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    • 1. 发明授权
    • Method and apparatus for laser beam alignment for solar panel scribing
    • 太阳能电池板划片的激光束对准方法和装置
    • US08779326B2
    • 2014-07-15
    • US12513770
    • 2007-11-05
    • Philip Rumsby
    • Philip Rumsby
    • B23K26/38B23K26/03B23K26/04
    • H01L31/18B23K26/042Y10T428/24802
    • A device for accurately positioning laser scribed lines in a thin top layer of material with respect to lines already scribed in lower layers for the purpose of making solar panels. An alignment detector system is attached to and displaced from an optics unit that generates laser beams by a distance such that the detector measures the position of scribed lines in the lower layers in the area of the panel that will be scribed at a subsequent time. A motion and control system moves the panel such that the detector follows the path of one or more of the lines scribed in one of the lower layers and measures the position of the lines. The system accepts data from the alignment detector and uses the data to correct the relative position of the optics unit.
    • 用于将激光划线精确地定位在相对于已经划刻在下层中的线的薄顶层材料中用于制造太阳能电池板的装置。 对准检测器系统附接到光学单元并且从光学单元移位,所述光学单元产生一定距离的激光束,使得检测器测量在随后的时间将被刻划的面板区域中的下层中的划线的位置。 运动和控制系统使面板移动,使得检测器遵循在一个下层中刻划的一条或多条线的路径,并测量线的位置。 系统接受来自对准检测器的数据,并使用数据校正光学单元的相对位置。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR LASER BEAM ALIGNMENT FOR SOLAR PANEL SCRIBING
    • 用于太阳能电池板激光激光束对准的方法和装置
    • US20090324903A1
    • 2009-12-31
    • US12513770
    • 2007-11-05
    • Philip Rumsby
    • Philip Rumsby
    • B23K26/38B32B3/10
    • H01L31/18B23K26/042Y10T428/24802
    • A method is described for accurately positioning laser scribed lines in a thin top layer of material which overcoats one or more other lower layers in which lines have already been scribed for the purpose of making solar panels. This is accomplished by means of an optics unit that generates one or more laser beams in order to scribe one or more lines in the top layer on the panel. An alignment detector system is attached to the optics unit and the detector is displaced from the optics unit by a distance such that the detector measures the position of one of the scribes in the lower layers in the area of the panel that will be scribed at a subsequent time. A control and motion system accepts data from the alignment detector attached to the optics unit and uses the data to correct the relative position of the optics unit with respect to the panel in the direction perpendicular to the scribe direction in order to cause the laser scribed lines to be accurately placed with respect to lines already scribed in the lower layer. A motion system moves the panel with respect to the optics unit and the associated alignment detector such that the detector follows the path of one or more of the lines scribed in one of the lines scribed in one of the lower layers and measures the position of the line or lines over the full length while laser scribing of the top layer by the optics unit proceeds in a different area of the panel. The invention further comprises a laser ablation tool for carrying out the method as aforesaid.
    • 描述了一种用于将激光划线精确地定位在薄的顶层材料中的方法,所述薄顶层材料覆盖一个或多个其它较低层,其中线已经被划线以制造太阳能电池板。 这通过产生一个或多个激光束的光学单元来实现,以便在面板上的顶层中刻划一条或多条线。 对准检测器系统附接到光学单元,并且检测器从光学单元移位一定距离,使得检测器测量在面板区域中的下划线中的一个划线条的位置,该区域将被刻划在 随后的时间。 控制和运动系统接受来自安装在光学单元上的对准检测器的数据,并使用数据在垂直于划线方向的方向上校正光学单元相对于面板的相对位置,以便使激光划线 相对于已经在下层划线的线被准确地放置。 运动系统相对于光学单元和相关联的对准检测器移动面板,使得检测器遵循在一个下层中刻划的划线中的一条划线中的一条或多条线的路径,并且测量该位置 线或线,同时通过光学单元的顶层的激光划线在面板的不同区域中进行。 本发明还包括用于执行如上所述的方法的激光消融工具。