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    • 1. 发明申请
    • IMAGE PICKUP APPARATUS
    • 图像拾取装置
    • US20100310247A1
    • 2010-12-09
    • US12779366
    • 2010-05-13
    • Yoshihiro OSHIMAShozo MasudaNaoji NadaKazuhito ShimodaYasutoshi KatsudaHideaki InoueYasuro Nakagawa
    • Yoshihiro OSHIMAShozo MasudaNaoji NadaKazuhito ShimodaYasutoshi KatsudaHideaki InoueYasuro Nakagawa
    • G03B13/00
    • G03B13/00
    • An image pickup apparatus includes a light-beam splitting mirror configured to transmit and reflect incident light that has entered the light-beam splitting mirror through a photographing optical system; an image sensor that receives light transmitted through the light-beam splitting mirror; an autofocus detecting unit that receives light reflected by the light-beam splitting mirror; a signal processing unit configured to process an image pickup signal of the image sensor; and a display unit configured to display an image being photographed, on the basis of an image signal obtained at the signal processing unit. In the image pickup apparatus, the light-beam splitting mirror has spectral characteristics including a reflectivity of 25% or more and 35% or less at a wavelength of 400 to 650 nm and a reflectivity of 60% or more at a wavelength of about 700 nm through optimization.
    • 一种图像拾取装置,包括:光束分离镜,被配置为通过拍摄光学系统透射并反射入射到所述光束分离镜的入射光; 接收透过光束分离镜的光的图像传感器; 自动对焦检测单元,其接收由所述光束分离镜反射的光; 信号处理单元,被配置为处理图像传感器的图像拾取信号; 以及显示单元,被配置为基于在信号处理单元处获得的图像信号来显示正在拍摄的图像。 在图像拾取装置中,光束分离镜具有包括波长为400〜650nm的反射率为25%以上且35%以下的光谱特性,波长为700左右的反射率为60%以上 nm通过优化。
    • 2. 发明授权
    • Image pickup apparatus
    • 摄像设备
    • US08313254B2
    • 2012-11-20
    • US12779366
    • 2010-05-13
    • Yoshihiro OshimaShozo MasudaNaoji NadaKazuhito ShimodaYasutoshi KatsudaHideaki InoueYasuro Nakagawa
    • Yoshihiro OshimaShozo MasudaNaoji NadaKazuhito ShimodaYasutoshi KatsudaHideaki InoueYasuro Nakagawa
    • G03B17/00G02B1/10
    • G03B13/00
    • An image pickup apparatus includes a light-beam splitting mirror configured to transmit and reflect incident light that has entered the light-beam splitting mirror through a photographing optical system; an image sensor that receives light transmitted through the light-beam splitting mirror; an autofocus detecting unit that receives light reflected by the light-beam splitting mirror; a signal processing unit configured to process an image pickup signal of the image sensor; and a display unit configured to display an image being photographed, on the basis of an image signal obtained at the signal processing unit. In the image pickup apparatus, the light-beam splitting mirror has spectral characteristics including a reflectivity of 25% or more and 35% or less at a wavelength of 400 to 650 nm and a reflectivity of 60% or more at a wavelength of about 700 nm through optimization.
    • 一种图像拾取装置,包括:光束分离镜,被配置为通过拍摄光学系统透射并反射入射到所述光束分离镜的入射光; 接收透过光束分离镜的光的图像传感器; 自动对焦检测单元,其接收由所述光束分离镜反射的光; 信号处理单元,被配置为处理图像传感器的图像拾取信号; 以及显示单元,被配置为基于在信号处理单元处获得的图像信号来显示正在拍摄的图像。 在图像拾取装置中,光束分离镜具有包括波长为400〜650nm的反射率为25%以上且35%以下的光谱特性,波长为700左右的反射率为60%以上 nm通过优化。
    • 6. 发明申请
    • DISPLAY APPARATUS AND DISPLAY METHOD
    • 显示装置和显示方法
    • US20060214904A1
    • 2006-09-28
    • US11277055
    • 2006-03-21
    • Kazuto KimuraShozo MasudaMasatake Hayashi
    • Kazuto KimuraShozo MasudaMasatake Hayashi
    • G09G3/36
    • G09G3/342G09G3/3426G09G3/3648G09G2320/0233G09G2320/0285G09G2320/0646G09G2320/066G09G2330/021G09G2360/16
    • A display apparatus includes a display unit having a display screen divided into a plurality of regions and controlled using an aperture ratio on a pixel-by-pixel basis, a backlight including a plurality of sets of light sources, each set being disposed so as to correspond to one of the regions, and a control unit for detecting display luminance in each region, computing the emission luminance of each light source on the basis of the detected display luminance while taking into account an effect on the region of the other light sources not corresponding to the region, and computing a correction value for each pixel on the basis of a shift amount between the set emission luminance and an optimal display luminance for one of the regions, and delivering a display driving signal generated on the basis of the correction value to each pixel so as to control the aperture ratio.
    • 显示装置包括显示单元,其具有被分成多个区域的显示屏幕,并且以逐个像素为基础使用开口率进行控制;背光源,包括多组光源,每组设置为: 对应于一个区域,以及控制单元,用于检测每个区域中的显示亮度,基于检测到的显示亮度计算每个光源的发光亮度,同时考虑到对其他光源的区域的影响不是 并且根据所设定的发光亮度和所述区域之一的最佳显示亮度之间的移动量计算每个像素的校正值,以及基于所述校正值生成的显示驱动信号 到每个像素,以便控制孔径比。