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    • 1. 发明授权
    • Optical transmission hinge apparatus
    • 光传输铰链装置
    • US07933477B2
    • 2011-04-26
    • US12400179
    • 2009-03-09
    • Yasuhiro ShigenoHiroshi NakagawaTakeshi IsodaKosuke Sasada
    • Yasuhiro ShigenoHiroshi NakagawaTakeshi IsodaKosuke Sasada
    • G05B6/26G05B6/42H04M1/00
    • G02B6/3604G02B6/42
    • An optical transmission hinge apparatus includes a first hinge portion for pivotally interconnecting a first casing and a second casing about a first axis, a first optical device provided in the first casing, a second optical device provided in the second casing and an optical guide path member for interconnecting the first optical device and the second optical device to enable optical transmission therebetween. The optical guide path member includes a bent portion, a first portion formed on one side of the bent portion and a second portion formed on the other side of the bent portion. The first portion is provided in the first casing to be coaxial with the first hinge portion, with a terminal end of the first portion being in opposition to the first optical device. The second portion is provided in the second casing, with a terminal end of the second portion being in opposition to the second optical device.
    • 光传输铰链装置包括第一铰链部分,用于将第一壳体和第二壳体围绕第一轴线枢转地互连,设置在第一壳体中的第一光学装置,设置在第二壳体中的第二光学装置和光导路径部件 用于互连第一光学装置和第二光学装置以使它们之间能够进行光传输。 光导路构件包括弯曲部分,形成在弯曲部分一侧的第一部分和形成在弯曲部分另一侧上的第二部分。 第一部分设置在第一壳体中以与第一铰链部分同轴,第一部分的终端与第一光学装置相对。 第二部分设置在第二壳体中,第二部分的末端与第二光学装置相对。
    • 2. 发明申请
    • Optical Transmission Hinge Apparatus
    • 光传输铰链装置
    • US20090232459A1
    • 2009-09-17
    • US12400179
    • 2009-03-09
    • Yasuhiro ShigenoHiroshi NakagawaTakeshi IsodaKosuke Sasada
    • Yasuhiro ShigenoHiroshi NakagawaTakeshi IsodaKosuke Sasada
    • G02B6/44
    • G02B6/3604G02B6/42
    • An optical transmission hinge apparatus includes a first hinge portion for pivotally interconnecting a first casing and a second casing about a first axis, a first optical device provided in the first casing, a second optical device provided in the second casing and an optical guide path member for interconnecting the first optical device and the second optical device to enable optical transmission therebetween. The optical guide path member includes a bent portion, a first portion formed on one side of the bent portion and a second portion formed on the other side of the bent portion. The first portion is provided in the first casing to be coaxial with the first hinge portion, with a terminal end of the first portion being in opposition to the first optical device. The second portion is provided in the second casing, with a terminal end of the second portion being in opposition to the second optical device.
    • 光传输铰链装置包括第一铰链部分,用于将第一壳体和第二壳体围绕第一轴线枢转地互连,设置在第一壳体中的第一光学装置,设置在第二壳体中的第二光学装置和光导路径部件 用于互连第一光学装置和第二光学装置以使它们之间能够进行光传输。 光导路构件包括弯曲部分,形成在弯曲部分一侧的第一部分和形成在弯曲部分另一侧上的第二部分。 第一部分设置在第一壳体中以与第一铰链部分同轴,第一部分的终端与第一光学装置相对。 第二部分设置在第二壳体中,第二部分的末端与第二光学装置相对。
    • 5. 发明申请
    • Optical Communication Structure
    • 光通信结构
    • US20110105203A1
    • 2011-05-05
    • US12933928
    • 2009-03-04
    • Hiroshi NakagawaTakeshi IsodaKosuke Sasada
    • Hiroshi NakagawaTakeshi IsodaKosuke Sasada
    • H04M1/00
    • H01L31/12G02B6/002G02B6/0048G02B6/3604G02B6/4298G02B6/43H04B10/1143H04M1/0235
    • An optical communication structure for performing optical communication using optical signals between a first housing (2) and a second housing (3) slidable to each other includes: a first optical communication element (12) which is provided in the first housing (2) and configured to transmit the optical signal; a second optical communication element (13) which is provided in the second housing (3) and configured to receive the optical signal transmitted from the first optical communication element (12); a sliding module configured to allow the sliding movement of the housings and stop the sliding movement at predetermined stop positions set in advance; and a light guide plate (4) which is provided in one of the first housing (2) and the second housing (3) and configured to reflect the optical signal, and has the same number of reflecting portions (5) as the number of the stop positions.
    • 一种用于在可相互滑动的第一壳体和第二壳体(3)之间使用光信号执行光通信的光通信结构包括:第一光通信元件(12),设置在第一壳体(2)和 被配置为发送所述光信号; 第二光通信元件(13),设置在所述第二壳体(3)中并且被配置为接收从所述第一光通信元件(12)发送的光信号; 滑动模块,其构造成允许所述壳体的滑动运动并且在预先设定的预定停止位置处停止所述滑动运动; 以及导光板(4),其设置在所述第一壳体(2)和所述第二壳体(3)中的一个上并且被配置为反射所述光学信号,并且具有与所述光学信号的数量相同数量的反射部(5) 停止位置。
    • 9. 发明申请
    • Touch panel input device
    • 触摸屏输入设备
    • US20080100592A1
    • 2008-05-01
    • US11905793
    • 2007-10-04
    • Yasuhiro ShigenoNaoya TakeharaHiroshi Nakagawa
    • Yasuhiro ShigenoNaoya TakeharaHiroshi Nakagawa
    • G06F3/045
    • G06F3/044
    • A touch panel input device of the invention has a panel, an X-line electrode (first electrodes) arranged on a front surface side of the panel, a Y-line electrode (second electrodes) disposed on the back surface side and shifted in planar position relative to the X-line electrode. The device detects whether or not a finger has touched the vicinity of a zone between the X-line electrode 20 and the Y-line electrode on the front surface of the panel. An electrostatic capacitance of the X-line electrode and an electrostatic capacitance of the Y-line electrode are made equal by way of increasing the area of the Y-line electrode with respect to that of the X-line electrode or by way of selecting an appropriate material and/or thickness of the panel and/or the coat.
    • 本发明的触摸面板输入装置具有面板,布置在面板的前表面侧的X线电极(第一电极),设置在背面侧的Y线电极(第二电极) 相对于X线电极的位置。 该装置检测手指是否已经接触到面板前表面上的X线电极20和Y线电极之间的区域附近。 通过增加Y线电极的面积相对于X线电极的面积,通过选择X线电极的X线电极的静电电容和Y线电极的静电电容相等 面板和/或外套的适当材料和/或厚度。