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    • 2. 发明授权
    • Image pickup apparatus control method thereof and image pickup system
    • 图像拾取装置的控制方法和摄像系统
    • US07936986B2
    • 2011-05-03
    • US12304512
    • 2008-01-31
    • Takashi Ichimiya
    • Takashi Ichimiya
    • G03B3/00
    • G03B13/36G02B7/28
    • An image-pickup apparatus (1) includes a light projection part (32, 33) projecting light to an object, a focus detection part (26) detecting a focus state, a light-source detection part 31 detecting information relating to a light source. When a focus detection is performed without lighting of the light projection part, a controller (100) generates information used for focusing control based on a focus state detection result and the information relating to the light source. When the focus detection is performed with lighting of the light projection part, the controller generates the information used for the focusing control based on the focus state detection result and correction information depending on a wavelength of the light projected from the light projection part without using the information relating to the light source. Thus, a highly-accurate AF control can be performed under various light sources including an AF assist light.
    • 摄像装置(1)包括向对象投射光的光投射部(32,33),检测聚焦状态的焦点检测部(26),检测与光源有关的信息的光源检测部31 。 当在没有光投射部分的情况下进行焦点检测时,控制器(100)基于聚焦状态检测结果和与光源有关的信息产生用于聚焦控制的信息。 当通过光投射部分的点亮执行焦点检测时,控制器基于聚焦状态检测结果和取决于从光投射部投射的光的波长的校正信息来生成用于聚焦控制的信息,而不使用 有关光源的信息。 因此,可以在包括AF辅助光的各种光源下进行高精度的AF控制。
    • 4. 发明授权
    • Rangefinder device and camera
    • US06522394B2
    • 2003-02-18
    • US09935188
    • 2001-08-22
    • Takashi Ichimiya
    • Takashi Ichimiya
    • G01C300
    • G01S7/491G01C3/085G01S17/023G01S17/46G02B7/285
    • A rangefinder device and a camera are provided, which, in measuring a distance by the active method, are capable of properly measuring the distance even if the object to be measured is located at a short distance, while in measuring a distance by the passive method, are capable of measuring the distance without causing the conflict between far and near objects. A projecting section projects spot-shaped light on a range-finding object. A light receiving section comprises a plurality of photoelectric converting elements. A first calculating section calculates distance measurement information based on an output from the light receiving section receiving reflected light from the range-finding object, by driving the projecting section to project the light, and a second calculating section calculates distance measurement information based on an output from the light receiving section receiving extraneous light reflected from the range-finding object, without driving the projecting section. A control section sets a light receiving range of the light receiving section used for calculation of the distance measurement information by the second calculating section to be narrower than a light receiving range of the light receiving section used for calculation of the distance measurement information by the first calculating section.
    • 5. 发明授权
    • Imaging apparatus
    • 成像设备
    • US08804027B2
    • 2014-08-12
    • US12563828
    • 2009-09-21
    • Takashi Ichimiya
    • Takashi Ichimiya
    • G03B13/00H04N5/232
    • H04N5/23212H04N5/367
    • An imaging apparatus includes an image sensor including a first pixel group used for generating an image signal by photoelectrically converting an object image and a second pixel group configured to receive a light flux that has passed through divided areas of the exit pupil, a memory unit configured to store information about whether a defective pixel exists in any pixel included in the second pixel group, a control unit configured to execute calculation including combination processing on output signals of the second pixel group existing in a predetermined area, and a controller configured to control a shooting operation according to a result of the calculation by the calculation unit. The calculation unit is configured, if a defective pixel whose information is stored on the memory unit exists in the combination processing, to execute the calculation by using the output signals of the second pixel group.
    • 一种成像设备包括:图像传感器,包括用于通过光电转换物体图像产生图像信号的第一像素组和被配置为接收已经经过出射光瞳的分割区域的光束的第二像素组;存储单元配置 存储关于在第二像素组中包括的任何像素中是否存在缺陷像素的信息;被配置为执行包括对存在于预定区域中的第二像素组的输出信号的组合处理的计算的控制单元,以及控制器, 根据计算单位的计算结果进行拍摄操作。 如果在组合处理中存在其存储在存储器单元上的缺陷像素,则通过使用第二像素组的输出信号来执行计算,计算单元被配置。
    • 6. 发明授权
    • Focus detection apparatus with weighting of pixel outputs
    • 具有像素输出加权的对焦检测装置
    • US08493497B2
    • 2013-07-23
    • US13000136
    • 2009-07-17
    • Takashi Ichimiya
    • Takashi Ichimiya
    • H04N5/232
    • G03B13/36G02B7/36H04N5/23212H04N5/3696
    • The invention provides a focus detection apparatus comprising: an image sensor configured to convert an object image, the image sensor having a focus detection pixel for receiving a light beam that has passed through a partial area, which is a division of an exit pupil of an optical system for forming an object image; addition unit configured to multiply outputs of a plurality of the focus detection pixels included in a predetermined area of the image sensor by a weighting coefficient corresponding to a position of the focus detection pixel, and perform addition; and defocus amount calculation unit configured to calculate a defocus amount based on a pair of phase-difference detection signals generated based on an output of the addition unit.
    • 本发明提供了一种焦点检测装置,包括:图像传感器,被配置为转换对象图像,所述图像传感器具有聚焦检测像素,所述焦点检测像素用于接收已经通过部分区域的光束,所述部分区域是所述部分区域的出射光瞳 用于形成物体图像的光学系统; 附加单元,被配置为将包括在图像传感器的预定区域中的多个焦点检测像素的输出乘以与焦点检测像素的位置对应的加权系数,并执行相加; 以及散焦量计算单元,被配置为基于基于所述加法单元的输出而生成的一对相位差检测信号来计算散焦量。
    • 8. 发明申请
    • FOCUS DETECTION APPARATUS AND FOCUS DETECTION METHOD
    • 聚焦检测装置和聚焦检测方法
    • US20110176794A1
    • 2011-07-21
    • US12981714
    • 2010-12-30
    • Takashi Ichimiya
    • Takashi Ichimiya
    • G03B13/34
    • G03B13/36G02B7/28H04N5/23212H04N5/35554H04N5/37452H04N5/378
    • A focus detection apparatus comprises: a photoelectric converter including a pair of line sensors to output electrical signals; a selection unit constructed to select one of focus detection points; a control unit constructed to divide the pair of line sensors into a plurality of pairs of blocks in accordance with different divisional patterns which make the resultant plurality of pairs of blocks respectively corresponding to the focus detection points, and read out electrical signals from each pair of blocks when the levels of the electrical signals of the pair of blocks reach a level suitable for focus detection; frame memories, constructed to store the read out electrical signals, corresponding to the divisional patterns; and a focus detection unit constructed to detect a focus state of an imaging lens, on the basis of a phase difference between electrical signals of the pair of blocks corresponding to the selected focus detection point.
    • 焦点检测装置包括:光电转换器,包括一对输出电信号的线传感器; 选择单元,被构造成选择焦点检测点之一; 控制单元,被构造成根据不同的分割图案将所述一对线传感器分成多个块组,所述分割图案使得所得到的多个块对分别对应于所述焦点检测点,并且从每一对中读出电信号 当一对块的电信号的电平达到适合于焦点检测的电平时阻塞; 帧存储器,被构造为存储对应于分割图案的读出的电信号; 以及焦点检测单元,被构造成基于与所选择的焦点检测点相对应的一对块的电信号之间的相位差来检测成像镜头的聚焦状态。
    • 9. 发明授权
    • Focus detection apparatus and focus detention method
    • 焦点检测装置和重点拘留方法
    • US07933510B2
    • 2011-04-26
    • US10572135
    • 2005-12-15
    • Takashi IchimiyaMasanori Ohtsuka
    • Takashi IchimiyaMasanori Ohtsuka
    • G03B3/00G03B13/00
    • G03B13/36G02B7/34
    • This invention includes accumulation units (102a, 102b) which accumulate signals obtained by sensing units (111a, 111b), an area determination unit (103, 100) which sets the size of an area of a sensing unit to be segmented into a plurality of areas on the basis of the information of a lens to be focus-detected, accumulation control units (104a-104c, 105) which control, for each of the areas, accumulation of signals obtained in a plurality of areas by the accumulation units, and a defocus detection unit (100) which detects defocus states in the respective areas from accumulated signals from a plurality of areas.
    • 本发明包括累积由感测单元(111a,111b)获得的信号的累积单元(102a,102b),区域确定单元(103,100),其将要分割的感测单元的面积的大小设置为多个 基于要聚焦检测的透镜的信息的区域,累积控制单元(104a-104c,105),其针对每个区域控制由累积单元在多个区域中获得的信号的累积;以及 散焦检测单元(100),其从多个区域的累积信号中检测各个区域中的散焦状态。
    • 10. 发明授权
    • Focus state detection apparatus and optical instrument
    • 聚焦状态检测装置和光学仪器
    • US07734164B2
    • 2010-06-08
    • US12406358
    • 2009-03-18
    • Takashi Ichimiya
    • Takashi Ichimiya
    • G03B3/00
    • H04N5/23212G02B7/34G03B13/36G03B19/12
    • A focus state detection apparatus has a sensor that senses light rays that pass through a lens subjected to focus detection and is composed of a plurality of photoelectric converter elements, a charge accumulation unit that accumulates pixel signals obtained by the sensor, a first accumulation controller, a second accumulation controller, a first storage unit that stores each accumulated signal of each of the plurality of areas accumulation-controlled by the first accumulation controller, a second storage unit that stores the accumulated signal of the combined area accumulation-controlled by the second accumulation controller, and a defocus state detector that detects a defocus state of the area from the accumulated signal stored in either the first storage unit or the second storage unit.
    • 焦点状态检测装置具有感测通过经过焦点检测的透镜的光线并由多个光电转换元件构成的传感器,积累由传感器获得的像素信号的电荷累积单元,第一累积控制器, 第二累积控制器,存储由第一累积控制器累积控制的多个区域中的每一个的每个累积信号的第一存储单元,存储由第二累积控制的组合区域的累加信号的第二存储单元 控制器和散焦状态检测器,其从存储在第一存储单元或第二存储单元中的累积信号中检测该区域的散焦状态。