EP3322595A2 - Support de données à zone d'ouverture - Google Patents

Support de données à zone d'ouverture

Info

Publication number
EP3322595A2
EP3322595A2 EP16738673.9A EP16738673A EP3322595A2 EP 3322595 A2 EP3322595 A2 EP 3322595A2 EP 16738673 A EP16738673 A EP 16738673A EP 3322595 A2 EP3322595 A2 EP 3322595A2
Authority
EP
European Patent Office
Prior art keywords
data carrier
security element
disk
film
transmitted light
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.)
Granted
Application number
EP16738673.9A
Other languages
German (de)
English (en)
Other versions
EP3322595B1 (fr
EP3322595B2 (fr
Inventor
Josef Schinabeck
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.)
Giesecke and Devrient Currency Technology GmbH
Original Assignee
Giesecke and Devrient Currency Technology GmbH
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
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=56411575&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=EP3322595(A2) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Giesecke and Devrient Currency Technology GmbH filed Critical Giesecke and Devrient Currency Technology GmbH
Publication of EP3322595A2 publication Critical patent/EP3322595A2/fr
Publication of EP3322595B1 publication Critical patent/EP3322595B1/fr
Application granted granted Critical
Publication of EP3322595B2 publication Critical patent/EP3322595B2/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42DBOOKS; BOOK COVERS; LOOSE LEAVES; PRINTED MATTER CHARACTERISED BY IDENTIFICATION OR SECURITY FEATURES; PRINTED MATTER OF SPECIAL FORMAT OR STYLE NOT OTHERWISE PROVIDED FOR; DEVICES FOR USE THEREWITH AND NOT OTHERWISE PROVIDED FOR; MOVABLE-STRIP WRITING OR READING APPARATUS
    • B42D25/00Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof
    • B42D25/30Identification or security features, e.g. for preventing forgery
    • B42D25/346Perforations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42DBOOKS; BOOK COVERS; LOOSE LEAVES; PRINTED MATTER CHARACTERISED BY IDENTIFICATION OR SECURITY FEATURES; PRINTED MATTER OF SPECIAL FORMAT OR STYLE NOT OTHERWISE PROVIDED FOR; DEVICES FOR USE THEREWITH AND NOT OTHERWISE PROVIDED FOR; MOVABLE-STRIP WRITING OR READING APPARATUS
    • B42D25/00Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof
    • B42D25/30Identification or security features, e.g. for preventing forgery
    • B42D25/351Translucent or partly translucent parts, e.g. windows

Definitions

  • the invention relates to a data carrier, in particular a valuable document or a security paper, comprising a data carrier substrate having a perforation region with a front side and a back side, the front side of the data carrier substrate being provided with a film security element in the perforation region.
  • Data carriers in particular value documents, are usually provided with security elements for securing purposes, which permit verification of the authenticity of the data carrier and at the same time serve as protection against unauthorized reproduction of the data carrier.
  • security elements come e.g. Foil security elements into consideration, a film substrate or
  • WO 95/10420 AI describes a document of value, in which the carrier is provided with a window-like opening, which is closed with an at least partially transparent cover film, wherein the
  • Cover film can be provided in particular in the region of the window-like opening with additional security features, such as diffraction structures.
  • WO 2005/025891 A2 describes a data carrier with a
  • Foil security element wherein both the foil security element, as well as the volume have a breakthrough area; the Breakthrough areas preferably overlap at least partially, and more preferably they are congruent.
  • WO 2010/000432 Al describes a document of value with an opening which is closed on one side with a translucent film. To increase the security against counterfeiting, both the top side and the bottom side of the document of value are provided with a translucent surface
  • Coating covered which is preferably carried out over the entire surface.
  • the coatings are each independently extruded or laminated.
  • WO 2011/015622 A1 describes a document of value having an opening which is closed on one side with an at least partially translucent or transparent film, wherein on the side of the document of value opposite the film in the area of the opening and substantially in the
  • Area of the film surface is a coating, wherein the coating within the opening is not present or substantially absent.
  • WO 2014/108329 Al describes a method for producing an endless paper web for the production of security
  • the present invention has the object, a generic data carrier in such a way that the
  • the front of the data carrier substrate in the aperture region is provided with a film security element
  • the aperture region of the data carrier substrate is formed by a plurality of recesses which penetrate the data carrier substrate and together form an aperture region motif, wherein the
  • Foil security element is obscured and viewing the front the data carrier in transmitted light through the film security element is visible therethrough;
  • Disk in incident light shows a first appearance and at
  • Viewing the front of the disk in the transmitted light shows a second appearance, wherein the second appearance complements the breakthrough area motif of the disk substrate.
  • the second, recognizable in transmitted light appearance of the film security element can in particular in a sense context with the
  • Breakthrough area motif of the disk substrate stand.
  • the film security element has an interference-capable, multi-layered structure comprising a reflective layer, a semitransparent layer and a dielectric layer arranged between the reflective layer and the semitransparent layer, the color of the multilayer structure changing with the change of the viewing angle.
  • Foil security element a multilayer construction with two
  • Film safety element has a liquid crystal layer, which shows a different color when viewed in reflected light as in the observation in transmitted light.
  • the film security element has a printing layer with an effect pigment composition which, when viewed in incident light, shows a different color than when viewed in transmitted light, in particular a gold / blue color change, a gold / violet color change, a green / gold / magenta color change. Color change, a violet / green color change or a silver / opaque color change shows.
  • Liquid crystal layer is combined with a relief structure, in particular a diffractive relief structure, a micro-optical relief structure or a sublambda structure.
  • Compression layer is combined with a relief structure, in particular a diffractive relief structure, a micro-optical relief structure or a sublambda structure.
  • Laser radiation are available on the data carrier substrate.
  • Viewing the back of the disk in transmitted light shows a second appearance that compliments the aperture area motif of the disk substrate.
  • viewing in incident light is illumination of the security element from one side and observation of the light
  • a reflection in reflected light is thus present, for example, when the front of the security element is illuminated and also viewed.
  • a reflection in transmitted light is in the sense of this invention
  • a reflection in transmitted light is thus, for example, when the back of the security element illuminated and the front of the security element is considered. The light thus shines through the security element.
  • the value document mentioned in the present description can be, for example, a banknote, in particular a paper banknote, a polymer banknote or a film composite banknote, a share, a bond, a certificate, a coupon, a check, a high-quality admission ticket, but also a banknote An authorization card, an identity card or a pass personalization page.
  • a banknote in particular a paper banknote, a polymer banknote or a film composite banknote, a share, a bond, a certificate, a coupon, a check, a high-quality admission ticket, but also a banknote An authorization card, an identity card or a pass personalization page.
  • Foil security element may be e.g. a patch or label, a (continuous) strip, or an (endless) thread.
  • the apertured recesses forming the aperture region motif be created in the data carrier substrate by the action of laser radiation on the data carrier substrate (i.e., by laser cutting).
  • the data carrier substrate is in particular a paper substrate or a paper-like substrate.
  • the breakthrough area motif may be in the form of a pattern or an image, in the form of characters or in the form of an encoding.
  • the aperture region motif is a so-called macroscopic aperture region motif that passes through a plurality of so-called microscopic
  • the microscopic apertures may be in the form of raster elements, e.g. in the form of a dot matrix and / or line grid.
  • a line grid can be
  • microscopic is not to be understood as meaning “micrometer-sized” or the like, but is merely to be understood as relative.
  • the microscopic is not to be understood as meaning “micrometer-sized” or the like, but is merely to be understood as relative.
  • the Mandarin-producing is composed by several macroscopic erupting recesses.
  • the macroscopic erupting recesses form a pattern or an image or a part of an image, a character or a string or an encoding.
  • the Oxford- motif by one or more macroscopic erupting
  • the microscopic apertures may be in the form of raster elements, as described above.
  • the microscopic apertures may preferably have a dot dimension (in the case of a
  • Dot grid or line width (in the case of a line screen) having a width in a range of 0.05 mm to 1 mm, in particular in a range of 0.1mm to 0.4mm.
  • the distance between the adjacent microscopic break-through recesses (center-center) is preferably in a range of 0.05 mm to 1 mm.
  • the perforation region of the data carrier substrate is advantageously produced by the action of laser radiation (or laser cutting), as described, for example, in WO 2010/072329 A1 and in WO 2011/154112 A1.
  • Disk substrate In addition, it was found that the formed by means of a plurality of break-through recesses
  • foil element stabilize each other against mechanical wear and thus are more robust against destruction.
  • a film element which is formed by means of an adhesive layer above a plurality of openings through which a plurality of openings
  • Aperture region of a data carrier substrate is applied, much more robust against destruction than a film element, which is applied by means of an adhesive layer above a formed by a single opening recess opening region of a data carrier substrate.
  • Opening area can be ensured that a film element is provided both on the front, as well as on the back.
  • a preferred foil security element comprises, for example, a
  • a reflective layer in particular a metallic
  • a semitransparent (mirror) layer selected in particular from the group consisting of Al, Ag, Ni, Cr, Cu, Au and an alloy of one or more of the aforementioned elements
  • a dielectric layer disposed between the reflective layer and the semitransparent (mirror) layer
  • the first appearance of the interference-capable, multi-layered structure which can be recognized by the front side of the data carrier in reflected light and the second appearance of the interference-capable, multilayered structure which can be seen in transmitted light when the front side of the data carrier is viewed can advantageously be formed by recesses in the reflective layer and / or the semitransparent layer be generated.
  • the semi-transparent layer may comprise a plurality of grid-like recesses, in their entirety result in a character, a picture or a pattern.
  • the pattern produced in this way is visible in reflected light and disappears in transmitted light.
  • a different incident light / transmitted light appearance of the multilayer structure can be achieved by combining the structure with a relief structure, in particular a diffractive relief structure, a microoptical structure
  • Relief structure or a sublambda structure is provided.
  • Another preferred foil security element comprises e.g. a multilayer structure with two semitransparent layers and one arranged between the two semitransparent layers
  • Shades are in particular complementary colors.
  • a multilayer structure is based on two semitransparent mirror layers and one between the two semitransparent ones
  • Mirror layer is particularly suitable a metal which is selected from the group consisting of Al, Ag, Ni, Cr, Cu, Au and an alloy of one or more of the aforementioned elements, wherein Al or Ag are preferred as a semitransparent mirror layer and Al is particularly preferred becomes.
  • semitransparent mirror layers and one between the two Semitransparent mirror layers arranged dielectric layer preferably have the following physical nature:
  • the two semitransparent mirror layers are preferably selected from Al or Ag; the dielectric layer is in particular a SiCh layer; in the case where each of the two semitransparent mirror layers is based on Al, the respective preferred layer thickness is in a range of 5 nm to 20 nm, particularly preferably in a range of 10 nm to 14 nm; the SiO 2 dielectric layer preferably has a layer thickness in a range of 50 nm to 450 nm, more preferably in a range of 80 nm to 260 nm, with the ranges of 80 nm to 100 nm and 220 nm to 240 nm being especially suitable for providing a gold / Blue color change are particularly preferred;
  • the respective preferred layer thickness is in a range of 15 nm to 25 nm; the SiO 2 dielectric layer preferably has one
  • Layer thickness in a range of 50 nm to 450 nm, more preferably in a range of 80 nm to 260 nm, the ranges from 80 nm to 100 nm and from 220 nm to 240 nm specifically for the provision of a
  • Gold / blue color change are particularly preferred.
  • the multilayered layer structures mentioned not only enable the production of a semitransparent functional layer which, when viewed in reflected light, appears golden in color and exhibits a blue hue when viewed in transmitted light, but further color changes can be produced depending on the choice of the layer thickness, in particular of the dielectric layer, e.g.
  • Another preferred foil security element comprises eg
  • Liquid crystal layer which shows a different color when viewed in reflected light as when viewed in transmitted light.
  • a different incident light / transmitted light appearance can be accomplished by adding the liquid crystal layer with a
  • Relief structure combined, in particular a diffractive relief structure, a micro-optical relief structure or a sublambda structure.
  • Another preferred foil security element comprises e.g. a
  • Printing layer with an effect pigment composition which, when viewed in incident light, exhibits a different color than when viewed in transmitted light, in particular a gold / blue color change
  • Gold / violet color change a green-gold / magenta color change, a violet / green color change, or a silver / opaque color change.
  • Such inks are e.g. in WO 2011/064162 A2.
  • a different reflected-light / transmitted-light appearance can be achieved by combining the printed layer with a relief structure, in particular a diffractive relief structure, a microoptical relief structure or a sublambda structure.
  • Foil security element the cross-sectional view of a value document according to a comparative example; the cross-sectional view of a value document according to an example of the invention; a part of a film security element according to a first example of the invention in incident light; the part of the film security element according to the first example of the invention in transmitted light; a part of a paper substrate with a
  • Example according to the invention the paper substrate and the film security element according to the first example of the invention (each a part thereof) in transmitted light; the cross-sectional view of a value document according to another example of the invention;
  • FIG. 9 shows a part of a film security element according to FIG a second example according to the invention in incident light; the part of the film security element according to
  • Breakthrough area according to a second example of the invention; the paper substrate and the film security element according to the second example of the invention (each a part thereof) in transmitted light; a part of a film security element according to a third example of the invention in incident light; the part of the film security element according to
  • FIG. 16 shows the paper substrate and the film security element according to the third example according to the invention
  • FIG. 1 shows a value document 1, in the present example a banknote, in plan view.
  • the banknote 1 has an opening area 2 (shown in dashed lines).
  • the banknote 1 is provided on its front side with a film security element 3, which covers the opening area 2 of the banknote 1 on one side.
  • FIG. 2 shows a value document 4 according to a comparative example in cross-sectional view (along the line A-A 'shown in FIG. 1).
  • the document of value 4 is based on a paper substrate 5 which has a single opening 6 which breaks through.
  • the recess 6 was produced by punching and is present in the paper substrate 5 when viewed in plan view in the form of a square with the dimensions 1cm x 1cm.
  • Value document 4 is provided on the front with a film security element 7, which covers the breakthrough recess 6 on one side.
  • Film security element 7 is fixed on the paper substrate 5 by means of a marginal adhesive layer (not shown in the figure).
  • FIG. 3 shows a value document 8 according to an example according to the invention in cross-sectional view (along the line A-A 'shown in FIG. 1).
  • the value document 8 is based on a paper substrate 9 with a
  • Opening area 10 which is formed by a plurality of the paper substrate 9 breaking through recesses.
  • the break-through portion 10 has the appearance shown in Fig. 11, wherein the black color indicates the portions cut out of the paper by means of laser cutting, and the white color denotes the portions of paper remaining after the laser treatment.
  • the paper areas left over after the laser treatment form the
  • the opening region 10 is located in
  • Paper substrate 9 when viewed in plan view in the form of a square with the dimensions 1cm x 1cm ago.
  • the value document 8 is on the
  • Aperture region 10 covers one side.
  • the film security element 11 is fixed on the paper substrate 9 by means of a marginal adhesive layer (not shown in the figure).
  • the value document 8 shown in FIG. 3 became the same
  • FIG. 4 shows the detail of a film security element 12 according to a first example according to the invention in incident light.
  • the observer perceives a brightly sketched area 13 (in the form of a sky) and a darkly sketched area 14 (in the form of a sea with waves).
  • FIG. 5 shows the section of the film security element 12
  • the film security element 12 on which FIGS. 4 and 5 are based may be e.g. a film substrate (e.g., polyether terephthalate) provided with a three-layer, interference-capable construction, e.g. in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described (see in WO 2009/149831 A2 is described
  • Figure 6 shows the aperture area of a paper substrate 16 to be provided with the film security element 12 of Figures 4 and 5.
  • the paper substrate 16 has a paper area 17 (shown in white in FIG. 6), from which by means of punching or laser cutting
  • Paper areas 18 were cut out.
  • the paper areas 18 together form an aperture area motif (in the form of an island and a palm tree).
  • FIG. 7 shows the paper substrate 16 of FIG.
  • Foil security element 12 of Figures 4 and 5 is provided in the
  • FIG. 8 shows the cross-sectional view of a value document 19 according to a further example according to the invention.
  • the value document 19 of FIG. 8 has a paper substrate 20 with an opening region 21, which is provided with a film security element 23 or a film element 22 both on the front side and on the back side. That way is the
  • the foil security element 23 may e.g. based on the film security element 12 described above in connection with Figures 4 and 5, which is secured by means of an adhesive layer on the paper substrate 20.
  • the film element 22 may also be a film security element, ie a film element that with
  • Security features such as e.g. a hologram or a
  • the film element 22 may be a film security element that is similar to the film security element 23. The interaction of the two films 22 and 23 synergistically increases the appearance of the viewer in transmitted light. In the simplest case, however, the film element 22 may also be a conventional film (without any security features) which is fastened to the paper substrate 20 by means of an adhesive layer.
  • FIG. 9 shows a foil security element 24 according to a second one
  • Example according to the invention when viewed in reflected light.
  • the viewer perceives the areas 25 and 26 in the form of a golden color.
  • the area 26 forms the string "50" and appears to the viewer compared with the background 25 in the form of a deceptively true, three-dimensional curved surface.
  • the film security element 24 comprises a film substrate and a multilayer structure with two semitransparent layers and one disposed between the two semitransparent layers
  • Such a multilayer structure is known from WO 2011/082761 AI.
  • the multi-layer structure is combined in area 26 with a micro-optical relief structure.
  • the preparation of a microoptical relief structure is known in the art (see for example WO 2014/060089 A2).
  • the film substrate is first provided with an embossing lacquer which is partially microoptical
  • FIG. 10 shows the film security element 24 of FIG.
  • FIG. 11 shows the breakthrough region 28 of a paper substrate to be combined with the film security element 24 of FIGS. 9 and 10.
  • the black color indicates the areas cut out of the paper by means of laser cutting. With white color in the figure 11, the remaining after laser treatment paper areas are called. In the example, they are left after the laser treatment remaining paper areas the "macroscopic" string "PL", surrounded by sixteen thin, linear paper webs.
  • the area 28 has the shape of a square with the dimensions 1cm x 1cm.
  • FIG. 12 shows the paper substrate 28 shown in FIG. 11, combined with the film security element 24 of FIGS. 9 and 10, when viewed in transmitted light. The viewer takes the black in the figure 12
  • FIG. 13 shows a film security element 29 according to a third example according to the invention when viewed in incident light.
  • the viewer perceives the areas 30 and 31 in the form of a golden color.
  • the region 31 forms the character string "50" and appears to the viewer as a deceptively real three-dimensionally curved surface as compared to the background 30.
  • the film security element 29 comprises a film substrate and a multilayer structure having two semi-transparent layers and one sandwiched between the two semitransparent layers
  • FIG. 14 shows the film security element 29 of FIG.
  • FIG. 15 shows the breakthrough region 33 of a paper substrate to be combined with the film security element 29 of FIGS. 13 and 14.
  • the black color indicates the areas cut out of the paper by means of laser cutting.
  • the white areas left after the laser treatment are referred to as white.
  • the area shown 33 has the shape of a square with the dimensions 1cm x 1cm.
  • FIG. 16 shows the paper substrate 33 shown in FIG. 15 combined with the film security element 29 of FIGS. 13 and 14 when viewed in transmitted light. The viewer takes the black in the figure 16
  • the aperture area in the paper substrate was merely exemplified to have the dimensions 1 cm x 1 cm and the shape of a square. It goes without saying that both the exact
  • opening area square shape, rectangular shape, trapezoidal shape, round shape, oval shape, archway shape, etc.
  • shape of the opening area square shape, rectangular shape, trapezoidal shape, round shape, oval shape, archway shape, etc.

Landscapes

  • Credit Cards Or The Like (AREA)
  • Inspection Of Paper Currency And Valuable Securities (AREA)

Abstract

La présente invention concerne un support de données, en particulier un document de valeur ou un document de sécurité, qui comporte un substrat présentant une zone d'ouverture, pourvu d'une face avant et d'une face arrière, la face avant du substrat étant couverte dans la zone d'ouverture par un élément de sécurité en forme de feuille ; la zone d'ouverture du substrat étant formée par une pluralité d'ajours traversant ledit substrat, qui forment ensemble un motif de zone ajourée, le motif de zone ajourée ne pouvant pas être détecté lorsque la face avant du substrat est observée en lumière réfléchie, et étant couvert par l'élément de sécurité en forme de feuille, et pouvant être identifié à travers l'élément de sécurité sous forme de feuille lorsque la face avant du substrat est observée en lumière transmise. Ledit élément de sécurité sous forme de feuille présente une première image lorsque la face avant du substrat est observée en lumière réfléchie, et une seconde image lorsque la face avant du substrat est observée en lumière transmise, l'image se complétant avec le motif de zone ajourée du substrat de support de données.
EP16738673.9A 2015-07-14 2016-07-13 Support de données à zone d'ouverture Active EP3322595B2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102015009164.6A DE102015009164A1 (de) 2015-07-14 2015-07-14 Datenträger mit Durchbrechungsbereich
PCT/EP2016/001208 WO2017008905A2 (fr) 2015-07-14 2016-07-13 Support de données à zone d'ouverture

Publications (3)

Publication Number Publication Date
EP3322595A2 true EP3322595A2 (fr) 2018-05-23
EP3322595B1 EP3322595B1 (fr) 2019-09-11
EP3322595B2 EP3322595B2 (fr) 2023-09-27

Family

ID=56411575

Family Applications (1)

Application Number Title Priority Date Filing Date
EP16738673.9A Active EP3322595B2 (fr) 2015-07-14 2016-07-13 Support de données à zone d'ouverture

Country Status (5)

Country Link
EP (1) EP3322595B2 (fr)
CN (1) CN107835751B (fr)
DE (1) DE102015009164A1 (fr)
ES (1) ES2755756T5 (fr)
WO (1) WO2017008905A2 (fr)

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CN115279518A (zh) 2020-04-23 2022-11-01 巴斯夫欧洲公司 包含片状过渡金属颗粒的组合物
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WO2022238468A1 (fr) 2021-05-12 2022-11-17 Basf Se Compositions comprenant des particules de métal de transition en forme de plaquettes
WO2023072740A1 (fr) 2021-10-26 2023-05-04 Basf Se Procédé pour la production d'éléments d'interférence

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DE102009048145A1 (de) 2009-10-02 2011-04-07 Giesecke & Devrient Gmbh Datenträger mit Fenster
EP3287497B1 (fr) 2009-11-27 2022-08-31 Basf Se Compositions de revêtement pour éléments de sécurité et hologrammes
DE102009058243A1 (de) 2009-12-14 2011-06-16 Giesecke & Devrient Gmbh Dünnschichtelement mit Mehrschichtstruktur
DE102010022990A1 (de) 2010-06-08 2011-12-08 Giesecke & Devrient Gmbh Datenträger mit Merkmalsbereich
DE102010047950A1 (de) 2010-10-08 2012-04-12 Giesecke & Devrient Gmbh Sicherheitspapier mit Wasserzeichen
DE102010053052A1 (de) 2010-12-01 2012-06-06 Giesecke & Devrient Gmbh Datenträger mit Kennzeichnung
DE102012014294A1 (de) 2012-07-19 2014-01-23 Giesecke & Devrient Gmbh Verfahren zur Herstellung eines mehrschichtigen Sicherheitselements
DE102012020257A1 (de) 2012-10-16 2014-04-17 Giesecke & Devrient Gmbh Optisch variables Flächenmuster
DE102013000445A1 (de) 2013-01-11 2014-07-17 Giesecke & Devrient Gmbh Verfahren zum Herstellen einer endlosen Papierbahn und Vorrichtung zur Durchführung desselben

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ES2755756T5 (es) 2024-03-26
EP3322595B1 (fr) 2019-09-11
DE102015009164A1 (de) 2017-01-19
CN107835751B (zh) 2019-10-11
WO2017008905A2 (fr) 2017-01-19
CN107835751A (zh) 2018-03-23
ES2755756T3 (es) 2020-04-23
EP3322595B2 (fr) 2023-09-27
WO2017008905A3 (fr) 2017-04-06

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