会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Imaging Device
    • 成像设备
    • US07236304B2
    • 2007-06-26
    • US10578226
    • 2004-11-04
    • Hiroaki OkayamaMichihiro YamagataKazutake BokuYasuhiro TanakaKenichi HayashiYoshimasa FushimiShigeki MurataTakayuki Hayashi
    • Hiroaki OkayamaMichihiro YamagataKazutake BokuYasuhiro TanakaKenichi HayashiYoshimasa FushimiShigeki MurataTakayuki Hayashi
    • G02B27/10G02B13/16H04N5/225H04N5/222
    • G02B3/0056G02B27/0018H04N5/2254
    • There is provided an imaging device which is small in light loss, is operable to suppress an occurrence of a stray light, and is operable to provide an image with a high quality as far as a periphery thereof. The imaging device operable to output an image of an object as an electrical image signal, comprising: a solid-state imaging sensor including pixels which are two dimensionally arranged on a first flat surface and each of which has a photo-electric conversion function; and a lens array including micro lenses two dimensionally arranged on a second flat surface separately provided so as to be parallel to the first flat surface, in which the solid-state imaging sensor includes an imaging area of unit including a plurality of pixels, and each of the micro lenses forms an optical image of the object on a corresponding imaging area of unit and satisfies a predetermined condition, arctan(L/f)≦θ, for a pixel, from among pixels included in an imaging area of unit corresponding to each micro lens, positioned farthest from an optical axis of a corresponding micro lens. Here, θ is a maximum angle of an incident light capable of entering a pixel, f is a focal length of a micro lens, and L is a diameter of a circle circumscribing an imaging area of unit corresponding to one of the micro lenses.
    • 提供了一种光损失小的成像装置,可操作地抑制杂散光的发生,并且可操作以提供具有高质量的图像至其周边。 该成像装置可操作以输出物体的图像作为电图像信号,包括:固态成像传感器,其包括二维排列在第一平面上并具有光电转换功能的像素; 以及透镜阵列,其包括二维布置在分别设置成平行于所述第一平坦表面的第二平坦表面上的微透镜,其中所述固态成像传感器包括包括多个像素的单元的成像区域,并且每个 的微透镜在单元的对应成像区域上形成物体的光学图像,并且满足预定条件,对于像素,从包括在对应于单元的单元的成像区域中的像素中的像素的arctan(L / f)<= 每个微透镜被定位成最远离相应微透镜的光轴。 这里,θ是能够进入像素的入射光的最大角度,f是微透镜的焦距,L是围绕与微透镜之一对应的单位的成像区域的圆的直径。
    • 5. 发明申请
    • Imaging device
    • 成像设备
    • US20070091197A1
    • 2007-04-26
    • US10578226
    • 2004-11-04
    • Hiroaki OkayamaMichihiro YamagataKazutake BokuYasuhiro TanakaKenichi HayashiYoshima FushimiShigeki MurataTakayuki Hayashi
    • Hiroaki OkayamaMichihiro YamagataKazutake BokuYasuhiro TanakaKenichi HayashiYoshima FushimiShigeki MurataTakayuki Hayashi
    • H04N5/225
    • G02B3/0056G02B27/0018H04N5/2254
    • There is provided an imaging device which is small in light loss, is operable to suppress an occurrence of a stray light, and is operable to provide an image with a high quality as far as a periphery thereof. The imaging device operable to output an image of an object as an electrical image signal, comprising: a solid-state imaging sensor including pixels which are two dimensionally arranged on a first flat surface and each of which has a photo-electric conversion function; and a lens array including micro lenses two dimensionally arranged on a second flat surface separately provided so as to be parallel to the first flat surface, in which the solid-state imaging sensor includes an imaging area of unit including a plurality of pixels, and each of the micro lenses forms an optical image of the object on a corresponding imaging area of unit and satisfies a predetermined condition, arctan(L/f)≦θ, for a pixel, from among pixels included in an imaging area of unit corresponding to each micro lens, positioned farthest from an optical axis of a corresponding micro lens. Here, θ is a maximum angle of an incident light capable of entering a pixel, f is a focal length of a micro lens, and L is a diameter of a circle circumscribing an imaging area of unit corresponding to one of the micro lenses.
    • 提供了一种光损失小的成像装置,可操作地抑制杂散光的发生,并且可操作以提供具有高质量的图像至其周边。 该成像装置可操作以输出物体的图像作为电图像信号,包括:固态成像传感器,其包括二维排列在第一平面上并具有光电转换功能的像素; 以及透镜阵列,其包括二维布置在分别设置成平行于所述第一平坦表面的第二平坦表面上的微透镜,其中所述固态成像传感器包括包括多个像素的单元的成像区域,并且每个 的微透镜在单元的对应成像区域上形成物体的光学图像,并且满足预定条件,对于像素,从包括在对应于单元的单元的成像区域中的像素中的像素的arctan(L / f)<= 每个微透镜被定位成最远离相应微透镜的光轴。 这里,θ是能够进入像素的入射光的最大角度,f是微透镜的焦距,L是围绕与微透镜之一对应的单位的成像区域的圆的直径。