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    • 1. 发明申请
    • Imaging device and focus detecting method
    • 成像装置和焦点检测方法
    • US20100245656A1
    • 2010-09-30
    • US12661736
    • 2010-03-23
    • Shinichi FujiiKazuhito ShimodaYasutoshi KatsudaHiroki UiYutaka Nishimura
    • Shinichi FujiiKazuhito ShimodaYasutoshi KatsudaHiroki UiYutaka Nishimura
    • H04N5/232
    • G02B7/34H04N5/23212
    • An imaging device includes an image pickup device having an arrangement of photoelectric converting units, the arrangement in which a plurality of pairs of photoelectric converting units are arranged along a predetermined direction, each pair of photoelectric converting units receiving light beams of a subject passing through partial areas in a pair that are lopsided in reverse to each other along the predetermined direction in an exit pupil of a shooting optical system, and a focus detector for performing focus detection of a phase-difference detecting technique according to data obtained from the pair of photoelectric converting units in the arrangement of the photoelectric converting units. The focus detector corrects the data according to a correction amount corresponding to a positional shift amount from the normalized position, and performs focus detection of the phase-difference detecting technique according to the corrected data.
    • 一种成像装置包括具有光电转换单元的布置的图像拾取装置,其中沿着预定方向布置多对光电转换单元的布置,每对光电转换单元接收经过部分的对象的光束 在拍摄光学系统的出射光瞳中沿着预定方向彼此相反的一对区域,以及用于根据从该对光电系统获得的数据进行相位差检测技术的聚焦检测的焦点检测器 在光电转换单元的布置中的转换单元。 焦点检测器根据与归一化位置相对应的位置偏移量的校正量校正数据,并且根据校正数据执行相位差检测技术的焦点检测。
    • 2. 发明申请
    • Image pickup element and image pickup device
    • 图像拾取元件和图像拾取装置
    • US20100176273A1
    • 2010-07-15
    • US12655755
    • 2010-01-06
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • H01L27/00
    • H04N5/23212H01L27/14621H01L27/14623H01L27/14627H01L27/14636
    • An image pickup element includes a light-receiving portion having a matrix arrangement formed by disposing first-direction arrays, each having photoelectric conversion portions arranged in a first direction with a predetermined gap maintained therebetween, in a second direction orthogonal to the first direction, and micro-lenses provided above the light-receiving portion. A certain first-direction array in the matrix arrangement is provided with a pair of photoelectric conversion portions that optically receive, via a pair of micro-lenses, photographic-subject light beams passing through a pair of segmental regions in an exit pupil of a photographic optical system, the pair of segmental regions being disposed biasedly in opposite directions from each other in the first direction. The pair of micro-lenses is disposed such that light axes thereof extend through vicinities of edges of the pair of photoelectric conversion portions, the edges being the farthest edges from each other in the first direction.
    • 图像拾取元件包括具有矩阵排列的光接收部分,该光接收部分沿着与第一方向正交的第二方向设置第一方向阵列,每个第一方向阵列具有在第一方向上以预定间隔保持的第一方向排列的光电转换部分,以及 设置在光接收部分上方的微透镜。 矩阵布置中的某一第一方向阵列具有一对光电转换部分,该对光电转换部分通过一对微透镜光学接收通过摄影出射光瞳中的一对分段区域的摄影对象光束 光学系统,该对分段区域沿着第一方向彼此相反地偏置地设置。 这对微透镜被布置成使得其光轴延伸穿过该对光电转换部分的边缘附近,边缘在第一方向上彼此是最远的边缘。
    • 3. 发明授权
    • Image pickup element for performing focus detection based on phase-difference detecting and image pickup device having such image pickup element
    • 用于基于具有这种图像拾取元件的相位差检测和图像拾取装置进行焦点检测的图像拾取元件
    • US08098321B2
    • 2012-01-17
    • US12655731
    • 2010-01-06
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • G03B13/00H04N5/232H04N5/225
    • H04N5/23212H01L27/14621H01L27/14623H01L27/14627H01L27/14636H04N5/23203
    • An image pickup element includes a light receiver having a matrix arrangement formed by disposing first-direction arrays, each having photoelectric converters arranged in a first direction with a gap therebetween, in a second direction orthogonal thereto, and micro-lenses above the light receiver. In the matrix arrangement, a certain first-direction array has two first photoelectric converters receiving, via two micro-lenses, photographic-subject light passing through two segmental regions in an exit pupil of a photographic optical system, and a certain second-direction array has two second photoelectric converters receiving photographic-subject light passing through two segmental regions in the exit pupil. Light axes of the two micro-lenses extend through vicinities of edges, farthest from each other in the first direction, of the first photoelectric converters. The first photoelectric converters include two photoelectric converters that flank one photoelectric converter, disposed at an intersection between the certain first-direction and second-direction arrays, in the certain first-direction array.
    • 图像拾取元件包括具有矩阵排列的光接收器,所述光接收器具有:沿与第一方向排列的第一方向排列的第一方向阵列,第一方向列与第一方向排列,第一方向与第一方向间隔开间隔;第二方向和第二方向排列。 在矩阵排列中,一定的第一方向阵列具有两个第一光电转换器,其经由两个微透镜接收通过摄影光学系统的出射光瞳中的两个分段区域的摄影对象光,以及一定的第二方向阵列 具有两个第二光电转换器,其接收通过出射光瞳中的两个分段区域的摄影对象光。 两个微透镜的光轴在第一光电转换器的第一方向上延伸到彼此最远的边缘附近。 第一光电转换器包括位于某一第一方向阵列中的位于某一第一方向阵列和第二方向阵列之间的交叉点的两个光电转换器的两个光电转换器。
    • 4. 发明授权
    • Imaging device and focus detecting method
    • 成像装置和焦点检测方法
    • US08305483B2
    • 2012-11-06
    • US12661736
    • 2010-03-23
    • Shinichi FujiiKazuhito ShimodaYasutoshi KatsudaHiroki UiYutaka Nishimura
    • Shinichi FujiiKazuhito ShimodaYasutoshi KatsudaHiroki UiYutaka Nishimura
    • H04N5/232
    • G02B7/34H04N5/23212
    • An imaging device includes an image pickup device having an arrangement of photoelectric converting units, the arrangement in which a plurality of pairs of photoelectric converting units are arranged along a predetermined direction, each pair of photoelectric converting units receiving light beams of a subject passing through partial areas in a pair that are lopsided in reverse to each other along the predetermined direction in an exit pupil of a shooting optical system, and a focus detector for performing focus detection of a phase-difference detecting technique according to data obtained from the pair of photoelectric converting units in the arrangement of the photoelectric converting units. The focus detector corrects the data according to a correction amount corresponding to a positional shift amount from the normalized position, and performs focus detection of the phase-difference detecting technique according to the corrected data.
    • 一种成像装置包括具有光电转换单元的布置的图像拾取装置,其中沿着预定方向布置多对光电转换单元的布置,每对光电转换单元接收经过部分的对象的光束 在拍摄光学系统的出射光瞳中沿着预定方向彼此相反的一对区域,以及用于根据从该对光电系统获得的数据进行相位差检测技术的聚焦检测的焦点检测器 在光电转换单元的布置中的转换单元。 焦点检测器根据与归一化位置相对应的位置偏移量的校正量校正数据,并且根据校正数据执行相位差检测技术的焦点检测。
    • 5. 发明授权
    • Image pickup element and image pickup device
    • 图像拾取元件和图像拾取装置
    • US08304708B2
    • 2012-11-06
    • US12655755
    • 2010-01-06
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • H01L27/00G03B13/00H04N5/232H04N5/225
    • H04N5/23212H01L27/14621H01L27/14623H01L27/14627H01L27/14636
    • An image pickup element includes a light-receiving portion having a matrix arrangement formed by disposing first-direction arrays, each having photoelectric conversion portions arranged in a first direction with a predetermined gap maintained therebetween, in a second direction orthogonal to the first direction, and micro-lenses provided above the light-receiving portion. A certain first-direction array in the matrix arrangement is provided with a pair of photoelectric conversion portions that optically receive, via a pair of micro-lenses, photographic-subject light beams passing through a pair of segmental regions in an exit pupil of a photographic optical system, the pair of segmental regions being disposed biasedly in opposite directions from each other in the first direction. The pair of micro-lenses is disposed such that light axes thereof extend through vicinities of edges of the pair of photoelectric conversion portions, the edges being the farthest edges from each other in the first direction.
    • 图像拾取元件包括具有矩阵排列的光接收部分,该光接收部分沿着与第一方向正交的第二方向设置第一方向阵列,每个第一方向阵列具有在第一方向上以预定间隔保持的第一方向排列的光电转换部分,以及 设置在光接收部分上方的微透镜。 矩阵布置中的某一第一方向阵列具有一对光电转换部分,该对光电转换部分通过一对微透镜光学接收通过摄影出射光瞳中的一对分段区域的摄影对象光束 光学系统,该对分段区域沿着第一方向彼此相反地偏置地设置。 这对微透镜被布置成使得其光轴延伸穿过该对光电转换部分的边缘附近,边缘在第一方向上彼此是最远的边缘。
    • 6. 发明申请
    • Image pickup element and image pickup device
    • 图像拾取元件和图像拾取装置
    • US20100177205A1
    • 2010-07-15
    • US12655731
    • 2010-01-06
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • Kazuhito ShimodaShinichi FujiiYasutoshi KatsudaHiroki UiYutaka Nishimura
    • H04N5/228
    • H04N5/23212H01L27/14621H01L27/14623H01L27/14627H01L27/14636H04N5/23203
    • An image pickup element includes a light receiver having a matrix arrangement formed by disposing first-direction arrays, each having photoelectric converters arranged in a first direction with a gap therebetween, in a second direction orthogonal thereto, and micro-lenses above the light receiver. In the matrix arrangement, a certain first-direction array has two first photoelectric converters receiving, via two micro-lenses, photographic-subject light passing through two segmental regions in an exit pupil of a photographic optical system, and a certain second-direction array has two second photoelectric converters receiving photographic-subject light passing through two segmental regions in the exit pupil. Light axes of the two micro-lenses extend through vicinities of edges, farthest from each other in the first direction, of the first photoelectric converters. The first photoelectric converters include two photoelectric converters that flank one photoelectric converter, disposed at an intersection between the certain first-direction and second-direction arrays, in the certain first-direction array.
    • 图像拾取元件包括具有矩阵排列的光接收器,所述光接收器具有:沿与第一方向排列的第一方向排列的第一方向阵列,第一方向列与第一方向排列,第一方向与第一方向间隔开间隔;第二方向和第二方向排列。 在矩阵排列中,一定的第一方向阵列具有两个第一光电转换器,其经由两个微透镜接收通过摄影光学系统的出射光瞳中的两个分段区域的摄影对象光,以及一定的第二方向阵列 具有两个第二光电转换器,其接收通过出射光瞳中的两个分段区域的摄影对象光。 两个微透镜的光轴在第一光电转换器的第一方向上延伸到彼此最远的边缘附近。 第一光电转换器包括位于某一第一方向阵列中的位于某一第一方向阵列和第二方向阵列之间的交叉点的两个光电转换器的两个光电转换器。
    • 8. 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。
    • 9. 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。