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    • 61. 发明授权
    • Image taking apparatus and lens apparatus
    • 摄像装置和镜头装置
    • US07414664B2
    • 2008-08-19
    • US10770437
    • 2004-02-04
    • Yasuo Suda
    • Yasuo Suda
    • H04N5/225G03B7/099G03B19/12G03B13/00G02B7/28
    • G03B13/36G03B19/12H04N5/2253H04N5/23212
    • An image taking apparatus performs a focusing operation quickly and includes a light splitting unit which splits a light flux from an image-taking lens into a plurality of light fluxes, a view finder optical system observing an object image formed by the light flux from the lens, an image pickup element which photoelectrically converts the object image to an electrical signal and a focus detector detecting the focusing state of the lens according to a phase difference detector. Here, the light splitting unit changes between a first state for directing the light flux to the view finder optical system and the focus detector, a second state for directing the light flux to the image pickup element and the focus detector, and a third state in which the light flux is directed only to the image pickup element.
    • 摄像装置快速进行聚焦操作,并且包括将来自摄像镜头的光束分解成多个光束的分光单元,观察由来自透镜的光束形成的物体图像的取景器光学系统 ,将对象图像光电转换成电信号的图像拾取元件和根据相位差检测器检测透镜的聚焦状态的聚焦检测器。 这里,分光单元在用于将光束引导到取景器光学系统和焦点检测器的第一状态之间改变,用于将光束引导到图像拾取元件和焦点检测器的第二状态,以及第三状态 光通量仅被引导到图像拾取元件。
    • 62. 发明授权
    • Semiconductor device and its manufacture method
    • 半导体器件及其制造方法
    • US06893941B2
    • 2005-05-17
    • US10630680
    • 2003-07-31
    • Yasuo Suda
    • Yasuo Suda
    • H01L27/146H01L31/0203H01L31/0216H01L31/0232H01L21/30
    • H01L27/14685H01L27/14618H01L27/14625H01L27/14627H01L31/0203H01L31/02164H01L31/02325H01L31/02327H01L2224/48091H01L2224/48227H01L2924/00014
    • A semiconductor device formed by cutting a first substrate and a second substrate bonded together by a spacer, wherein: the spacer is disposed at an end of the first substrate after cutting; the second substrate is a semiconductor wafer formed with a light reception element or elements; and the first substrate has an optical element or an optical element set for converging light on the light reception element or elements. A method of manufacturing such a semiconductor device. A semiconductor device manufacture method includes: a step of detecting a warp of a semiconductor substrate; a step of holding the semiconductor substrate on a base under a condition that the warp is removed; a step of bonding an opposing substrate to the semiconductor substrate; and a step of cutting the opposing substrate, wherein the opposing substrate bonded to the semiconductor substrate is set with a size corresponding to the warp of the semiconductor substrate or with a gap to an adjacent opposing substrate.
    • 一种半导体器件,其通过切割通过间隔物结合在一起的第一基板和第二基板而形成,其中:所述间隔件设置在所述第一基板的切割后的端部; 第二基板是形成有光接收元件的半导体晶片; 并且第一基板具有用于在光接收元件上会聚光的光学元件或光学元件组。 一种制造这种半导体器件的方法。 半导体器件制造方法包括:检测半导体衬底的翘曲的步骤; 在去除翘曲的条件下将半导体衬底保持在基底上的步骤; 将相对基板接合到半导体基板的步骤; 以及切割对置基板的步骤,其中,将与半导体基板结合的对置基板的尺寸设定为与半导体基板的翘曲相对应的尺寸或与相邻的相对基板的间隙。
    • 63. 发明授权
    • Image pickup apparatus
    • 摄像设备
    • US06882368B1
    • 2005-04-19
    • US09604743
    • 2000-06-28
    • Yasuo Suda
    • Yasuo Suda
    • H04N9/04H04N5/225
    • H04N9/045H04N5/3415
    • An image pickup apparatus is provided having first and second image pickup portions for receiving at least first and second distinct wavelength components of object light, respectively, and first and second optical systems for guiding the first and second wavelength components to the first and second image pickup portions, respectively, via different optical paths. The first and second optical systems are formed to have respective shapes so that the focal length of the first optical system with regard to the first wavelength component is equal to the focal length of the second optical system with regard to the second wavelength component. When a virtual object distance, as defined as set forth herein, an interval between optical axes of the first and second optical systems is set such that a change in an interval between object images of the first and second wavelength components received by the first and second image pickup portions, respectively, between when an object exists at the virtual object distance and when it exists at infinity is smaller than a pixel pitch of the image pickup portions multiplied by two.
    • 一种图像拾取装置,具有分别用于分别接收物体光的至少第一和第二不同波长分量的第一和第二图像拾取部分,以及用于将第一和第二波长分量引导到第一和第二图像拾取器的第一和第二光学系统 分别经由不同的光路。 第一和第二光学系统形成为具有各自的形状,使得第一光学系统相对于第一波长分量的焦距等于第二光学系统相对于第二波长分量的焦距。 当如本文所述定义的虚拟对象距离被设置为第一和第二光学系统的光轴之间的间隔,使得由第一和第二光学系统接收的第一和第二波长分量的对象图像之间的间隔的变化 分别在物体存在于虚拟对象距离处和当其存在于无限远处时的图像拾取部分小于图像拾取部分的像素间距乘以2。
    • 64. 发明授权
    • Focus detecting device
    • 对焦检测装置
    • US5678097A
    • 1997-10-14
    • US151779
    • 1993-11-15
    • Yasuo Suda
    • Yasuo Suda
    • G03B13/36G02B7/34G03B3/00G03B13/18
    • G02B7/346
    • A focus detecting device having a light distribution forming device for forming the light intensity distribution whose relative position varies in accordance with the focus adjustment of an object lens from the light flux passing through the object lens, a sensing device for receiving the light intensity distribution and outputting a signal representing the state of focus adjustment of the object lens based on the relative position in the light intensity distribution, and having a plurality of sensing elements, and a light diffusing device disposed in or near a predetermined imaging plane of the object lens, and having the degree of light diffusion determined so that the light intensity distribution can be moved relatively in accordance with the adjustment of the object lens.
    • 一种聚焦检测装置,具有用于形成相对位置根据物镜的焦点调节而变化的光强度分布的光分布形成装置,该光束分布形成装置具有:通过物镜的光束;受光装置, 基于所述光强分布中的相对位置输出表示所述物镜的焦点调整状态的信号,并具有多个感测元件,以及设置在所述物镜的预定成像面内或附近的光漫射装置, 并且具有确定光扩散度使得可以根据物镜的调节相对地移动光强度分布。
    • 68. 发明授权
    • Image-capturing apparatus including image sensor utilizing pairs of focus detection pixels
    • 包括使用焦点检测像素对的图像传感器的图像捕获装置
    • US08754976B2
    • 2014-06-17
    • US12999735
    • 2009-07-08
    • Makoto OikawaAkihiko NaganoYasuo Suda
    • Makoto OikawaAkihiko NaganoYasuo Suda
    • H04N5/232
    • G03B13/36G02B7/08H04N5/23212H04N5/3696H04N5/37457
    • In an image sensor having a plurality of pixels which photoelectrically convert a subject image, a plurality of pairs of focus detection pixels including first focus detection pixels (SHA) and second focus detection pixels (SHB) are arranged while being distributed. The layouts of the first focus detection pixel (SHA) and the second focus detection pixel (SHB) are switched in pairs of focus detection pixels adjacent in the focus detection direction. Focus detection is performed using image waveforms obtained from the first focus detection pixel (SHA) and the second focus detection pixel (SHB) whose layouts are switched. This reduces focus detection errors generated when the pixels included in the pairs of focus detection pixels receive light fluxes from different portions of the subject.
    • 在具有多个像素的图像传感器中,其对被摄体图像进行光电转换,包括第一焦点检测像素(SHA)和第二焦点检测像素(SHB)的多个焦点检测像素对被布置。 第一焦点检测像素(SHA)和第二焦点检测像素(SHB)的布局以焦点检测方向相邻的成对的焦点检测像素切换。 使用从布置被切换的第一焦点检测像素(SHA)和第二焦点检测像素(SHB)获得的图像波形执行焦点检测。 这减少了包括在对焦点检测像素对中的像素从对象的不同部分接收光通量时产生的焦点检测误差。
    • 69. 发明申请
    • IMAGE-CAPTURING APPARATUS
    • 图像捕获设备
    • US20110096211A1
    • 2011-04-28
    • US12999735
    • 2009-07-08
    • Makoto OikawaAkihiko NaganoYasuo Suda
    • Makoto OikawaAkihiko NaganoYasuo Suda
    • H04N5/335
    • G03B13/36G02B7/08H04N5/23212H04N5/3696H04N5/37457
    • In an image sensor having a plurality of pixels which photoelectrically convert a subject image, a plurality of pairs of focus detection pixels including first focus detection pixels (SHA) and second focus detection pixels (SHB) are arranged while being distributed. The layouts of the first focus detection pixel (SHA) and the second focus detection pixel (SHB) are switched in pairs of focus detection pixels adjacent in the focus detection direction. Focus detection is performed using image waveforms obtained from the first focus detection pixel (SHA) and the second focus detection pixel (SHB) whose layouts are switched. This reduces focus detection errors generated when the pixels included in the pairs of focus detection pixels receive light fluxes from different portions of the subject.
    • 在具有多个像素的图像传感器中,其对被摄体图像进行光电转换,包括第一焦点检测像素(SHA)和第二焦点检测像素(SHB)的多个焦点检测像素对被布置。 第一焦点检测像素(SHA)和第二焦点检测像素(SHB)的布局以焦点检测方向相邻的成对的焦点检测像素切换。 使用从布置被切换的第一焦点检测像素(SHA)和第二焦点检测像素(SHB)获得的图像波形执行焦点检测。 这减少了包括在对焦点检测像素对中的像素从对象的不同部分接收光通量时产生的焦点检测误差。