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    • 26. 发明授权
    • Fluid filled devices
    • 流体填充装置
    • US07616737B2
    • 2009-11-10
    • US10546394
    • 2004-02-19
    • Stein KuiperDerk Visser
    • Stein KuiperDerk Visser
    • G21K3/00
    • G11B7/1374G02B3/14G02B26/005G02B27/005G02B27/0068G11B2007/0006G11B2007/13727
    • A device (100; 200; 300; 400) comprising a sealed cavity (210) containing n volumes of fluids (80, 87; 220, 230; 320, 332; 420, 422, 430, 432) is described, where n is an integer and n≧2. Each volume of fluid is substantially immiscible with every contiguous volume of fluid. The cavity is defined by an interior surface divided into n continuous areas (60, 170; 260, 270; 360, 362, 370; 460, 462, 470, 472), each continuous area corresponding to and being in contact with a respective one of the volumes of fluid. The wettability of each area is such that each volume of fluid preferentially adheres to the corresponding continuous area rather than any one of the continuous areas adjacent to the corresponding area.
    • 描述了包括含有n体积流体(80,87; 220,230; 320,332; 420,422,430,432)的密封空腔(210)的装置(100; 200; 300; 400),其中n为 一个整数,n> = 2。 每个体积的流体与每个相邻体积的流体基本上是不混溶的。 空腔由分为n个连续区域(60,170,260,270; 360,362,370,460,462,470,472)的内表面限定,每个连续区域对应于和相应的一个区域 的流体体积。 每个区域的润湿性使得每个体积的流体优先地粘附到相应的连续区域,而不是邻近相应区域的连续区域中的任何一个。
    • 27. 发明申请
    • LIGHT INTENSITY MEASURING METHOD AND ELECTRONIC DEVICE
    • 光强度测量方法和电子设备
    • US20090135423A1
    • 2009-05-28
    • US11719217
    • 2005-11-07
    • Stein KuiperBernardus H.W. HendriksRobert W.J. Zijlstra
    • Stein KuiperBernardus H.W. HendriksRobert W.J. Zijlstra
    • G01B13/00
    • G01J1/429G01J1/0488G01J1/50G02B1/06G02B26/005
    • The present invention discloses a method for measuring an intensity of a part of an electromagnetic spectral range, and an electronic device implementing the method. The method comprises the steps of providing an electronic device comprising an optical device (10) comprising at least a first liquid (A) and being placed in front of a sensor (120), the optical device (10) having a transmittance of the part of the electromagnetic spectral range depending on an orientation of at least the first liquid (A); measuring a first intensity of the electromagnetic (EM) spectral range; changing the orientation of at least the first liquid (A); measuring a second intensity of the electromagnetic spectral range; and calculating an intensity of the part of the electromagnetic spectral range from the difference between the first intensity and the second intensity. Consequently, an intensity for a part of the EM spectral range can be measured without the need for a sensor dedicated to this part of the EM spectral range. In particular, an optical element based on the electrowetting principle is used in a mobile phone to measure the intensity of UV radiation.
    • 本发明公开了一种用于测量电磁光谱范围的一部分的强度的方法和实现该方法的电子装置。 该方法包括以下步骤:提供包括至少包括第一液体(A)并被放置在传感器(120)前面的光学装置(10)的电子装置,所述光学装置(10)具有部分的透射率 的电磁光谱范围取决于至少第一液体(A)的取向; 测量电磁(EM)光谱范围的第一强度; 改变至少第一液体(A)的取向; 测量电磁光谱范围的第二强度; 以及从第一强度和第二强度之间的差计算电磁光谱范围的一部分的强度。 因此,可以测量EM光谱范围的一部分的强度,而不需要专用于EM光谱范围的这部分的传感器。 特别地,在移动电话中使用基于电润湿原理的光学元件来测量UV辐射的强度。