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    • 1. 发明专利
    • Small tooth cleaner with nippable projection
    • 小齿轮清洁器,带有可伸缩的投影
    • JP2011056237A
    • 2011-03-24
    • JP2009234611
    • 2009-09-14
    • Kohei Tanaka耕平 田中
    • TANAKA KOHEI
    • A46B5/00A46B15/00
    • PROBLEM TO BE SOLVED: To provide a small tooth cleaner with nippable projections which includes the nippable projections provided on a handle of the small tooth cleaner so that the small tooth cleaner can be stored together with a tooth brush stand or a cup by attaching the small tooth cleaner to an ordinary toothbrush when the small tooth cleaner is stored, and so that the brush or a floss part is prevented from being in contact with a washstand even when the cleaner is laid on a sink during use.
      SOLUTION: The small tooth cleaner with nippable projections includes the nippable projections (2) on the handle (1) of the small tooth cleaner.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供具有可折叠突起的小齿形清洁器,其包括设置在小齿清洁器的手柄上的可折叠突起,使得小齿清洁器可以与牙刷架或杯子一起存储 当小齿清洁剂被储存时,将小齿清洁剂附着到普通牙刷上,并且即使当使用时清洁器放置在水槽上时也防止刷子或牙线部件与洗手间接触。

      解决方案:具有可折叠突起的小齿清洁器包括小齿清洁器的手柄(1)上的可折叠突起(2)。 版权所有(C)2011,JPO&INPIT

    • 2. 发明授权
    • Display device
    • 显示设备
    • US09001096B2
    • 2015-04-07
    • US13511967
    • 2010-11-30
    • Yasuhiro SugitaKohei TanakaChristopher Brown
    • Yasuhiro SugitaKohei TanakaChristopher Brown
    • G06F3/038G09G5/00H01L27/146G09G3/36
    • H01L27/14609G09G3/3648G09G2320/0233G09G2360/141G09G2360/148
    • Provided is a display device that has excellent accuracy in image capturing by improving linearity of sensitivity characteristics of a photodiode. An optical sensor provided on an active matrix substrate of the display device includes; a photodiode (D1a) for receiving incident light; a reset signal line (RSTa) for supplying a reset signal RST to the optical sensor; a readout signal line (RWSa) for supplying a readout signal RWS to the optical sensor; and a sensor switching element (M1a) for reading out a photoelectric current output from the photodiode (D1a), according to the readout signal, during a period from the supply of the reset signal to the supply of the readout signal. A potential VLS of a light shielding film (LS) provided on a back side of the photodiode (D1a) is caused to be a high level potential during a period that at least partially overlaps a period while the reset signal is supplied.
    • 提供了一种通过提高光电二极管的灵敏度特性的线性度而具有优异的图像捕获精度的显示装置。 提供在显示装置的有源矩阵基板上的光学传感器包括: 用于接收入射光的光电二极管(D1a) 复位信号线(RSTa),用于向光学传感器提供复位信号RST; 读出信号线(RWSa),用于向光学传感器提供读出信号RWS; 以及在从复位信号的供给到读出信号的供给期间,根据读出信号,读出从光电二极管(D1a)输出的光电流的传感器开关元件(M1a)。 设置在光电二极管(D1a)的背面的遮光膜(LS)的电位VLS在复位信号被提供期间至少部分地与周期重叠的时间段内变为高电平电位。
    • 3. 发明授权
    • Display device having a photosensor
    • 具有光电传感器的显示装置
    • US08772699B2
    • 2014-07-08
    • US13254422
    • 2010-01-07
    • Christopher BrownKohei TanakaHiromi Katoh
    • Christopher BrownKohei TanakaHiromi Katoh
    • H03F3/08G06F3/038
    • G06F3/0412G02F1/13338G02F2001/13312G06F3/042G09G3/3648
    • The present invention relates to a display device including a photosensor in a pixel region. The photosensor of the present invention includes a diode (D1) that receives incident light, reset signal wiring (RST) that supplies a reset signal, readout signal wiring (RWS) that supplies a readout signal, a storage node (INT) whose potential changes in accordance with the amount of light received by the photodetection element in a sensing period, the sensing period being from when the reset signal is supplied until when the readout signal is supplied, an amplification element (C1) that amplifies the potential of the storage node in accordance with the readout signal, and a sensor switching element (M2) for reading out the potential amplified by the amplification element to output wiring (OUT) as sensor circuit output.
    • 本发明涉及包括像素区域中的光电传感器的显示装置。 本发明的光传感器包括接收入射光的二极管(D1),提供复位信号的复位信号布线(RST),提供读出信号的读出信号布线(RWS),其电位变化的存储节点(INT) 根据在检测周期中由光检测元件接收的光量,检测周期是从提供复位信号直到提供读出信号时的放大元件(C1)放大存储节点的电位 以及用于读出由放大元件放大的电位以输出布线(OUT)作为传感器电路输出的传感器开关元件(M2)。
    • 5. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20120293475A1
    • 2012-11-22
    • US13511967
    • 2010-11-30
    • Yasuhiro SugitaKohei TanakaChristopher Brown
    • Yasuhiro SugitaKohei TanakaChristopher Brown
    • G09G5/00
    • H01L27/14609G09G3/3648G09G2320/0233G09G2360/141G09G2360/148
    • Provided is a display device that has excellent accuracy in image capturing by improving linearity of sensitivity characteristics of a photodiode. An optical sensor provided on an active matrix substrate of the display device includes; a photodiode (D1a) for receiving incident light; a reset signal line (RSTa) for supplying a reset signal RST to the optical sensor; a readout signal line (RWSa) for supplying a readout signal RWS to the optical sensor; and a sensor switching element (M1a) for reading out a photoelectric current output from the photodiode (D1a), according to the readout signal, during a period from the supply of the reset signal to the supply of the readout signal. A potential VLS of a light shielding film (LS) provided on a back side of the photodiode (D1a) is caused to be a high level potential during a period that at least partially overlaps a period while the reset signal is supplied.
    • 提供了一种通过提高光电二极管的灵敏度特性的线性度而具有优异的图像捕获精度的显示装置。 提供在显示装置的有源矩阵基板上的光学传感器包括: 用于接收入射光的光电二极管(D1a) 复位信号线(RSTa),用于向光学传感器提供复位信号RST; 读出信号线(RWSa),用于向光学传感器提供读出信号RWS; 以及在从复位信号的供给到读出信号的供给期间,根据读出信号,读出从光电二极管(D1a)输出的光电流的传感器开关元件(M1a)。 设置在光电二极管(D1a)的背面的遮光膜(LS)的电位VLS在复位信号被提供期间至少部分地与周期重叠的时间段内变为高电平电位。
    • 8. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20110102393A1
    • 2011-05-05
    • US13001473
    • 2009-04-16
    • Kohei TanakaChristopher Brown
    • Kohei TanakaChristopher Brown
    • G02F1/133F21V21/00G02F1/13357G09G5/00
    • H01L31/02164G06F3/0412G06F3/042H01L31/105
    • A display device includes a photosensor in a pixel region of an active matrix substrate. The photosensor includes a photodiode (D1) that receives incident light, a photodiode (D2) as a reference element connected in series to the photodiode (D1) and having a light shielding layer that blocks incident light, a capacitor (CINT), one electrode of which is connected to a connection point between the photodiodes (D1, D2), that accumulates output current from the photodiodes (D1, D2), reset signal wiring (RST) that supplies a reset signal to the photosensor, readout signal wiring (RWS) that supplies a readout signal to the photosensor, and a thin film transistor (M2) having a control electrode connected to a connection point between the photodiodes (D1, D2).
    • 显示装置包括在有源矩阵基板的像素区域中的光电传感器。 光传感器包括接收入射光的光电二极管(D1),作为与光电二极管(D1)串联连接并具有阻挡入射光的遮光层的参考元件的光电二极管(D2),电容器(CINT),一个电极 连接到从光电二极管(D1,D2)累积输出电流的光电二极管(D1,D2)之间的连接点,向光电传感器提供复位信号的复位信号布线(RST),读出信号布线(RWS ),其向光传感器提供读出信号,以及具有连接到光电二极管(D1,D2)之间的连接点的控制电极的薄膜晶体管(M2)。
    • 9. 发明授权
    • Ion beam measuring method and ion implanting apparatus
    • 离子束测量方法和离子注入装置
    • US07655929B2
    • 2010-02-02
    • US11583830
    • 2006-10-20
    • Sei UmisedoNariaki HamamotoTadashi IkejiriKohei Tanaka
    • Sei UmisedoNariaki HamamotoTadashi IkejiriKohei Tanaka
    • G21K5/10H01J37/08
    • H01J37/3171H01J37/244H01J37/304H01J2237/24405H01J2237/24507H01J2237/24535H01J2237/24564H01J2237/24578H01J2237/3045H01J2237/30483H01J2237/31703
    • A change of a beam current of an ion beam which passes an outside of the side of a forestage beam restricting shutter, and which is incident on a forestage multipoints Faraday is measured while the forestage beam restricting shutter is driven in a y direction by a forestage shutter driving apparatus in order to obtain a beam current density distribution in the y direction of the ion beam at a position of the forestage beam restricting shutter. A change of a beam current of the ion beam which passes an outside of the side of a poststage beam restricting shutter, and which is incident on a poststage multipoints Faraday is measured while the poststage beam restricting shutter is driven in the y direction by a poststage shutter driving apparatus in order to obtain a beam current density distribution in the y direction of the ion beam at a position of the poststage beam restricting shutter. By using these results, an angle deviation, a diverging angle, and/or a beam size in the y direction of the ion beam can be obtained.
    • 测量通过森林梁限制快门侧的外侧并入射在森林多点法拉第的离子束的射束电流的变化,同时森林光束限制快门通过森林遮挡板在ay方向上驱动 驱动装置,以便在森林光束限制快门的位置处获得离子束的y方向上的束电流密度分布。 在后级光束限制快门通过后台沿y方向驱动时,测量通过舞台前限制快门侧的外侧并且入射到后台多点法拉第的离子束的束电流的变化 快门驱动装置,以便在后级束限制快门的位置处获得离子束的y方向上的束电流密度分布。 通过使用这些结果,可以获得离子束的y方向上的角度偏差,发散角度和/或光束尺寸。