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    • 1. 发明申请
    • METHOD AND APPARATUS FOR ORIENTING A SURFACE
    • 面向面的方法和装置
    • WO2002079854A2
    • 2002-10-10
    • PCT/US2002/009940
    • 2002-03-29
    • GSI LUMONICS, INC.BROWN, David, C.STUKALIN, FelixNUSSBAUM, Michael, B.
    • BROWN, David, C.STUKALIN, FelixNUSSBAUM, Michael, B.
    • G02B26/08
    • G02B6/3572G02B6/3512G02B6/3556G02B6/359G02B7/1828G02B26/0816G02B26/105
    • The invention provides a method and apparatus for positioning a surface (30) in a desired orientation. There is provided a movable member (10) supported for movement by a fixed member (40) and the movable member has an optical element, e.g. a flat mirror (30) fixedly attached thereto. In one embodiment the mirror scans a radiation beam incident thereon along a single axis. In a second embodiment, the radiation beam is scanned in two mutually perpendicular axes. A magnetic element (50) having a north and a south magnetic pole is fixedly attached to the movable member (10). A magnetically permeable stator element (70), that is stationary with respect to the movable member (10) and the magnetic element (50), is placed in the field of the magnetic element (50) such that the stator element (70) and said magnetic element (50) mutually generate a magnetic traction force between them. A current coil (60) is wound around a portion of the stator element (70) and a current driver (400) is provided for driving a current in the current coil (60). The current induces an electromagnetic field in the stator element (70) and an electromagnetic force acts on the magnetic element (50) for controlling movement of the surface (30) with respect to the fixed element (40). A radiation beam source (502) may be directed onto the movable mirror surface (30) and scanned by the movement of the mirror to direct the radiation beam in a desired propagation direction.
    • 本发明提供了一种用于将表面(30)定位成所需取向的方法和装置。 设置有可移动构件(10),其被固定构件(40)支撑以移动,并且可移动构件具有例如光学元件。 固定在其上的平面镜(30)。 在一个实施例中,反射镜沿着单个轴扫描入射到其上的辐射束。 在第二实施例中,辐射束以两个相互垂直的轴线扫描。 具有北极和南磁极的磁性元件(50)固定在可动件(10)上。 相对于可动构件(10)和磁性元件(50)固定的导磁定子元件(70)被放置在磁性元件(50)的磁场中,使得定子元件(70)和 所述磁性元件(50)在它们之间相互产生磁力牵引力。 电流线圈(60)缠绕在定子元件(70)的一部分上,并且提供电流驱动器(400)以驱动电流线圈(60)中的电流。 电流在定子元件(70)中引起电磁场,并且电磁力作用在磁性元件(50)上,用于控制表面(30)相对于固定元件(40)的移动。 辐射束源(502)可以被引导到可动镜面(30)上,并且通过镜的移动被扫描以将辐射束引导到期望的传播方向。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR ORIENTING A SURFACE
    • WO2002079854A3
    • 2002-10-10
    • PCT/US2002/009940
    • 2002-03-29
    • GSI LUMONICS, INC.BROWN, David, C.STUKALIN, FelixNUSSBAUM, Michael, B.
    • BROWN, David, C.STUKALIN, FelixNUSSBAUM, Michael, B.
    • G02B26/08
    • The invention provides a method and apparatus for positioning a surface (30) in a desired orientation. There is provided a movable member (10) supported for movement by a fixed member (40) and the movable member has an optical element, e.g. a flat mirror (30) fixedly attached thereto. In one embodiment the mirror scans a radiation beam incident thereon along a single axis. In a second embodiment, the radiation beam is scanned in two mutually perpendicular axes. A magnetic element (50) having a north and a south magnetic pole is fixedly attached to the movable member (10). A magnetically permeable stator element (70), that is stationary with respect to the movable member (10) and the magnetic element (50), is placed in the field of the magnetic element (50) such that the stator element (70) and said magnetic element (50) mutually generate a magnetic traction force between them. A current coil (60) is wound around a portion of the stator element (70) and a current driver (400) is provided for driving a current in the current coil (60). The current induces an electromagnetic field in the stator element (70) and an electromagnetic force acts on the magnetic element (50) for controlling movement of the surface (30) with respect to the fixed element (40). A radiation beam source (502) may be directed onto the movable mirror surface (30) and scanned by the movement of the mirror to direct the radiation beam in a desired propagation direction.
    • 3. 发明申请
    • SYSTEM AND METHOD FOR EMPLOYING A RESONANT SCANNER IN AN X-Y HIGH SPEED DRILLING SYSTEM
    • 在X-Y高速钻孔系统中使用共振扫描仪的系统和方法
    • WO2008091380A3
    • 2008-10-16
    • PCT/US2007074391
    • 2007-07-26
    • GSI GROUP CORPPINARD ADAM IPELSUE KURTSTUKALIN FELIX
    • PINARD ADAM IPELSUE KURTSTUKALIN FELIX
    • B23K26/38
    • B23K26/0622B23K26/082B23K26/382B23K26/40B23K2203/50G02B26/101G02B26/105
    • A laser processing system is disclosed for providing a relatively small velocity of a laser beam at target location while at least one scanner scans at a relatively larger velocity. The system includes a laser source, a first scanning unit, a beam expander, a second scanning unit and focusing optics. The laser source is for providing a pulsed laser output having at least one beam with a beam dimension. The first scanning unit is for scanning the laser output in a first direction along a first axis at the target location. The beam expander is for receiving the laser output and for modifying a beam diameter of the laser output and providing a modified laser output. The second scanning unit is for scanning the modified laser output from the beam expander in a second direction along the first axis at the target location. The second direction is substantially opposite to the first direction along the first axis such that a net velocity of the modified laser output along the first axis at the target location may be made to be effectively zero during a laser pulse. The focusing optics is for focusing the modified laser output toward the target location.
    • 公开了一种激光处理系统,用于在目标位置处提供相对较小的激光束速度,同时至少一个扫描仪以相对较大的速度扫描。 该系统包括激光源,第一扫描单元,光束扩展器,第二扫描单元和聚焦光学器件。 激光源用于提供具有至少一个具有光束尺寸的光束的脉冲激光输出。 第一扫描单元用于在目标位置沿着第一轴沿第一方向扫描激光输出。 光束扩展器用于接收激光输出并修改激光输出的光束直径并提供修改的激光输出。 第二扫描单元用于在目标位置沿沿第一轴的第二方向扫描来自光束扩展器的修改的激光输出。 第二方向与沿着第一轴线的第一方向基本上相反,使得在激光脉冲期间沿着第一轴线的修改的激光器输出在目标位置处的净速度可以被实质上为零。 聚焦光学器件用于将修改的激光输出聚焦到目标位置。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR EMPLOYING A RESONANT SCANNER IN AN X-Y HIGH SPEED DRILLING SYSTEM
    • 用于在X-Y高速钻井系统中使用共振扫描器的系统和方法
    • WO2008091380A2
    • 2008-07-31
    • PCT/US2007/074391
    • 2007-07-26
    • GSI GROUP CORPORATIONPINARD, Adam, I.PELSUE, KurtSTUKALIN, Felix
    • PINARD, Adam, I.PELSUE, KurtSTUKALIN, Felix
    • B23K26/0622B23K26/082B23K26/382B23K26/40B23K2203/50G02B26/101G02B26/105
    • A laser processing system is disclosed for providing a relatively small velocity of a laser beam at target location while at least one scanner scans at a relatively larger velocity. The system includes a laser source, a first scanning unit, a beam expander, a second scanning unit and focusing optics. The laser source is for providing a pulsed laser output having at least one beam with a beam dimension. The first scanning unit is for scanning the laser output in a first direction along a first axis at the target location. The beam expander is for receiving the laser output and for modifying a beam diameter of the laser output and providing a modified laser output. The second scanning unit is for scanning the modified laser output from the beam expander in a second direction along the first axis at the target location. The second direction is substantially opposite to the first direction along the first axis such that a net velocity of the modified laser output along the first axis at the target location may be made to be effectively zero during a laser pulse. The focusing optics is for focusing the modified laser output toward the target location.
    • 公开了一种激光处理系统,用于在至少一个扫描仪以相对较大的速度扫描时在目标位置处提供相对小的激光束速度。 该系统包括激光源,第一扫描单元,扩束器,第二扫描单元和聚焦光学器件。 激光源用于提供具有至少一个具有光束尺寸的光束的脉冲激光输出。 第一扫描单元用于沿着目标位置处的第一轴在第一方向上扫描激光输出。 扩束器用于接收激光输出并用于修改激光输出的光束直径并提供改进的激光输出。 第二扫描单元用于沿着目标位置处的第一轴线在第二方向上扫描来自扩束器的改进的激光输出。 第二方向与沿着第一轴的第一方向基本上相反,使得在激光脉冲期间可以使在目标位置沿着第一轴的改进的激光输出的净速度有效地为零。 聚焦光学器件用于将修改后的激光输出聚焦到目标位置。