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    • 2. 发明授权
    • Input/output protection circuit and semiconductor device having the same
    • 输入/输出保护电路和具有相同的半导体器件
    • US5650652A
    • 1997-07-22
    • US687832
    • 1996-07-26
    • Toru MizutaniOsamu KobayashiKunihiko Gotoh
    • Toru MizutaniOsamu KobayashiKunihiko Gotoh
    • H03F1/52H01L23/62
    • H03F1/523
    • A protection circuit includes a first protection circuit, which is coupled between a signal output terminal of an internal circuit and an external connection terminal and which prevents an abnormal voltage applied to the external connection terminal from being input to the signal output terminal. The protection circuit also includes a second protection circuit, which is coupled between a signal input terminal of the internal circuit and the external connection terminal and which prevents the abnormal voltage applied to the external connection terminal from being input to the signal input terminal. The signal input terminal is operatively coupled to the signal output terminal via the first and second protection circuit and has an impedance higher than that of the signal output terminal.
    • 保护电路包括耦合在内部电路的信号输出端子和外部连接端子之间并且防止施加到外部连接端子的异常电压被输入到信号输出端子的第一保护电路。 保护电路还包括第二保护电路,其耦合在内部电路的信号输入端子和外部连接端子之间,并且防止施加到外部连接端子的异常电压被输入到信号输入端子。 信号输入端子经由第一和第二保护电路可操作地耦合到信号输出端子,并且具有高于信号输出端子的阻抗。
    • 3. 发明申请
    • OPTICAL TOUCH PANEL
    • 光触控面板
    • US20120044212A1
    • 2012-02-23
    • US13207061
    • 2011-08-10
    • Toru Mizutani
    • Toru Mizutani
    • G06F3/042
    • G06F3/0421
    • Light emitting optical waveguide cores are provided in one of opposite side portions located on opposite sides of a detection area, and light receiving optical waveguide cores are provided in the other side portion. Light beams are emitted from distal ends of the light emitting cores disposed along an inner edge of the one side portion, and received on distal ends of the light receiving cores disposed along an inner edge of the other side portion, whereby an optical lattice is defined on the detection area for detection of a touch position. The detection area includes a higher resolution detection portion defined by arranging distal ends of at least some of the light receiving cores at a pitch that is smaller than the pitch of distal ends of the other light receiving cores.
    • 发光光波导芯设置在位于检测区域的相对侧的相对侧部分中的一个中,并且在另一侧部分设置光接收光波导芯。 光束从沿着一个侧部的内边缘设置的发光核心的远端发射,并且被容纳在沿着另一侧部的内边缘设置的光接收芯的末端,由此限定光栅 在用于检测触摸位置的检测区域上。 检测区域包括通过以比其他光接收芯的远端的间距小的间距布置至少一些光接收芯的远端限定的较高分辨率检测部分。
    • 4. 发明授权
    • Non-aqueous electrolytic battery and its manufacturing method
    • 非水电解电池及其制造方法
    • US07132194B2
    • 2006-11-07
    • US10381952
    • 2002-08-06
    • Toru Mizutani
    • Toru Mizutani
    • H01M6/10H01M6/12H01M10/00H01M6/14
    • H01M10/0587H01M2/021H01M2/0212H01M2/263H01M6/16H01M10/0431H01M10/052Y10T29/49108Y10T29/49112
    • A nonaqueous electrolyte battery with a higher energy density in which a useless part which has no contribution to the electromotive is reduced, and a method for manufacturing the same are provided. A positive electrode laminate (5) (a positive electrode) having a positive active material layer (2) is located in a first area which extends from an approximate center part (7) to one end on one of both sides of a separator 1, and a negative electrode laminate (6) (a negative electrode) having a negative active material layer (3) is located in a second area which extends from the approximate center part (7) to the other end on the other side which is opposite to the side having the first area of the separator (1). The separator (1) having the positive electrode laminate (5) and the negative electrode laminate (6) thereon is wound around the approximate center part (7) to constitute a wound electrode (4).
    • 提供了一种具有较高能量密度的非水电解质电池,其中对电动势没有贡献的无用部分被减少,并且提供了其制造方法。 具有正极活性物质层(2)的正极层叠体(5)(正极)位于从隔板1的两侧的大致中央部(7)延伸至一端的第一区域, 具有负极活性物质层(3)的负极层叠体(6)(负极)位于从大致中央部(7)延伸到与另一侧相反的另一端的第二区域 该侧面具有分离器(1)的第一区域。 将具有正极层叠体(5)和负极层叠体(6)的隔板(1)卷绕在大致中央部(7)上,构成卷绕电极(4)。
    • 7. 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。
    • 8. 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。
    • 9. 发明申请
    • SMALL-SIZED INPUT DEVICE
    • 小尺寸输入装置
    • US20120306818A1
    • 2012-12-06
    • US13465165
    • 2012-05-07
    • Toru MizutaniYusuke Shimizu
    • Toru MizutaniYusuke Shimizu
    • G06F3/042
    • G06F3/0421
    • A small-sized input device is provided which includes: a rectangular frame-shaped optical waveguide having a rectangular hollow input-use interior that is not more than 10 cm in length and not more than 10 cm in width; 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 the front surface of a rectangular frame-shaped retainer plate having the hollow input-use interior, and are covered with a rectangular frame-shaped protective 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 an optical sensor for recognizing the amount (or distance) of movement of the small-sized input device.
    • 提供了一种小尺寸输入装置,其包括:矩形框状的光波导,其具有长度不大于10cm,宽度不大于10cm的矩形中空输入用内部; 以及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具有中空输入用内部的矩形框状保持板的前表面上,并被矩形框状保护板覆盖。 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; 以及用于识别小尺寸输入装置的移动量(或距离)的光学传感器。