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    • 2. 发明授权
    • Optical device
    • 光学装置
    • US6021003A
    • 2000-02-01
    • US151028
    • 1998-09-10
    • Takashi KatsukiIppei SawakiMichio MiuraSatoshi UedaFumitaka Abe
    • Takashi KatsukiIppei SawakiMichio MiuraSatoshi UedaFumitaka Abe
    • H04N1/04G02B3/00G02B3/06G02B5/18G02B27/18G02B27/10
    • G02B3/0043G02B3/005G02B3/06G02B5/1876
    • An optical device including an optical imaging system for forming a real image of an object on a light-receiving surface, the optical imaging system including first and second cylindrical lenses and first and second intermediate lenses, each of the intermediate lenses being composed of a plurality of lens elements arrayed in a line, the first and second cylindrical lenses being opposed to each other so that generatrices thereof are parallel to each other, the first and second intermediate lenses being arranged between the first and second cylindrical lenses in a direction of the generatrices so that a light beam emanated from the object is condensed onto the light-receiving surface through the first cylindrical lens, the first intermediate lens, the second intermediate lens and the second cylindrical lens, wherein each of the lens elements is formed of a one-dimensional binary lens having a light-condensing property only in the direction of the generatrices, whereby a real image by the first and second cylindrical lenses and an erect image by the first and second intermediate lenses are formed perpendicular to each other on the light-receiving surface.
    • 一种光学装置,包括用于在光接收表面上形成物体的实像的光学成像系统,所述光学成像系统包括第一和第二柱面透镜以及第一和第二中间透镜,每个中间透镜由多个 排列成一行的透镜元件,第一和第二柱面透镜彼此相对,使得它们的母体彼此平行,第一和第二中间透镜沿着母线的方向布置在第一和第二柱面透镜之间 使得从物体发出的光束通过第一柱面透镜,第一中间透镜,第二中间透镜和第二柱面透镜被聚光到受光面上,其中每个透镜元件由单向透镜形成, 具有仅在母线方向上具有聚光特性的二维二元透镜,由此通过图像的真实图像 第一和第二柱面透镜以及第一和第二中间透镜的直立图像在光接收表面上彼此垂直地形成。
    • 7. 发明授权
    • Method for fabricating MEMS device and MEMS device
    • 制造MEMS器件和MEMS器件的方法
    • US08800141B2
    • 2014-08-12
    • US13037762
    • 2011-03-01
    • Takashi KatsukiTakeaki ShimanouchiMasahiko ImaiOsamu ToyodaSatoshi Ueda
    • Takashi KatsukiTakeaki ShimanouchiMasahiko ImaiOsamu ToyodaSatoshi Ueda
    • H01G7/00
    • H01G7/00H01H57/00H01R9/00
    • There is provided a method for fabricating a device, preferably for a micro electro electro mechanical system. The method includes forming a first electrode on a substrate, where the first electrode has a first sloped end at least at one end thereof; forming a sacrificial layer on the first electrode, where the sacrificial layer has a first sloped edge, the first sloped edge and the first sloped end are overlapped each other so that a thickness of the first sloped edge decreases as a thickness of the first sloped end increases; forming a first spacer on the first electrode, where the first spacer has contact with the first sloped edge; forming a beam electrode on the sacrificial layer and the first spacer; and removing the sacrificial layer after the forming the beam electrode.
    • 提供了一种制造器件的方法,优选用于微机电系统。 该方法包括在基底上形成第一电极,其中第一电极至少在其一端具有第一倾斜端; 在所述第一电极上形成牺牲层,其中所述牺牲层具有第一倾斜边缘,所述第一倾斜边缘和所述第一倾斜端部彼此重叠,使得所述第一倾斜边缘的厚度随着所述第一倾斜端部的厚度而减小 增加 在所述第一电极上形成第一间隔物,其中所述第一间隔件与所述第一倾斜边缘接触; 在所述牺牲层和所述第一间隔物上形成束电极; 并且在形成束电极之后去除牺牲层。
    • 9. 发明授权
    • Touch panel device
    • 触摸屏设备
    • US07932900B2
    • 2011-04-26
    • US11604693
    • 2006-11-28
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • G09G5/00
    • G06F3/0436
    • Surface acoustic waves are propagated in a lower-left oblique direction and a lower-right oblique direction from an excitation element located on the upper side of a non-piezoelectric substrate and then received by receiving elements located on the left side and the right side, while surface acoustic waves are propagated in an upper-left oblique direction and an upper-right oblique direction from an excitation element located on the lower side of the non-piezoelectric substrate and then received by the receiving elements located on the left side and the right side. Based on the received results at the two receiving elements, a position of an object in contact with the non-piezoelectric substrate is detected. The sensitivity in a region near the diagonal, which is influenced largely by propagation loss of the surface acoustic waves, is improved by increasing the widths of the electrode fingers of the excitation elements and/or the receiving elements, the number of pairs of the electrode fingers, or the aperture width of comb-like electrodes, according to an increase in the propagation distances of the surface acoustic waves, i.e., toward the region near the diagonal.
    • 表面声波从位于非压电基板的上侧的激励元件沿左下斜方向和右下斜方向传播,然后由位于左侧和右侧的接收元件接收, 同时表面声波从位于非压电基板的下侧的激励元件沿左上方倾斜方向和右上斜方向传播,然后由位于左侧和右侧的接收元件接收 侧。 基于两个接收元件的接收结果,检测与非压电基板接触的物体的位置。 通过增加激发元件和/或接收元件的电极指的宽度,电极对的数量来改善受到表面声波的传播损耗很大影响的对角线附近区域的灵敏度 手指或梳状电极的孔径宽度,根据表面声波的传播距离的增加,即朝向对角线附近的区域的增加。