EP3528215B1 - Système et procédé de vérification et de fermeture électronique d'un document de sécurité, en particulier d'un livret de banque - Google Patents
Système et procédé de vérification et de fermeture électronique d'un document de sécurité, en particulier d'un livret de banque Download PDFInfo
- Publication number
- EP3528215B1 EP3528215B1 EP19157676.8A EP19157676A EP3528215B1 EP 3528215 B1 EP3528215 B1 EP 3528215B1 EP 19157676 A EP19157676 A EP 19157676A EP 3528215 B1 EP3528215 B1 EP 3528215B1
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- European Patent Office
- Prior art keywords
- security document
- testing
- electrically
- closing
- hinged
- 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.)
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- 238000012360 testing method Methods 0.000 title claims description 39
- 238000000034 method Methods 0.000 title claims description 33
- 238000001514 detection method Methods 0.000 claims description 64
- 230000003287 optical effect Effects 0.000 claims description 60
- 238000005286 illumination Methods 0.000 claims description 14
- 230000000903 blocking effect Effects 0.000 claims description 10
- 238000013475 authorization Methods 0.000 claims description 3
- 238000011179 visual inspection Methods 0.000 claims description 2
- 230000005855 radiation Effects 0.000 description 25
- 238000012545 processing Methods 0.000 description 10
- 238000004519 manufacturing process Methods 0.000 description 4
- 239000000463 material Substances 0.000 description 4
- 230000005670 electromagnetic radiation Effects 0.000 description 3
- 238000007689 inspection Methods 0.000 description 3
- 239000000126 substance Substances 0.000 description 3
- 238000001931 thermography Methods 0.000 description 3
- 239000000835 fiber Substances 0.000 description 2
- 230000001678 irradiating effect Effects 0.000 description 2
- 238000012795 verification Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
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- 230000005672 electromagnetic field Effects 0.000 description 1
- 238000004049 embossing Methods 0.000 description 1
- 230000005284 excitation Effects 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000010147 laser engraving Methods 0.000 description 1
- 239000013307 optical fiber Substances 0.000 description 1
- 230000000007 visual effect Effects 0.000 description 1
Images
Classifications
-
- G—PHYSICS
- G07—CHECKING-DEVICES
- G07D—HANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
- G07D7/00—Testing specially adapted to determine the identity or genuineness of valuable papers or for segregating those which are unacceptable, e.g. banknotes that are alien to a currency
Definitions
- the invention relates to a system and a method for electrically checking and closing a foldable security document, in particular a passport.
- Security documents must also be inspected during production or processing, e.g. checked electrically and/or optically for their security features. For example, production errors can be identified, which can lead to incorrect results, especially in the authenticity check.
- the pivoting lever is designed to be pivotable from a substantially vertical position into a substantially horizontal position.
- the electrical detection device is designed to electrically check or read out the electrically detectable information stored on the carrier.
- a security document is to be understood in particular as a document which is designed in such a way that the authenticity of the document can be verified.
- the security document has at least one security feature which can be used to verify the authenticity of the document.
- Such security features are designed in such a way that it is difficult, in particular for counterfeiters, to reproduce the security features true to the original.
- the electrically detectable features are, in particular, electrical security features, such as an electrically stored passport number, which are stored on a corresponding carrier, such as an RFID ( radio-frequency identification ) chip or transponder.
- electrical security features such as an electrically stored passport number, which are stored on a corresponding carrier, such as an RFID ( radio-frequency identification ) chip or transponder.
- At least one side can be made of any material, in particular paper or a plastic. Depending on the material and thickness, the side can have a different strength or flexural rigidity.
- the book document may have both paper pages and plastic pages.
- the electrical detection device has an RFID reader, which is designed to be able to read out the carrier of electrically detectable information, in particular the RFID transponder or chip, in the security document.
- the device has a positioning device for positioning the security document or a receiving device for receiving the security document.
- the electrical detection device has a device for transmitting and/or receiving electromagnetic waves, in particular an antenna.
- the device for sending and/or receiving electromagnetic waves is preferably designed in such a way that the device can be moved relative to the positioning device.
- the electronic detection device is arranged in the device according to the invention so that it can move along at least a first direction, preferably on or on a first guide device such as a rail.
- a first guide device such as a rail.
- the device also has an optical detection device for detecting optically perceptible information, in particular one or more optically perceptible features, with the optical detection device in particular having a camera or a camera system.
- An optically perceptible feature is to be understood in particular as any feature of the security document that is reflected by the security document by means of scattered, emitted or transmitted light, in particular visible light, ultraviolet radiation or ultraviolet light and/or infrared radiation or infrared light, can be perceived by a suitable sensor or detector.
- the electronic capture device is preferably arranged in the device according to the invention so that it can be moved along at least the first direction such that the electronic capture device can be arranged in a first position in which the electronic capture device is not positioned between the passport document to be checked and the optical capture device, i.e. in which the line of sight between the optical detection device and the security document to be checked is not blocked by the electronic detection device, and the electronic detection device can be arranged in a second position in which the security document to be checked is optimally positioned in the effective range of the electronic detection device.
- the optically perceptible information or features are surface structures or printed information.
- the printed features can be, in particular, a guilloche pattern, in particular a multicolored one, microwriting, a print that luminesces under UV illumination, a printed feature with an optically variable color, a hologram, in particular a holographic portrait, a kinegram, a machine-readable zone or trade a watermark.
- a surface structure can be, for example, an engraving, in particular a laser engraving, a tactile feature, a surface embossing, a window or a perforation, in particular a laser perforation.
- the optically perceptible feature can be, for example, a mottled fiber, in particular a luminescent one, or a security thread.
- the printed features can, for example, be fonts with such a small font size that they can only be reproduced true to the original with high-precision printing processes.
- An optical check is to be understood in particular as the detection of visible or invisible (eg UV and/or IR radiation) light which is scattered, reflected or emitted by the security document or which is radiated or transmitted by it.
- the security document is illuminated by a suitable light source, for example, and the intensity and/or the wavelength of the scattered, reflected, emitted or transmitted light is recorded or measured using the respective optical detection device or devices.
- an image of the security document is captured or recorded, in particular an image of the access number.
- the visual inspection after the image has been recorded can include further steps, in particular data processing and/or image processing steps, which can be carried out, for example, with a computer connected to the optical detection devices.
- a camera lens of the optical detection device can be located at the viewing position.
- the direction is a viewing direction of the detection device.
- the mirror or an end of the light guide facing the security document is defined as the observation position, so that the corresponding direction runs from the mirror or end of the light guide to the security document.
- the device By means of the device, the system complexity and the installation space and automation effort required for processing and/or test stations can advantageously be reduced.
- the invention therefore enables a variable, customer-oriented inspection concept for security documents.
- the device also has an illumination device for illuminating the security document with visible, ultraviolet and/or infrared light.
- the optical detection device is set up to detect the visible, ultraviolet and/or infrared light reflected, scattered and/or transmitted by the security document due to the irradiation with visible, ultraviolet and/or infrared light by the illumination device to detect, so that the security document can be optically checked by means of visible, ultraviolet and / or infrared light.
- 'transmits' means in particular that the light passes through at least one opening or a transparent area of the security document.
- visible light or white light is to be understood as meaning electromagnetic radiation with a wavelength between 380 nm and 780 nm.
- infrared radiation or infrared light means electromagnetic radiation with a wavelength of 780 nm up to and including 1 mm.
- ultraviolet light or ultraviolet radiation is understood to mean electromagnetic radiation with a wavelength of 1 nm up to and including 380 nm.
- a radiation source for irradiating the security document with infrared radiation or infrared light can be provided, with different areas of the security document being heated to different degrees by the irradiation with infrared radiation, in particular due to the different material composition of these areas.
- the various areas of the heated security document then emit infrared radiation with different wavelengths and/or different intensities, with the infrared radiation being detected by the optical detection device and used for optically checking the security document.
- the irradiation with the infrared light serves in particular to create a thermal imbalance between the different areas of the security document.
- the areas can be, for example, pages or covers of a book document or passport or sections of a page or a book cover of the book document or passport.
- the thermal imbalance can also be created in some other way, for example by direct heating (via thermal conduction) or by transferring the security document from a warmer environment to a colder environment.
- a processing step of the security document for example a printing process or the introduction of a perforation, can lead to different areas of the security document being heated to different degrees.
- the infrared radiation emitted by the different areas of the security document with different wavelengths and/or different intensities can be used for the optical checking of the security document.
- the optical detection device is, in particular, a thermal imaging camera.
- the illumination device for illuminating the security document with infrared light is also set up for illuminating the security document with visible light; that is, the same light source of the lighting device is used to generate the visible light and the infrared light.
- a switching device is preferably provided for switching between the generation of the visible light and the infrared light.
- the device for optical checking can of course also have a white light source for illuminating the security document with visible light and a separate infrared light source for illuminating the security document with infrared light as the lighting device.
- an RFID transponder of the security document can also be supplied with energy by the effect of an alternating electromagnetic field, e.g. of a suitable reading device, in such a way that the RFID transponder heats up.
- the heat radiation from the RFID transponder which is warmer than the rest of the security document, can then be detected by means of the correspondingly configured optical detection device.
- Visible light is preferably emitted here by the security document.
- UV light can also be emitted from the security document.
- the emitted UV light can, for example, be UV light scattered, reflected and/or transmitted by the security document.
- the security document can, for example, contain a luminescent substance, particularly at certain positions (e.g. in the form of luminescent letters or mottled fibers), which, when irradiated with UV light, emits visible light that is detected by the optical detection device.
- a luminescent substance can be, for example, a fluorescent or phosphorescent substance.
- the illumination device for illuminating the security document with the ultraviolet light is in particular also set up for illuminating the security document with the visible light, ie the same light source of the illumination device is used to generate the visible light and the UV light.
- the illumination device for illuminating the security document with the ultraviolet light can also be set up for illuminating the security document with the infrared light.
- the illumination device for illuminating the security document with UV light is set up both for illuminating the security document with visible light and for illuminating the security document with infrared light.
- a switching device is preferably provided for switching between the generation of visible light, UV light and/or infrared light.
- the device for optical verification can of course also have a white light source for illuminating the security document with the visible light and a separate UV light source for illuminating the security document with the UV light or at least one separate white light source, infrared light source and/or UV light source have as a lighting device.
- An element of the security document can in particular be a page or a book cover, for example a passport book.
- the receiving device is arranged to be movable along at least a second direction, preferably on or on a second guide device, such as a rail.
- a second guide device such as a rail.
- the receiving device through the second guide device in the inventive system can be pushed in or out.
- the recording device can preferably be positioned within the recording area or in the line of sight of the optical detection system.
- the blocking device preferably comprises at least one first clamping device, which is designed to fix at least one element of the security document, in particular in a horizontal position.
- the blocking device is further designed to the element to the further to position the element in an angular position of at least 90°, for example in a second angular position of 180° C.
- the blocking device preferably includes a second clamping device which is designed to fix the further element of the security document, in particular in a vertical position.
- the method according to the invention is preferably carried out using the checking and locking system according to the invention according to the first aspect of the invention or one of the embodiments of the checking and locking system according to the invention.
- the electric check includes an identification of electromagnetic waves, in particular a reading of an RFID transponder in the security document, the transponder having identifying data.
- the key code is an access number (CAN).
- the electric check also includes the step of reading out the identifying data on the transponder.
- an access number (CAN) printed on the security document is preferably optically detected during the optical check.
- the method is designed in such a way that the optical and electrical check are carried out on a security document remaining in or on the device.
- the security document is not removed from the device between the individual checks, but preferably remains positioned in the receiving device and the electrical check and the optical check are carried out on the security document in the second open state.
- the recording device is preferably positioned within the recording area or in the line of sight of the optical detection device.
- the electrical detection device is moved up to or positioned on the security document and the electrical check is then carried out.
- an optically perceptible feature, in particular a security feature, of the security document is detected by means of light emitted by the security document.
- the optically perceptible element is preferably an access number (CAN) printed on the security document.
- CAN access number
- the printed access number (CAN) is first recorded as part of the optical check of the security document, and the recorded access number is used as access authorization as part of the electrical check of the security document. It is thus advantageously possible to check whether the access number printed on the security document corresponds to the access number which is required for access to the RFID transponder present in the security document.
- the security document is processed before the infrared radiation is detected in such a way that the security document heats up.
- processing can be, for example, printing or laser perforation of the security document.
- the security document is illuminated with visible light, with an optically perceptible feature being detected by means of the visible light reflected, scattered and/or transmitted by the security document, and it is, in particular before or after the illumination with the visible light and detecting the visible light that irradiates the security document with ultraviolet light, wherein an optically perceptible feature by means of which Security document is detected due to the irradiation with the ultraviolet light emitted light.
- An optically perceptible feature can be detected by means of infrared radiation emitted by the security document, with the security document being irradiated with ultraviolet light, in particular before or after the detection of the infrared radiation, with an optically perceptible feature by means of the security document due to the irradiation with the ultraviolet Light emitted light is detected.
- the security document is illuminated with visible light, with an optically perceptible feature being detected by means of the visible light reflected, scattered and/or transmitted by the security document, and it is, in particular before or after the illumination with the visible light and the detection of the visible light, an optically perceptible feature is detected by means of infrared radiation emitted by the security document, and wherein, in particular before or after the illumination with the visible light and the detection of the visible light and before or after the detection of the infrared radiation, the security document is irradiated with ultraviolet light, an optically perceptible feature being detected by means of light emitted by the security document due to the irradiation with the ultraviolet light.
- an optical inspection is carried out serially, ie one after the other using visible light, infrared radiation and UV light, ie several types of inspection are carried out in series.
- the implementation of the method is not restricted to the order shown, but the individual tests, which differ in the type of light, can also be carried out in a different order or at least partially simultaneously.
- the optically perceptible features of several pages and/or book covers of a security document can be checked optically, in particular simultaneously, using a single device.
- the security features of the title page and the data page of a passport and the perforation of the serial number on the back cover of the passport can be checked at the same time.
- the security document is checked by at least one optical checking process of an optical detection device, then removed from the device for further processing and returned to the device at a later point in time and in or on the Device another test is performed.
- one and the same device according to the invention can advantageously be used for different testing processes, e.g. after different processing steps.
- a compact assembly or device for carrying out the electrical check of the RFID chip, including optical identification of the access number (CAN) and subsequent closing or closing of the security document.
- CAN access number
- the device 100 has a housing 8 on which an electrical detection device 3, in particular an RFID reader, and an optical Detection device 1 is arranged.
- the device 100 also has a pivoted lever 4, which is arranged in the device 100 in such a way that it can close a security document 13 in an open position, the security document 13 being open in such a way that at least one element of the security document 13, for example a book cover or one side is positioned at an angle of about 45° in relation to at least one other element of the security document 13, for example the other book cover or a page.
- a pivoted lever 4 which is arranged in the device 100 in such a way that it can close a security document 13 in an open position, the security document 13 being open in such a way that at least one element of the security document 13, for example a book cover or one side is positioned at an angle of about 45° in relation to at least one other element of the security document 13, for example the other book cover or a page.
- the device 100 is designed to be able to accommodate a receiving device 9 for receiving a passport document 13, in particular in book form.
- the receiving device 9 is designed to position the security document 13 in the open position in such a way that the optical detection device 1 can optically detect at least one area of the opened security document 13 .
- Both book covers, one book cover and one page or two pages of the security document 13 are preferably positioned at an angle of 90° to one another.
- the receiving device 9 preferably has a first clamping device 14 and a second clamping device 15, with the first clamping device 14 being designed to fix a book cover or one page of the security document 13 in a vertical position and the second clamping device to fix the other book cover or another page of the security document 13 in a horizontal position, so that the aforementioned elements of the security document are preferably positioned at an angle of about 90° to one another.
- the recording device 9 is preferably arranged in the device 100 so that it can be moved along a first direction, in particular on or on a rail 11. This advantageously allows the recording device 9 to be pushed in and out of the device and into the recording area or line of sight of the optical detection device 1 be moved.
- the device 100 has a control device, which preferably includes pins 7 .
- the pins of the control device move along their longitudinal axes in such a way that they mechanically actuate corresponding devices on the receiving device 9, so that an element of the security document 13, for example a book cover or a page, can be fixed in the 90th ° position is lifted and consequently the book closes due to its own tension, namely in the position of about 45 °, in which the complete closure of the book then takes place by the pivoting movement of the lever, preferably a flush closure.
- the fixing of the aforementioned elements in the 90° position is preferably canceled by releasing the fixing by the first clamping device 14, which fixes an element of the security document 13 in the vertical position.
- the electrical detection device 3 is designed in particular as an RFID reader. Such a reading device is typically set up to generate a high-frequency electromagnetic alternating field to which the RFID transponder or chip in the security document 13 to be checked is exposed.
- the RFID reader preferably has an antenna 5 for transmitting or receiving electromagnetic waves, which can advantageously be moved relative to the receiving device.
- the receiving device 9 can be arranged relative to the reading device or the antenna in such a way that a security document 13 positioned in the receiving device 9 is located in the effective range of the RFID reading device 3 .
- the electrical detection system 3 is arranged in the device 100 so that it can be moved in particular along a second direction, preferably on a rail 12, and can thus be moved towards the security document for electrical testing and out of the recording area or visual axis of the optical detection device for optical testing be moved.
- the optical detection device 1 is designed here in particular as a camera and is mounted in the recording device 9 together with at least one first light source 6 designed as a surface emitter for illuminating or irradiating the security document 13 .
- a camera lens 2 of the optical detection device 1 is aligned in such a way that the security document 13 can be checked optically by the optical detection device 1 .
- Optically perceptible features arranged on the security document 13, in particular security features, e.g. guilloches, holograms, watermarks or a serial number, are recorded by the optical recording device 1.
- the camera lens 2 is preferably aligned in such a way that an access number printed on the security document 13 can be checked optically.
- the area to be visually checked can be, for example, the so-called title page of a German passport or a page of paper.
- the optical detection device 1 can be set up to detect visible light, infrared radiation and/or UV light. That means it can be in the optical Detection device 1, for example, a thermal imaging camera can be combined with a conventional white light camera.
- the light source 6, which mainly illuminates the area to be checked optically, can also be designed to illuminate or irradiate the security document 13 with visible light, infrared radiation and/or UV light.
- the first detection device 1 can detect, for example, security features that can be seen in the visible range, such as guilloches or micro-lettering.
- an image of the security document 13 is recorded by the optical detection device 1 .
- security document 13 is irradiated with UV light, e.g. by means of the light source 6, security features that luminesce under UV light in particular can be detected and checked by the optical detection device 1 by the visible light emitted due to the excitation by the UV light.
- the optical detection device 1 When irradiated with infrared light, areas of the security document that are formed from different materials heat up, in particular, at different rates or to different degrees. As a result, the different areas emit infrared radiation of different intensities and/or wavelengths. If the optical detection device 1 is designed as a thermal imaging camera, for example, this infrared radiation can be detected, for example, as a thermal image of the security document.
- the security document can be fed to device 100, for example, after a processing step (eg the introduction or application of a security feature).
- a processing step eg the introduction or application of a security feature.
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Credit Cards Or The Like (AREA)
- Inspection Of Paper Currency And Valuable Securities (AREA)
Claims (12)
- Système de vérification et de fermeture pour un document de sécurité pliant, présentant :un dispositif (100) pour la vérification électrique et la fermeture d'un document de sécurité pliant (13), notamment d'un passeport, comprenant- une installation de détection électrique (3) pour la détection d'informations détectables électriquement, notamment d'une ou plusieurs caractéristiques détectables électriquement, qui est configurée pour vérifier électriquement un support d'informations détectables électriquement, notamment un transpondeur RFID, dans un document de sécurité (13), notamment pour vérifier électriquement ou lire les informations détectables électriquement, mémorisées sur le support, et- une installation mécanique, notamment un levier pivotant, qui est réalisée pour fermer un document de sécurité ouvert,caractérisé en ce quele dispositif (100) présente une installation de détection optique (1) pour la détection d'informations perceptibles optiquement, notamment d'une ou plusieurs caractéristiques perceptibles optiquement, dans lequel l'installation de détection optique (1) présente notamment une caméra ou un système de caméra ; etdans lequel le système de vérification et de fermeture présente en outre une installation de réception (9) pour la réception d'un document de sécurité (13), dans lequel l'installation de réception (3) présente au moins une installation de blocage (14) qui est configurée pour positionner au moins un élément du document de sécurité (13) par rapport à un autre élément du document de sécurité (13) dans une position ouverte, dans lequel l'installation de blocage (15) est configurée pour positionner l'élément par rapport à l'autre élément dans une première position angulaire de 20° à 70°, notamment dans une première position angulaire de 45°.
- Système de vérification et de fermeture pour un document de sécurité pliant selon la revendication 1, caractérisé en ce que l'installation de détection électrique (3) présente un lecteur RFID qui est réalisé pour pouvoir lire un transpondeur RFID prévu en tant que support d'informations détectables électriquement dans le document de sécurité (13).
- Système de vérification et de fermeture pour un document de sécurité pliant selon la revendication 1 ou 2, caractérisé en ce que l'installation de détection électronique (13) présente une installation (5) pour l'envoi et/ou la réception d'ondes électromagnétiques, notamment une antenne.
- Système de vérification et de fermeture pour un document de sécurité pliant selon la revendication 3, caractérisé en ce que le dispositif (100) présente une installation de positionnement (11) pour le positionnement du document de sécurité (13) ou une installation de réception (9) pour la réception du document de sécurité (13), et l'installation (5) pour l'envoi et/ou la réception d'ondes électromagnétiques est réalisée de telle sorte qu'elle peut être déplacée par rapport à l'installation de positionnement (11).
- Système de vérification et de fermeture pour un document de sécurité pliant selon une des revendications précédentes, caractérisé en ce que le dispositif (100) présente une installation d'éclairage (6) pour l'éclairage du document de sécurité (13) avec de la lumière visible, ultraviolette et/ou infrarouge.
- Système de vérification et de fermeture pour un document de sécurité pliant selon la revendication 5, caractérisé en ce que l'installation de détection optique (1) est configurée pour détecter la caractéristique perceptible optiquement au moyen de lumière diffusée en raison du rayonnement avec la lumière visible, ultraviolette et/ou infrarouge à travers l'installation d'éclairage (6) par le document de sécurité (13).
- Système de vérification et de fermeture pour un document de sécurité pliant selon une des revendications précédentes, caractérisé en ce que l'installation de blocage (14, 15) est en outre configurée pour positionner l'élément par rapport à l'autre élément dans une seconde position angulaire d'au moins 90°.
- Procédé de vérification électrique et de fermeture d'un document de sécurité pliant (13), notamment d'un système de vérification et de fermeture selon une des revendications 1 à 7, comprenant les étapes de :- vérification électrique du document de sécurité (13) par détection d'informations détectables électriquement, notamment d'une ou plusieurs caractéristiques détectables électriquement, dans lequel un support d'informations détectables électriquement, notamment un transpondeur RFID, dans le document de sécurité (13) est vérifié électriquement, notamment les informations détectables électriquement, mémorisées sur le support, sont vérifiées électriquement ou sont lues,- mise à disposition du document de sécurité pliant (13) dans un premier état ouvert, dans lequel un élément du document de sécurité est positionné par rapport à un autre élément à un angle de 20° à 70° ; et- fermeture du document de sécurité ouvert (13).
- Procédé de vérification électrique et de fermeture d'un document de sécurité pliant (13) selon la revendication 8, caractérisé en ce que la vérification électrique comprend une identification d'ondes électromagnétiques, notamment une lecture d'un transpondeur RFID dans le document de sécurité (13), dans lequel le transpondeur RFID présente des données caractéristiques.
- Procédé de vérification électrique et de fermeture d'un document de sécurité pliant (13) selon la revendication 9, caractérisé en ce que la vérification électrique comprend les étapes suivantes :- vérification de la présence d'un transpondeur RFID, notamment d'une puce RFID dans le document de sécurité (13), qui présente des données caractéristiques,- autorisation d'accès aux données caractéristiques sur le transpondeur, notamment par entrée d'un code clé ; et en option- lecture des données caractéristiques sur le transpondeur.
- Procédé de vérification électrique et de fermeture d'un document de sécurité pliant (13) selon une des revendications 8 à 10, caractérisé en ce que le procédé comprend en outre les étapes de :- mise à disposition du document de sécurité pliant (13) dans un second état ouvert, dans lequel un élément du document de sécurité (13) est positionné par rapport à un autre élément du document de sécurité (13) à un angle d'au moins 90° ; et- vérification optique du document de sécurité (13).
- Procédé de vérification électrique et de fermeture d'un document de sécurité pliant (13) selon la revendication 11, caractérisé en ce que la vérification optique comprend les étapes suivantes :- éclairage du document de sécurité (13) dans le second état ouvert avec de la lumière visible, ultraviolette et/ou infrarouge, et- détection de lumière visible, ultraviolette et/ou infrarouge qui est dispersée, réfléchie ou transmise par le document de sécurité (13).
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102018103643.4A DE102018103643A1 (de) | 2018-02-19 | 2018-02-19 | Vorrichtung und Verfahren zur elektrischen Prüfung und Schließen eines Sicherheitsdokuments, insbesondere eines Passbuches |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3528215A1 EP3528215A1 (fr) | 2019-08-21 |
EP3528215B1 true EP3528215B1 (fr) | 2022-05-11 |
Family
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EP19157676.8A Active EP3528215B1 (fr) | 2018-02-19 | 2019-02-18 | Système et procédé de vérification et de fermeture électronique d'un document de sécurité, en particulier d'un livret de banque |
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DE (1) | DE102018103643A1 (fr) |
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EP2930699A1 (fr) * | 2014-03-18 | 2015-10-14 | Binder Consulting GmbH | Caractéristique de sécurité comprenant une section de code et de marquage |
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JPS57204944A (en) * | 1973-12-05 | 1982-12-15 | Toshiba Corp | Bankbook automatic printer |
US6783067B2 (en) * | 2000-01-28 | 2004-08-31 | Datacard Corporation | Passport production system and method |
DE102004022744A1 (de) * | 2004-05-07 | 2005-11-24 | Atlantic Zeiser Gmbh | Verfahren zum Bearbeiten von Informationsträgern, insbesondere von Identifikationsmitteln, wie Pässen, ID-Karten o. dgl. und Einrichtung zur Durchführung |
CN101722761B (zh) * | 2008-10-23 | 2011-09-28 | 深圳市雄帝科技股份有限公司 | 一种本式证件的制作方法及设备 |
DE102012003241B4 (de) * | 2012-02-20 | 2015-12-24 | Bundesdruckerei Gmbh | Vorrichtung und Verfahren zur automatischen Prüfung von Wert- und/oder Sicherheitsdokumenten |
DE102014110946B4 (de) * | 2014-08-01 | 2016-03-10 | Bundesdruckerei Gmbh | Terminaleinheit zur Verifikation eines Sicherheitsdokuments |
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EP2930699A1 (fr) * | 2014-03-18 | 2015-10-14 | Binder Consulting GmbH | Caractéristique de sécurité comprenant une section de code et de marquage |
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EP3528215A1 (fr) | 2019-08-21 |
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