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    • 11. 发明授权
    • Laser marking system
    • 激光打标系统
    • US07915564B2
    • 2011-03-29
    • US11850022
    • 2007-09-04
    • George R. KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • George R. KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • B23K26/04B23K26/38G02B27/40
    • B23K26/032B23K26/04B23K26/042B23K26/043B23K26/06B23K26/064B23K26/0643B23K26/0648B23K26/0665B23K26/0861B23K26/361B23K2103/30B23K2103/50B41M5/262B44B3/009B44B7/007B44C1/228G01N21/87G06K1/126
    • A laser energy microinscribing system, comprising a semiconductor excited Q-switched solid state laser energy source; a cut gemstone mounting system, allowing optical access to a mounted workpiece; an optical system for focusing laser energy from the laser energy source onto a cut gemstone; a displaceable stage for moving said gemstone mounting system with respect to said optical system so that said focused laser energy is presented to desired positions on said gemstone, having a control input; an imaging system for viewing the gemstone from a plurality of vantage points; and a rigid frame supporting said laser, said optical system and said stage in fixed relation, to resist differential movements of said laser, said optical system and said stage and increase immunity to vibrational misalignments. The laser energy source is preferably a semiconductor diode excited Q-switched Nd:YLF laser with a harmonic converter having an output of about 530 nm. The system may further comprise an input for receiving marking instructions; a processor for controlling said displaceable stage based on said marking instructions and said imaging system, to selectively generate a marking based on said instructions and a predetermined program; and a storage system for electronically storing information relating to images of a plurality of workpieces. A secure certificate of authenticity of a marked workpiece is also provided.
    • 一种激光能量微分系统,包括半导体激发的Q开关固体激光能量源; 切割宝石安装系统,允许光学访问安装的工件; 用于将来自激光能量源的激光能量聚焦到切割的宝石上的光学系统; 可移动台,用于相对于所述光学系统移动所述宝石安装系统,使得所述聚焦的激光能量呈现在具有控制输入的所述宝石上的期望位置; 用于从多个有利位置观察宝石的成像系统; 以及刚性框架,其支撑所述激光器,所述光学系统和所述平台处于固定关系,以抵抗所述激光器,所述光学系统和所述平台的差动运动,并增加对振动失准的抵抗力。 激光能量源优选是具有输出约530nm的谐波转换器的半导体二极管激励的Q开关Nd:YLF激光器。 系统还可以包括用于接收标记指令的输入; 用于基于所述标记指令和所述成像系统控制所述可移位级的处理器,以基于所述指令和预定程序选择性地生成标记; 以及用于电子地存储与多个工件的图像有关的信息的存储系统。 还提供了标记工件的真实性的安全证书。
    • 12. 发明申请
    • Laser marking system
    • 激光打标系统
    • US20080000885A1
    • 2008-01-03
    • US11374781
    • 2006-03-14
    • George KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • George KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • B23K26/00
    • B23K26/032B23K26/04B23K26/042B23K26/043B23K26/06B23K26/064B23K26/0643B23K26/0648B23K26/0665B23K26/0861B23K26/361B23K2103/30B23K2103/50B41M5/262B44B3/009B44B7/007B44C1/228G01N21/87G06K1/126
    • A laser energy microinscribing system, comprising a semiconductor excited Q-switched solid state laser energy source; a cut gemstone mounting system, allowing optical access to a mounted workpiece; an optical system for focusing laser energy from the laser energy source onto a cut gemstone; a displaceable stage for moving said gemstone mounting system with respect to said optical system so that said focused laser energy is presented to desired positions on said gemstone, having a control input; an imaging system for viewing the gemstone from a plurality of vantage points; and a rigid frame supporting said laser, said optical system and said stage in fixed relation, to resist differential movements of said laser, said optical system and said stage and increase immunity to vibrational misalignments. The laser energy source is preferably a semiconductor diode excited Q-switched Nd:YLF laser with a harmonic converter having an output of about 530 nm. The system may further comprise an input for receiving marking instructions; a processor for controlling said displaceable stage based on said marking instructions and said imaging system, to selectively generate a marking based on said instructions and a predetermined program; and a storage system for electronically storing information relating to images of a plurality of workpieces. A secure certificate of authenticity of a marked workpiece is also provided.
    • 一种激光能量微分系统,包括半导体激发的Q开关固体激光能量源; 切割宝石安装系统,允许光学访问安装的工件; 用于将来自激光能量源的激光能量聚焦到切割的宝石上的光学系统; 可移动台,用于相对于所述光学系统移动所述宝石安装系统,使得所述聚焦的激光能量呈现在具有控制输入的所述宝石上的期望位置; 用于从多个有利位置观察宝石的成像系统; 以及刚性框架,其支撑所述激光器,所述光学系统和所述平台处于固定关系,以抵抗所述激光器,所述光学系统和所述平台的差动运动,并增加对振动失准的抵抗力。 激光能量源优选是具有输出约530nm的谐波转换器的半导体二极管激励的Q开关Nd:YLF激光器。 系统还可以包括用于接收标记指令的输入; 用于基于所述标记指令和所述成像系统控制所述可移位级的处理器,以基于所述指令和预定程序选择性地生成标记; 以及用于电子地存储与多个工件的图像有关的信息的存储系统。 还提供了标记工件的真实性的安全证书。
    • 13. 发明申请
    • System for high-speed production of high quality laser-induced damage images inside transparent materials
    • 系统高效生产高质量的激光损伤图像内透明材料
    • US20030150847A1
    • 2003-08-14
    • US10075018
    • 2002-02-14
    • Igor Troitski
    • B23K026/067
    • B23K26/0608B23K26/0006B23K26/0604B23K26/067B23K26/361B23K26/53B23K2103/42B44B7/007
    • The system for high-speed production of high quality laser-induced damage images inside transparent materials is disclosed. One or more embodiments of the invention disclose a system, which produces the said images by the combination of an electro-optical deflector and means for moving the article or focusing optical system. The combination of the said devices together with using of two laser beams allows increase the image production speed substantially, without the image deterioration. One or more embodiments of the invention disclose a system for creation of a laser-induced damage by generation of breakdowns at several separate centers by using the computing phase hologram, the phase structure of which is calculated so that the laser beam, passing through the hologram, is focused at several spots. One or more embodiments of the invention disclose a system for creation of a laser-induced damage by generation of breakdowns at area where two laser beams intersect. This decreases the image deterioration conditioned by the use of a deflector and allows to create etch points with different brightness for different directions.
    • 公开了高透明材料内高质量激光损伤图像系统。 本发明的一个或多个实施例公开了一种系统,其通过电光偏转器和用于移动物品或聚焦光学系统的装置的组合产生所述图像。 所述设备的组合以及使用两个激光束可以显着提高图像生产速度,而不会造成图像劣化。 本发明的一个或多个实施例公开了一种用于通过使用计算相位全息图在几个分开的中心产生击穿来产生激光诱发的损伤的系统,其计算相位全息图被计算为使得穿过全息图的激光束 ,集中在几个地方。 本发明的一个或多个实施例公开了一种用于通过在两个激光束相交的区域处产生击穿来产生激光诱发的损伤的系统。 这减少了通过使用偏转器调节的图像劣化,并允许为不同的方向产生具有不同亮度的蚀刻点。
    • 14. 发明申请
    • Automatic marking of diamond girdles using a laser
    • 使用激光自动标记钻石腰带
    • US20030071021A1
    • 2003-04-17
    • US10209890
    • 2002-08-02
    • Danog Properties & Investments Ltd.
    • Daniel Benjano
    • B23K026/03
    • B44B7/007B23K26/032
    • A method of inscribing an indicium on a girdle of a gemstone, by producing a profile of the girdle by performing measurements of the gemstone, determining one or more locations on the girdle to inscribe the indicium by comparing the indicium with the profile and inscribing the indicium on the girdle at one of the locations. Also included is a system configured to perform the above method. The system includes a stage configured for mounting the gemstone thereon, a light detection apparatus, a drive mechanism configured to provide relative movement between the stage and the light detection apparatus, an inscription apparatus and a processor.
    • 通过对宝石进行测量,制作腰带的轮廓,确定腰带上的一个或多个位置,通过将标记与轮廓进行比较并刻印标记来标记标记,从而将标记铭刻在宝石腰带上的方法 在其中一个位置的腰带上。 还包括被配置为执行上述方法的系统。 该系统包括配置用于将宝石安装在其上的台,光检测装置,构造成提供台与光检测装置之间的相对移动的驱动机构,刻录装置和处理器。
    • 16. 发明授权
    • Method for manufacturing pre-inked stamps
    • 制造预墨迹邮票的方法
    • US5460757A
    • 1995-10-24
    • US174716
    • 1993-12-29
    • David L. Hedgecoth
    • David L. Hedgecoth
    • B23K26/40B29C35/08B29C59/16B41C1/02B44B3/00B44B7/00G05B19/4097B29B13/04
    • G05B19/4097B23K26/402B29C59/16B41C1/02B44B3/009B44B7/007B23K2203/30B23K2203/42B29C2035/0838B29K2105/04G05B2219/45165G05B2219/45212G05B2219/45227G05B2219/49322
    • The method (10) of the present invention includes a first step of designing an image to be reproduced by the stamp pad (12). A pre-inked rubber material (14) derived from an ink and plasticizer premix is then super-cooled to immobilize the ink constituents (28) and harden the pre-inked material (14). A controller (52) then processes the information communicated from the computer (50) in order to control the operation of an engraver (54) such as a laser beam generator or a pantograph. The engraved material (12) is then warmed to room temperature and affixed to an appropriate handle. Alternatively, the selected image (38) is accomplished on the top surface of the stamp pad (12) during the curing procedure. In this procedure, the premix material (22) is heated from the bottom surface (30) to a curing temperature up to a selected height. A heat source (62) is applied to the image surface (18) such as to raise the material directly below to an appropriate curing temperature level to a selected depth.
    • 本发明的方法(10)包括设计由印模(12)再现的图像的第一步骤。 然后将来自油墨和增塑剂预混物的预先涂墨的橡胶材料(14)过冷却以固定油墨组分(28)并硬化预先涂墨的材料(14)。 控制器(52)然后处理从计算机(50)传送的信息,以便控制诸如激光束发生器或缩放仪的雕刻器(54)的操作。 然后将雕刻的材料(12)温热至室温并固定在适当的手柄上。 或者,所选择的图像(38)在固化过程期间在印模垫(12)的顶表面上完成。 在该过程中,将预混合材料(22)从底表面(30)加热到固化温度直到选定的高度。 将热源(62)施加到图像表面(18),以将材料直接下降到适当的固化温度水平至所选择的深度。
    • 17. 发明申请
    • Laser marking system
    • 激光打标系统
    • US20040159641A1
    • 2004-08-19
    • US10764937
    • 2004-01-26
    • George R. KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • B23K026/00B23K026/03B23K026/04
    • B23K26/032B23K26/04B23K26/042B23K26/043B23K26/06B23K26/064B23K26/0643B23K26/0648B23K26/0665B23K26/0861B23K26/361B23K2103/30B23K2103/50B41M5/262B44B3/009B44B7/007B44C1/228G01N21/87G06K1/126
    • A laser energy microinscribing system, comprising a semiconductor excited Q-switched solid state laser energy source; a cut gemstone mounting system, allowing optical access to a mounted workpiece; an optical system for focusing laser energy from the laser energy source onto a cut gemstone; a displaceable stage for moving said gemstone mounting system with respect to said optical system so that said focused laser energy is presented to desired positions on said gemstone, having a control input; an imaging system for viewing the gemstone from a plurality of vantage points; and a rigid frame supporting said laser, said optical system and said stage in fixed relation, to resist differential movements of said laser, said optical system and said stage and increase immunity to vibrational misalignments. The laser energy source is preferably a semiconductor diode excited Q-switched Nd:YLF laser with a harmonic converter having an output of about 530 nm. The system may further comprise an input for receiving marking instructions; a processor for controlling said displaceable stage based on said marking instructions and said imaging system, to selectively generate a marking based on said instructions and a predetermined program; and a storage system for electronically storing information relating to images of a plurality of workpieces. A secure certificate of authenticity of a marked workpiece is also provided.
    • 一种激光能量微分系统,包括半导体激发的Q开关固体激光能量源; 切割宝石安装系统,允许光学访问安装的工件; 用于将来自激光能量源的激光能量聚焦到切割的宝石上的光学系统; 可移动台,用于相对于所述光学系统移动所述宝石安装系统,使得所述聚焦的激光能量呈现在具有控制输入的所述宝石上的期望位置; 用于从多个有利位置观察宝石的成像系统; 以及刚性框架,其支撑所述激光器,所述光学系统和所述平台处于固定关系,以抵抗所述激光器,所述光学系统和所述平台的差动运动,并增加对振动失准的抵抗力。 激光能量源优选是具有输出约530nm的谐波转换器的半导体二极管激励的Q开关Nd:YLF激光器。 系统还可以包括用于接收标记指令的输入; 用于基于所述标记指令和所述成像系统控制所述可移位级的处理器,以基于所述指令和预定程序选择性地生成标记; 以及用于电子地存储与多个工件的图像有关的信息的存储系统。 还提供了标记工件的真实性的安全证书。