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    • 66. 发明授权
    • Image processing apparatus, image processing method, program and electronic apparatus
    • 图像处理装置,图像处理方法,程序和电子装置
    • US09432646B2
    • 2016-08-30
    • US14597753
    • 2015-01-15
    • Sony Corporation
    • Shunji Kawaguchi
    • H04N5/235H04N9/69
    • H04N9/69H04N2209/042
    • According to an embodiment of the present disclosure, there is provided an image processing apparatus including a comparing unit to perform comparison using at least one of a maximum value and an average value of luminance signals of an input image, with a saturation level as a reference of comparison, the saturation level being a level of light accumulation performed for a predetermined time length which is one of a plurality of time lengths for accumulating light in imaging of the input image; a tone curve generator to generate a tone curve to be used for performing compression processing to luminance gradation of the input image, on the basis of a result of the comparison being made; and a luminance gradation compression processor to perform compression processing to luminance gradation of the input image, according to the tone curve being generated.
    • 根据本公开的实施例,提供了一种图像处理装置,包括:比较单元,用于使用饱和电平作为参考,使用输入图像的亮度信号的最大值和平均值中的至少一个进行比较; 作为比较,饱和度水平是作为用于在输入图像的成像中累积光的多个时间长度之一的预定时间长度执行的光累积的水平; 基于进行比较的结果,生成用于对输入图像的亮度灰度进行压缩处理的色调曲线的色调曲线生成器; 以及亮度等级压缩处理器,根据生成的色调曲线对输入图像的亮度灰度进行压缩处理。
    • 69. 发明申请
    • IMAGING DEVICE AND PORTABLE INFORMATION TERMINAL
    • 成像设备和便携式信息终端
    • US20150324992A1
    • 2015-11-12
    • US14726052
    • 2015-05-29
    • KABUSHIKI KAISHA TOSHIBA
    • Risako UENOHideyuki FUNAKIMitsuyoshi KOBAYASHI
    • G06T7/00H04N5/232H04N9/04G02B3/00
    • H04N9/045G02B3/0037H01L27/14627H04N5/23229H04N2209/042
    • A solid-state imaging device according to an embodiment includes: an imaging element formed on a semiconductor substrate, and comprising an imaging region including a plurality of pixel blocks each including a plurality of pixels; a first optical system forming an image of an object on an imaging plane; and a second optical system comprising a microlens array including a plurality of microlenses each corresponding to one of the pixel blocks, and reducing and re-forming the image to be formed on the imaging plane on the pixel blocks corresponding to the respective microlenses. The imaging plane of the first optical system is located further away from the first optical system than the imaging element when the object is located at an infinite distance.
    • 根据实施例的固态成像装置包括:成像元件,形成在半导体衬底上,并且包括:成像区域,包括多个像素块,每个像素块包括多个像素; 第一光学系统,其在成像平面上形成物体的图像; 以及第二光学系统,其包括微透镜阵列,所述微透镜阵列包括多个微透镜,每个微透镜各自对应于所述像素块之一,并且在对应于所述各个微透镜的像素块上减小并重新形成将在所述成像平面上形成的图像。 当物体位于无限距离时,第一光学系统的成像平面位于比成像元件更远离第一光学系统的位置。