EP2030185B1 - Étiquette avec une marque de securite et conteneur avec une etiquette - Google Patents

Étiquette avec une marque de securite et conteneur avec une etiquette Download PDF

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Publication number
EP2030185B1
EP2030185B1 EP07725561A EP07725561A EP2030185B1 EP 2030185 B1 EP2030185 B1 EP 2030185B1 EP 07725561 A EP07725561 A EP 07725561A EP 07725561 A EP07725561 A EP 07725561A EP 2030185 B1 EP2030185 B1 EP 2030185B1
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EP
European Patent Office
Prior art keywords
label
substrate layer
section
optically
recess
Prior art date
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Active
Application number
EP07725561A
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German (de)
English (en)
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EP2030185A1 (fr
Inventor
Christoph Dietrich
Christoph JÜRGENS
Stefan Stadler
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.)
Scribos GmbH
Original Assignee
Tesa Scribos GmbH
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Publication date
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Publication of EP2030185A1 publication Critical patent/EP2030185A1/fr
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • G09F3/02Forms or constructions
    • G09F3/0291Labels or tickets undergoing a change under particular conditions, e.g. heat, radiation, passage of time
    • G09F3/0292Labels or tickets undergoing a change under particular conditions, e.g. heat, radiation, passage of time tamper indicating labels

Definitions

  • the invention relates to a label for use as a security feature, with a substrate layer and with an optically modifiable section into which a microstructuring can be introduced, wherein the optically variable section is connected to the substrate layer.
  • the invention relates to a package with a container, with a closure and with at least one such label.
  • Microstructures of the type mentioned are known from the prior art and consist of a plurality of points and / or lines, with which a surface or one or more layers of a storage medium, in particular a label is changed in at least one optical property.
  • a change in the reflectivity, transmission, absorption, scattering behavior, a change in the phase of the reflected light or a combination of all or some of these effects can be exploited.
  • the spatial resolution can contribute less than 10 microns down to dot or line dimensions of less than 1 micron.
  • Such microstructures are used to store information, in particular, computer generated holograms, microimages or microfonts may be generated therewith.
  • Computer-generated holograms consist of one or more layers of dot matrixes or
  • Point distributions which, when illuminated with a preferably coherent light beam, lead to a reconstruction of the information encoded in the hologram.
  • the point distribution can be calculated as an amplitude hologram, phase hologram or as a Kinoform Fresnell or Fourier hologram.
  • a suitable writing device For the production of computer-generated holograms, these are first calculated and then written with a suitable writing device by point-wise introduction of energy into a storage medium, such as the above-mentioned optically changeable section.
  • the resolution of the resulting dot matrix can, as already mentioned, be in the range below 1 ⁇ m.
  • holograms with a high resolution can be written in a small space.
  • the information contained therein can only be read out by illuminating with a light beam and reconstructing the diffraction image.
  • the size of the holograms can be between a few 1 mm 2 and several 1 cm 2 .
  • holograms can be calculated individually without much effort.
  • holograms can be generated in series, which include, for example, serial numbers or production parameters.
  • Such holograms can therefore be used in particular as security features or in the logistics for product tracking on packaging, credit cards, tickets or the like.
  • the security features of the hologram can be read out and the authenticity and individuality of the security feature can be checked in a simple manner.
  • the computer-generated holograms described above can be combined with directly visible information, for example in the form of a microprint and / or a microimage.
  • the mentioned microimages and micro-scripts themselves can be written independently of computer-generated holograms.
  • the dot distributions can also be generated as dot matrix holograms, wherein in each case individual small surface sections are generated as different diffraction structures of the dot matrix hologram.
  • DOE diffractive optical element
  • Tamper-proof labels are also known from the prior art in which, for example, a first opening of a container, if appropriate also after a possible resealing, can be recognized by the fact that the label is changed during the first opening of the container. This change may be a rupture which is assisted by a suitable choice of the material of the label or by a weakening of the material. The weakening of the material can be a perforation, which cuts through the material completely in sections.
  • multi-layer labels are used, which indicate resealing of the container, for example by changing a logo.
  • the DE 299 13 746 U1 discloses labels of two carrier layers, a lower one that carries stampings but otherwise consists of tear-resistant material, and an upper one, which is not punched, and consists of a rupturable fibrous material. During a peel-off test, the lower film tears according to the predetermined punching, the upper foil breaks undefined. A subsequent assembly of the items should be impossible.
  • the US 2006/005918 A1 discloses security tags constructed from a base label and a hologram label anchored thereon.
  • the holograms are exclusively volume holograms produced by classical two-beam interference.
  • a depression can be made in the base label at the location provided for the volume hologram into which the hologram is embedded.
  • the labels may have additional perforations
  • the WO 2005 / 027078A discloses a laser-writable security label.
  • Such a security label has a two-layered film structure, in which both layers of film carry security stampings, which, however, are not arranged congruently.
  • the invention is therefore based on the technical problem of making a label of the aforementioned type in a simple and reliable manner tamper-proof.
  • the technical problem relates to a container which is provided with a tamper-evident label as a label.
  • the substrate layer is provided with at least one recess and the at least one recess is arranged along a line running partially below the optically changeable section.
  • recess is to be understood in this sense, a measure for generating a predetermined breaking point of the label.
  • the arrangement of the at least one recess along the line described above ensures that the label is destroyed in such a way that not only the substrate layer but also the optically changeable section is broken or torn. This ensures that during any manipulation the safety-relevant feature is so damaged or impaired that a readout of the information contained therein is no longer possible.
  • the label according to the invention is used as a closure seal, the first opening of a container can be recognized beyond doubt.
  • the label is therefore not reusable.
  • a microstructuring in particular a computer-generated hologram
  • this section is also only partially damaged, then it is ensured that at least the surface shape of the section is changed by the damage such that a readout of the For example, holographically stored information alone is impossible due to the deviation from the given surface shape. This also applies if individual fragments of the hologram would still be sufficient to read out the information, albeit in poorer quality.
  • a computer-generated hologram is inscribed together with a microimage and / or a microwriting in the optically changeable section, then depending on the degree of destruction of the section, the microimage or microprint can remain recognizable while the holographic structure can no longer be read out.
  • the at least one recess is formed as a stamping which does not cut through the substrate layer.
  • the stamping does not completely sever the substrate layer, but weakens it so much that when the substrate layer tears, the crack runs along the predetermined line.
  • the punches have the advantage over the perforation described below that the surface of the substrate layer is not severed and thus a desired surface shape is maintained, in particular in the region of the optically changeable section.
  • the at least one stamping runs below the optically changeable section. Since the stamping does not cut through the optically changeable section, its predetermined surface shape is maintained so that reconstruction of the high quality information written is possible until the label is torn. However, since the stamping runs below the optically variable section, ie below the optically readable surface and within the substrate layer, is particularly reliable ensure that when the label is torn, the tear passes through the optically modifiable section. However, it must be ensured very accurately that despite the punching the surface of the optically readable section retains its predetermined shape.
  • the substrate layer is therefore at least cut by means of a laser.
  • a laser cut can take place up to a certain depth in the substrate layer or cut it completely in sections.
  • Laser cutting offers the advantage that no material is thrown during cutting, ie the surface shape of the substrate layer is retained even when the laser cut is made on the surface of the substrate layer.
  • the laser cut can thus not only extend underneath the optically changeable section, but also extend completely through the total thickness of the substrate layer, and indeed also in the region of the microstructure.
  • a hologram is inscribed in the optically changeable region as a microstructure, this still remains readable since, despite removal of a small region of the hologram, the surface in the region of the optically changeable section is not substantially changed.
  • the at least one recess may be formed as a perforation that at least partially divides the substrate layer. This has the advantage that when tearing the substrate layer due to the partially existing complete transection by the perforation already largely the lines of the crack are given. In this case, however, it must be ensured that the partial severing does not substantially change the surface of the substrate layer, at least in the region of the optically changeable section.
  • the at least one perforation is arranged outside the optically changeable section and the perforation points in its alignment in the direction of the optically changeable section. This ensures that the surface remains undisturbed in the region of the optically changeable and readable section, whereby it can be accepted that the crack in the region of the optically changeable section is not 100% predetermined.
  • the arrangement described above for the perforation outside the optically modifiable section is also preferred for the arrangement of punching, when the substrate layer is relatively thin and the punching leads to a deterioration of the quality of the readout of the optically modifiable section, even if the punched not the substrate layer and cut through the optically changeable section.
  • two recesses are provided, which are arranged along the line on both sides of the optically variable portion.
  • the two recesses guide the tear from both sides through the optically changeable portion.
  • a plurality of recesses is provided, which are arranged in sections along the line.
  • a plurality of recesses can form the line, in particular for longer perforation or punch-on lines, without the substrate layer being weakened along the entire lines.
  • a plurality of recesses is provided, which are arranged on at least two different lines, wherein at least one of the lines extends partially below the optically modifiable portion.
  • a line can be given along which the label is torn through the optically changeable section while the label is additionally torn along another line.
  • a preferred embodiment is that a plurality of lines are predetermined which extend through the optically changeable section and thus ensure a secure tearing of the label through the optically changeable section through from different directions.
  • a further measure to ensure the tearing of the label along a line through the optically changeable section may be that the width of the substrate layer is tapered in the region of the optically changeable section.
  • tapered means that the width of the label in the plane of the optically changeable section is smaller than in the areas which are not occupied by the optically changeable section. In the rejuvenated area the label is thus given a weak point, which supports the tearing of the label in the region of the optically variable portion along the at least one recess.
  • the shape of the label can of course be adapted to the particular application.
  • the substrate layer may have a substantially circular portion and an elongated portion connected thereto, the optically variable portion being disposed in the elongated portion.
  • the substantially round portion is then mounted on the lid while the elongate portion is connected to the container. If the lid is actuated, ie turned up or opened or pivoted, the label is torn in the region of the elongated portion, whereby a arranged there optically changeable and readable portion is destroyed.
  • the optically variable portion is bonded to the substrate layer.
  • the optically changeable section can be formed separately from the substrate layer. This section is then glued to the substrate layer or bonded cohesively.
  • the optically variable portion may be integrally formed with the substrate layer, so that the substrate layer as a whole is optically variable, but the portion to be changed is set at a predetermined position of the substrate layer.
  • a packaging in particular a liquid packaging, comprising a container, a closure and at least one label, which according to the invention is characterized in that the at least one label is connected to the container and to the closure and at least one recess in the label is arranged in the region between the container and the closure.
  • the closure when the closure is opened, the label is separated along the line and the optically changeable section is at least partially destroyed.
  • the closure may be a rotatable lid or a pivotable lid.
  • Fig. 1 shows a first embodiment of a label according to the invention, which can be used as a security feature for packaging.
  • the label has a substrate layer 1 and an optically changeable section 3 connected thereto, into which a microstructuring can be inscribed.
  • This microstructuring can be configured as a computer-generated hologram, as a microprint and / or as a microimage.
  • Many types of writing devices known in the art may be used to write the microstructure.
  • WO 02/079883 .
  • WO 02/084404 .
  • WO 02/084405 and WO 03/012549 pointed.
  • These writing devices use a laser beam, which successively moves each dot of the dot matrix in a grid-wise manner and places light energy in the label with a certain intensity in a location-dependent manner.
  • the intensity can be set point-specific and thus be selected within the grid-wise traveled range analog (continuously varying) or digital (on or off).
  • the substrate layer 1 has a recess 5, which is arranged along a line extending below the optically changeable section 3.
  • the recess 5 extends continuously through the substrate layer 1 from in Fig. 1
  • the recess 5 does not completely cut through the material of the substrate layer 1, but is formed, for example, as a cut, up to a maximum depth of the optically modifiable section 3 opposite side of the substrate layer 1 penetrates.
  • Such a cut can be introduced into the substrate layer 1 as a laser cut, for example, by means of a laser.
  • a plurality of further recesses 6 are provided which further improve the tamper resistance of the label used as a security label by the additional recesses 6 effectively prevent the label can be detached from a packaging nondestructive.
  • Fig. 2 an embodiment is shown in which a plurality of shorter punch-7 is provided along a total of three mutually parallel lines. Since the punch-7 are spaced from one another along the line, in contrast to the embodiment according to FIG Fig. 1 a lower impairment of the substrate layer 1 and thus achieved a better surface accuracy. As well as in the embodiment according to Fig. 1 The stampings 7 extend along the lines both next to and below the optically changeable section 3.
  • FIG. 3 Cross section seen along one of the lines of the stampings 7 through the substrate layer 1.
  • the mutually offensive Anstanzungen 7 are each shown by dotted lines. It is clear that the punched holes 7 penetrate from below, for example, only to about half the thickness of the substrate layer 1 in this, so that the upper half of the substrate layer 1 is not affected.
  • Fig. 3 shows, in the upper half of the substrate layer 1, the optically variable portion 3 is arranged, which is shown as a dashed area.
  • the depth of the punched 7 can vary and also amount to more or less than about half the thickness of the substrate layer 1.
  • Fig. 4 shows a further embodiment of a label according to the invention 1 with an associated optically modifiable section 3.
  • perforations 9 are introduced into the substrate layer 1, wherein the perforations 9, the substrate layer 1 at least partially sever.
  • this partial severing of the substrate layer 1 a very precise guidance of the crack through the substrate layer 1 during tearing is achieved.
  • the perforations 9 are arranged only outside the optically changeable section 3. Nevertheless, the lines along which the perforations 9 are arranged run on both sides of the optically changeable section 3 in such a way that an imaginary connecting line or alignment line runs underneath or through the optically changeable section 3. If the label is torn along the perforations 9, it is ensured that in each case the optically changeable section 3 is changed and thus made unusable.
  • the perforations 9 are arranged along a total of five lines, which at different angles with respect to the optical variable section 3 run. For each of the lines, it holds that the perforations 9 are respectively arranged on both sides of the optically changeable section 3. According to the present invention, the perforation can also only along one of the in Fig. 4 drawn lines.
  • Fig. 5 shows a cross section through the substrate layer 1 along the Fig. 4
  • the optically changeable section 3 can be seen again.
  • the perforations 9 are represented by dotted lines, which each extend between the upper side and the lower side and thus sever the substrate layer 1 in sections.
  • Fig. 6 shows a further embodiment of a label according to the invention with a substrate layer 1 and an optically modifiable section 3.
  • the substrate layer 12 has outer portions 11 of greater width, between which a tapered portion 13 extends.
  • the optically changeable portion 3 and a plurality of punched holes 7 are arranged in the tapered portion 13.
  • the stampings 7 are arranged along lines, but the stampings 7 are each only outside and not below the optically variable portion. 3
  • tapered portion 13 and the plurality of punched 7 ensures in a special way that under a mechanical stress of the label, the substrate layer 1 tears exactly in the area in which the optically variable portion 3 is located.
  • the larger width outer portions 11 allow for improved bonding of the label to the surface of an article or package.
  • Fig. 7 shows a further embodiment of a label according to the invention, in which the substrate layer 1 has a substantially round portion 15 and an associated elongated portion 17 ', wherein the optically variable portion 3 is arranged in the elongated portion 17.
  • punching 7 are provided, which are arranged along a plurality of lines in the substrate layer 1, wherein the lines are each aligned so that they extend through the optically variable portion 3.
  • the optically changeable section 3 has in each case been illustrated as a separate section within the substrate layer 1. This representation serves primarily to clarify the arrangement of the optically changeable section 3 within the substrate layer 1.
  • the optically changeable section 3 may be made of a material that is different from the material of the substrate layer 1.
  • the optically variable portion 3 may be made of the same material as the substrate layer 1, so that the optically variable portion 3 is integrally formed with the substrate layer 1.
  • FIG. 8 shows an application of a label according to the invention, as shown in FIG Fig. 7 is shown as a security feature for a package.
  • the packaging is formed in the present embodiment as a bottle 19, which is closed by a rotatable closure 21.
  • This in Fig. 7 Label 1 shown is connected to both the flanges 19 and 21 with the closure.
  • the substantially round portion 15 and an adjacent part of the elongate portion 17 are connected to the shutter 21, while the other part of the elongated portion 17 is connected to the bottle 19.
  • the punched 7 are arranged in the region between the bottle 19 and the closure 21, so that when opening the shutter 21, the label is separated along at least one line of the punched 7 and the optically variable portion 3 is at least partially destroyed.
  • the tearing of the label therefore occurs when opening the shutter 21 by the associated rotational movement relative to the bottle 19, so that the shear forces generated during the rotational movement cause the tearing of the substrate layer 1 and thus the destruction of the optically modifiable section 3.
  • Fig. 9 shows a further example of a package, which is presently designed as a cardboard packaging 23 with a pivotable lid 25.
  • an opening portion 27 must first be pressed by means of a perforation 29 before the pivotable lid 25 can be raised.
  • One Label that is essentially the one in Fig. 6 illustrated embodiment, is connected to both the carton 23 and the lid 25.
  • the tapered portion 13 is arranged in the region of the perforation 29, so that both the optically changeable portion 3 and the Anstanzept 7 are arranged where the opening portion 27 must be pressed to open the package.
  • the stampings 7 then ensure that not only the substrate layer 1 but also the optically changeable section 3 and thus the security feature of a microstructuring upon opening the package 23 are destroyed.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Packages (AREA)
  • Making Paper Articles (AREA)
  • Road Signs Or Road Markings (AREA)

Claims (11)

  1. Etiquette destinée à être utilisée comme caractéristique de sécurité, et présentant:
    une couche de substrat (1) et
    une partie (3) optiquement variable dans laquelle est insérée une microstructuration configurée sous la forme d'un hologramme créé par ordinateur,
    la partie (3) optiquement variable étant liée à la couche de substrat (1),
    caractérisée en ce que
    la couche de substrat (1) présente au moins une découpe (5, 7, 9) qui forme un emplacement de rupture préférentielle et
    en ce que la ou les découpes (5, 7, 9) sont disposées le long d'une ligne qui s'étend en partie en dessous de la partie optiquement variable (3).
  2. Etiquette selon la revendication 1, caractérisée en ce que la ou les découpes sont configurées comme estampages (5, 7) qui ne traversent pas la couche de substrat (1) et en ce que le ou les estampages (5, 7) s'étendent de préférence en dessous de la partie optiquement variable (3).
  3. Etiquette selon la revendication 1, caractérisée en ce que la ou les découpes sont formées par découpe au laser.
  4. Etiquette selon la revendication, caractérisée en ce que la ou les découpes sont configurées comme perforations (9) qui traversent au moins partiellement la couche de substrat (1).
  5. Etiquette selon l'une des revendications 1 à 4, caractérisée en ce que la ou les découpes (5, 7, 9) sont disposées à l'extérieur de la partie optiquement variable (3).
  6. Etiquette selon l'une des revendications 1 à 5, caractérisée en ce qu'elle présente deux découpes (5, 7, 9) disposées le long de la ligne sur les deux côtés de la partie optiquement variable (3) ou en ce qu'selle présente plusieurs découpes (7, 9) dont certaines parties sont disposées le long de la ligne.
  7. Etiquette selon l'une des revendications 1 à 6, caractérisée en ce qu'elle présente plusieurs découpes (7, 9) sur lesquelles au moins deux lignes différentes sont disposées et en ce qu'au moins l'une des lignes s'étend au moins en partie en dessous de la partie optiquement variable (3).
  8. Etiquette selon l'une des revendications 1 à 7, caractérisée en ce que la couche de substrat (1) présente une partie rétrécie (13) dans la zone occupée par la partie optiquement variable (3) et/ou en ce que la couche de substrat (1) présente une partie essentiellement circulaire (15) à laquelle se raccorde une partie allongée (17), la partie optiquement variable (3) étant disposée dans la partie allongée (17).
  9. Etiquette selon l'une des revendications 1 à 8, caractérisée en ce que la partie optiquement variable (3) est formée séparément de à couche de substrat (1) ou en ce que la partie optiquement variable (3) est formée d'un seul tenant avec la couche de substrat (1).
  10. Emballage, en particulier emballage pour liquide, présentant
    un récipient (19, 23),
    une fermeture (21, 25) et
    au moins une étiquette selon l'une des revendications 1 à 9,
    caractérisé en ce que
    la ou les étiquettes sont reliées au récipient (19, 23) et à la fermeture (21, 25) et
    en ce que l'étiquette présente au moins une découpe (5, 7, 9) dans la zone située entre le récipient (19, 23) et la fermeture (21, 25).
  11. Emballage selon la revendication 10, caractérisé en ce que la fermeture est un couvercle rotatif (21) ou un couvercle pivotant (25).
EP07725561A 2006-05-31 2007-05-25 Étiquette avec une marque de securite et conteneur avec une etiquette Active EP2030185B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102006025335A DE102006025335A1 (de) 2006-05-31 2006-05-31 Etikett mit einem Sicherheitsmerkmal und Behälter mit einem Etikett
PCT/EP2007/004665 WO2007137776A1 (fr) 2006-05-31 2007-05-25 Étiquette avec une marque de sécurité et conteneur avec une étiquette

Publications (2)

Publication Number Publication Date
EP2030185A1 EP2030185A1 (fr) 2009-03-04
EP2030185B1 true EP2030185B1 (fr) 2010-03-31

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP07725561A Active EP2030185B1 (fr) 2006-05-31 2007-05-25 Étiquette avec une marque de securite et conteneur avec une etiquette

Country Status (6)

Country Link
US (1) US20090314775A1 (fr)
EP (1) EP2030185B1 (fr)
CN (1) CN101449307B (fr)
AT (1) ATE463024T1 (fr)
DE (2) DE102006025335A1 (fr)
WO (1) WO2007137776A1 (fr)

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GB2395799B (en) * 2001-07-27 2005-06-15 Tesa Scribos Gmbh Lithograph having a moving cylindrical lens system
WO2005006166A1 (fr) * 2003-07-14 2005-01-20 Dai Nippon Printing Co., Ltd. Etiquette anti-contrefaçon et son procede de fabrication
DE10341807B4 (de) * 2003-09-10 2007-08-16 Schreiner Group Gmbh & Co. Kg Etikett sowie Materialbahn und Verfahren zu dessen Herstellung
EP1695121B1 (fr) * 2003-11-21 2014-06-04 Visual Physics, LLC Systeme de securite micro-optique et de presentation d'image
CN100366412C (zh) * 2004-09-15 2008-02-06 刘坤钟 多色标签片的成型方法
DE102004049118A1 (de) * 2004-10-07 2006-04-13 Giesecke & Devrient Gmbh Sicherheitselement und Verfahren zu seiner Herstellung
DE102004051279A1 (de) * 2004-10-21 2006-04-27 Merck Patent Gmbh Sicherheitssiegel für Behältnisse
DE202004019598U1 (de) * 2004-12-20 2005-02-17 Tesa Scribos Gmbh Vorrichtung zum Kennzeichnen von Gegenständen

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DE502007003319D1 (de) 2010-05-12
US20090314775A1 (en) 2009-12-24
CN101449307A (zh) 2009-06-03
WO2007137776A1 (fr) 2007-12-06
CN101449307B (zh) 2012-03-28
DE102006025335A1 (de) 2007-12-06
EP2030185A1 (fr) 2009-03-04
ATE463024T1 (de) 2010-04-15

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