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    • 1. 发明申请
    • TWO DIMENSIONAL MICRO SCANNER
    • 两维微型扫描仪
    • US20070216982A1
    • 2007-09-20
    • US11575570
    • 2005-09-22
    • Renatus SandersWillem Hoving
    • Renatus SandersWillem Hoving
    • G02B26/10
    • G02B26/101G02B26/0833G02B26/105
    • A two dimensional scanner comprising a first mirror (1) rotatable around a first axis (4), and a second mirror (2) rotatable around a second axis (5), said first and second reflective surfaces being formed on the same substrate (3), with their axis of rotation (4, 5) being non parallel in a common plane, and a reflective surface (6) arranged such that a light beam reflected by said first mirror (1) is subsequently reflected by said surface (6) and finally by said second mirror (2). According to the invention, the first mirror is thus capable of scanning said light beam in a first direction and said second mirror is capable of scanning said light beam in a second direction. The result is a very compact two dimensional scanner, where the two individual mirrors are independent of each other, but still can be provided very close together, eliminating, or at least reducing distortion of the image.
    • 一种二维扫描器,包括可围绕第一轴线(4)旋转的第一反射镜(1)和可围绕第二轴线(5)旋转的第二反射镜(2),所述第一和第二反射表面形成在相同的基板 ),其旋转轴(4,5)在公共平面中不平行,并且反射表面(6)被布置成使得由所述第一反射镜(1)反射的光束随后被所述表面(6)反射, 最后通过所述第二反射镜(2)。 根据本发明,第一反射镜因此能够沿第一方向扫描所述光束,并且所述第二反射镜能够沿第二方向扫描所述光束。 结果是非常紧凑的二维扫描器,其中两个独立的反射镜彼此独立,但仍然可以非常靠近地一起提供,消除或至少减少图像的失真。
    • 3. 发明申请
    • Marking method and market object
    • 标记方法和市场对象
    • US20060213886A1
    • 2006-09-28
    • US10548719
    • 2004-03-11
    • Renatus SandersErik-Kees EngelsWillem HovingHenk Kole
    • Renatus SandersErik-Kees EngelsWillem HovingHenk Kole
    • B23K26/00
    • B41M5/38207
    • Disclosed is a method of marking an object by means of a laser beam. Said method comprising the steps of: applying a donor film on a support, said support at least partly being transparent to the laser beam; placing the support with the donor film in proximity to the surface to be patterned, such that the donor film faces the object to be marked; irradiating the donor film with the laser beam through the support, thereby transcribing a pattern of the donor film to the object; and removing the support with the donor film from the object. The donor film has a thickness of at least 0.5 micron. Also disclosed is a marked object that is obtained by means of the above method, wherein the marking has a thickness of at least 0.5 micron.
    • 公开了一种通过激光束对物体进行标记的方法。 所述方法包括以下步骤:将施主膜施加在支撑体上,所述支撑件至少部分地对于激光束是透明的; 将施主膜的支撑物放置在待图案化表面附近,使得施主膜面向待标记的物体; 用激光束照射供体膜通过支撑体,由此将供体膜的图案转印到物体上; 以及从所述物体上用所述施主膜移除所述支撑物。 供体膜具有至少0.5微米的厚度。 还公开了通过上述方法获得的标记物体,其中标记具有至少0.5微米的厚度。