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    • 82. 发明授权
    • Method and apparatus for controlling a focus lens
    • 用于控制聚焦透镜的方法和装置
    • US08237845B2
    • 2012-08-07
    • US12468187
    • 2009-05-19
    • Sung-shik KohKazuhiko Sugimoto
    • Sung-shik KohKazuhiko Sugimoto
    • G03B13/00H04N5/232
    • G03B13/32G02B7/28
    • Provided are a method of controlling a focus lens to be moved to a target location by generating a normalized focus graph by use of relative values of a plurality of focus values obtained by using a plurality of filters each having different cut-off frequencies, and predicting a target position of the focus lens according to the normalized focus graph, an apparatus operating by using the method, and a recording medium for recording the method. According to the present invention, in terms of performing an auto-focusing function, by optimizing the motion line of the focus lens, wasteful power consumption can be prevented and a scanning time of the focus lens can be shortened.
    • 提供了一种通过使用通过使用具有不同截止频率的多个滤波器获得的多个焦点值的相对值生成归一化焦点图来控制要移动到目标位置的聚焦透镜的方法,并且预测 根据归一化聚焦图的聚焦透镜的目标位置,使用该方法操作的设备以及用于记录该方法的记录介质。 根据本发明,在进行自动聚焦功能方面,通过优化聚焦透镜的运动线,可以防止浪费的功率消耗,并且能够缩短聚焦透镜的扫描时间。
    • 84. 发明申请
    • PLASMA DISPLAY DEVICE
    • 等离子体显示设备
    • US20110241534A1
    • 2011-10-06
    • US13056271
    • 2010-07-14
    • Shozo OshioKazuhiko SugimotoNobumitsu AibaraYoshihisa NagasakiYukihiko SugioMasaaki Akamatsu
    • Shozo OshioKazuhiko SugimotoNobumitsu AibaraYoshihisa NagasakiYukihiko SugioMasaaki Akamatsu
    • H01J17/49H01J1/63
    • C09K11/7774C09K11/595C09K11/7737G09G3/003G09G3/288H01J11/12H01J11/44H01J2211/44
    • The present invention provides a plasma display device that has light emission properties with short persistence where green light has a persistence time of 3.5 msec or less, that is excellent in luminance, luminance degradation resistance, and color tone, and that is suitable for, for example, a stereoscopic image display device. The present invention provides a plasma display device including a plasma display panel in which a pair of substrates at least whose front side is transparent are disposed to oppose each other so as to form a discharge space between the substrates, barrier ribs for dividing the discharge space into a plurality of discharge spaces are disposed on at least one substrate, electrode groups are disposed on the substrates so as to produce discharge in the discharge spaces divided with the barrier ribs, and a green phosphor layer that emits light by the discharge is provided, wherein the green phosphor layer includes a mixed phosphor containing a short persistence Mn2+-activated green phosphor with a 1/10 persistence time of more than 2 msec but less than 5 msec and either a Ce3+-activated green phosphor or an Eu2+-activated green phosphor that has a light emission peak in a wavelength range of not less than 490 nm and less than 560 nm.
    • 本发明提供一种具有短持续时间的发光特性的等离子体显示装置,其中绿光的持续时间为3.5msec以下,亮度,亮度劣化电阻和色调优异,适用于 例如,立体图像显示装置。 本发明提供一种等离子体显示装置,其包括等离子体显示面板,其中至少其前侧是透明的一对基板彼此相对设置,以便在基板之间形成放电空间,隔离肋用于分隔放电空间 在至少一个基板上设置多个放电空间,电极组设置在基板上,以在与隔壁分隔的放电空间中产生放电,并且提供通过放电发光的绿色荧光体层, 其中,所述绿色荧光体层包含含有持续时间短于2毫秒但小于5毫秒的1/10持续时间的短持续性Mn2 +活化绿色荧光体的混合荧光体,以及Ce 3+活化的绿色荧光体或Eu 2+激活的绿色荧光体 其波长范围不小于490nm且小于560nm具有发光峰。
    • 85. 发明申请
    • Electronic camera and focus control method
    • 电子摄像头和对焦控制方式
    • US20100253831A1
    • 2010-10-07
    • US12800217
    • 2010-05-11
    • Kenichi KikuchiKazuhiko Sugimoto
    • Kenichi KikuchiKazuhiko Sugimoto
    • H04N5/232
    • H04N5/23212G02B7/365G02B7/38G03B13/36
    • An electronic camera includes a shutter button. When the shutter button is half-depressed, a focal level of an object is determined on the basis of an image signal outputted from an imaging device, and a moving start position of a focus lens is settled on the basis of the determination result. More specifically, a correction amount of the moving start position is settled in accordance with the determination result of the focal level, and a position that subtracts the correction amount from a lens position at a time the shutter button being half-depressed is settled as the moving start position. The higher the focal level, the more reduced the correction amount. The focus lens gradually moves toward the imaging device from the settled moving start position, and a focal position is specified on the basis of the image signal outputted from the imaging device at each step.
    • 电子照相机包括快门按钮。 当快门按钮被半按下时,基于从成像装置输出的图像信号确定对象的焦点级别,并且基于确定结果来确定聚焦透镜的移动开始位置。 更具体地,根据焦点级别的确定结果确定移动开始位置的校正量,并且将半按下的快门按钮的透镜位置的校正量减去的位置作为 移动开始位置。 焦点水平越高,校正量越少。 聚焦透镜从稳定的移动开始位置逐渐朝向成像装置移动,并且基于在每个步骤从成像装置输出的图像信号来指定焦点位置。
    • 87. 发明授权
    • Electronic camera and focus control method which minimizes the time required for adjusting a focus
    • 电子照相机和聚焦控制方法,可最大限度地减少调整焦点所需的时间
    • US07733410B2
    • 2010-06-08
    • US10333701
    • 2001-07-26
    • Kenichi KikuchiKazuhiko Sugimoto
    • Kenichi KikuchiKazuhiko Sugimoto
    • G03B13/00
    • H04N5/23212G02B7/365G02B7/38G03B13/36
    • An electronic camera includes a shutter button. When the shutter button is half-depressed, a focal level of an object is determined on the basis of an image signal outputted from an imaging device, and a moving start position of a focus lens is settled on the basis of the determination result. More specifically, a correction amount of the moving start position is settled in accordance with the determination result of the focal level, and a position that subtracts the correction amount from a lens position at a time the shutter button being half-depressed is settled as the moving start position. The higher the focal level, the more reduced the correction amount. The focus lens gradually moves toward the imaging device from the settled moving start position, and a focal position is specified on the basis of the image signal outputted from the imaging device at each step.
    • 电子照相机包括快门按钮。 当快门按钮被半按下时,基于从成像装置输出的图像信号确定对象的焦点级别,并且基于确定结果来确定聚焦透镜的移动开始位置。 更具体地,根据焦点级别的确定结果确定移动开始位置的校正量,并且将半按下的快门按钮的透镜位置的校正量减去的位置作为 移动开始位置。 焦点水平越高,校正量越少。 聚焦透镜从稳定的移动开始位置逐渐朝向成像装置移动,并且基于在每个步骤从成像装置输出的图像信号来指定焦点位置。