable resistor adjusts the strength of the generator; and feeding different frequencies and waveforms from a signal generator gives a different feel. The stronger the current and the denser the coil, the more powerful the sensation of the torsion field.

On 26 November 2020, with the co-founders present as witnesses, Aqive's first torsion field generator was completed and ran successfully. Holding the left palm to it, the team felt the force of the torsion field; when the generator was taken away, a light torsion force and a sense of qi remained on the palm, which they read as consistent with the residual effect. An electromagnetic field meter read zero electric field and zero magnetic field, confirming that what the generator produces is not an electromagnetic field. The team also succeeded in charging at a distance, using the generator to charge crystals and a patented storage box. Meridian-sensitive colleagues in a different room could feel the generator being switched on and off and the changes in current strength, and could feel a change in temperature in the storage box after it had been charged, along with a sensation of a faint current passing through the palm. Everyone is welcome to test this, or to propose methods of verification, so that the development of a torsion force civilization can take another step forward.

Since then the Aqive team has gone on to study the wire gauge, spacing and number of turns in the coil, designing different densities and shapes, treating the coil, the PCB and the surrounding circuitry as an equivalent RLC oscillating circuit. We have tested whether AC and DC produce different torsion fields, supplied different levels of power, and observed and experienced how different frequencies and strengths change the generator's behavior, pairing it with light or vibration to make the sensation clearer.

Out of these findings, Aqive brought out Qi Torsion (the torsion field generator), along with a torsion field module for industrial research and development, which can be integrated into a company's own products.
Torsion field generator

Qi Torsion (our first electronic torsion field generator)

We believe that with Aqive and more scientists developing and researching it, the torsion force civilization has greater breakthroughs still ahead.

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