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    • 1. 发明授权
    • Optical filter and optical device provided with this optical filter
    • 配有该滤光片的滤光片和光学元件
    • US06327085B1
    • 2001-12-04
    • US09281324
    • 1999-03-30
    • Keiji OsawaKiyoshige Shibazaki
    • Keiji OsawaKiyoshige Shibazaki
    • G02B530
    • G02B27/46G02B5/3083G02B17/0856G02B27/288H04N5/2254
    • Light emitted from a taking lens 20 enters a first birefringent plate 1a to be spatially divided along a first direction extending perpendicular to the direction in which the light advances to achieve two separate rays L10 and L20. The vibrational planes of the two light fluxes L10 and L20 emitted from the first birefringent plate 1a are converted to a circularly polarized light by a phase plate 1. The two light fluxes L10′ and L20′ emitted from the phase plate 1c are each spatially divided into two by a second birefringent plate 1d along a second direction extending perpendicular to the first direction to achieve four separate rays L11, L12, L21 and L22, to be guided to an imaging plane 15a of an imaging device 15. At least either the first birefringent plate or the second birefringent plate is constituted of lithium niobate, rutile, Chilean nitrate, or the like,
    • 从拍摄镜头20发射的光进入第一双折射板1a,沿着垂直于光前进的方向延伸的第一方向进行空间分割,以实现两个分开的光线L10和L20。 从第一双折射板1a发射的两个光束L10和L20的振动平面由相位板1转换成圆偏振光。从相位板1c发出的两个光束L10'和L20'分别在空间上分开 沿着垂直于第一方向延伸的第二方向由第二双折射板1d分成两个,以实现四个单独的光线L11,L12,L21和L22,以被引导到成像装置15的成像平面15a。至少第一个 双折射板或第二双折射板由铌酸锂,金红石,智利硝酸盐等构成,
    • 2. 发明申请
    • Optical filter and optical device provided with this optical filter
    • 配有该滤光片的滤光片和光学元件
    • US20060139752A1
    • 2006-06-29
    • US11362099
    • 2006-02-27
    • Keiji OsawaKiyoshige Shibazaki
    • Keiji OsawaKiyoshige Shibazaki
    • G02B27/28
    • G02B27/46G02B5/3083G02B17/0856G02B27/288H04N5/2254
    • Light emitted from a taking lens 20 enters a first birefringent plate 1a to be spatially divided along a first direction extending perpendicular to the direction in which the light advances to achieve two separate rays L10 and L20. The vibrational planes of the two light fluxes L10 and L20 emitted from the first birefringent plate 1a are converted to a circularly polarized light by a phase plate 1c. The two light fluxes L10′ and L20′ emitted from the phase plate 1c are each spatially divided into two by a second birefringent plate id along a second direction extending perpendicular to the first direction to achieve four separate rays L11, L12, L21 and L22, to be guided to an imaging plane 15a of an imaging device 15. At least either the first birefringent plate or the second birefringent plate is constituted of lithium niobate, rutile, Chilean nitrate, or the like.
    • 从拍摄镜头20发射的光进入第一双折射板1a,沿着垂直于光前进的方向延伸的第一方向进行空间分割,以实现两个分开的光线L 10和L 20。 从第一双折射板1a发射的两个光束L 10和L 20的振动面通过相位板1c转换成圆偏振光。 从相位板1c发射出的两个光束L 10'和L 20'分别沿垂直于第一方向延伸的第二方向在空间上被第二双折射板id分成两个,以实现四个分开的光线L 11,L 12 ,L 21和L 22被引导到成像装置15的成像平面15a。 第一双折射板或第二双折射板中的至少任一种由铌酸锂,金红石,智利硝酸盐等构成。
    • 3. 发明授权
    • Image file processing method including color space conversion and corresponding image file processing apparatus
    • 包括色彩空间转换的图像文件处理方法和相应的图像文件处理装置
    • US07596264B2
    • 2009-09-29
    • US12216509
    • 2008-07-07
    • Hideo HoshuyamaKiyoshige ShibazakiToshihisa Kuroiwa
    • Hideo HoshuyamaKiyoshige ShibazakiToshihisa Kuroiwa
    • G06K9/00H04N5/225
    • H04N1/603
    • An image file processing method adopted in an image file processing apparatus, includes steps for: inputting from the outside an image file containing at least color information corresponding to each of pixels defined by a color space used in the image file, a color space identification tag indicating whether or not the color space used in the image file is a first color space and a color space information tag providing color space information related to the color space used in the image file; making a decision as to whether or not the color space used in the image file is the first color space based upon the color space identification tag; and referencing the color space information tag in the image file if the color space used in the image file is determined not to be in the first color space.
    • 一种在图像文件处理装置中采用的图像文件处理方法,包括以下步骤:从外部输入包含至少包含与由图像文件中使用的颜色空间定义的像素对应的颜色信息的图像文件,颜色空间识别标签 指示图像文件中使用的颜色空间是否是第一颜色空间,以及提供与图像文件中使用的颜色空间相关的颜色空间信息的颜色空间信息标签; 基于颜色空间识别标签来决定图像文件中使用的颜色空间是否是第一颜色空间; 以及如果图像文件中使用的颜色空间被确定为不在第一颜色空间中,则引用图像文件中的颜色空间信息标签。
    • 6. 发明申请
    • Image file processing method including color conversion and corresponding image file processing apparatus
    • 图像文件处理方法包括颜色转换和相应的图像文件处理装置
    • US20080273792A1
    • 2008-11-06
    • US12216509
    • 2008-07-07
    • Hideo HoshuyamaKiyoshige ShibazakiToshihisa Kuroiwa
    • Hideo HoshuyamaKiyoshige ShibazakiToshihisa Kuroiwa
    • G06K9/36
    • H04N1/603
    • An image file processing method adopted in an image file processing apparatus, includes steps for: inputting from the outside an image file containing at least color information corresponding to each of pixels defined by a color space used in the image file, a color space identification tag indicating whether or not the color space used in the image file is a first color space and a color space information tag providing color space information related to the color space used in the image file; making a decision as to whether or not the color space used in the image file is the first color space based upon the color space identification tag; and referencing the color space information tag in the image file if the color space used in the image file is determined not to be in the first color space.
    • 一种在图像文件处理装置中采用的图像文件处理方法,包括以下步骤:从外部输入包含至少包含与由图像文件中使用的颜色空间定义的像素对应的颜色信息的图像文件,颜色空间识别标签 指示图像文件中使用的颜色空间是否是第一颜色空间,以及提供与图像文件中使用的颜色空间相关的颜色空间信息的颜色空间信息标签; 基于颜色空间识别标签来决定图像文件中使用的颜色空间是否是第一颜色空间; 以及如果图像文件中使用的颜色空间被确定为不在第一颜色空间中,则引用图像文件中的颜色空间信息标签。
    • 7. 发明授权
    • Image sensor and imaging device
    • 图像传感器和成像装置
    • US09532033B2
    • 2016-12-27
    • US13305272
    • 2011-11-28
    • Kiyoshige ShibazakiMuneki HamashimaSusumu MoriSatoshi Suzuki
    • Kiyoshige ShibazakiMuneki HamashimaSusumu MoriSatoshi Suzuki
    • H04N13/02H01L27/146
    • H04N13/286H01L27/14621H01L27/14623H01L27/14629H04N13/225H04N13/257
    • An image capturing element comprising photoelectric converting elements that are arranged two-dimensionally and photoelectrically convert incident light into an electric signal; aperture masks that correspond one-to-one with the photoelectric converting elements; and color filters that correspond one-to-one with the photoelectric converting elements. Among n adjacent photoelectric converting elements, where n is an integer no less than three, apertures of the aperture masks corresponding to at least three of the photoelectric converting elements are included within each pattern of a color filter pattern formed from at least two types of the color filters that respectively pass different wavelength bands, and are positioned to respectively pass light from different partial regions within a cross-sectional region of the incident light, and photoelectric converting element groups that are each formed of the n photoelectric converting elements are arranged in series.
    • 一种图像拍摄元件,包括被二维布置并将入射光光电转换成电信号的光电转换元件; 与光电转换元件一一对应的孔径掩模; 以及与光电转换元件一一对应的滤色器。 在n个相邻的光电转换元件中,n是不小于3的整数,对应于至少三个光电转换元件的孔径掩模的孔径包括在由至少两种类型的光电转换元件形成的滤色器图案的每个图案内 分别通过不同波长带的滤色器,并且被定位成分别在入射光的横截面区域内传递来自不同部分区域的光,并且各自由n个光电转换元件形成的光电转换元件组被串联布置 。
    • 8. 发明授权
    • Optical filter and optical device provided with this optical filter
    • 配有该滤光片的滤光片和光学元件
    • US07961244B2
    • 2011-06-14
    • US11637124
    • 2006-12-12
    • Kiyoshige Shibazaki
    • Kiyoshige Shibazaki
    • H04N5/225G02B13/16
    • G02B27/46G02B5/3083G02B17/0856G02B27/288H04N5/2254
    • Light emitted from a taking lens 20 enters a first birefringent plate 1a to be spatially divided along a first direction extending perpendicular to the direction in which the light advances to achieve two separate rays L10 and L20. The vibrational planes of the two light fluxes L10 and L20 emitted from the first birefringent plate 1a are converted to a circularly polarized light by a phase plate 1c. The two light fluxes L10′ and L20′ emitted from the phase plate 1c are each spatially divided into two by a second birefringent plate 1d along a second direction extending perpendicular to the first direction to achieve four separate rays L11, L12, L21 and L22, to be guided to an imaging plane 15a of an imaging device 15. At least either the first birefringent plate or the second birefringent plate is constituted of lithium niobate, rutile, Chilean nitrate, or the like.
    • 从拍摄镜头20发射的光进入第一双折射板1a,沿着垂直于光前进的方向延伸的第一方向进行空间分割,以实现两个分开的光线L10和L20。 从第一双折射板1a发射的两个光束L10和L20的振动面通过相位板1c转换为圆偏振光。 从相位板1c发射出的两个光束L10'和L20'分别沿垂直于第一方向延伸的第二方向由第二双折射板1d空间分成两个,以实现四个分开的光线L11,L12,L21和L22, 被引导到成像装置15的成像面15a。第一双折射板或第二双折射板中的至少一个由铌酸锂,金红石,智利硝酸盐等构成。
    • 9. 发明申请
    • Optical filter and optical device provided with this optical filter
    • 配有该滤光片的滤光片和光学元件
    • US20070091438A1
    • 2007-04-26
    • US11637124
    • 2006-12-12
    • Kiyoshige Shibazaki
    • Kiyoshige Shibazaki
    • G02B27/28
    • G02B27/46G02B5/3083G02B17/0856G02B27/288H04N5/2254
    • Light emitted from a taking lens 20 enters a first birefringent plate 1a to be spatially divided along a first direction extending perpendicular to the direction in which the light advances to achieve two separate rays L10 and L20. The vibrational planes of the two light fluxes L10 and L20 emitted from the first birefringent plate 1a are converted to a circularly polarized light by a phase plate 1c. The two light fluxes L10′ and L20′ emitted from the phase plate 1c are each spatially divided into two by a second birefringent plate 1d along a second direction extending perpendicular to the first direction to achieve four separate rays L11, L12, L21 and L22, to be guided to an imaging plane 15a of an imaging device 15. At least either the first birefringent plate or the second birefringent plate is constituted of lithium niobate, rutile, Chilean nitrate, or the like.
    • 从拍摄镜头20发射的光进入第一双折射板1a,沿着垂直于光前进的方向延伸的第一方向进行空间分割,以实现两个分开的光线L 10和L 20。 从第一双折射板1a发射的两个光束L 10和L 20的振动面通过相位板1c转换成圆偏振光。 从相位板1c发射出的两个光束L 10'和L 20'分别沿垂直于第一方向延伸的第二方向由第二双折射板1d在空间上分成两个,以实现四个分开的光线L 11,L 12,L 21和L 22被引导到成像装置15的成像平面15a。 第一双折射板或第二双折射板中的至少任一种由铌酸锂,金红石,智利硝酸盐等构成。