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    • 2. 发明申请
    • Optical Pointing Device, And Electronic Apparatus Provided With Same
    • 光指点装置,以及与此相同的电子装置
    • US20130063399A1
    • 2013-03-14
    • US13514263
    • 2011-03-03
    • Tetsushi NoroTakahiro MiyakeRenzaburo Miki
    • Tetsushi NoroTakahiro MiyakeRenzaburo Miki
    • G06F3/042
    • G06F1/169G06F1/1616G06F3/03547G06F3/042
    • To produce an ultrathin and easily assembled optical pointing device by reducing the number of components, an optical pointing device (10) of the present invention includes: a light source (2) for emitting light to an object (1); a light guide (6) for propagating therethrough light scattered by the object (1), the light guide including an image forming section (4) for forming an image with use of the light scattered by the object (1); and an image capturing section (7) for capturing the image with the light that has been scattered by the object (1) and that has exited the light guide (6). The light guide (6) guides a light beam (L) from the object via no air through an optical path extending from (i) a position where the light beam (L) enters the light guide to (ii) a position where the light beam exits the light guide (6).
    • 为了通过减少部件的数量来制造超薄且容易组装的光学指向装置,本发明的光学指向装置(10)包括:用于向物体(1)发射光的光源(2); 用于传播由物体(1)散射的光的光导(6),所述光导包括用于通过所述物体(1)散射的光形成图像的图像形成部(4)。 以及用于利用已经被物体(1)散射并且已经退出光导(6)的光捕获图像的图像拍摄部(7)。 光导(6)从物体引导光束(L)从物体经过从(i)光束(L)进入光导的位置延伸的光路,到(ii)光的位置, 光束离开光导(6)。
    • 6. 发明授权
    • Display apparatus having a plurality of display devices
    • 具有多个显示装置的显示装置
    • US5465315A
    • 1995-11-07
    • US986052
    • 1992-12-02
    • Keiji SakaiYoshio YoshidaHiroyuki YamamotoYukio KurataYasuo NakataTakahiro Miyake
    • Keiji SakaiYoshio YoshidaHiroyuki YamamotoYukio KurataYasuo NakataTakahiro Miyake
    • G02B6/06G02F1/1333G09F9/305G02B6/08
    • G02F1/13336G02B6/06G09F9/305Y10S385/901
    • A display apparatus of the invention includes: a plurality of display devices arranged in one direction, each of the plurality of display devices having a display area; and a plurality of image transmission means corresponding to the respective display devices, one end face of each of the image transmission means being coupled to a display area of the corresponding one of the display devices, other end faces of the image transmission means corresponding to the adjacent ones of the display devices being in contact with each other, the plurality of image transmission means being bent toward the one direction in which the display devices are arranged. Alternatively, a display apparatus of the invention includes: a plurality of display devices disposed in two directions, each of the plurality of display devices having a display area; a plurality of image transmission means corresponding to the respective display devices, one end face of each of the image transmission means being coupled to a display area of the corresponding one of the display devices, other end faces of the image transmission means corresponding to the adjacent ones of the display devices being in contact with each other, some of the plurality of image transmission means each having inward facing slopes and outward facing slopes on two pairs of opposing faces, the outward facing slopes of the image transmission means being directed to a direction in which the corresponding display device has no adjacent display devices.
    • 本发明的显示装置包括:沿一个方向布置的多个显示装置,所述多个显示装置中的每一个具有显示区域; 以及对应于各个显示装置的多个图像传输装置,每个图像传输装置的一个端面耦合到相应的一个显示装置的显示区域,对应于图像传输装置的另一个端面 相邻的显示装置彼此接触,所述多个图像传输装置朝向显示装置布置的一个方向弯曲。 或者,本发明的显示装置包括:多个显示装置,其设置在两个方向上,所述多个显示装置中的每一个具有显示区域; 与各个显示装置对应的多个图像传输装置,每个图像传输装置的一个端面耦合到对应的一个显示装置的显示区域,图像传输装置的与相邻的显示装置相对应的另一个端面 所述显示装置中的一个相互接触,所述多个图像传输装置中的一些图像传输装置中的每一个在两对相对的面上具有向内的斜面和向外的斜面,所述图像传输装置的向外的斜面被引导到 其中相应的显示装置没有相邻的显示装置。
    • 8. 发明授权
    • Manufacturing method of optical diffraction grating element with
serrated gratings having uniformly etched grooves
    • 具有均匀蚀刻凹槽的锯齿形光栅的光学衍射光栅元件的制造方法
    • US5279924A
    • 1994-01-18
    • US908866
    • 1992-07-01
    • Keiji SakaiKatsuhiro KuboYukio KurataTakahiro MiyakeYoshio Yoshida
    • Keiji SakaiKatsuhiro KuboYukio KurataTakahiro MiyakeYoshio Yoshida
    • G02B5/18G11B7/135G03C5/00
    • G11B7/1353G02B5/1814G02B5/1857G02B5/1871
    • The method of manufacturing an optical diffraction grating element of the present invention is characterized in adopting an ion beam made from a gas chemically reacting with a glass substrate when forming a diffraction grating having a serrated profile upon the glass substrate through an ion beam etching method. Also, when manufacturing an optical diffraction grating element that is divided into a plurality of regions whereon diffraction gratings having different diffraction angles with respect to an incident light are provided, the method of the present invention is characterized in forming slits into a resist film disposed upon a transparent substrate such as a glass substrate, in accordance with the patterns of the diffraction gratings, such that the width of the slits is constant irrespectively of the regions. Accordingly, the method of manufacturing an optical diffraction grating element of the present invention enables to improve the diffraction efficiency of the optical diffraction grating element, and to enhance the optical efficiency of an optical head device. The SN ratio of the output signals released by the optical head device may be thus improved and the servo error control executed accurately.
    • 本发明的光学衍射光栅元件的制造方法的特征在于,在通过离子束蚀刻法在玻璃基板上形成具有锯齿状的衍射光栅时,采用由与玻璃基板发生化学反应的气体制成的离子束。 此外,当制造被分成多个区域的光学衍射光栅元件,其中衍射光栅相对于入射光具有不同衍射角的衍射光栅时,本发明的方法的特征在于将狭缝形成为设置在 根据衍射光栅的图案,诸如玻璃基板的透明基板,使得狭缝的宽度与区域无关地是恒定的。 因此,本发明的光学衍射光栅元件的制造方法能够提高光学衍射光栅元件的衍射效率,提高光学头装置的光学效率。 可以提高由光头装置释放的输出信号的SN比,并且精确地执行伺服误差控制。
    • 10. 发明申请
    • Optical pickup device
    • 光学拾取装置
    • US20060018215A1
    • 2006-01-26
    • US11187360
    • 2005-07-21
    • Takahiro MiyakeKentaro Terashima
    • Takahiro MiyakeKentaro Terashima
    • G11B7/00
    • G11B7/1398G11B7/0903G11B7/1353
    • An object of the present invention is to provide an optical pickup device which improves resolution of reproduced signals without increasing the number of components, and does not require positional adjustment of a grating during assembly of the optical pickup device. For this purpose, the optical pickup device of the present invention includes a semiconductor laser 1, a grating 3, an objective lens 5, and a push-pull signal detecting section 10. The grating 3 divides a light beam emitted from the semiconductor laser 1 into a 0-order diffracted beam, and a pair of ±1st-order diffracted beams. The grating 3 is set so that a reduction rate of light intensity for the 0-order diffracted beam is decreased and intensities of the pair of ±1st-order diffracted beams are decreased from a vicinity of an optical axis toward periphery parts. Accordingly, the 0-order diffracted beam has a flat intensity distribution, and the intensities of the pair of ±1st-order diffracted beams are higher in the vicinity of the optical axis than in the periphery part. Thus, the resolution of reproduced signals can be improved, and the positional adjustment of the grating can be omitted.
    • 本发明的目的是提供一种光拾取装置,其在不增加部件数量的情况下提高再现信号的分辨率,并且在组装光学拾取装置期间不需要光栅的位置调整。 为此,本发明的光拾取装置包括半导体激光器1,光栅3,物镜5和推挽信号检测部分10。 光栅3将从半导体激光器1发射的光束分成0级衍射光束和一对±1级衍射光束。 设置光栅3,使得0级衍射光束的光强度的减小率减小,并且一对±1级衍射光束的强度从光轴附近朝向周边部分减小。 因此,0级衍射光束具有平坦的强度分布,并且一对±1级衍射光束的强度在光轴附近比在周边部分高。 因此,可以提高再现信号的分辨率,并且可以省略光栅的位置调整。