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    • 5. 发明申请
    • FULL-RANGE IMAGE DETECTING SYSTEM AND METHOD THEREOF
    • 全范围图像检测系统及其方法
    • US20160344911A1
    • 2016-11-24
    • US14978482
    • 2015-12-22
    • INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
    • Hau-Wei WANGChun-Hsien CHENChung-Ning HUANGPo-Yi CHANG
    • H04N5/225G06T7/00
    • H04N5/2256G01C3/32G02B7/285G06T7/521G06T2207/10056G06T2207/30148
    • A full-range image detecting system including a planar light source, an image capturing device, a light sensing device, a processing unit and a measuring module is provided. The planar light source projects a photo image with periodical variations onto an object. The image capturing device captures a reflective photo image reflected from the object. The light sensing device detects the coordinates of at least three measuring points on the object for fitting a plane. The processing unit calculates a phase variation of the reflective photo image after phase shift, a relative altitude of the surface profile of the object according to the phase variation, and an absolute altitude of the surface profile of the object with respect to the plane to obtain an information of absolute coordinate. The measuring module detects the surface of the object according to the information of absolute coordinate of the object.
    • 提供了包括平面光源,图像捕获装置,光感测装置,处理单元和测量模块的全范围图像检测系统。 平面光源将具有周期性变化的照片图像投射到物体上。 图像捕获装置捕获从对象反射的反射照片图像。 光检测装置检测物体上至少三个测量点的坐标以拟合平面。 处理单元计算相移之后的反射照片图像的相位变化,根据相位变化的对象的表面轮廓的相对高度和对象相对于平面的表面轮廓的绝对高度,以获得 绝对坐标信息。 测量模块根据物体的绝对坐标信息检测物体的表面。
    • 7. 发明授权
    • Imagers with depth sensing capabilities
    • 具有深度感测能力的成像仪
    • US09247234B2
    • 2016-01-26
    • US14287907
    • 2014-05-27
    • Semiconductor Components Industries, LLC
    • Gennadiy AgranovDongqing CaoJunichi NakamuraRichard Scott Johnson
    • H01L27/00H04N13/02G01S3/782H01L27/146G01C3/32
    • H01L27/14623G01C3/32G01S3/782H01L27/14605H01L27/14621H04N13/204
    • An imager may include depth sensing pixels that provide an asymmetrical angular response to incident light. The depth sensing pixels may each include a substrate region formed from a photosensitive portion and a non-photosensitive portion. The depth sensing pixels may include mechanisms that prevent regions of the substrate from receiving incident light. Depth sensing pixel pairs may be formed from depth sensing pixels that have different asymmetrical angular responses. Each of the depth sensing pixel pairs may effectively divide the corresponding imaging lens into separate portions. Depth information for each depth sensing pixel pair may be determined based on the difference between output signals of the depth sensing pixels of that depth sensing pixel pair. The imager may be formed from various combinations of depth sensing pixel pairs and color sensing pixel pairs arranged in a Bayer pattern or other desired patterns.
    • 成像器可以包括提供对入射光的不对称角度响应的深度感测像素。 深度感测像素可以各自包括由感光部分和非感光部分形成的衬底区域。 深度感测像素可以包括防止衬底的区域接收入射光的机构。 深度感测像素对可以由具有不同不对称角响应的深度感测像素形成。 每个深度感测像素对可以有效地将相应的成像透镜分成分离的部分。 可以基于深度感测像素对的深度感测像素的输出信号之间的差来确定每个深度感测像素对的深度信息。 成像器可以由深度感测像素对和以拜耳图案或其他期望图案布置的颜色感测像素对的各种组合形成。
    • 10. 发明授权
    • Imaging device and imaging method
    • 成像装置和成像方法
    • US08711215B2
    • 2014-04-29
    • US13811154
    • 2011-04-19
    • Norihiro Imamura
    • Norihiro Imamura
    • G01C3/08G01C3/32
    • G01C3/08G01C3/32G02B7/28G03B3/10G03B13/36H04N5/2254H04N5/23212H04N5/3696H04N9/045
    • Provided is an imaging device including: a lens optical system L including at least an optical plane area D1 and an optical plane area D2, the optical plane area D2 having an optical property that causes a focusing property of the optical plane area D2 to differ from a focusing property of the optical plane area D1 due to a light beam that has passed through the optical plane area D1; an imaging element N including at least a plurality of pixels P1 and a plurality of pixels P2 which allow light that has passed through the lens optical system L to enter; and an array-shaped optical element K that is arranged between the lens optical system L and the imaging element N and is configured to cause light that has passed through the optical plane area D1 to enter the plurality of pixels P1 and to cause light that has passed through the optical plane area D2 to enter the plurality of pixels P2.
    • 本发明提供一种成像装置,包括:至少包括光学平面区域D1和光学平面区域D2的透镜光学系统L,具有导致光学平面区域D2的聚焦特性的光学特性的光学平面区域D2不同于 由于通过光学平面区域D1的光束而导致的光学平面区域D1的聚焦特性; 包括允许通过透镜光学系统L的光进入的至少多个像素P1和多个像素P2的成像元件N; 以及布置在透镜光学系统L和成像元件N之间的阵列状光学元件K,并且被配置为使已经通过光学平面区域D1的光进入多个像素P1,并且使得具有 通过光学平面区域D2进入多个像素P2。