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    • 2. 发明申请
    • METHOD AND DEVICE FOR PRODUCING A PLURALITY OF MICROLENSES
    • 用于生产大量微生物的方法和装置
    • US20150130095A1
    • 2015-05-14
    • US14399327
    • 2012-05-30
    • Michael Kast
    • Michael Kast
    • G02B13/00B29D11/00
    • G02B13/0085B29C33/303B29C35/0888B29C37/005B29C39/006B29C39/26B29C2035/0827B29D11/00365B29D11/00951B29L2011/0016
    • Device and method for producing a plurality of microlenses from a lens material. The method includes: applying lens material intended for the embossing of the microlenses to a plurality of first lens molds distributed on a first embossing side of a first die for embossing of the microlenses, moving the first die and a second die located essentially parallel, in an X-Y plane, and opposite the first die, on top of one another in a Z-direction running essentially perpendicular to the X-Y plane, embossing the microlenses by shaping and curing the lens material, the shaping taking place by moving the first and second embossing sides on top of one another, up to a thickness D1 of the lens material in the Z-direction, wherein the lens material of each microlens at least during curing is separate from the lens material of each microlens which is adjacent in the X-Y plane.
    • 用于从透镜材料制造多个微透镜的装置和方法。 该方法包括:将用于将微透镜压花的透镜材料应用于分布在第一模具的第一压花侧上的多个第一透镜模具,用于压印微透镜,使第一模具和第二模具基本上平行地位于 XY平面,并且与第一模具相对,在基本上垂直于XY平面的Z方向上彼此顶部,通过使透镜材料成形和固化来压印微透镜,通过移动第一和第二压花 这些透镜材料在Z方向上达到透镜材料的厚度D1,其中至少在固化期间每个微透镜的透镜材料与在XY平面中相邻的每个微透镜的透镜材料分离。
    • 8. 发明授权
    • Miniature acceleration sensor
    • 微型加速度传感器
    • US08104345B2
    • 2012-01-31
    • US12376833
    • 2007-08-06
    • Hubert BrücklMichael Kast
    • Hubert BrücklMichael Kast
    • G01P15/105
    • G01P15/105B82Y15/00B82Y25/00
    • A miniature sensor for detecting acceleration and deceleration processes has at least one bar-like spring element which is formed by a nanowire, which is connected by one end to the detector substrate and projects from the latter and which preferably carries at its free end a coating emitting a permanent magnetic stray field, or a nanoparticle of this type, wherein the nanowire and magnetic stray field coating, or mass, together form the inertial mass. A magnetic field detection layer composed, for example, of magnetoresistive material, is disposed at least in the region near the connected end of the nanowire. The substrate is preferably provided with such a layer which preferably, for its part, as sensor component forms a constituent part of a magnetic field detection unit.
    • 用于检测加速和减速过程的微型传感器具有至少一个棒状弹簧元件,其由纳米线形成,该纳米线由一端连接到检测器基底并从后者突出,并且其优选地在其自由端承载涂层 发射永久磁性杂散场或这种纳米颗粒,其中纳米线和磁性杂散场涂层或质量一起形成惯性质量。 由例如磁阻材料构成的磁场检测层至少设置在接近纳米线连接端的区域。 衬底优选地设置有这样的层,其优选地作为传感器部件形成磁场检测单元的组成部分。