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    • 7. 发明申请
    • IMAGE DISPLAY APPARATUS AND METHOD
    • 图像显示装置和方法
    • US20120062584A1
    • 2012-03-15
    • US13321012
    • 2010-05-20
    • Norimasa FurukawaIchiro Murakami
    • Norimasa FurukawaIchiro Murakami
    • G09G5/02
    • G09G3/2007G09G2310/0235G09G2320/0242G09G2320/0261H04N5/144H04N5/57H04N9/3111H04N9/3179H04N9/646H04N21/4318H04N21/44218
    • An image display apparatus and an image display method capable of suppressing the color breakup occurring during eye tracking of a picture with motion in a field-sequential display are provided. A display section (a display panel 2 and a backlight 3) time-divisionally displays, in a manner of the field-sequential display, field images of plural colors in a display sequence controlled by a display sequence control section 12. The display sequence of the field images of plural colors is controlled to allow a composite luminance distribution perceived by a viewer on his retina to have a predetermined profile, the composite luminance distribution being created based on a group of field images which configures a frame or two frames in successive time sequence in a picture with motion displayed on the display section, the predetermined profile having highest luminance in a mid-range thereof and having luminance getting lower toward a periphery thereof to spread with bilateral-symmetry.
    • 提供一种图像显示装置和图像显示方法,其能够在场顺序显示中抑制在具有运动的图像的眼睛跟踪期间发生的颜色分解。 显示部分(显示面板2和背光源3)以场顺序显示的方式分时显示由显示序列控制部分12控制的显示序列中的多种颜色的场图像。显示顺序 控制多种颜色的场图像以允许观察者在其视网膜上感知到的复合亮度分布具有预定的轮廓,该复合亮度分布是基于连续地配置帧或两帧的一组场图像而创建的 在显示部分上显示具有动作的图像中的序列,预定轮廓在其中间范围具有最高亮度并且具有朝向其周边的亮度越来越低以双向对称地扩展。
    • 9. 发明授权
    • Method for driving solid-state imaging device
    • 驱动固态成像装置的方法
    • US6140147A
    • 2000-10-31
    • US361976
    • 1999-07-28
    • Ichiro MurakamiYasutaka Nakashiba
    • Ichiro MurakamiYasutaka Nakashiba
    • H01L21/339H01L27/148H01L29/762H04N5/335H04N5/341H04N5/353H04N5/355H04N5/359H04N5/369H04N5/372H04N5/376
    • H01L27/14887H01L27/14806
    • A method for driving a solid-state imaging device such as a CCD (Charge Coupled Device) which facilitates control of a blooming suppressing voltage and can reduce a voltage required for shuttering. The solid-state imaging device to be driven typically comprises a first one-conductive type region, a second one-conductive type region having a one-conductive type impurity concentration lower than that of the first one-conductive type region and provided on the first one-conductive type region in contact with the first one-conductive type region, an opposite-conductive type region in contact with the second one-conductive type region, and a one-conductive type layer forming a p-n junction together with the opposite-conductive type region and constituting a photodiode portion together with the opposite-conductive type region. When the solid-state imaging device is driven, a blooming suppressing voltage of a reverse bias is applied between the opposite-conductive type region and the first one-conductive type region so as to form a depletion layer edge within the second one-conductive type region.
    • 用于驱动诸如CCD(电荷耦合器件)的固态成像装置的方法,其有助于控制起霜抑制电压并且可以降低快门所需的电压。 要驱动的固态成像装置通常包括第一导电类型区域,具有低于第一导电类型区域的导电类型杂质浓度的第一导电类型区域,并且设置在第一导电类型区域上 与第一单导电型区域接触的一导电型区域,与第二导电型区域接触的相反导电型区域,以及与导电型导电型区域形成pn结的一导电型层 并且与相对导电型区域一起构成光电二极管部分。 当驱动固态成像装置时,在相对导电型区域和第一导电型区域之间施加反向偏压的起霜抑制电压,以便在第二单导电类型内形成耗尽层边缘 地区。