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    • 82. 发明申请
    • METHOD FOR DETECTING AN ORIENTATION OF A DEVICE AND DEVICE HAVING AN ORIENTATION DETECTOR
    • 用于检测装置的方位的方法和具有方位检测器的装置
    • US20090013544A1
    • 2009-01-15
    • US10596923
    • 2005-01-13
    • Bernardus H.W. HendriksStein Kuiper
    • Bernardus H.W. HendriksStein Kuiper
    • G01C9/06
    • G02B26/005G01C9/06G01C9/20G02B3/14
    • The present invention discloses a method for detecting an orientation of a device (1) with respect to a direction of an acceleration force and a device (1) comprising an optical device (10) comprising a first liquid (A) and a second liquid (B), said liquids (A; B) being immiscible, having different refractive indices and different densities and being in contact with each other via an interface (14), a sensor (20) comprising a grid of pixels (22), the sensor (20) being arranged to sense an image captured by the optical device (10) on a subset (24, 24′) of the grid of pixels (22); and calculating means (30) for calculating an orientation of the device (1) with respect to a direction of an acceleration force from the position of the subset (24, 24) on the grid (22). Consequently, the orientation of the device (1) with respect to the direction of an acceleration force such as gravity can be obtained without mechanically moving parts.
    • 本发明公开了一种用于检测装置(1)相对于加速力方向的取向的方法以及包括第一液体(A)和第二液体(A)的光学装置(10)的装置(1) B),所述液体(A; B)不混溶,具有不同的折射率和不同的密度并且经由界面(14)彼此接触,包括像素网格(22)的传感器(20) (20)被布置成在所述像素网格(22)的子集(24,24')上感测由所述光学装置(10)捕获的图像; 以及用于计算装置(1)相对于来自网格(22)上的子集(24,24)的位置的加速力的方向的取向的计算装置(30)。 因此,无需机械地移动部件,可以获得装置(1)相对于重力等加速力的方向的取向。
    • 87. 发明申请
    • Diffractive Optical Structure with a Liquid Interface
    • 具有液体界面的衍射光学结构
    • US20080204880A1
    • 2008-08-28
    • US10568836
    • 2004-08-05
    • Bernardus Hendrikus Wilhelmus HendriksStein Kuiper
    • Bernardus Hendrikus Wilhelmus HendriksStein Kuiper
    • G02B5/18
    • G02B26/005G02B1/06G02B3/08G02B3/12G02B3/14G02B5/1814G02B27/4211G02B27/4272G02B27/4288
    • An optical system comprising a diffraction element (2) formed of a substantially rigid first material having a first refractive index. The diffraction element has a first plurality of grooves (4) at a first interface of the diffraction element with a second material (8) having a second refractive index; and a second, different, plurality of grooves (6) at a second, different, interface of the diffraction element with a third material (10) having a third refractive index. The first and second pluralities of grooves (4), (6) are aligned with respect to each other such that a combined diffractive effect is achieved. Moreover, the third material (10) is a liquid. The diffractive element may be manufactured using an injection moulding technique, following which the second and/or third materials may be applied in fluid form. By use of the invention, the two pluralities of grooves may be aligned with respect to each other with a high degree of efficiency and reliability
    • 一种光学系统,包括由具有第一折射率的基本刚性的第一材料形成的衍射元件(2)。 衍射元件在衍射元件的第一界面处具有第一多个凹槽(4)和具有第二折射率的第二材料(8); 以及在衍射元件的第二不同界面处具有第三折射率的第三材料(10)的第二不同多个凹槽(6)。 第一和第二多个槽(4),(6)相对于彼此对齐,使得实现组合的衍射效应。 此外,第三材料(10)是液体。 可以使用注射成型技术制造衍射元件,随后可以以流体形式施加第二和/或第三材料。 通过使用本发明,可以高效率和可靠地相对于彼此对准两个多个凹槽