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    • 32. 发明授权
    • Semiconductor device having group III nitride compound and enabling
control of emission color, and flat display comprising such device
    • 具有III族氮化物化合物并且能够控制发光颜色的半导体器件,以及包括这种器件的平面显示器
    • US5650641A
    • 1997-07-22
    • US522110
    • 1995-08-31
    • Michinari SassaMasayoshi KoikeKatsuhide ManabeNorikatsu KoideHisaki KatoNaoki ShibataMakoto AsaiShinya Asami
    • Michinari SassaMasayoshi KoikeKatsuhide ManabeNorikatsu KoideHisaki KatoNaoki ShibataMakoto AsaiShinya Asami
    • H01L33/02H01L33/32H01L33/00
    • H01L33/325H01L33/025
    • A light-emitting semiconductor device (100) suitable for use in multi-color flat panel displays includes a sapphire substrate (1), an AlN buffer layer (2), a silicon (Si) doped GaN n.sup.+ -layer (3) of high carrier (n-type) concentration, a Si-doped (Al.sub.x2 Ga.sub.1 -x.sub.2).sub.y2 In.sub.1-2 N n.sup.+ -layer (4) of high carrier (n-type) concentration, a zinc (Zn) and Si-doped p-type (Al.sub.x1 Ga.sub.1-x1).sub.y1 In.sub.1-y1 N emission layer (5), and a Mg-doped (Al.sub.x2 Ga.sub.1-x2).sub.y2 In.sub.1-y2 N p-layer (6). The AlN layer (2) has a 500 .ANG. thickness. The GaN n.sup.+ -layer (3) is about a 2.0 .mu.m thick and has a 2.times.10.sup.18 /cm.sup.3 electron concentration. The n.sup.+ -layer (4) is about a 2.0 .mu.m in thickness and has a 2.times.10.sup.18 /cm.sup.3 electron concentration. The emission layer (5) is about 0.5 .mu.m thick. The p-layer 6 is about 1.0 .mu.m thick and has a 2.times.10.sup.17 /cm.sup.3 hole concentration. Nickel electrodes (7, 8) are connected to the p-layer (6) and n.sup.+ -layer (4), respectively. A groove (9) electrically insulates the electrodes (7, 8). Green light emission is obtained by this constitution. Further, only doping Zn of 5.times.10.sup.19 /cm.sup.3 into the emission layer (5) enables red light emission.
    • 适用于多色平板显示器的发光半导体器件(100)包括蓝宝石衬底(1),AlN缓冲层(2),掺杂硅(Si)的GaN n +层(3) 载流子(n型)浓度,高载流子(n型)浓度的Si掺杂(Alx2Ga1-x2)y2In1-2Nn +层(4),锌(Zn)和掺杂Si的p型(Al x Ga 1 -x1)y1In1-y1N发射层(5)和Mg掺杂(Alx2Ga1-x2)y2In1-y2N p层(6)。 AlN层(2)具有500厚度。 GaN n +层(3)的厚度约为2.0μm,电子浓度为2×10 18 / cm 3。 n +层(4)的厚度约为2.0μm,电子浓度为2×10 18 / cm 3。 发射层(5)厚约0.5μm。 p层6的厚度约为1.0μm,空穴浓度为2×10 17 / cm 3。 镍电极(7,8)分别连接到p层(6)和n +层(4)。 一个凹槽(9)使电极(7,8)电绝缘。 通过这种结构获得绿色发光。 此外,仅向发射层(5)掺杂5×10 19 / cm 3的Zn使得能够发红光。
    • 35. 发明申请
    • OPERATION DEVICE
    • 操作装置
    • US20130293466A1
    • 2013-11-07
    • US13978563
    • 2012-01-13
    • Naoki Shibata
    • Naoki Shibata
    • G06F3/01
    • G06F3/016G06F3/048G06F3/167
    • An operation includes a display screen that displays an operation target that can be operated by an operator; an input device that can perform operational input with respect to a direction of movement of the operation target on the display screen; and a feedback device that implements, in response to the operation target having moved on the display screen in accordance with operational input by the input device, predetermined feedback that can be perceived by the operator without the operator looking directly at the operation target displayed on the display screen. The input device can perform operational input with respect to the movement speed and amount of movement in the direction of movement of the operation target on the display screen.
    • 一种操作包括显示可由操作者操作的操作对象的显示画面; 能够对显示画面上的操作对象的移动方向进行操作输入的输入装置; 以及反馈装置,其响应于根据所述输入装置的操作输入在所述显示屏幕上移动的所述操作对象,可以由操作者感觉到的预定反馈,而不需要操作者直接观察显示在操作对象上的操作对象 显示屏。 输入装置可以对显示画面上的操作对象的移动方向上的移动速度和移动量进行操作输入。
    • 36. 发明授权
    • Optical waveguide for touch panel and touch panel using the same
    • 用于触摸屏的光波导和使用其的触摸面板
    • US08442366B2
    • 2013-05-14
    • US13337385
    • 2011-12-27
    • Naoki Shibata
    • Naoki Shibata
    • G02B6/32G02B6/10G06F3/042
    • G02B6/122G02B6/1221G02B6/32G06F3/0421G06F2203/04103G06F2203/04109
    • Provided are an optical waveguide for a touch panel which has high light-gathering power on a light-emitting side and which may materialize a touch panel having excellent position detection performance, and a touch panel using the optical waveguide. The optical waveguide for a touch panel includes: cores; and an over cladding layer covers the cores, the cores including light-emitting cores each formed as a lens portion having a shape in plan view including a tapered portion whose width gradually increases toward an end surface on the light-emitting side and an elliptical arc portion which bulges outwardly a tip side of the tapered portion having the gradually-increasing width so as to be in a shape of an elliptical arc, the elliptical arc portion having a major axis direction aligned in a longitudinal direction of the tapered portion.
    • 提供一种用于触摸面板的光波导,其在发光侧具有高的聚光能力,并且可以实现具有优异的位置检测性能的触摸面板以及使用该光波导的触摸面板。 用于触摸面板的光波导包括:芯; 并且上敷层覆盖芯,芯包括各自形成为具有俯视形状的透镜部的发光芯,其包括宽度朝向发光侧的端面逐渐增大的锥形部,椭圆弧 所述椭圆弧部分沿所述锥​​形部分的长度方向排列,所述椭圆弧部分沿着所述锥形部分的长度方向排列,所述锥形部分的顶端侧向外凸出具有逐渐增加的宽度的椭圆弧形状。
    • 37. 发明申请
    • INPUT DEVICE
    • 输入设备
    • US20130077918A1
    • 2013-03-28
    • US13613675
    • 2012-09-13
    • Toru MizutaniNaoki Shibata
    • Toru MizutaniNaoki Shibata
    • G02B6/26
    • G06F3/0421G06F3/0428
    • An input device is provided which prevents unwanted light beams leaking through the ending end surface of a light-emitting main core from reaching a light-receiving element. The input device includes an optical waveguide having a rectangular hollow interior, a light-emitting element connected to the starting end of the light-emitting main core, and a light-receiving element connected to the ending ends of light-receiving cores. The light-receiving element is positioned close to the ending end of the light-emitting main core. A void (an air space) is provided between the ending end of the light-emitting main core and the light-receiving element. The air space causes unwanted light beams leaking through the ending end surface of the light-emitting main core to diffuse, thereby preventing the unwanted light beams from reaching the light-receiving element.
    • 提供一种输入装置,其防止通过发光主芯的末端表面泄漏的不必要的光束到达光接收元件。 输入装置包括具有矩形中空内部的光波导,连接到发光主芯的起始端的发光元件和连接到光接收芯的端部的光接收元件。 光接收元件位于靠近发光主芯的末端的位置。 在发光主芯的末端与光接收元件之间设置有空隙(空气空间)。 空气空间引起通过发光主芯的末端表面泄漏的不想要的光束扩散,从而防止不想要的光束到达光接收元件。
    • 38. 发明申请
    • INPUT DEVICE
    • 输入设备
    • US20130048834A1
    • 2013-02-28
    • US13593863
    • 2012-08-24
    • Toru MizutaniNaoki ShibataYusuke ShimizuKei Nakamura
    • Toru MizutaniNaoki ShibataYusuke ShimizuKei Nakamura
    • G01J1/44
    • G06F3/0428
    • The input device includes a frame-shaped optical waveguide having a hollow input-use interior, and a control means provided on the outside of one of the sides of the optical waveguide. The optical waveguide and the control means are provided on a surface of a frame-shaped retainer plate. The control means includes: a light-emitting element connected to ends of light-emitting cores of the optical waveguide; a light-receiving element connected to ends of light-receiving cores of the optical waveguide; and a CPU incorporating a program. Upon sensing a first light-shielded area where light is intercepted by the tip of a pen and a second light-shielded area where light is intercepted by user's hand that holds the pen, the program recognizes the second light-shielded area larger than the first light-shielded area as unnecessary information, based on a difference in light-shielded area.
    • 输入装置包括具有中空输入用内部的框状光波导和设置在光波导的一侧的外侧的控制装置。 光波导和控制装置设置在框状保持板的表面上。 控制装置包括:连接到光波导的发光芯的端部的发光元件; 连接到光波导的光接收芯的端部的光接收元件; 和一个包含程序的CPU。 当感测到由笔的尖端遮挡光的第一遮光区域和用于保持笔的用户手遮光的第二遮光区域时,程序识别出比第一遮光区域大的第一遮光区域 光屏蔽区域作为不必要的信息,基于遮光区域的差异。
    • 39. 发明申请
    • OPTICAL WAVEGUIDE FOR TOUCH PANEL AND TOUCH PANEL USING THE SAME
    • 用于触摸面板和触控面板的光学波纹管
    • US20120177320A1
    • 2012-07-12
    • US13337385
    • 2011-12-27
    • Naoki Shibata
    • Naoki Shibata
    • G02B6/32
    • G02B6/122G02B6/1221G02B6/32G06F3/0421G06F2203/04103G06F2203/04109
    • Provided are an optical waveguide for a touch panel which has high light-gathering power on a light-emitting side and which may materialize a touch panel having excellent position detection performance, and a touch panel using the optical waveguide. The optical waveguide for a touch panel includes: cores; and an over cladding layer covers the cores, the cores including light-emitting cores each formed as a lens portion having a shape in plan view including a tapered portion whose width gradually increases toward an end surface on the light-emitting side and an elliptical arc portion which bulges outwardly a tip side of the tapered portion having the gradually-increasing width so as to be in a shape of an elliptical arc, the elliptical arc portion having a major axis direction aligned in a longitudinal direction of the tapered portion.
    • 提供一种用于触摸面板的光波导,其在发光侧具有高的聚光能力,并且可以实现具有优异的位置检测性能的触摸面板以及使用该光波导的触摸面板。 用于触摸面板的光波导包括:芯; 并且上敷层覆盖芯,芯包括各自形成为具有俯视形状的透镜部的发光芯,其包括宽度朝向发光侧的端面逐渐增大的锥形部,椭圆弧 所述椭圆弧部分沿所述锥​​形部分的长度方向排列,所述椭圆弧部分沿着所述锥形部分的长度方向排列,所述锥形部分的顶端侧向外凸出具有逐渐增加的宽度的椭圆弧形状。
    • 40. 发明申请
    • OPTICAL WAVEGUIDE MODULE FOR TOUCH PANEL AND METHOD OF MANUFACTURING SAME
    • 用于触摸面板的光波导模块及其制造方法
    • US20120051690A1
    • 2012-03-01
    • US13213708
    • 2011-08-19
    • Ryusuke NaitoNaoki Shibata
    • Ryusuke NaitoNaoki Shibata
    • G02B6/122G02B6/13
    • G06F3/0421
    • An optical waveguide module for a touch panel is provided which achieves the reduction in thickness, and a method of manufacturing the same. The optical waveguide module includes an optical waveguide unit for placement along the periphery of a display screen of a display of a touch panel, and a substrate unit coupled to an outer edge portion of the optical waveguide unit so as to be in orthogonal relation to the optical waveguide unit. The substrate unit includes a substrate bent toward the optical waveguide unit, and the bend of the substrate in that state has a distal end serving as a connecting portion to an electrical interconnect line. An over cladding layer includes a slot provided in a surface thereof and extending along the periphery of the display screen of the display. The electrical interconnect line is put in the slot.
    • 提供了实现厚度减小的用于触摸面板的光波导模块及其制造方法。 光波导模块包括用于沿着触摸面板的显示器的显示屏的周边布置的光波导单元,以及耦合到光波导单元的外边缘部分的基板单元,以便与 光波导单元。 基板单元包括朝向光波导单元弯曲的基板,并且在该状态下的基板的弯曲部具有作为与电互连线的连接部的远端。 上敷层包括设置在其表面上并沿着显示器的显示屏的周边延伸的槽。 将电气互连线放入插槽中。