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    • 11. 发明授权
    • Infrared encoding of security elements using standard xerographic materials with distraction patterns
    • 使用具有分心模式的标准静电复印材料对安全元件进行红外编码
    • US08455087B2
    • 2013-06-04
    • US11758359
    • 2007-06-05
    • Reiner EschbachRaja BalaMartin S Maltz
    • Reiner EschbachRaja BalaMartin S Maltz
    • G03C1/00
    • G03G21/046Y10T428/24802
    • The teachings as provided herein relate to a watermark embedded in an image that has the property of being relatively indecipherable under normal light, and yet decipherable under infrared illumination when viewed by a suitable infrared sensitive device. This infrared mark entails in combination with at least one distraction pattern, a substrate reflective to infrared radiation, and a first colorant mixture and second colorant mixture printed as an image upon the substrate. The first colorant mixture layer in connection with the substrate has a property of strongly reflecting infrared illumination, as well as a property of low contrast under normal illumination against a second colorant mixture as printed in close spatial proximity to the first colorant mixture pattern, such that the resultant image rendered substrate suitably exposed to an infrared illumination, will yield a discernable image evident as a infrared mark to a suitable infrared sensitive device.
    • 本文提供的教导涉及嵌入在图像中的水印,其具有在正常光线下相对不可解译的性质,并且在由合适的红外敏感装置观看时在红外照明下可解码。 该红外标记需要与至少一个分散图案,反射红外辐射的基底以及作为图像印刷在基底上的第一着色剂混合物和第二着色剂混合物组合。 与基底相关的第一着色剂混合物层具有强烈反射红外照明的性质,以及在正常照射下对第二着色剂混合物的低对比度的性质,其与第一着色剂混合物图案紧密相邻地印刷,使得 适当地暴露于红外照明的所得到的图像渲染基板将产生作为适合的红外敏感装置的红外标记显而易见的可识别图像。
    • 12. 发明申请
    • INFRARED ENCODING OF SECURITY ELEMENTS USING STANDARD XEROGRAPHIC MATERIALS
    • 使用标准XEROGRAPHIC材料的安全元素的红外编码
    • US20080302263A1
    • 2008-12-11
    • US11758344
    • 2007-06-05
    • Reiner EschbachRaja BalaMartin S. Maltz
    • Reiner EschbachRaja BalaMartin S. Maltz
    • B41F31/00G01J3/00
    • B41M3/144B42D25/382C09D11/037H04N1/32149H04N2201/327H04N2201/3271Y10T428/24802
    • The teachings as provided herein relate to a watermark embedded in an image that has the property of being relatively indecipherable under normal light, and yet decipherable under infrared illumination when viewed by a suitable infrared sensitive device. This infrared mark entails, a substrate reflective to infrared radiation, and a first colorant mixture and second colorant mixture printed as an image upon the substrate. The first colorant mixture layer in connection with the substrate has a property of strongly reflecting infrared illumination, as well as a property of low contrast under normal illumination against a second colorant mixture as printed in close spatial proximity to the first colorant mixture pattern, such that the resultant image rendered substrate suitably exposed to an infrared illumination, will yield a discernable image evident as a infrared mark to a suitable infrared sensitive device.
    • 本文提供的教导涉及嵌入在图像中的水印,其具有在正常光线下相对不可解译的性质,并且在由合适的红外敏感装置观看时在红外照明下可解码。 该红外线标记需要反射红外辐射的基板,以及作为图像印刷在基板上的第一着色剂混合物和第二着色剂混合物。 与基底相关的第一着色剂混合物层具有强烈反射红外照明的性质,以及在正常照射下对第二着色剂混合物的低对比度的性质,其与第一着色剂混合物图案紧密相邻地印刷,使得 适当地暴露于红外照明的所得到的图像渲染基板将产生作为适合的红外敏感装置的红外标记显而易见的可识别图像。
    • 15. 发明授权
    • Infrared encoding of security elements using standard xerographic materials
    • 使用标准静电复印材料对安全元件进行红外编码
    • US08460781B2
    • 2013-06-11
    • US11758344
    • 2007-06-05
    • Reiner EschbachRaja BalaMartin S Maltz
    • Reiner EschbachRaja BalaMartin S Maltz
    • B41F31/00
    • B41M3/144B42D25/382C09D11/037H04N1/32149H04N2201/327H04N2201/3271Y10T428/24802
    • The teachings as provided herein relate to a watermark embedded in an image that has the property of being relatively indecipherable under normal light, and yet decipherable under infrared illumination when viewed by a suitable infrared sensitive device. This infrared mark entails, a substrate reflective to infrared radiation, and a first colorant mixture and second colorant mixture printed as an image upon the substrate. The first colorant mixture layer in connection with the substrate has a property of strongly reflecting infrared illumination, as well as a property of low contrast under normal illumination against a second colorant mixture as printed in close spatial proximity to the first colorant mixture pattern, such that the resultant image rendered substrate suitably exposed to an infrared illumination, will yield a discernable image evident as a infrared mark to a suitable infrared sensitive device.
    • 本文提供的教导涉及嵌入在图像中的水印,其具有在正常光线下相对不可破译的性质,并且在由合适的红外敏感设备观看时在红外照明下可解码。 该红外线标记需要反射红外辐射的基板,以及作为图像印刷在基板上的第一着色剂混合物和第二着色剂混合物。 与基底相关的第一着色剂混合物层具有强烈反射红外照明的性质,以及在正常照射下对第二着色剂混合物的低对比度的性质,其与第一着色剂混合物图案紧密相邻地印刷,使得 适当地暴露于红外照明的所得到的图像渲染基板将产生作为适合的红外敏感装置的红外标记显而易见的可识别图像。
    • 17. 发明申请
    • METHOD OF CREATING NON-PATTERNED SECURITY ELEMENTS
    • 创建非图形安全元素的方法
    • US20120140290A1
    • 2012-06-07
    • US12957590
    • 2010-12-01
    • Reiner EschbachMartin S. MaltzEdward Chapman
    • Reiner EschbachMartin S. MaltzEdward Chapman
    • G06K15/02
    • B41M3/10
    • Described herein is a method to encode infrared (IR) security watermarks using a named color dictionary within a PDL in a device independent manner. A set of colors is chosen that lies within the common gamut of printing devices and then defined in a device-independent color space. For each color and output device, a metameric pair of device colorant values corresponding to minimum and maximum black (K) is obtained using inversion techniques. These extremes are selected in order to obtain the maximum perceivable IR signal. The metameric pair sets are processed to extract a smaller subset that satisfies certain criteria, including bounds on the K difference, total ink area coverage, and deviation from the neutral axis. The final data is then stored in resource files that link fixed device-independent IR color names to pairs of variable device-dependent colorant values.
    • 这里描述的是以独立于设备的方式使用PDL内的命名颜色字典来编码红外(IR)安全水印的方法。 选择一组颜色位于普通色域的打印设备中,然后在与设备无关的色彩空间中定义。 对于每种颜色和输出设备,使用反演技术获得对应于最小和最大黑色(K)的同成色体对的器件着色剂值。 选择这些极值以获得最大可感知的IR信号。 处理同色异体对集以提取满足某些标准的较小子集,包括K差异的界限,总油墨面积覆盖率和与中性轴的偏差。 然后将最终数据存储在将固定的与设备无关的IR颜色名称链接到可变设备相关着色剂值对的资源文件中。
    • 19. 发明授权
    • Method of creating non-patterned security elements
    • 创建非图案化安全元素的方法
    • US08928948B2
    • 2015-01-06
    • US12957590
    • 2010-12-01
    • Reiner EschbachMartin S. MaltzEdward Chapman
    • Reiner EschbachMartin S. MaltzEdward Chapman
    • G06K15/02B41M3/10
    • B41M3/10
    • Described herein is a method to encode infrared (IR) security watermarks using a named color dictionary within a PDL in a device independent manner. A set of colors is chosen that lies within the common gamut of printing devices and then defined in a device-independent color space. For each color and output device, a metameric pair of device colorant values corresponding to minimum and maximum black (K) is obtained using inversion techniques. These extremes are selected in order to obtain the maximum perceivable IR signal. The metameric pair sets are processed to extract a smaller subset that satisfies certain criteria, including bounds on the K difference, total ink area coverage, and deviation from the neutral axis. The final data is then stored in resource files that link fixed device-independent IR color names to pairs of variable device-dependent colorant values.
    • 这里描述的是以独立于设备的方式使用PDL内的命名颜色字典来编码红外(IR)安全水印的方法。 选择一组颜色位于普通色域的打印设备中,然后在与设备无关的色彩空间中定义。 对于每种颜色和输出设备,使用反演技术获得对应于最小和最大黑色(K)的同成色体对的器件着色剂值。 选择这些极值以获得最大可感知的IR信号。 处理同色异体对集以提取满足某些标准的较小子集,包括K差异的界限,总油墨面积覆盖率和与中性轴的偏差。 然后将最终数据存储在将固定的与设备无关的IR颜色名称链接到可变设备相关着色剂值对的资源文件中。
    • 20. 发明申请
    • INFRARED ENCODING OF SECURITY ELEMENTS USING STANDARD XEROGRAPHIC MATERIALS WITH DISTRACTION PATTERNS
    • 使用标准XEROGRAPHIC材料与分布图案的安全元素的红外编码
    • US20080305444A1
    • 2008-12-11
    • US11758359
    • 2007-06-05
    • Reiner EschbachRaja BalaMartin S. Maltz
    • Reiner EschbachRaja BalaMartin S. Maltz
    • G03C1/00G03G13/00
    • G03G21/046Y10T428/24802
    • The teachings as provided herein relate to a watermark embedded in an image that has the property of being relatively indecipherable under normal light, and yet decipherable under infrared illumination when viewed by a suitable infrared sensitive device. This infrared mark entails in combination with at least one distraction pattern, a substrate reflective to infrared radiation, and a first colorant mixture and second colorant mixture printed as an image upon the substrate. The first colorant mixture layer in connection with the substrate has a property of strongly reflecting infrared illumination, as well as a property of low contrast under normal illumination against a second colorant mixture as printed in close spatial proximity to the first colorant mixture pattern, such that the resultant image rendered substrate suitably exposed to an infrared illumination, will yield a discernable image evident as a infrared mark to a suitable infrared sensitive device.
    • 本文提供的教导涉及嵌入在图像中的水印,其具有在正常光线下相对不可解译的性质,并且在由合适的红外敏感装置观看时在红外照明下可解码。 该红外标记需要与至少一个分散图案,反射红外辐射的基底以及作为图像印刷在基底上的第一着色剂混合物和第二着色剂混合物组合。 与基底相关的第一着色剂混合物层具有强烈反射红外照明的性质,以及在正常照射下对第二着色剂混合物的低对比度的性质,其与第一着色剂混合物图案紧密相邻地印刷,使得 适当地暴露于红外照明的所得到的图像渲染基板将产生作为适合的红外敏感装置的红外标记显而易见的可识别图像。