SPECIFIC AND ORIGINAL DEVICE OF PULSE ELECTROMAGNETIC FIELDS DESIGNED TO REGULATE ANY FORM OF LIFE IN WHICH WATER PLAYS ANY ROLE.

FR2665795A1Inactive Publication Date: 1992-02-14BURDY OLIVIER
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
BURDY OLIVIER
Filing Date
1990-08-08
Publication Date
1992-02-14
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing technologies lack the ability to effectively regulate the electromagnetic properties of water to improve its physico-chemical quality for consumption, particularly in terms of pH, hardness, and other parameters, which are crucial for maintaining the balance of living organisms.

Method used

A device with adjustable coils and power supply settings to generate pulsed electromagnetic fields, allowing for precise control over field concentration, frequency, direction, and polarity, which can be applied to water systems to enhance its physico-chemical properties.

Benefits of technology

The device enables targeted electromagnetic regulation of water, improving its quality by adjusting parameters such as pH and hardness, thereby supporting the health and well-being of living organisms.

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Abstract

The present invention consists of a device capable of generating electromagnetic fields that can be adjusted at will with respect to their concentration, direction, size, polarity, and orientation, as determined by a device for adjusting the inclination of the coils, as well as their power supply. This invention is intended to regulate, energize, and electromagnetically purify any form of life in which water plays any role.
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Description

The present invention relates to a device capable of obtaining pulsed electromagnetic fields adjustable at will with respect to their concentration, frequency, direction, size, depending on an adjustable device for the inclination of the coils producing these fields, as well as their power supply. The purpose of this device is to electromagnetically energize or purify any form of life in which water plays any role whatsoever. We know that the electromagnetic field, along with gravity, is a natural component without which all life is impossible in the long term. The electromagnetic field forms a "glue" allowing electrons to maintain their cybernetic arrangement. If this "glue" did not exist, electronic combinations would be impossible. We also know that an alternating electromagnetic field is composed of "nodes" and "antinodes". We also know that the magnetic field is inseparable from the electric field. Now, every living organism, formed of a more or less significant percentage of H2o, is dependent on a cellular electrical polarization - depolarization, which in turn generates variations in the electromagnetic field of the living organism. Any electrical variation in the water—potentially leading to imbalance—automatically generates electromagnetic variations—potentially leading to imbalance—and therefore physicochemical variations in the living organism in question. Electromagnetic regulation, via one or more specific generators, logically allows for physicochemical regulation of any living body. Indeed, water, considered as a combination of electromagnetically organized electrons, is an essential element for life. Based on this evidence, two cases must be considered. - the existence of water in every living cell and the possibilities that this invention offers us to intervene directly on the living cell within any organism, possibly by changing the angular settings of the coils according to the case considered, or by changing the shapes and intensity of dissociated power supply. - the obligation of every living being to absorb a certain amount of water daily, otherwise problems may arise in the short or long term. This water will be of varying electromagnetic and therefore physicochemical quality. The present invention will, for example, aim, through the various adjustment possibilities it offers, to allow, in the second case described above, electromagnetic regulation, at will and according to the wishes of each individual, of the water consumed, and thus a physico-chemical regulation of this water (pH, hardness, nitrates, etc...) DEVICE OF THE INVENTION It consists of an emitter of variable size and shape depending on its purpose, made of a material allowing good permeability to the emitted electromagnetic fields. Inside this transmitter are arranged at least three coils placed in a triangle, square, circle or other configuration depending on the number of coils. These coils are mounted on cups fitted with a threaded ring that receives a threaded rod. The material constituting this device must be nylon, or another material that does not interfere with the action of electromagnetic fields. These rods can be operated from outside the transmitter, or a scale allows the inclination of the coils to be determined, which can be tilted at will, and separately (see diagrams 1 and 2 in appendix 1). Point O corresponds to an angle of 0 parallel to the plane of the transmitter. The adjustment can be made towards an angle of 90 in either direction relative to the plane of the transmitter. Depending on the experiment and the intended use of this transmitter, the inclination of the coils at a certain angle can be fixed and permanent, in which case the transmitter is molded or machined from the inside according to the desired angle (example: angle of the water molecule, or angle capable of obtaining a magnetic "knot" at a certain distance from the transmitter and thus touching a particular part of a living organism...). FOOD This transmitter will be powered by any existing electronic or computer means capable of regulating the emission of electromagnetic fields in intensity, frequency, size, direction and polarity. (appendix #6-7, explanatory note). Depending on the experiments and goals sought, the intensity, frequency, size, direction, polarity and / or concentration of the electromagnetic fields can be set in advance and permanently locked, in which case only a simple adjustment, or an On / Off button, would allow the user to start their H2O energizing and regulating device. ,CE#J ADJUSTMENT OF ELECTROMAGNETIC FIELD CONTRACTION AND PRECISION I OUE We saw above that tilting the coils inwards or outwards from the transmitter allows us to obtain a concentration, or a dispersion of the fields. In addition to this concentration or dispersion of fields according to the angle of the coil relative to the plane, the device also allows for adjusting the width of the field. Let's take the minimal example of 3 coils arranged in a triangle. When the 3 coils have the same current 1, the resultant field will be linear and central to the triangle formed (see appendix 2). In the device, a coil power supply adjustment allows them to be powered one after the other in a clockwise direction, which we will call S1, or in the opposite direction, 82. The device's ability to power one of the three coils differently from the other two by fraction allows the field width to be modulated. Example: B1 is powered 1 / 2, B2 and B3 1 Then B2 is powered 1 / 2, B1 and B3 1 Then B3 is powered 1 / 2, Bl and B2, 1 etc... A rotation of this type (whether in S1 or S2) allows a distortion of the resultant field, which gets closer each time to the 2 most intensely powered coils. The same result can be obtained in reverse. Example: BI is powered by 2, B2 and B3 1 then B2 is powered 2, B1 and B3 1 then B3 is powered by 2, B1 and B2 by 1 etc... Maximum field distortion, and therefore broadening of the resulting wave, can be obtained with a maximum difference in intensity between one coil and the other two. (Appendix 3.1 and 3.2) The combination, in the device of dissociated feeding and the adjustment of the angle allows a more or less precise action on a living organism and on the water. The more coils there are, the greater the number of possible settings, since one, two or more coils can be separated into strength or weakness relative to all the others. Similarly, each coil can have a different intensity setting from all the others. Example: B1 is powered by 1, B2 by 2, and B3 by 3. then BS is powered 1, B3 2 and Bl 3 then B3 is powered 1, Bl 2 and B2 3 This in S1 or S2, etc... And this ad infinitum depending on the number of coils. DEVICES 1. A water storage or passage system can be coupled to this emitter. 2. Several transmitters can operate together 3. Water can bathe the coils 4 The coils may be included in the material of a tubular or other device, including or not a filter, within which water may circulate. 5 The transmitter can be coupled to a research or measurement device allowing the size, frequency, direction, polarity and / or concentration of electromagnetic fields to be adjusted according to the results of these research or measurements. 6. This adjustment of the fields based on the measurements taken can be automatic. Example: pH measurement, automatic adjustment of the field based on the measurement taken (Appendix 4). 7 This measurement may concern the skin of a living being, in which case the measuring device coupled to the transmitter may be an ohmmeter or any other electrical measuring device (electrodermal points).

Claims

DEMANDS 1) Device for obtaining electromagnetic fields. adjustable at will with regard to their concentration, direction, size characterized in that it comprises a casing of any shape including at least three inclined coils producing a field that varies according to its power supply, the inclination allowing for a concentration or dispersion of electromagnetic fields. 2) Device according to claim 1 characterized in that the coils are placed in a triangle, in a square, in a circle or otherwise depending on the number of coils. 3) Device according to claim 1 or claim 2 characterized in that these coils are mounted on cups made of nylon or other material not interfering with the action of electromagnetic fields. 4) Device according to claim 3 characterized in that these cups are provided with a threaded ring receiving a threaded rod. 5) Device according to claims 3 and 4 characterized in that the rods are operable from the outside. 6) Device according to claims 3, 4 and 5 characterized in that a graduation allows the inclination of the coils, which can be inclined at will and separately, to be known. 7) Device according to claims 3, 4, 5 and 6 characterized in that the point O on the graduation corresponds to an angle of 0 parallel to the plane of the emitter, the adjustment being able to be made towards an angle of 900 in one direction or the other with respect to the plane of the emitter. 8) Device according to claim 1 characterized in that, depending on experimentation and destination of the transmitter, the inclination of the coils can be blocked and definitive, in which case the transmitter is molded or machined from the inside according to the desired angle. 9) Device according to claim 1 characterized in that the power supply of the transmitter will be ensured by any existing electronic or computer means capable of regulating the emission of electromagnetic fields in intensity, frequency, size, direction and polarity. 10) Device according to claim 9 characterized in that, depending on the experiments and objectives sought, the intensity, frequency, size, direction, polarity, and / or concentration of the electromagnetic fields can be set in advance and permanently locked. 11) Device according to claim 1, 2 and 9 characterized in that the field width can be adjusted by a specific feeding method. 12) Device according to claim 11 characterized in that the adjustment of the supply of the coils allows them to be supplied each in turn in a different way from the others by fractions. 13) Device according to claims 11 and 12 characterized in that the adjustment of one coil will allow a higher or lower current than the other coils. 14) Device according to claims 11, 12 and 13 characterized in that the transition from low intensity or The strength of one coil to the other will be carried out according to a a certain rhythm. 15) Device according to claims 1, 2, 11, 12 and 13 characterized in that the passage of this intensity weak or strong from one coil to the other will be carried out in clockwise or counterclockwise hands of a clock at will. 16) Device according to claims 11, 12, 13 and 14 characterized in that the number of coils in current stronger or weaker than others is undifferentiated. 17) Device according to claim 1 characterized in that that the polarity of the coils can be adjusted at will (North-South). 18) Device according to claim 1 characterized in that the direction of the electromagnetic field can be adjusted at will towards the simple positive or towards the positive coupled with a negative subpulse intermediate to the positive pulses. 19) Device according to claim 1 characterized in that the carrier waves, the rates cutting these carrier waves, as well as the powers can be raised or lowered at will by the user. 20) Device according to claims 1 and 19 characterized in that the carrier waves, the rates cutting its carrier waves as well as the powers can be raised or lowered remotely by the user via a wired or wireless device. 21) device according to all the preceding claims characterized in that 1 or more emitters can be used on the body of a living being in order to electromagnetically regulate it. EXPLANATORY NOTE CONCERNING THE GENERATOR DRIVING THE TRANSMITTERS This generator can be organized around a microprocessor system to which display and control means and an emitter excitation function can be associated. The controls available on the front panel may include, among others, the following - Adjustable carrier wave frequency value control (2 or more positions) - Frequency value control of transmitters (each transmitter adjustable separately from the others, or transmitters adjustable in pairs, or in groups of three or more) - power control - subpulse presence control - control of field direction (North or South) - control for possible coupling of the transmitters - field direction control (right or left) The microprocessor system consists of - a 6809 microprocessor - an 8 KB PROM in which the program for managing the various commands is stored - 2 KB of RAM - a PIA 6821 - an ACIA 6850 to have a computer connection RS 232 for the purpose of connecting another computer - a PTM that creates the basic frequencies - 3 74 HC 374 registers for storage the value of the power multiplexed display values the operating mode - an address decoding PAL (16L8) - a frequency division to create the 9.6 KHZ clock for the ACIA (Division of the microprocessor clock (1 MHZ) by 13 (74 HC 193) then by 8 (74 HC 393). The display is multiplexed, meaning that the microprocessor refreshes the value to be displayed every millisecond on each display or group of LEDs. The clock E (1 MHz) is divided by a value N and then by 2 to create the carrier frequency. Each pulse is sent into a stable mono to create a 100ms pulse. The AND function between these 100ms pulses and the carrier frequency allows the square wave signal to be created. The 8-bit digital power value is converted into a positive voltage and a negative voltage. An analog switch allows the positive or negative voltage to be selected according to the direction of the chosen field and, with the square signal described above, allows the positive or negative square signal to be created. The relative power signal (PRO PRI) controls another analog switch to select a voltage value. A third analog switch MA3 controlled by a 74 HC 191 counter and a 74 HC 138 decoder allows for each transmitter coil to take either the value of the power or the value of the relative power. Depending on whether the counter increments or decrements, the relative power moves in one direction or the other (the decrement or increment command is the rotation command). Therefore, every millisecond, the microprocessor loads a value into the 74 H 374 register controlled by CS AFFICH. This value is 8 bits long; 4 bits give the value to be displayed, and the other 4 bits give the number of the display or group of LEDs to be excited (the 8 LEDs are grouped into 2 groups of 4 LEDs). The 4 bits giving the value are either decoded by a decoder (74 LS 49) for the displays or sent to a buffer 74 HC 245 for the indicator LEDs. At any given moment, the microprocessor reads the status of the various commands via the PIA. Depending on this status, the program loads the display values, the power value (in register 74 HC 374 controlled by CS PUIS), the operating mode (in register HC 374 controlled by CS MODE) and it creates the frequency slots via the PTM.