A CONCENTRATION DEVELOPMENT MECHANISM COMPRISING THREE MODELS

FR3163182B3Active Publication Date: 2026-07-17GRABOVOI GRIGORII PETROVICH
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Utility models
Current Assignee / Owner
GRABOVOI GRIGORII PETROVICH
Filing Date
2025-06-06
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing optical data transmission systems face issues with low operational reliability, complex design, transmission delays, and insufficient noise immunity, especially over long distances, due to the presence of obstacles disrupting laser communication.

Method used

A tri-mode concentration development device utilizing optical detection and emission units, lasers, motion sensors, and artificial intelligence to enhance operational reliability and ensure noise-free information transmission, focusing on mental concentration for specific goals like eternal life.

Benefits of technology

The device improves concentration and mental focus by simulating eternal life through controlled laser interactions, enhancing operational reliability and noise immunity, allowing for time-free and noise-free information transmission.

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Abstract

Concentration development device 100, comprising: an optical detection unit, including one or more lenses 201, 202 capable of containing sensitive elements, these sensitive elements being configured to detect a user-supplied biological signal according to at least three operating modes; three switches for toggling between the different operating modes; a plurality of lighting units configured to indicate each of the operating modes by emitting a predetermined light signal; an information processing unit using artificial intelligence. Figure for the abstract: Fig 1
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Description

Title of the invention: CONCENTRATION DEVELOPMENT DEVICE COMPRISING THREE MODES technical field

[0001] The present invention relates generally to optical devices for developing concentration and can be used in various applications, particularly in education, training and therapy.

[0002] CONTEXT

[0003] Various devices exist that use, for example, laser beams as communication channels between the signal transmitter and receiver. Each transmitted signal is then generated by a laser generator equipped with a laser beam modulation device using a data signal connected to a data signal source. Each received signal is received by a photodetector and a device that converts the perceived modulated laser radiation into electrical data signals.

[0004] The drawback of this type of known data transmission system is its low operational reliability, due to the complexity of its design, which includes a large number of complex signal transmitters and receivers with multifunctional connections and a complex precision guidance system with moving parts. In a known system, when transmitting information between a transmitter and a receiver of signals located at considerable distances, for example over hundreds or thousands of kilometers using several repeaters, the transmission delay can reach a few tenths of a second. This known system exhibits insufficient noise immunity, as the appearance of an obstacle on the laser communication line can disrupt the operation of the system or interfere with the transmitted signals.

[0005] It is therefore important to focus on the principle of similarity. The principle of similarity is based on the theory of wave synthesis combined with the theory of unified reality (see GP Grabovoi's doctoral thesis in physical and mathematical sciences, "Research and Analysis of the Fundamental Definitions of Optical Systems for the Prediction of Earthquakes and Industrial Disasters," Moscow, RAEN Publishing House, 1999, pp. 9-19). The device mentioned below is also based on physical and mathematical theories, experimental results, and physical and mathematical calculations, the results of which are presented in the publication entitled "Research and Analysis of the Fundamental Definitions of Optical Systems for Disaster Prevention and Predictive Control by microprocessor”, “Electronic Equipment, Series 3, Microelectronics”, 1999, edition 1 (153), and other scientific documents.

[0006] Two other patents also form the basis of the claimed device: RU2148845C1, entitled "Disaster Prevention Method and Equipment for its Implementation," published on May 10, 2000, concerning an optical system integrating components made from crystals distributed in the direction of emission propagation and placed in a glass sphere to anticipate disasters in an area; and RU2163419C1, entitled "Data Transmission System," published on February 20, 2001, based on the principle of similarity and concerning a data transmission system comprising a signal transmitter including spherical glass detection elements and a signal receiver mounted at a certain distance from the transmitter, equipped with a spherical module spaced from the latter in order to improve the system's operational reliability and noise immunity. Summary of the Invention

[0007] By departing from the aforementioned logical and widely accessible method for solving the problem, the present invention makes its constitution unique and relevant. It meets all the criteria listed above.

[0008] The objective of the present invention is to provide a device enabling the user to focus on development through an information transmission system that increases operational reliability and simultaneously ensures time-free and noise-free information transmission. Furthermore, a user's concentration can be defined as the mental strength of a person focusing on a specific goal, for example, eternal life.

[0009] The present invention solves all the problems mentioned above by proposing a concentration development device. This device is a tri-mode device, also called the PRK-1UM eternal life concentration device.

[0010] The invention relates to a concentration development device comprising: an optical detection unit comprising one or more lenses capable of retaining sensitive elements, these elements being configured to detect a biological signal provided by a user according to at least three operating modes, the signal being associated with a plurality of electromagnetic fields; and an output signal obtained from the biological signal and the plurality of electromagnetic fields; an optical emission unit configured to emit the output signal; the optical emission unit emitting the output signal in the form of at least one optical signal; three switches for toggling between the different operating modes; a plurality of lights configured to indicate each of the operating modes by emitting a predetermined light signal; and This includes, in addition: at least two lasers placed inside the device, the first laser being continuously illuminated during a second operating mode representing the emission of a static light signal by one of the lights; the second laser is connected to a motion sensor capable of switching on and off when a user is nearby and represents the emission of a repeatedly pulsed light signal by another lightning rod. A processing unit for information from at least one motion sensor, an SD card, a laser, a DC / DC converter, a selector switch, and a USB adapter is also connected to the artificial intelligence.

[0011] Preferably, the device may include a power supply in communication with the optical detection unit and the optical emission unit. The sensing elements may be spherical. The device may include a housing and a cover. Several numbers or letters may be placed on the housing and the cover, these numbers or letters being symbols intended to focus the user's attention. The first set of numbers may include the numbers 1, 4, and 5, while the second set of numbers includes the numbers 2, 7, 8, and 9, and 0, 6, and 3.

[0012] Preferably, the lens or lenses can be arranged on the lid.

[0013] In addition, the device may include a conversion unit configured to convert the output signal into an electrical signal.

[0014] Furthermore, the device may include an SD card adapter. According to the wave synthesis process, an SD card adapter can be installed to facilitate the transition of an electron to an infinite medium via a number displayed on the screen. The third operating mode, due to the operation of artificial intelligence, may therefore require the use of an SD card. Focusing on the numbers read from the SD card, displayed on a screen, will allow the user to simulate the operation of the third operating mode. Thus, by comparing the operation of the third operating mode with the simulated operation of the third operating mode, the user can accelerate the development of concentration and strengthen the focus of mental models of events.

[0015] In addition, an OLED screen can monitor the series of numbers read from an SD card inserted into the SD card adapter.

[0016] In addition, a compass can be installed on the cover to orient the laser beams in a specific direction.

[0017] In addition, a USB connector can be installed on the back of the device to, for example, connect an external power supply.

[0018] In addition, LED indicators can be installed to display series of numbers from an SD card in the form of light pulses. DESCRIPTION OF THE FIGURES

[0019] The invention is described in more detail below, with reference to the exemplary device illustrated in the drawings.

[0020] Fig. 1 shows a front left view of a device according to a first object of the present invention.

[0021] Fig. 2 shows a top view of the device according to the present invention.

[0022] Fig. 3 shows an internal view of the device according to the present invention.

[0023] Figure 4 shows an overview of the components of the present invention.

[0024] Figure 5 shows a functional diagram of the present invention.

[0025] Figure 6 shows an electrical diagram of the present invention.

[0026] IMPLEMENTATION DESCRIPTION

[0027] By concentrating, the user can imagine their consciousness as a sphere of sensitive elements surrounding their body, supported by their own body. In a subsequent step, they can imagine that the sphere transforms into a shape similar to their own, and then that this shape is absorbed by the surface of each sensitive element through the reflection of light emitted by the body. They can imagine that the radiation from the bodily form, coming into contact with the surface of this form, propagates throughout the infinite space outside their body. Infinite space is considered to be the eternal reality linked to the user's organism, which leads to the development of concentration on eternal life.

[0028] In accordance with wave synthesis theory, reality can be considered as a periodic intersection of stationary and dynamic regions, where the synthesis of a dynamic wave and a stationary wave occurs. Every real phenomenon can be defined by optical systems. Human perception is achieved using light elements carrying images containing information. When a person transmits information to an optical sensor, this person can be considered as a transmitting optical system. The transmitted information, generated by their thoughts, is received by an optical sensor toward which they direct the generated thoughts. Since a thought is an electromagnetic wave, it can be transmitted as an element of an optical system. The sensitive elements of the optical sensor preferably have a spherical shape, as this shape allows for maximum activation through the internal reflection of biological signals.Biological signals, also called biosignals, can be generated by electric, electromagnetic or non-electric fields and can be brain waves or other types of signals generated by the human body.

[0029] The tri-mode device for concentration development detects the generation of biological signals and electromagnetic fields from the electromagnetic waves generated by the user, according to the principle of universal connection, with control of the concentration objective by artificial intelligence (AI).

[0030] Wave synthesis theory recognizes that a thought generated in the form of radiation simultaneously possesses two quantum states. The first state is located on one of the sensitive elements of a signal emitter, and the second on a signal receiver.

[0031] Based on these principles, the thought interaction device for developing concentration described herein was created.

[0032] The device works universally to develop the following concentrations in order to ensure eternal life:

[0033] Control 1: - Development of concentrations of eternal life for any event.

[0034] Control 2: - Development of concentrations of eternal life according to the clairvoyance of control.

[0035] Control 3: - Development of concentrations of eternal life according to the control prediction.

[0036] Control 4: - Development of eternal life concentrations for rejuvenation. Develop eternal life concentrations using this device, in order to master the technologies implemented by spiritual development or clairvoyant control.

[0037] With reference to the figures, [Fig. 1] is a general view of a three-mode concentration development device 100, hereinafter referred to as "device 100". The device may include a substantially rectangular housing. The device illustrates an embodiment of the present invention. This embodiment has three lenses 101 that can be fixed to the outer surface of the device's cover. However, this embodiment requires at least one lens 101; the other two can therefore be removed. Each of the lenses 101 can be placed in a plate (for example, a metal plate). The diameter of the lenses 101 can be 20 mm, 25 mm, 60 mm, or any other diameter suitable for a particular embodiment of device 100. The diameter of the plate can be 60 mm, 64 mm, 70 mm, or any other diameter suitable for a particular embodiment of device 100.

[0038] The device can be equipped with an additional plate 120, 220 for placing stones, such as diamonds, attached to the case or the cover.

[0039] At least two lasers are located on the top of the cover. The first laser is continuously illuminated when the device is switched on. The second laser operates in In conjunction with a motion sensor, it can detect a user within three meters of the device. However, other types of motion sensors can also be used to detect users at other ranges.

[0040] As illustrated in [Fig. 1], symbols such as numbers 140, but also letters, can be placed on the lid. For example, the numbers 1, 4, and 5 can be placed near a large lens 101, as illustrated. Concentration, thanks to the presence of numbers near the lenses, can be improved by focusing on the lenses as described above and by concentrating on the specific symbols.

[0041] The device also includes three switches 132, 131, and 130. The first switch, 132, turns the device on and switches it to "universal" mode. A light then illuminates. In this embodiment, the button for the first mode is illuminated red. When the second switch, 131, is turned on, the button for the second mode is illuminated green, and the stationary phase of reality is considered to be reinforced. This second mode is manifested by the emission of a static light from an LED located on the left side of the device.

[0042] The last switch 130 activates the third mode, which enhances the dynamic phase of reality (periodic pulse). However, the first switching mode must be deactivated for the third button 130 to be activated. The second button 131 then begins to flash, and the third button 130 illuminates blue. This third mode is manifested by a periodic pulsed light emission from the LED located on the left side of the device 100. The third button 130 also activates additional functions of the device. This third operating mode activates two lasers, a motion sensor, an adapter or SD card module, and an OLED screen 160. When the third button is activated, the circuit is powered by 5 volts.

[0043] The activation of the lasers can be observed from the rear of the device through the ventilation slots (not shown). The technical effect of the third button is to allow the user to interact with the electromagnetic field when near the first laser or approaching the device just before the second laser is activated by the motion sensor. When the first laser is on, interactions with the human electromagnetic field occur in light beams of higher intensity and radiation density, which normalizes the characteristics of this field and allows the user to focus more actively on events that guarantee an objective, such as eternal life, and thus implement them quickly. This effect is further enhanced by the operation of the LEDs.

[0044] It is also possible to monitor the device remotely via the Internet. The effect mentioned above is then achieved on the most distant participants or users in the presence of the electromagnetic field, thanks to the radiation of human thought and the parameters of a user's electromagnetic field combined with the electromagnetic field of the planet.

[0045] In addition, an OLED screen can be activated in number sequence reading mode. To do this, click the large button 170 located to the right of the OLED screen. The LED indicator on the front right panel of the device flashes during number sequence reading, at a frequency and intensity corresponding to the displayed numbers. Numbers or number sequences can be read from an SD card inserted into an SD card adapter located on the front of the device 100.

[0046] Using the number sequences on the SD card allows for concentration to be performed with the desired control at the required level. Number sequences can be added to the SD card periodically. The number sequences stored on the SD card are not deleted during the factory assembly of the device. Specific number sequences can guarantee the development of lifetime concentrations for the user. Clicking the button to the right of the OLED screen allows access to the file from the SD card. The numbers stored on the SD card are then displayed on the screen.

[0047] On [Fig.2], on the upper surface of the body or cover of the device, there is a compass 204 with a marker indicating the location of its needle parallel to the beams of the lasers 210 located inside the device 200. The compass 204 makes it possible to determine the angle between the north-south geographic direction and the direction of the laser beams 210, each indicated by an arrow.

[0048] The lasers transmit a beam of red light to a large lens located inside the device. The beams are directed from the front face to the rear wall, strictly parallel to the lateral plane of the device. The lasers are switched on by pressing the third button. One of the lasers is permanently on, while the other is connected to a motion sensor. In the absence of the user, this laser switches off 30 seconds after being switched on and switches back on when the user approaches the device to within 2 meters.

[0049] The first laser beam 210 functions as a static reality wave dispersing through the lens 450 to infinity, in the ethereal environment. The dynamic reality wave function operates from a second laser beam, also inside the device, activated by a motion sensor 203. This second laser beam, activated by a motion sensor, forms a gap with the first laser beam, in which an increase in the intensity of the thought radiation occurs due to the scattering and reflection of the laser beams in a large lens inside the device. When a laser beam is operating, this effect occurs inside the lens in the reflected and scattered sections of a laser beam.

[0050] During operation of the device's third mode, each LED illumination is produced by a physical process in the converter, similar to a powerful impact. This impact, as is known, exhibits the characteristics of an explosion. Corresponding physical and mathematical calculations implement the theory of wave synthesis of reality in the initial region of intersection of static and dynamic waves of reality.

[0051] According to the physical and mathematical equations of this theory, in the initial region of intersection of the static and dynamic waves of reality, physical processes similar to those described in the famous Big Bang theory occur. According to these physical and mathematical equations, the Big Bang theory designates a special case of the theory of wave fusion. The Big Bang is a generally accepted cosmological model [1] that describes the early development of the Universe [2], namely the beginning of its expansion, before which the Universe was in a singular state [3].

[0052] (1) https: / / ru.wikipedia.org / wiki / %D0%9A%D0%BE%D1%81%D0%BC%D0%BE %D0%BB%D0%BE%D0%B3%D0%B8%D 1 %87%D0%B5%D 1 %81 %D0%BA %D0%B8%D0%B5_%D0%BC%D0%BE%D0%B4%D0%B5%D0%BB%D0%B8

[0053] (2) https: / / ru.wikipedia.org / wiki / %D0%92%D1%81%D0%B5%D0%BB %D0%B5%D0%BD%D0%BD%D0%B0%Dl%8F

[0054] (3) https: / / ru.wikipedia.org / wiki / %D0%9A%D0%BE%D1%81%D0%BC%D0%BE %D0%BB%D0%BE%D0%B3%D0%B8%D 1 %87%D0%B5%D 1 %81 %D0%BA %D0%B0%D 1 %8F_%D 1 % 81 %D0%B 8%D0%BD%D0%B3%D 1 %83%D0%BB %D 1 %8F%D 1 %80%D0%BD%D0%BE%D 1 %81 %D 1 %82%D 1 %8C

[0055] [4] https: / / ru.wikipedia.org / wiki / %D0%9A %D 1 %80%D0%B8%D 1 %82%D0%B8%D 1 %87%D0%B5%D 1 % 81 %D0%B A %D0%B0%D 1 %8F_%D0%BF%D0%BB%D0%BE%D 1 %82%D0%BD%D0%BE %D 1 %81 %D 1 %82%D 1 %8C_(%D0%B A%D0%BE%D 1 % 81 %D0%BC%D0%BE %D0%BB%D0%BE%D0%B3%D0%B8%Dl%8F

[0056] According to the Big Bang theory, subsequent evolution depends on an experimentally measurable parameter: the average density of matter in the modern Universe. If the density does not exceed a certain critical value (known theoretically), the Universe will expand indefinitely. If the density exceeds this critical value, the expansion process will eventually stop and the reverse compression phase will begin, returning to the initial singular state. Modern observational data (2015) show that the average density, within the limit of experimental error (a fraction of a percent), is equal to the critical density.

[0057] The Big Bang theory cannot yet answer a number of questions, but its main hypotheses are supported by reliable experimental data. The current state of theoretical physics allows us to describe the temporal evolution of such a system quite reliably, with the exception of the initial phase, about one hundredth of a second after the "beginning of the world".

[0058] In the device of the present invention, the shock action is explosive and the physical principle of the temporal evolution of such a system is implemented, including, in accordance with the theory and equations of wave synthesis, the initial phase, that is to say, the "beginning of the world". The physico-mathematical equations enabling the calculation of the characteristics of an explosion from measurements of the shock ground parameters have been developed and put into practice.

[0059] With regard to protection against continuous or periodic laser radiation, the powerful laser radiation installation available in its sector was used to carry out experiments confirming its physical and mathematical equations and calculations. Periodic pulses with extrapolation of the results to 10 minus 2 powers of a second and 10 minus 17 powers of a second made it possible to calculate, using the mathematical methods of the theory of functions of a complex variable and two other mathematical methods, the same initial stage of the development of the world: about one hundredth of a second from the "beginning of the world" to about one hundredth of a second in the development of the world.The propagation of thought radiation through the operation of the device, with certain elements of the electromagnetic field and a person moving in the opposite direction of the current until it stops, allows contact to be made with the relic radiation, linked to the physical structure of eternal reality.

[0060] The reverse cycle, already rarefied by the radiation of human thought and controlled by the electromagnetic field emanating from the cosmic microwave background radiation, makes it possible to reduce the average density of matter in the Universe, thus contributing to its eternal expansion, necessary for the eternal life of all. Consequently, it also contributes to the development of concentrations of eternal life that normalize events towards the fulfillment of eternal life for all.

[0061] The cyclical operation of the third switching mode develops human consciousness in the fundamental control of reality for eternal life and, through interaction with the residual radiation level, allows for the long-term preservation of residual processes, particularly electromagnetic ones. After the deactivation of the third mode and the activation of the first or second laser, these residual processes intensify. The laser radiation forms a beam monochrome, with many areas exhibiting a higher density than neighboring elements. This high density creates an effect similar to a denser wave, with characteristics akin to those of a wave resulting from an explosion. Thus, these controlled explosive characteristics reinforce the physical process that promotes the eternal life of biological organisms within their physical bodies.

[0062] The new technological level lies in the fact that physical parameters similar to those found appear following an explosion interacting at the level of the electromagnetic field and the monochromatic radiation of the laser beam during a time interval where residual processes persist after the operation of the third switching mode of the device. This allows for continuous, long-term development of target control, even at short, individual concentrations.

[0063] Technology that ensures eternal life for all, provided that the development of consciousness allows a living organism to ensure its eternal life in its physical body, is currently a priority.

[0064] Figure 3 illustrates the internal arrangement of the present embodiment. On the lid, two lasers 310 are installed and at least one laser is connected to a sensor board 399 activating the motion sensor on the lid.

[0065] The device 300 is also configured to activate an artificial intelligence (AI) function programmed into two processing units 391 and 392. These processing units can be microcontrollers or similar devices to process and transmit the information contained on the SD card to the OLED screen or LED lamp. These processing units 391 and 392 receive electrical signals from the converter 380, which increase the input voltage from 5 V to the required voltage of 9 to 12 V, and transfer the signal to a more powerful converter 480, illustrated in [Fig. 4], which converts the optical signal emitted by the optical emission unit.

[0066] The AI ​​function allows the device 300, depending on the user's activity and the degree of focus on eternal life in relation to specific events, to independently deactivate the operating modes of the device 300, and then, after a period determined by the device 300, to reactivate one of the three operating modes. Thus, the procedure for activating this artificial intelligence function has been developed.

[0067] More specifically, the first processing unit 391 processes and transmits the information from the SD card to the screen, while the second processing unit 392 processes and transmits the information from the SD card to an LED 398, in the form of light pulses of varying brightness and duration. The read information, containing series of numbers, is then transmitted to the LED, which, depending on The numbers contained in the card's file modify the pulse pattern (brightness). Each number corresponds to its own pulse frequency and light intensity. The SD card, through a wave synthesis process, facilitates the transition from an electron to an infinite medium via periodic light pulses in an LED, thanks to the dynamics of light scattering in space. Thus, the radiation of thought translates the information of the concentration objective, corresponding to the series of numbers, into an infinite and eternal environment in which a systemic level of objective realization exists.

[0068] The device 300 may also include mini-buttons 170 for controlling the information displayed on the screen 360. A short press on the upper button moves the cursor from the top line to the desired file (l.TXT). A short press on the lower button opens the file and the numbers written on the SD card are displayed on the screen 360.

[0069] In addition, the device 300 offers the possibility of combining three operating modes, thus improving concentration. The switching buttons 330 are connected to a 9-pin switch 397, allowing the signals from the SD card to be switched to one of the processing units.

[0070] The output of the processing units, containing a series of numbers to develop the concentration, is monitored on a 360 OLED screen, but it could be any other screen, such as an LED screen or an LCD screen.

[0071] There is also an SD adapter or SD 396 module, which allows an inserted SD card to be read and its contents transferred to the processing units or microcontrollers. As explained previously, the device has an operating mode for reading the number sequence from the SD card. The number sequence displayed on the screen, according to the wave synthesis process, enables the transition of an electron to an infinite, eternal environment or medium via the SD card and the processing unit software.

[0072] Thus, the radiation of thought transfers information from the target of concentration corresponding to the series of numbers to an infinite and eternal environment, where a systemic level of achievement of objectives reigns.

[0073] Each operating mode of the device, associated with the operation of the artificial intelligence, is optimized by an SD card. Using the numbers stored on the SD card, the user can perform concentration with the desired level of control. Number sequences can be added to the SD card periodically. Number sequences stored on the SD card are not deleted during the factory assembly of the device. It is also possible to add individual number sequences, or any other pre-selected number sequence.

[0074] When the device is in SD reading mode, the light-emitting diode (LED) located on the front right side of the device is lit by a signaling LED 398 and flashes at a frequency and intensity corresponding to the numbers read.

[0075] At the rear of the device, a USB connector 395 allows, for example, an external power supply to be connected to the device from a 5 V source. In addition, mini USB connectors supply 5 V to the second processing unit 392 by connecting to its connector.

[0076] Figure 4 presents an overview of the main components of an embodiment of the present invention. The biconvex lens 450 can measure 60 mm, but can be of other dimensions. This figure shows the same components as the preceding figures, such as the sensor board 499 and the laser 410 mounted on the cover 403, the OLED screen 460, the LED lamp 493, the processing units 491 and 493, a converter 480, etc. In this embodiment, the processing units used are the Arduino 1 and 2. However, many other microcontrollers and microcontroller platforms are available for physics computing. Examples include Parallax Basic Stamp, Netmedia BX-24, Phidgets, MIT's Handyboard, and many others offering similar functionality. All these tools allow programming in an easy-to-use package.Arduino also simplifies the use of microcontrollers and offers advantages to teachers, students, and hobbyists compared to other systems.

[0077] Figure 5 is a functional diagram illustrating the various units of a trimode device 500 for concentration development, according to certain embodiments. More specifically, the device 500 may include an optical detection unit 550, an optical emission unit 510, one or more lenses 501, three switches 530, and an illumination unit 593. The device may include a housing and a cover. The lens(es) 501 and the lasers may be arranged on the cover.

[0078] Figure 6 shows an electrical diagram illustrating the electrical connections of all the components of the device. The components connected, for example, between the LB-10 converter and the DC / DC converter, but not mentioned previously, are the 683a and 683b ferrites.

[0079] Although the invention has been described by way of example, various modifications can be made to the apparatus and means described herein without departing from the scope and teaching of the invention. Therefore, the embodiments described should be considered as mere examples, and the invention or disclosure should not be limited except as specified in the accompanying claims.

Claims

Demands

1. A concentration development device (100) comprising: - an optical detection unit including one or more lenses (201, 202) capable of receiving sensitive elements. These elements are configured to detect a biological signal emitted by a user according to at least three operating modes, the signal being associated with several electromagnetic fields; an output signal being obtained from the biological signal and the electromagnetic fields; - an optical emission unit configured to emit the output signal; the optical emission unit emitting the output signal in the form of at least one optical signal; - three switches for toggling between the different operating modes; - several lighting units configured to indicate each of the different operating modes by emitting a predetermined light signal;characterized in that it further comprises: - at least two lasers placed inside the device, a first laser being constantly lit during a second operating mode, representing the emission of a static light signal by one of the lighting devices; the second laser being connected to a motion sensor capable of switching on and off when a user is nearby and representing the emission of a repeated pulsed light signal by another lighting device; and - a processing unit for information from at least one motion sensor, an SD card, a laser, a DC / DC converter, a selector and a USB adapter, using artificial intelligence.

2. Device according to claim 1, further comprising a power supply in communication with the optical detection unit and the optical emission unit.

3. Device according to any one of the preceding claims, wherein the sensing elements are spherical.

4. Device according to any one of the preceding claims, further comprising a housing and a cover.

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14. Device according to claim 4, comprising a plurality of numbers or letters placed on a housing or cover, these numbers or letters being symbols intended to focus the user's attention. Device according to claim 5, wherein a first set of digits comprises the digits 1, 4 and 5, and a second set of digits comprises the digits 2, 7, 8 and 9, 0, 6 and 3. Device according to claim 4, wherein the lens or lenses (201, 202) are arranged on the cover. A device according to any one of the preceding claims, wherein the optical emission unit comprises an optical lens. A device according to any one of the preceding claims, further comprising a conversion unit configured to convert the output signal into an electrical signal. Device according to any one of the preceding claims, wherein an SD card reader is installed. Device according to claim 10, wherein an OLED screen displays the series of digits read from an SD card from the SD card adapter. Device according to any one of the preceding claims, wherein a compass is installed on the lid to orient the laser beams in a specific direction. A device according to any one of the preceding claims, wherein a USB connector is installed on the rear of the device. A device according to claims 10 or 11, wherein LEDs display the series of digits from an SD card in the form of light pulses.