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    • 1. 发明申请
    • LASER MARKING SYSTEM
    • 激光打标系统
    • US20080043220A1
    • 2008-02-21
    • US11850022
    • 2007-09-04
    • George KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • George KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • B23K26/36B23K26/02G01N21/00
    • 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。
    • 3. 发明授权
    • Laser marking system
    • 激光打标系统
    • US07265316B2
    • 2007-09-04
    • US10764937
    • 2004-01-26
    • George R. KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • George R. KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • B23K26/38B23K26/03
    • 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。
    • 5. 发明授权
    • Laser marking system
    • 激光打标系统
    • US5932119A
    • 1999-08-03
    • US690309
    • 1996-07-30
    • George R. KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • George R. KaplanAvigdor ShachraiOded AnnerLeonid Gurvich
    • A44C27/00B23K26/00B23K26/02B23K26/03B23K26/04B23K26/06B23K26/08B23K26/10B23K26/18B25H7/04B44C1/22B44F1/12G01N21/87G06K1/12H01R13/658
    • B23K26/032B23K26/04B23K26/042B23K26/043B23K26/06B23K26/064B23K26/0643B23K26/0648B23K26/0665B23K26/0861B23K26/362B23K26/402B44B3/009B44B7/007B44C1/228G01N21/87G06K1/126B23K2203/30B41M5/262
    • A laser energy microinscribing system, including 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 the focused laser energy is presented to desired positions on the gemstone, having a control input; an imaging system for viewing the gemstone from a plurality of vantage points; and a rigid frame supporting the laser, the optical system and the stage in fixed relation, to resist differential movements of the laser, the optical system and the 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 include an input for receiving marking instructions; a processor for controlling the displaceable stage based on the marking instructions and the imaging system, to selectively generate a marking based on the 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.
    • 激光能量微激光系统,包括半导体激发Q开关固态激光能源; 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,使得聚焦的激光能量被呈现到具有控制输入的宝石上的期望位置; 用于从多个有利位置观察宝石的成像系统; 以及支撑激光器,光学系统和固定关系的平台的刚性框架,以抵抗激光器,光学系统和舞台的差动运动,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来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。
    • 6. 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。
    • 7. 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。