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    • 33. 发明授权
    • Wafer handling method and ion implanter
    • 晶圆处理方法和离子注入机
    • US08519363B2
    • 2013-08-27
    • US12938856
    • 2010-11-03
    • Kohei TanakaTakashi NogamiMasayoshi Hino
    • Kohei TanakaTakashi NogamiMasayoshi Hino
    • H01J37/22H01J37/20H01J37/317
    • H01J37/3171H01J37/20H01J2237/204H01J2237/2482H01L21/67259H01L21/681H01L21/68742
    • An ion implanter performs ion implantation by irradiating a wafer having a notch at its outer peripheral region by an ion beam. In ion implanter, a twist angle adjustment mechanism is configured to adjust a twist angle, an aligner is configured to adjust an alignment angle, a wafer transfer device is configured to transfer the wafer between the aligner and the twist angle adjustment mechanism, an image processing device is configured to detect the twist angle of the wafer on the twist angle adjustment mechanism, and a control device is configured to carry out a twist control in which the wafer is rotated by the twist angle adjustment mechanism by an angle obtained from a first difference between the detected twist angle and the alignment angle and a second difference between the alignment angle and a target twist angle given as one of ion implantation conditions.
    • 离子注入机通过离子束在其外周区域照射具有凹口的晶片来进行离子注入。 在离子注入机中,扭转角度调节机构被配置为调节扭曲角度,对准器被配置为调整对准角度,晶片传送装置构造成在对准器和扭转角调节机构之间传送晶片,图像处理 装置被配置为检测扭转角度调节机构上的晶片的扭曲角度,并且控制装置被配置为执行扭转控制,其中晶片由扭转角调节机构旋转角度从第一差异 在检测到的扭转角和对准角之间,以及作为离子注入条件之一给出的对准角和目标扭转角之间的第二差。
    • 34. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20130120331A1
    • 2013-05-16
    • US13810773
    • 2011-07-26
    • Kaoru YamamotoYasuhiro SugitaKohei Tanaka
    • Kaoru YamamotoYasuhiro SugitaKohei Tanaka
    • G06F3/03
    • G06F3/0304G06F3/0412G06F3/0416G06F3/042G09G3/3406G09G2310/0237G09G2360/145
    • A sensor pixel circuit (9) includes: a light receiving element (PD); a first node Vsig that retains charges corresponding to an amount of light incident on the light receiving element; and a second node Vint that receives charges from the first nodeVsig and retains the charges. Under control by a driving circuit (7), during one of a detection period while a light source (3) for sensors is in an ON state and a detection period while the light source (3) for sensors is in an OFF state, charges corresponding to an amount of light incident on the light receiving element (PD) during this detection period are accumulated in the first node Vsig. The charges accumulated are transferred from the first node Vsig to the second node Vint. During the other one of the detection period while the light source for sensors is in the ON state and the detection period while the light source for sensors is in the OFF state, charges corresponding to an amount of light incident on the light receiving element (PD) during this detection period are accumulated in the first node Vsig, and the charges accumulated are transferred from the first node Vsig to the second node Vint. By doing so, a value of a difference between the amount of light accumulated while the light source for sensors is in the ON state and the amount of light accumulated while the light source for sensors is in the OFF state is determined in the second node Vint.
    • 传感器像素电路(9)包括:光接收元件(PD); 保持对应于入射在光接收元件上的光量的电荷的第一节点Vsig; 以及从第一节点Vsig接收电荷并保持电荷的第二节点Vint。 在驱动电路(7)的控制下,在用于传感器的光源(3)处于接通状态的检测期间和传感器的光源(3)处于关闭状态的检测期间的一个中, 对应于在该检测期间入射到受光元件(PD)上的光量在第一节点Vsig中被累积。 累积的电荷从第一节点Vsig传送到第二节点Vint。 在传感器的光源处于接通状态的检测期间的另一个中,以及传感器的光源处于截止状态的检测期间,对应于入射到受光元件(PD)上的光量 )累积在第一节点Vsig中,并且积累的电荷从第一节点Vsig传送到第二节点Vint。 通过这样做,在第二节点Vint中确定在传感器的光源处于ON状态时累积的光量与传感器的光源之间的累积光量处于OFF状态之间的差值 。
    • 36. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20100033665A1
    • 2010-02-11
    • US12518818
    • 2007-12-11
    • Kohei TanakaKeisuke YoshidaMutsumi Nakajima
    • Kohei TanakaKeisuke YoshidaMutsumi Nakajima
    • G02F1/1343
    • G02F1/1362G02F2001/13606
    • There is provided a liquid crystal display device that can suppress a reduction in picture quality of a display image that is caused when one of adjacent pixels is affected by a fluctuation in electric potential of the other pixel. A liquid crystal display device including an array substrate that includes pixel electrodes and a plurality of TFTs that drive the pixel electrodes is used. Each of the TFTs is arranged in a region directly below one of the pixel electrodes that is different from and adjacent to the pixel electrode to be driven thereby. Further, the TFT includes a silicon film provided with a diffusion layer, as well as a gate electrode provided on the silicon film via an insulating film. The silicon film is formed so as to range from a region directly below the pixel electrode to be driven by the TFT to the region directly below the pixel electrode. Further, a portion of the silicon film that is in the region directly below the pixel electrode to be driven by the TFT is connected electrically to the pixel electrode to be driven by the TFT.
    • 提供了一种液晶显示装置,其可以抑制当相邻像素中的一个像素受另一像素的电位波动影响时所引起的显示图像的图像质量的降低。 使用包括具有像素电极的阵列基板和驱动像素电极的多个TFT的液晶显示装置。 每个TFT布置在与被驱动的像素电极不同并且相邻的像素电极之下的区域的正下方。 此外,TFT包括设置有扩散层的硅膜,以及经由绝缘膜设置在硅膜上的栅电极。 硅膜形成为从像素电极正下方的区域到由TFT驱动到像素电极正下方的区域。 此外,在由TFT驱动的像素电极正下方的区域中的硅膜的一部分电连接到由TFT驱动的像素电极。
    • 37. 发明授权
    • Touch-sensor-equipped display device comrpising photodetecting elements
    • 配有触摸传感器的显示设备兼容光电元件
    • US09069412B2
    • 2015-06-30
    • US13697876
    • 2011-05-19
    • Kohei TanakaYasuhiro SugitaKazuhiro MaedaHiroaki Sugiyama
    • Kohei TanakaYasuhiro SugitaKazuhiro MaedaHiroaki Sugiyama
    • G06F3/038G06F3/042G06F3/041G09G3/34
    • G06F3/042G06F3/0412G09G3/3406G09G2360/145
    • Provided is a display device having a photodetecting element in a pixel, and having an input function that is not dependent on light environments. This is a display device having an optical sensor in a pixel region. The optical sensor includes a first sensor pixel circuit that outputs a sensor signal corresponding to electric charges accumulated during an accumulation period in an ON time of a light source for the sensor; and a second sensor pixel circuit that that outputs a sensor signal corresponding to electric charges accumulated during an accumulation period in an OFF time of the light source. A sensor driving circuit for driving the first sensor pixie circuit and the second sensor pixel circuit supplies reset signals (RST1, RST2) to the first sensor pixel circuit and the second sensor pixel circuit, respectively, during vertical flyback periods in pixel display in the pixel region.
    • 提供了一种在像素中具有受光元件并具有不依赖于光环境的输入功能的显示装置。 这是在像素区域中具有光学传感器的显示装置。 光传感器包括第一传感器像素电路,其输出对应于在传感器的光源的接通时间期间在累积周期期间累积的电荷的传感器信号; 以及第二传感器像素电路,其输出与在光源的OFF时间期间的累积期间累积的电荷对应的传感器信号。 用于驱动第一传感器像素电路和第二传感器像素电路的传感器驱动电路在像素的像素显示期间的垂直回扫期间分别向第一传感器像素电路和第二传感器像素电路提供复位信号(RST1,RST2) 地区。
    • 38. 发明申请
    • DISPLAY DEVICE AND DRIVE METHOD FOR SAME
    • 显示装置和驱动方法
    • US20130113768A1
    • 2013-05-09
    • US13810823
    • 2011-07-26
    • Kaoru YamamotoYasuhiro SugitaKohei Tanaka
    • Kaoru YamamotoYasuhiro SugitaKohei Tanaka
    • G09G5/00
    • G09G5/003G02F1/13338G02F2001/13312G06F3/0412G06F3/0416G06F3/042
    • Disclosed is a display device having an optical sensor with increased sensitivity. The display device is provided with: a display panel that includes a plurality of display pixel circuits (8) and a plurality of sensor pixel circuits (9a) in a display region (4); and a driver circuit (7) that supplies a driving signal to the sensor pixel circuits (9a). The sensor pixel circuits (9a) are each provided with: a light receiving element (PD1); a storage node (INT) that retains electrical charges corresponding to the light amount that entered the light receiving element (PD1); and a read-out switching element (M1) connected to the storage node (INT). The display device is further provided with a first switching element (T1) that is connected between the light receiving element (PD1) and the storage node (INT) and that operates in a saturation region, and a second switching element (T2) that resets the storage node (INT).
    • 公开了具有灵敏度增加的光学传感器的显示装置。 显示装置具有:在显示区域(4)中包括多个显示像素电路(8)和多个传感器像素电路(9a)的显示面板; 以及将驱动信号提供给传感器像素电路(9a)的驱动电路(7)。 传感器像素电路(9a)各自设置有:光接收元件(PD1); 存储节点(INT),其保持与进入所述光接收元件(PD1)的光量相对应的电荷; 以及连接到存储节点(INT)的读出开关元件(M1)。 显示装置还具备连接在光接收元件(PD1)和存储节点(INT)之间并在饱和区域中工作的第一开关元件(T1)和复位的第二开关元件(T2) 存储节点(INT)。
    • 40. 发明申请
    • TOUCH-SENSOR-EQUIPPED DISPLAY DEVICE
    • 触摸传感器显示设备
    • US20130057528A1
    • 2013-03-07
    • US13697876
    • 2011-05-19
    • Kohei TanakaYasuhiro SugitaKazuhiro MaedaHiroaki Sugiyama
    • Kohei TanakaYasuhiro SugitaKazuhiro MaedaHiroaki Sugiyama
    • G06F3/038
    • G06F3/042G06F3/0412G09G3/3406G09G2360/145
    • Provided is a display device having a photodetecting element in a pixel, and having an input function that is not dependent on light environments. This is a display device having an optical sensor in a pixel region. The optical sensor includes a first sensor pixel circuit that outputs a sensor signal corresponding to electric charges accumulated during an accumulation period in an ON time of a light source for the sensor; and a second sensor pixel circuit that that outputs a sensor signal corresponding to electric charges accumulated during an accumulation period in an OFF time of the light source. A sensor driving circuit for driving the first sensor pixie circuit and the second sensor pixel circuit supplies reset signals (RST1, RST2) to the first sensor pixel circuit and the second sensor pixel circuit, respectively, during vertical flyback periods in pixel display in the pixel region.
    • 提供了一种在像素中具有受光元件并具有不依赖于光环境的输入功能的显示装置。 这是在像素区域中具有光学传感器的显示装置。 光传感器包括第一传感器像素电路,其输出对应于在传感器的光源的接通时间期间在累积周期期间累积的电荷的传感器信号; 以及第二传感器像素电路,其输出与在光源的OFF时间期间的累积期间累积的电荷对应的传感器信号。 用于驱动第一传感器像素电路和第二传感器像素电路的传感器驱动电路在像素的像素显示期间的垂直回扫期间分别向第一传感器像素电路和第二传感器像素电路提供复位信号(RST1,RST2) 地区。