EP2502474A1 - Transparenz optischer artikel und von glasierungseinheiten - Google Patents

Transparenz optischer artikel und von glasierungseinheiten

Info

Publication number
EP2502474A1
EP2502474A1 EP09742209A EP09742209A EP2502474A1 EP 2502474 A1 EP2502474 A1 EP 2502474A1 EP 09742209 A EP09742209 A EP 09742209A EP 09742209 A EP09742209 A EP 09742209A EP 2502474 A1 EP2502474 A1 EP 2502474A1
Authority
EP
European Patent Office
Prior art keywords
optics
ecrt
glazing
electrons
information
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP09742209A
Other languages
English (en)
French (fr)
Inventor
Claude Annie Perrichon
François Giry
José BUENDIA
Pierre Piccaluga
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from PCT/FR2008/000273 external-priority patent/WO2009019331A2/fr
Application filed by Individual filed Critical Individual
Publication of EP2502474A1 publication Critical patent/EP2502474A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R23/00Transducers other than those covered by groups H04R9/00 - H04R21/00

Definitions

  • the applications extend into the structure of optics and glazing within the material where the eCRT has corrections effects on the internal agitation of the material, the eCRT creates a polarization optimizing the transparency of the structures. It allows without distortion, distortion, passage, treatment of electromagnetic waves of light.
  • the luminous information of the incident light alters and is altered, subject to distortions deforming the images they constitute by the passage in the structures of solids, glass or optics.
  • the light waves are energy that agitates the particles, the electrons of the optics or glazings, from which the distortions are born. They are due to the internal agitations of the optical structures by the electronic noises generated by the electromagnetic waves on the one hand and on the other hand radio transmitters, televisions and telephones.
  • the glazings being silicas or derivatives maintain piezoelectric effects harmful to a good transmission of light.
  • the optical components being mixtures of silicas and composite structures are sensitive to mechanical or electrostatic vibrations, or to electromagnetic waves. Optical transparency absolutely does not exclude the stresses on the electrons to which the structures that carry the electromagnetic energy of all types of frequencies are subjected: the isolation of light-type waves or electromagnetic waves of audiovisual transmission by low, medium or high frequencies is not possible. Moldings and polishing have only limited effects on the structures that are excited by the electrostatic charges generated by the friction of the polishing itself on the surface or internally, which is a depolarization of the optical structures.
  • the present application exceeds all the usual techniques, because it does not generate reactivity of electrostatic current potential of surface or internal optical or glazing.
  • eCRT steam or excess moisture behave differently and settle very evenly and evenly until saturation in the air. The drops of water remain round and do not flatten, they remain pure as the dew of the morning.
  • This technique provides electromagnetic polishing, surface and internal polarization, perfect coherence of the molecular structures of optics and glazings, giving a highly transparent appearance and visibility. In the car, the windshield seems to disappear. The comfort of the visibility is acquired with this method of implantation of the eCRT on the glazings.
  • the glasses plus plastic windshield sandwich are a perfect electrical capacitor which we evacuate the surface tension of the electrostatic current with eCRT allowing a true polarization of structures.
  • This PCT application is characterized on the applications of optics and all applications of glass or polycarbonate glazing or other structures in polymer or natural materials for seeing or driving light in order to obtain precise visibility without masking or optical deformation , of objects represented in high definition with perfect colors.
  • the applications concern all transparent translucent structures, opaque allowing the light information of certain colors to pass to the perfectly defined images.
  • This removal of PCT non-exhaustively concerns optics, or light treatments.
  • the three PCT patent texts 1, 2 and 3 use the method of the electronic component which absorbs the magnetic charges by the metallic material included in the piezoelectric component which transforms them and removes them in the form of mechanical vibrations. PCT Nos.
  • No. 2 and 3 is an identical but external function that cleans the magnetic charge that is absorbed by the metal charge.
  • the introduction of copper, gold, iron or metal powder into the piezo allows the conversion of the magnetic charge into an electrical charge which is immediately transformed into mechanical movements, eliminating the accumulated excess of electrons.
  • the metal may be in the form of small coils of a few turns to capture the radian magnetic field and transform it into electric current.
  • the three technologies refer to the weak link energies and Van der WaIIs dipoles, Laplace, Hertz, Lorentz, Gauss, Maxwell, and Faraday laws.
  • the eCRT electronic component is a regulator that, like entropy, regulates the natural equilibrium exchanges of electromagnetic charge information with electronic charges that move freely in the material, whether conductive or insulating.
  • the free electrons accumulate in the so-called insulators, where at saturation they are discharged untimely.
  • An important remark is that all electrical readings are possible only because there are free electrons, whose variations in flux of intensities or amplitudes are measured.
  • the eCRT makes it possible to regulate the flows in conditions left till now random without interest: indeed the free electrons are evacuated simply to masses, by big braids all the same.
  • the eCRT cleans these electrons abandoned, for us they are actors of major regulations.
  • These eCRT corrections are to naturally clean the air and the excess of magnetic charges around the devices or in the products having accumulated the useless electrons which are then absorbed, attracted, captured by the trap of the metallic components immersed in the piezo.
  • Nanotechnology makes it possible to see the migration of magnetic fields converted into electrical current, which the piezo feeds to vibrate.
  • This electronic component is a new generation of the possible processing of the three transformations into different information dimensions of the electronic nature, 2 ° of electromagnetic nature and 3 ° of mechanical nature.
  • eCRT The technology is called eCRT because the three functions allow instantaneous servoing of information by the electronic component. It is a component that acts in real time according to several functions acting and operating in a holistic and instantaneous way, that is to say executing in real time "TO", which is a fundamental innovation.
  • This technique comes in addition to the microprocessor techniques that act only according to a variable of electrical functions, technique where Moore's law by addition of its functions remains in a binary plane and can not access the instantaneous time, and remains in the past "TI" of successive dissymmetric functions.
  • the scope of the present PCT application is that of electromagnetic waves, in particular optics traversed or emitting light as visual aids, where there is a type of alteration of distortions in the treatment of images and colors, altered optical information where radiation modifies the images, the colors conveyed.
  • the incident light is re-emitted by optics and subject to numerous energy fluctuations and electronic modifications to the passage of light energies stirring the internal structures.
  • Materials such as polycarbonates are said to be amorphous, but when light rays pass through, they are not amorphous, like other structures such as stained glass, natural quartz, glass, crystal that react to the passage of light rays causing distortion, non-exhaustive products that allow themselves to be crossed by electromagnetic radiation.
  • these transparent materials are products sensitive to harmful external electromagnetic radiation which alter the intrinsic performance of transparency, restitution of optical qualities by own internal structural disturbances.
  • These essentially crystalline or quartz structures have the fundamental properties of stirring and therefore receive external electromagnetic radiation and re-emit electronic stirring.
  • the structures let the electromagnetic radiations of the light, also let the electromagnetic bombardment of the radiations of the transmitters of radio, telephone, television and our own domestic appliances or embarked in our vehicles.
  • These optical structures were efficient, they are obligatorily and unfortunately subject to strong disturbances of structural agitations in their intimacy, within their structure by the passage of energies. At the scale of the nano This is understandable, besides, the effects of the piezo are its direct consequences.
  • eCRT devices aim to calm the vibration and electronic vibrations generated by external electromagnetic emissions of all types and will stop the internal noise of the optical material or carrier of light rays by providing an optical performance resolution. stable, polarized greatly improved, without distortion giving a clarity to the exceptional images. Do not forget a second effect eCRT on glazing large areas which is the effect of the suppression of sound propagation by attenuating the internal noise of the glazing, stopping the internal vibratory propagations of the windows.
  • the piezo function is activated by the silica structure or crystallized which is made most of the windows and lamps.
  • Cars and all vehicles are subject to the mechanical vibrations of the motors and air circulations generated by the variations of air pressures with the speed of the vehicle, the windows generate electric currents that are self-induced by the mechanical deformations or pressure variations exerted directly on the glazing.
  • These electronic agitations are disturbances affecting the transparency of glazed surfaces that also communicate the sound noises resulting from these mechanical noise and the surrounding world.
  • These observations of mechanical vibration disturbances on the vehicles are added electromagnetic disturbances of low, medium and high electromagnetic frequencies of transmitters of radio, television, wifi, etc. and embedded electronics that also radiate.
  • the application of the eCRT apparatus consists of at least one eCRT (1) fig. 1 view from above, which solves the disadvantages of internal electronic agitations of an optics of image reproduction or visual perceptions such as corrective glasses (2) or lens processing images and light, eCRT devices that are soles (1 and 3) eCRT of 50 grams each, sufficient for this case, where can also rest the optics of photos or binoculars.
  • Fig.2 side view of the introduction of the glasses which each rest on an eCRT sole (1, and 3).
  • Fig.3 is at least one apparatus consisting of a component eCRT (1) of 100 grams which provided with at least one conductive electric wire (2) connects the end (3) to the windshield of a bus. Another wire (4) from the eCRT connects the end (5) of the glazing (6) windshield of the bus (7).
  • the installation of the eCRT is in this case only a correction of right and left, another installation of the device from top to bottom can also be made from the same eCRT or another independent eCRT.
  • the positioning of the eCRT from 40 to around 100 grams is positioned identically for flat television screens, glazing, in order to eliminate the electronic stirring caused by the electromagnetic bombardments that pass through the optics or image processing windows. lights or mechanical vibrations that also shake structures and provide optical disturbances by deformation and agitation within the optical material truly become transparent to light rays.
  • the sole is like an antenna, a mass in contact with the glass or the screen or the glasses, sole eCRT which absorbs the free electrons in excess, fluctuating in the matter of the optics or glazings, free electrons being not fixed, does not determine the shape of the optics.
  • All the wires connecting the eCRT are all obviously antennas that pick up the free electrons, and allow an extension, by looping information remotely, or close to the efficiency of eCRT masses.
  • the eCRT When the eCRT is equipped with one or more electrical wires, it permanently cleans the agitations generated by the electromagnetic bombardments, and the noise constraints are corrected and soothed.
  • mechanical agitations are important and only the case of the eCRT (1) of 100 grams for the bus or 50 grams for a car with at least two wires placed on the windshield, the side windows or rearwards can also be corrected, at the various ends of the right and left or, and from top to bottom, allows installation devices by points of effective fastenings electronic cleaning and stability that provide interesting effects of comfort of silence and visibility.
  • the contribution of the eCRT device of a mass of 50 grams as a non-exhaustive example of application, with the wires and at least two points of contact on the windshield is effective on the noticeably visible transparency, but also on the cleanliness which brings a legibility of the exceptional road.
  • the passage of wiper is noiselessly so the structure of the windshield is smooth, as on a perfect polishing expected, to get the vision of the images of the perfect road without any shadow.
  • the drops of water are very beautiful and flow, are evacuated without spreading. This shows that the initial state of the glass was not correct and was subject to surface alterations in which the dirt was encrusted.
  • setting up eCRTs with the wires to The ends of the windows are as effective in noise as double glazing, but less expensive and much less heavy.
  • the eCRT fights both vibratory deformations and electromagnetic bombardments. Let's not forget game consoles that require good vision.
  • the eCRT On automotive embedded optics for example the application of the non-exhaustive process, the eCRT of 20 grams with its son placed at both ends of the optics, gives a lighting of the road which has become of great linearity and the lighting is very soft and well diffused, the eCRT resorb the parasitic electrons. Contrary to that, for the lighting without eCRT, the visibility behaves with zones of shadows and with the rain, the visibility is of more fluctuating, concealing, inconstant.
  • the eCRT with its wires creates an instantaneous self-regulation loop of electron fluxes through the interaction, reactive information of the electrons that oppose those that the eCRT also puts in phase opposition, which gives a appeasement, a collapse of electron flows.
  • the resultant of these fluxes and counter flow is a movement stop, the flow of electron variation is stopped, this is what the electrons originally wanted.
  • the eCRT meets the fundamental requirements of the electrons and removes the information stress that reactivity put in place to oppose the movements initially imposed, everything is in order.
  • the electronic activity is intense, moving in some electronically related chaos to a Brownian particle motion.
  • this self servoing eCRT is a fight against the electronic reactions where the eCRT trend is to stop this fluctuation by stabilizing the electronic state, which constitutes the essential of the auto servo of this eCRT device with three instantaneous functions for this particular application of the treatment of light waves on optics and glazing.
  • This stabilization finally gives an excellent view of color processing and distortion-free shapes, where transparency and fluidity are the best ever obtained.
  • the electronic reactivity is known in electricity by force against electromotive, in this case the electromagnetic energy of the light is a directed energy, so there is nothing particular that electrons also become in this case a force against electromotive opposing the movements imposed on them, Laplace law.
  • the eCRT by its presence, and its wires come to stop this activity by reversing the reactivities, blocking or eliminating the electrons as soon as they occur, which definitively stops all movement, electronic noise, now stable the electronic structures, eliminating all the electronic noises, which makes very clean the vision of images and shapes.
  • This natural reactivity can only be exercised if there is a reference memory, of a known state which serves as a reference. Without memory, there would be no exactly proportional reactivities in inverse of phases at imposed intensities and amplitudes.

Landscapes

  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Electrochromic Elements, Electrophoresis, Or Variable Reflection Or Absorption Elements (AREA)
  • Circuit For Audible Band Transducer (AREA)
  • Physical Or Chemical Processes And Apparatus (AREA)
EP09742209A 2008-03-03 2009-03-12 Transparenz optischer artikel und von glasierungseinheiten Withdrawn EP2502474A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
PCT/FR2008/000273 WO2009019331A2 (fr) 2007-08-08 2008-03-03 Composant electronique a trois fonctions associees
PCT/FR2009/000258 WO2009136011A1 (fr) 2008-03-03 2009-03-12 Transparence des optiques et des vitrages

Publications (1)

Publication Number Publication Date
EP2502474A1 true EP2502474A1 (de) 2012-09-26

Family

ID=41128285

Family Applications (1)

Application Number Title Priority Date Filing Date
EP09742209A Withdrawn EP2502474A1 (de) 2008-03-03 2009-03-12 Transparenz optischer artikel und von glasierungseinheiten

Country Status (2)

Country Link
EP (1) EP2502474A1 (de)
WO (3) WO2009019332A2 (de)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2009019332A2 (fr) * 2007-08-08 2009-02-12 Picy Gestion S.A.S. Chevalet acoustique de transduction electromagnetique
WO2010136656A1 (fr) * 2009-05-25 2010-12-02 Claude Annie Perrichon Nettoyage de la pollution electromagnetique
WO2010103193A2 (fr) * 2009-03-12 2010-09-16 Jose Buendia Equilibrage complexe de piece mecanique en rotation
WO2019229306A1 (fr) * 2018-05-29 2019-12-05 Buendia Jose Freinage amortissement quantique

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2869754A1 (fr) * 2004-04-29 2005-11-04 Francois Giry Acoustique de faible niveau et haute definition
CN101502196A (zh) * 2006-06-02 2009-08-05 克洛德·安妮·佩里西恩 激活电子的管理
WO2009019332A2 (fr) * 2007-08-08 2009-02-12 Picy Gestion S.A.S. Chevalet acoustique de transduction electromagnetique
BRPI0721915A2 (pt) * 2007-08-08 2014-02-25 Picy Gestion S A S Processo de limpar os gases e os fluídos que circulam no interior ou no exterior de objetos de cargas de íons ou de elétrons acumulados por atrito nos fluxos de circulação dos movimentos e aparelho sendo um componente eletrônico.

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2009136011A1 *

Also Published As

Publication number Publication date
WO2009019332A3 (fr) 2010-11-04
WO2009136011A1 (fr) 2009-11-12
WO2009019332A2 (fr) 2009-02-12
WO2009136012A1 (fr) 2009-11-12

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