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    • 71. 发明公开
    • OPTISCHES SICHERHEITSELEMENT UND SYSTEM ZUR VISUALISIERUNG VON VERSTECKTEN INFORMATIONEN
    • 优化系统ZUR VISUALISIERUNG VON VERSTECKTEN信息
    • EP1644871A2
    • 2006-04-12
    • EP04739934.0
    • 2004-06-16
    • OVD Kinegram AG
    • SCHILLING, AndreasTOMPKIN, Wayne, RobertSTAUB, René
    • G06K19/06
    • G02B5/1866B42D25/324B42D25/342G02B5/1819
    • The invention relates to an optical safety element and to a system for visualising hidden information which is associated with said optical element. The inventive safety optical element is provided with a substrate layer in which a relief structure defined by relief parameters such as the shape, depth, a spatial frequency and an azimuth angle and which is used for forming an optically perceptible effect in a surface area extended between axes X and Y. One or several relief parameters defining the structure thereof are modified in the area surface (27) according to a parameter variation function. The surface area (27) is divided into one or several areas pattern areas (29, 30) and a background area (28). One or several relief parameters defining the structure thereof are modified in the pattern areas (29, 30) according to the parameter variation function of the background area (28). Said invention also relates to a verification element provided with a verification raster which is defined by a periodic transmission function whose period correspond to the parameter variation function period.
    • 本发明涉及光学安全元件和用于可视化包含这种光学安全元件的隐藏信息的项目的系统。 光学安全元件具有基板层,在由X轴和Y轴限定的表面区域中形成有由浮雕参数,特别是浮雕形状,浮雕深度,空间频率和方位角限定的浮雕结构, 以产生光学可察觉的效果。 根据参数变化功能,在表面区域中改变限定浮雕结构的一个或多个浮雕参数。 表面区域分为一个或多个图案区域和背景区域。 根据相对于背景区域的参数变化功能相移的参数变化功能,在一个或多个图案区域中,定义浮雕结构的一个或多个浮雕参数是变化的。 还提供了一种验证元件,其具有由周期性传输功能定义的验证光栅,其周期对应于参数变化功能的周期。
    • 75. 发明公开
    • SICHERHEITSELEMENT
    • EP1434695A1
    • 2004-07-07
    • EP02776977.7
    • 2002-09-04
    • OVD Kinegram AG
    • STAUB, RenéTOMPKIN, Wayne, RobertSCHILLING, Andreas
    • B42D15/00B42D15/10
    • B42D25/45B42D25/00B42D25/29B42D25/324B42D25/328B42D2035/20
    • A security element (2) in the form of a layer composite may be used for the certification of a document (1). The layer composite comprises at least one transparent protective layer, a transparent paint layer and an adhesive layer, whereby the paint layer is arranged between the protective layer and the adhesive layer. A boundary surface embodied as a reflection layer separates the adhesive layer and the paint layer. The boundary surface is divided into regions of a pattern (25) with planar partial surfaces and relief structures moulded into the paint layer. The planar partial surfaces form background surfaces (3) and are mirror surfaces for light incident in the layer composite, whilst the regions with relief structures form pattern elements (4) with a given optically effective structural depth. The relief structures of the pattern elements (4) absorb the incident light. The dark pattern elements (4) form a strong contrast in the reflected light from the mirror background surfaces (3) and the pattern is clearly visible. The contrast between the background surfaces (3) and the pattern elements (4) disappears in directions other than that of the reflected light, such that a copier device reproduces the background surfaces (3) and the pattern elements (4) as black surfaces.
    • 文档(1)的认证可以使用层合成形式的安全元件(2)。 该层复合材料包括至少一个透明保护层,透明涂料层和粘合剂层,其中涂料层布置在保护层和粘合剂层之间。 体现为反射层的边界表面分离粘合剂层和涂料层。 边界表面被分成具有平面局部表面的图案(25)的区域和模制到涂料层中的浮雕结构。 平面部分表面形成背景表面(3)并且是入射在层复合材料中的光的镜面,而具有浮雕结构的区域形成具有给定光学有效结构深度的图案元件(4)。 图案元件(4)的浮雕结构吸收入射光。 暗色图案元素(4)在来自镜子背景表面(3)的反射光中形成强烈对比,并且图案清晰可见。 背景表面(3)和图案元件(4)之间的对比度在除了反射光的方向之外的方向上消失,使得复印设备将背景表面(3)和图案元件(4)再现为黑色表面。
    • 76. 发明公开
    • FLÄCHENMUSTER
    • EP1275084A1
    • 2003-01-15
    • EP01903642.5
    • 2001-01-12
    • OVD Kinegram AG
    • TOMPKIN, Wayne, RobertSTAUB, René
    • G06K19/16G02B5/18
    • G02B5/1842B42D25/328B42D25/391G06K19/16
    • The invention relates to a pattern (18) which is designed as a visually perceptive mosaic consisting of a plurality of surface elements (8; 9; 15; 16; 17) and which is embedded in a laminate (1) consisting of at least one transparent outer layer (2) and one protective layer (5). The surface elements (8; 9; 15; 16; 17) are transparent, scatter or reflect incident light (10) or diffract the incident light (10) to microscopic relief structures covered with a reflecting layer (3). An area (16) corresponding to at least one of the surface elements provided with a microscopic relief structure (4) has a ZOM structure (4') with a profile height h which can be slowly modified in a pre-determined manner and a spatial frequency f. The product of a predetermined critical wavelength μG of the visible spectrum and the spatial frequency f is greater than or equal to 1.
    • 本发明涉及一种图案(18),其被设计为由多个表面元件(8; 9; 15; 16; 17)构成的视觉感知马赛克,并嵌入层压板(1)中,所述层压板(1)由至少一个 透明外层(2)和一个保护层(5)。 表面元件(8; 9; 15; 16; 17)是透明的,散射或反射入射光(10)或将入射光(10)衍射到覆盖有反射层(3)的微观浮雕结构。 与设置有显微浮雕结构(4)的表面元件中的至少一个对应的区域(16)具有轮廓高度h的ZOM结构(4'),其可以以预定方式缓慢修改并且空间 频率f。 可见光谱的预定临界波长μG与空间频率f的乘积大于或等于1。
    • 77. 发明公开
    • COIN HAVING DIFFRACTION STRUCTURES
    • 硬币衍射结构
    • EP1237435A2
    • 2002-09-11
    • EP01901160.0
    • 2001-01-18
    • OVD Kinegram AG
    • TOMPKIN, Wayne, RobertSTAUB, RenéHASLER, AndreasJÜTZ, JakobMÜLLER, Martin
    • A44C21/00
    • A44C21/00G03H1/0011G03H1/0244G03H2270/13
    • The invention relates to a coin (1) which has a metallic surface (2, 3) and comprises macroscopic reliefs (5) that serve to visually indicate the value of the coin and as a legitimacy feature. Microscopically fine relief structures (8) that cause diffraction are placed directly inside at least one of the surfaces (2, 3). The relief structures (8) are preferably recessed and covered with a lacquer (9). In addition, it is advantageous when at least one portion of the relief structures (8) has an asymmetrical profile shape and/or the lattice vectors are radially aligned. The relief structures (8) can also contain a machine-readable coding which is recognized by cost-effective optical reading devices to be installed in coin examiners. The microscopic relief structure (8) can be provided on a hard material surface (2, 3) by removing material effected by exposing the material surface (2, 3) to a laser beam. The laser beam passes through a mask that determines the shape of the relief structures (8) and subsequently passes through an optical imaging system for size reduction. The exposure to light can be effected according to the two beam interference method. During an additional method, the microscopic relief structures (8) are etched into the material surface (2, 3).