Lakhovsky Multiwave Oscillator replica video gallery

These videos demonstrate accurate replicas of the original Lakhovsky Multiwave Oscillator that we make to order. There are two Lakhovsky MWO replica versions available: the Standard version and the Heavy-Duty version.

Lakhovsky Multiple Wave Oscillator plasma tube apparatus

Duration: 00.01:25; Subtitles: English

Some have speculated that Georges Lakhovsky used gas-filled antennas with his Multiple Wave Oscillator. Although no historical evidence shows that George Lakhovsky ever produced such devices, he described the possibility of adding an external gas-filled tube (plasma tube) in his Swiss (CH164027A) and French (FR42146E) patents. Toni Kerselaers and Bruno Sacco first produced and described such a plasma tube setup in their reverse-engineering report on the original MWO devices discovered in Italy. It was then determined that the plasma tube, being a non-linear device, when exposed to the strong electrical field oscillations of the MWO device, produces additional lower-frequency electric fields that were not initially present. Furthermore, based on the work of Dr James Bare, it is speculated that different gas mixtures produce different photonic spectra and may also have different biological effects. The MWO plasma tube apparatus we produced was based on Toni and Bruno’s original work. It consists of plastic holders, a textolite stand, a log spiral antenna, a large Rife plasma tube with no internal electrodes, and a multi-resonance coil. It connects directly to the MWO ground with a single conductor.

Lakhovsky Multiwave Oscillator frequency spectrum analysis

Duration: 00:01:37; Subtitles: English

Georges Lakhovsky originally reasoned that every living cell could receive a given amount of energy by using its resonant frequency. Because the resonant frequencies of different cells vary and change over time depending on their current electrochemical condition, Lakhovsky decided to provide the entire frequency spectrum simultaneously. To increase the output bandwidth of the Multiwave Oscillator (MWO), George Lakhovsky used tuned high-frequency resonant coils, several concentric split-ring dipole antennas, and an internal spark gap as a non-linear switching element. When built properly, the MWO produces a powerful oscillatory electric field in the space between and near both resonator/antenna sets, with a wideband frequency spectrum in which virtually all frequencies within the range are present simultaneously.

9 things to check before buying a replica of the original Lakhovsky Multiple Wave Oscillator

Duration: 00:03:30

If you are planning to buy an accurate replica of the original Lakhovsky MWO, check these 9 essential features that are critical to achieving the effects of the original devices. We made this list based on a reverse-engineering report on 3 original, still-functional Lakhovsky oscillators discovered in Dr Vassileff’s former offices in Italy. The MultiWaveResearch team carried out the reverse-engineering analysis.

Multiple Wave Oscillator replica (Heavy-Duty version): electric field measurements

Duration: 00:02:48; Subtitles: English

Demonstrated in this video are the electric field measurements of the fully functional replica of the Lakhovsky Multiple Wave Oscillator. Watch the fluorescent lamp turn off where the transmitted and reflected signals meet in phase opposition. The same behaviour has been observed in the original Lakhovsky Multiple Wave Oscillator devices.

Multiple Wave Oscillator replica (Heavy-Duty version): short demonstration

Duration: 00:00:29; Subtitles: English

This video demonstrates a functional heavy-duty replica of the original Lakhovsky Multiple Wave Oscillator device model BV2, tested at ~280% above its normal maximum power to ensure the reliability of all electrical components.

Multiple Wave Oscillator replica (Heavy-Duty version): electrical overstress testing

Duration: 00:03:07; Subtitles: English

Demonstrated in this video are the effects of a Multiple Wave Oscillator replica model BV2 overdriven to ~280% of its normal maximum power. Of particular interest are the occurrences of seemingly stable RF (radio-frequency) electrical discharges between the concentric split-ring resonators of the MWO antenna.

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