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EP3566607B1 - Système de fermeture biométrique commandé par capteur, en forme de bouton - Google Patents

Système de fermeture biométrique commandé par capteur, en forme de bouton Download PDF

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Publication number
EP3566607B1
EP3566607B1 EP18171319.9A EP18171319A EP3566607B1 EP 3566607 B1 EP3566607 B1 EP 3566607B1 EP 18171319 A EP18171319 A EP 18171319A EP 3566607 B1 EP3566607 B1 EP 3566607B1
Authority
EP
European Patent Office
Prior art keywords
button
assembly
sensor
biometric sensor
housing
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.)
Active
Application number
EP18171319.9A
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German (de)
English (en)
Other versions
EP3566607A1 (fr
EP3566607C0 (fr
Inventor
Sonja Tafelmeier
Vincenzo Galluzzo
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
Application filed by Individual filed Critical Individual
Priority to ES18171319T priority Critical patent/ES2958608T3/es
Priority to EP18171319.9A priority patent/EP3566607B1/fr
Publication of EP3566607A1 publication Critical patent/EP3566607A1/fr
Application granted granted Critical
Publication of EP3566607C0 publication Critical patent/EP3566607C0/fr
Publication of EP3566607B1 publication Critical patent/EP3566607B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C13/00Details; Accessories
    • A45C13/18Devices to prevent theft or loss of purses, luggage or hand carried bags
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C13/00Details; Accessories
    • A45C13/18Devices to prevent theft or loss of purses, luggage or hand carried bags
    • A45C13/185Devices to prevent theft or loss of purses, luggage or hand carried bags of purses, money-bags or wallets
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C3/00Flexible luggage; Handbags
    • A45C3/06Ladies' handbags
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit
    • G07C9/00174Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
    • G07C9/00563Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys using personal physical data of the operator, e.g. finger prints, retinal images, voicepatterns
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C13/00Details; Accessories
    • A45C13/18Devices to prevent theft or loss of purses, luggage or hand carried bags
    • A45C13/24Devices for sound-producing, piercing, gas-discharging, or the like

Definitions

  • the invention relates to an automated button.
  • a button is a small, solid, mostly round object on clothing. It is used to close clothing or shoes as well as containers such as bags, baskets, boxes and others.
  • a snap fastener is a fastener made of two small, often round parts, one with a recess and the other with a matching head. They are sewn or riveted to opposite sides of the fabric and pressed together to close. So that the head snaps in and the button only opens when there is a considerable pulling force, the depression is shaped accordingly as an open cavity or ring, then the material elasticity of the button enables the snapping, or an additional laterally resilient element is installed.
  • Snap fasteners are mostly made of metal, less often made of plastic, and usually serve as inconspicuous fasteners on clothing, bags and other things that are usually not visible when closed.
  • the invention relates to a button according to claim 1, having a first assembly attached to a first application material (cloth/leather etc.). This first assembly is thus the top part of the button (snap button) associated with a first fabric or leather.
  • the invention includes a second assembly attached to a second application material (cloth/leather, etc.). This is the lower part of a button (snap fastener) that is connected to a second piece of fabric or leather or something similar.
  • the assemblies usually consist of several components that are put together.
  • the first subassembly can be detachably brought into a holding connection with the second subassembly. i.e. the two button assemblies can be snapped together or pushed together to form a closure that can be opened or closed as required.
  • the first assembly has a biometric sensor/fingerprint sensor that a user can use to authenticate themselves.
  • This sensor is designed to be as flat as possible and is located on the outside of the button so that it is easily accessible for a user. With the help of the biometric sensor/fingerprint sensor, a user can authenticate himself and release or activate the connection of the button between the assemblies.
  • a biometric sensor (fingerprint/fingerprint sensor, face recognition sensor, speaker recognition sensor, etc.) is provided for authentication - in the following the term fingerprint sensor also stands for the general term biometric sensor, which transmits instructions, preferably via the control circuit board, to trigger an action depending on the recognized fingerprint.
  • the connection can be via a contact connection or a wireless connection.
  • the biometric sensor can be placed in close proximity on or around the button, or remote from it. In this case, if possible, only the non-safety-relevant sensors are arranged on the top.
  • the actual logic, and its calculation and recognition of the fingerprint / or. the biometric information is preferably carried out on the underside in a circuit board
  • the second assembly includes an electrically controllable locking device that firmly engages and disengages the first assembly with the second assembly.
  • the engagement or connection is of a mechanical nature, by means of bolts or a locking element. According to the invention, it cannot be done by clamps, piezo elements or electrically by appropriate magnets.
  • the control is preferably carried out electrically or electromagnetically or electromechanically.
  • the actuation is carried out by a control which, depending on information from the biometric sensor/fingerprint sensor, actuates the locking device in order to release the intervention or to carry out the intervention.
  • the controller is preferably arranged on the underside of the second assembly, so that it is protected as much as possible from attacks and manipulation.
  • the first assembly comprises a button cap and a plate with a pin between which the application material is arranged, the pin being insertable into the second assembly, and for Preparation of the intervention is used.
  • the pin is connected at right angles to the overlying panel at its center.
  • the fabric is generally clamped or pressed in between the button cap and the plate with a pin. As a rule, these two components are riveted or pressed. Other techniques such as gluing or welding for the connection are of course conceivable.
  • the fingerprint sensor/biometric sensor is preferably arranged on the button cap. Also located on the button cap is a socket for receiving the biometric/fingerprint sensor, which is preferably illuminated to indicate the position of the biometric/fingerprint sensor to the user. In a preferred embodiment, the light is emitted in a ring around the fingerprint sensor, so that the user's finger is accurately guided to the center. In this case the source of illumination is located below the sensor.
  • the lighting for the biometric sensor/fingerprint sensor can be switched on depending on a proximity sensor.
  • the proximity sensor detects whether a hand is approaching the housing and then switches on the lighting. It is also conceivable that when the housing is touched, a contact sensor detects that the user is looking for the fingerprint sensor/biometric sensor in order to then illuminate it. It is also conceivable that motion sensors and brightness sensors are used to switch the lighting on and off. Switching on can take place with certain movement patterns and/or brightness levels.
  • the second subassembly preferably has a plate with an eyelet or a bore into which the pin of the plate can be inserted.
  • the pin is guided precisely through this hole and the two assemblies are positively connected to one another.
  • the plate of the second assembly is connected to a housing via a connecting element. This connection is also preferably a riveting, pressing or gluing.
  • the application material or substance is arranged between the plate and the housing. It is therefore the lower part of a button (snap fasteners) that is permanently connected to a second fabric.
  • the pin In order to make the necessary connection that can be opened and closed, the pin requires a recess, preferably at its lower end, which can be extended into the housing.
  • a bolt is provided in the housing which can be guided into the recess, preferably electromechanically, in order to make an engagement.
  • the recess is a groove, an annular groove, a bore into which corresponding engagement means can be inserted from the housing.
  • the locking it is also conceivable for the locking to take place in reverse, in that an element moves out of the pin and hooks into recesses in the bore.
  • the drive can be inductive, for example, or else mechanical.
  • the activation can be effected, for example, piezoelectrically, electromagnetically or by an electric motor.
  • the inside of the hole formed in the plate with the eyelet can have a magnetic guide to guide the stylus of the plate with Pin, which can also be magnetic, to attract so that it can be guided into the hole by the magnetic force.
  • the magnetic field can thus serve as a guideway that ensures that the two assemblies can easily be brought into a positive connection with one another.
  • the magnetic field thus directs the components and their assemblies.
  • the magnet can be formed alternately either in the first subassembly or in the second subassembly, or there can even be two magnets.
  • the housing includes a battery and a circuit board that provides control and analysis of the fingerprint/biometric information captured by the fingerprint sensor/biometric sensor.
  • the housing has a plug, preferably USB, via which the circuit board is configured and/or the battery is charged. It is of course conceivable that charging takes place inductively or that configuration is made possible via a wireless connection. Possible standards here are Bluetooth, WLAN, LTE, Zigbee, etc. Configuration with a mobile device would then be possible using an app. Of course, it is also conceivable that the mobile terminal device controls the opening and closing of the button. This can be of particular advantage if the fingerprint is not recognized or an initial configuration is necessary.
  • This supply can be by its own battery, by means of solar power (solar cells can be arranged in the fingerprint sensor/biometric sensor, or around the fingerprint sensor/biometric sensor), or it can be a contact-oriented or a wireless power supply.
  • solar power solar cells can be arranged in the fingerprint sensor/biometric sensor, or around the fingerprint sensor/biometric sensor
  • the sensor does not have to be located directly on the button, but can also be located remotely, eg on a bracket and a carrying strap etc.
  • the biometric sensor/fingerprint sensor can communicate with the controller or the circuit board in the housing via mechanical contacts that are connected when the first assembly is connected to the second assembly.
  • contactless communication or power supply is also conceivable. In this way, communication can be by radio and/or the power supply can be inductive.
  • biometric sensor/fingerprint sensor is operated via RFID, both in terms of energy supply and communication.
  • the housing has lighting in order to illuminate the closable area when it has been opened.
  • the lighting can be activated, preferably by sensors, in particular motion sensors, the biometric sensor/fingerprint sensor and a sensor that detects that the button is open. Timers are also conceivable, which switch off the lighting again after an event has occurred. In the case of a bag, it is thus possible for the interior of the bag to be illuminated for a specific time after it has been opened.
  • the impulse for automatic unlocking and locking of the locking system takes place via the actuation of the biometric sensor/fingerprint or functionally equivalent switch types, which are activated using the personal biometric legitimacy of the user via a wireless connection type, such as Bluetooth, via an app with the locking system takes place.
  • the personal release condition can be saved via an internal memory chip and/or app in the locking system or externally in a cloud.
  • an alarm controller that detects manipulation of the automatic button to generate an alarm signal. If, for example, a violent opening is detected due to measured forces or a deformation, or if a large number of attempts are made to open the button using the sensor, an alarm message can be generated. This alert message can be audible through speakers or a radio signal or message can be generated that is sent to a mobile device or other device on a network to indicate that an unauthorized opening of the bag is being attempted.
  • a GPS and/or mobile network unit can determine and/or communicate the position of the button by radio. In combination with the alarm unit, it is thus possible to locate a stolen bag that has the button.
  • the button includes a radio unit for contacting a network or a local computer system, mobile device or smartphone, in particular 3G, 4G, 5G, WLAN, Bluetooth, Zig-Bee, for exchanging information, for configuration or for control.
  • the button can thus be configured in order to determine which fingerprints or biometric information can open or close the button, or the button can also be controlled to open and unlock.
  • control circuit board and/or the power supply is/are provided with a connection, preferably USB, for charging and for configuring or setting parameters and for charging the battery.
  • Another part of the invention is a bag having the button of the invention.
  • the impulse for unlocking and locking the locking system takes place via the actuation of the biometric sensor/fingerprint sensor or other types of switches, which are based on the personal biometric legitimacy of the user via a connection type, such as Bluetooth, via an app with the locking system.
  • the personal fingerprint/personal biometric information can be stored via an internal memory chip and/or app in the locking system or externally in a cloud.
  • a fingerprint sensor/ biometric sensor is embedded in a socket in the upper part of the button closure, the button cap.
  • the fingerprint sensor/biometric sensor can also be located at a different location on the object in which the locking system is installed.
  • the fingerprint sensor/biometric sensor frame can optionally include a light.
  • the button cap and/or fingerprint sensor and/or fingerprint sensor socket can be made of different materials such as polycarbonate, metal and others.
  • the button cap and/or fingerprint sensor and/or fingerprint sensor bezel can be round, square, oval and/or any shape.
  • the fingerprint sensor / biometric sensor is supplied with power and control signals via a cable and can optionally be illuminated itself.
  • the fingerprint sensor / biometric sensor socket can/is attached to a plate by "rivet-like” components.
  • Application material/leather/fabric/etc. can be used between fingerprint sensor / biometric sensor frame and plate. to be interposed.
  • the plate may consist of a disk with a pin at the end of which an eyelet/hole/indentation is embedded.
  • a magnetic or electromagnetic fixation for the upper and lower component can be attached between the upper and lower component.
  • the lower assembly consists u.a. consists of an eyelet that is connected to a housing located below the eyelet via "rivet-like" components.
  • Application material/leather/fabric/etc. can be used between the eyelet and the housing. to be interposed.
  • a plate with a pin (reference number 6) can be passed through the eyelet into the housing.
  • An actuator is located in the housing, preferably with a drive shaft and a locking device, which are fed with energy and control signals via a cable.
  • the closure device is locked by the actuator and the drive device and can effect locking and/or unlocking.
  • Lighting systems for interior lighting can be located below the housing and/or at another location.
  • One and/or more loudspeakers for the alarm signal in the event of theft or when the user is away from the system and/or in another location can be located below the housing.
  • the figure 1 shows a fingerprint sensor / biometric sensor 1, which is arranged in a socket 2 of the fingerprint sensor / biometric sensor.
  • This socket can be provided with lighting.
  • the socket 2 is formed on a button cap 3 .
  • a connecting element 4 connects the button cap through the fabric 5 to a plate 6 which is arranged underneath the fabric and which has a pin.
  • the button cap 3 and the panel 6 are permanently connected to each other by the connecting element 4, and preferably press the fabric 5 together, so that a preferably non-detachable permanent connection is formed.
  • There is a pin on the plate 6 which can be inserted into the second or lower assembly. The pin is used for releasable locking.
  • a bolt or closure element 7 In the lower area of the pin there is an eyelet or a recess 13 into which a bolt or closure element 7 can engage.
  • the bolt 7 can be driven by a drive shaft 12 by rotating the bolt or sliding it back and forth laterally.
  • a motor 8 or an actuator is provided to drive the bolt, which enables the movement or rotation.
  • the motor is connected to a battery unit via a power line 9 .
  • a signal control line 15 is provided, which leads to a circuit board 14 so that the motor can be controlled.
  • the circuit board takes over the control, the interpretation of the data from the fingerprint sensor / biometric sensor and decides on the basis of the stored pattern whether and in what form the motor is to be controlled so that the shutter is opened or closed.
  • the radio control is also preferably arranged on the circuit board.
  • magnetic guide rails are preferably arranged on the inner sides of the hole, which can themselves be a magnet or can be magnetized and which align and draw in the pin accordingly .
  • the pin can also be a magnet or can be magnetized.
  • the figure 2 shows a specific application of the present invention in a bag with a bag body 25.
  • the bag is shown in section from the side.
  • the bag includes a bag handle 24.
  • the flap 20 of the bag is held closed by a button in accordance with the present invention.
  • the bag has a large number of induction elements 26, 27, 36 for charging electronic devices.
  • the batteries 28 inside the bag can be charged by an induction transmitter 27 .
  • This can in particular be the battery of the locking device according to the invention for the button. Mobile devices that have been placed in the bag can also be charged.
  • the induction transmitter is connected to the battery 28 .
  • the battery 28 can also be charged inductively by an induction receiver 26 or by an external connection 30 .
  • USB ports 29, 30 For charging the battery in the bag or for charging devices in the bag, USB ports 29, 30 (Other types of connections are of course conceivable, which allow the same charging and communication function).
  • a circuit board 32 with components is provided in the lower area of the bag for checking all the batteries, charging units and connections.
  • a dynamo 31 can also be provided, which makes it possible to carry out an emergency charging of the battery manually, for example by means of a crank, so that the functionality of the bag for emergency operation is enabled. In this way it can be achieved that the bag can also be opened when no energy is available to charge the batteries.
  • Power supply lines 33 and signal control lines are present for the drive and communication of the individual components, which connect the individual components to one another and supply them.
  • a power supply line 33 is provided for the external charging station 36, which can also be designed as an induction transmitter. It is used to charge the battery inside the bag via the induction receiver 26.
  • the entire power supply and control unit can be manufactured as a compact module with its own housing 35 that can be placed in the lower area of the bag and the bag can be incorporated there.
  • the components are arranged differently or formed different sizes.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
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  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Claims (14)

  1. Bouton pour l'ouverture ou la fermeture automatique, comprenant un premier ensemble (3, 4, 4a, 6) qui est fixé à un premier matériau d'application (5), un deuxième ensemble (4a, 4c, 10, 11) qui est fixé à un deuxième matériau d'application (5a), le premier ensemble pouvant être mis en liaison d'engagement de manière amovible avec le deuxième ensemble, un capteur biométrique (1) étant prévu, au moyen duquel un utilisateur peut s'authentifier, et le deuxième ensemble présentant un dispositif de fermeture (7) à commande électrique, qui peut amener le premier ensemble en engagement fixe avec le deuxième ensemble et le libérer, et avec une commande (14, 15, 16), qui, en fonction d'informations provenant du capteur biométrique (1), commande le dispositif de fermeture afin de libérer l'engagement ou d'effectuer l'engagement,
    caractérisé en ce que
    le premier sous-ensemble comprend un capuchon de bouton (3) et une plaque (6) avec une broche, entre lesquels le matériau d'application est disposé, la broche peut être introduite dans le deuxième ensemble (4a, 4c, 10, 11) comprenant un boîtier (11) et sert à établir l'engagement,
    et dans la zone inférieure de la broche est prévu un oeillet ou un évidement (13) dans lequel un boulon ou un élément de fermeture (7) prévu dans le boîtier peut être guidé électromécaniquement afin d'établir un engagement.
  2. Le bouton selon la revendication précédente, dans lequel le capteur biométrique (1) est un capteur d'empreintes digitales, un capteur de reconnaissance du locuteur et/ou un capteur de reconnaissance faciale.
  3. Le Bouton selon l'une ou plusieurs des revendications précédentes, dans lequel le capteur biométrique (1) est disposé directement sur le bouton, de préférence sur le premier ensemble, ou est disposé à distance du bouton.
  4. Le bouton selon la revendication précédente, dans lequel le capteur biométrique (1) est disposé sur le capuchon de bouton (3).
  5. Le bouton selon l'une des revendications précédentes, dans lequel une monture (2) destinée à recevoir le capteur biométrique (1) est disposée sur le capuchon (3) du bouton, de préférence éclairée pour indiquer la position du capteur d'empreintes digitales à l'utilisateur.
  6. Le bouton selon l'une des revendications précédentes, dans lequel le deuxième ensemble comprend une plaque (10) avec un oeillet perforé dans lequel la tige de la plaque (6) peut être insérée, et dans lequel la plaque (10) est reliée à un boîtier (11) par un élément de liaison (4a), le matériau d'application (5a) étant disposé entre la plaque (6) et le boîtier (11).
  7. Le bouton selon l'une quelconque des revendications précédentes, dans lequel l'intérieur du trou formé dans la plaque (10) à oeillet de perforation forme un guide magnétique (17) pour attirer la broche de la plaque (6) à broche, qui est également magnétique, afin qu'elle puisse être guidée dans le trou par la force magnétique.
  8. Le bouton selon l'une quelconque des revendications précédentes, dans lequel le boîtier (11), comporte une batterie (16) et une carte électronique (14) assurant une commande et une analyse de l'empreinte digitale.
  9. Le bouton selon l'une des revendications précédentes, dans lequel le boîtier comporte un connecteur, de préférence USB, par lequel s'effectue une configuration de la platine et/ou une charge de la batterie.
  10. Le bouton selon l'une des revendications précédentes, comprenant un dispositif permettant une communication avec le capteur d'empreintes digitales et/ou l'alimentation électrique du capteur d'empreintes digitales via des contacts mécaniques et/ou sans fil.
  11. Le bouton selon la revendication précédente, avec un dispositif qui permet une communication par radio et/ou qui permet l'alimentation électrique par induction et/ou dans lequel le capteur biométrique est exploité par RFID.
  12. Le bouton selon l'une des revendications précédentes, dans lequel il est prévu dans le boîtier (11) un éclairage pour la zone pouvant être fermée par le bouton, qui peut être activé, de préférence par des capteurs, en particulier des capteurs de mouvement, le capteur biométrique et un capteur qui détecte que le bouton est ouvert.
  13. Le bouton selon l'une des revendications précédentes, dans lequel il existe une commande d'alarme qui détecte une manipulation du bouton automatique afin de générer un signal d'alarme,
    et/ou
    comprenant une unité de réseau GPS et/ou mobile, par laquelle la position du bouton peut être déterminée par radio,
    et/ou
    comprenant une unité radio pour le contact avec un réseau ou un système informatique local, un terminal mobile ou un smartphone, notamment 3G,4G,5G, WLAN, Bluetooth, Zig-Bee, pour l'échange d'informations, la configuration ou la commande.
  14. Sac caractérisé par un bouton selon l'une des revendications 1 à 13.
EP18171319.9A 2018-05-08 2018-05-08 Système de fermeture biométrique commandé par capteur, en forme de bouton Active EP3566607B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
ES18171319T ES2958608T3 (es) 2018-05-08 2018-05-08 Sistema de cierre biométrico con forma de botón controlado por sensor
EP18171319.9A EP3566607B1 (fr) 2018-05-08 2018-05-08 Système de fermeture biométrique commandé par capteur, en forme de bouton

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP18171319.9A EP3566607B1 (fr) 2018-05-08 2018-05-08 Système de fermeture biométrique commandé par capteur, en forme de bouton

Publications (3)

Publication Number Publication Date
EP3566607A1 EP3566607A1 (fr) 2019-11-13
EP3566607C0 EP3566607C0 (fr) 2023-07-05
EP3566607B1 true EP3566607B1 (fr) 2023-07-05

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EP18171319.9A Active EP3566607B1 (fr) 2018-05-08 2018-05-08 Système de fermeture biométrique commandé par capteur, en forme de bouton

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EP (1) EP3566607B1 (fr)
ES (1) ES2958608T3 (fr)

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CN115153169A (zh) * 2022-06-28 2022-10-11 武汉华星光电半导体显示技术有限公司 穿戴显示设备

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US4015112A (en) * 1974-12-05 1977-03-29 Castaldo Stanley C Method of making illuminated handbag
US5042116A (en) * 1988-05-23 1991-08-27 Metal Shearing S.N.C. Magnetic closing button for handbags and the like
WO2006030469A2 (fr) * 2004-09-15 2006-03-23 Rosy Maino Dispositif d'eclairage pour sacs a main et sacs a main comprenant ce dispositif d'eclairage

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EP3566607C0 (fr) 2023-07-05
ES2958608T3 (es) 2024-02-12

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