Phase gratings with odd symmetry for high-resolution lensed and lensless optical sensing
    11.
    发明授权
    Phase gratings with odd symmetry for high-resolution lensed and lensless optical sensing 有权
    具有奇对称性的相位光栅用于高分辨率透镜和无镜头光学感测

    公开(公告)号:US09110240B2

    公开(公告)日:2015-08-18

    申请号:US14184978

    申请日:2014-02-20

    Applicant: Rambus Inc.

    Abstract: A sensing device with an odd-symmetry grating projects near-field spatial modulations onto a closely spaced photodetector array. Due to physical properties of the grating, the spatial modulations are in focus for a range of wavelengths and spacings. The spatial modulations are captured by the array, and photographs and other image information can be extracted from the resultant data. Used in conjunction with a converging optical element, versions of these gratings provide depth information about objects in an imaged scene. This depth information can be computationally extracted to obtain a depth map of the scene.

    Abstract translation: 具有奇对称光栅的感测装置将近场空间调制投影到紧密间隔的光电检测器阵列上。 由于光栅的物理性质,空间调制在波长和间距范围内成为焦点。 空间调制由阵列捕获,照片和其他图像信息可从结果数据中提取出来。 与会聚光学元件一起使用,这些光栅的版本提供有关成像场景中物体的深度信息。 该深度信息可以被计算地提取以获得场景的深度图。

    Phase Gratings with Odd Symmetry for High-Resolution Lensed and Lensless Optical Sensing
    12.
    发明申请
    Phase Gratings with Odd Symmetry for High-Resolution Lensed and Lensless Optical Sensing 有权
    具有奇数对称性的相位光栅用于高分辨率光纤和无镜头光学感测

    公开(公告)号:US20140253781A1

    公开(公告)日:2014-09-11

    申请号:US14184978

    申请日:2014-02-20

    Applicant: Rambus Inc.

    Abstract: A sensing device with an odd-symmetry grating projects near-field spatial modulations onto a closely spaced photodetector array. Due to physical properties of the grating, the spatial modulations are in focus for a range of wavelengths and spacings. The spatial modulations are captured by the array, and photographs and other image information can be extracted from the resultant data. Used in conjunction with a converging optical element, versions of these gratings provide depth information about objects in an imaged scene. This depth information can be computationally extracted to obtain a depth map of the scene.

    Abstract translation: 具有奇对称光栅的感测装置将近场空间调制投影到紧密间隔的光电检测器阵列上。 由于光栅的物理性质,空间调制在波长和间距范围内成为焦点。 空间调制由阵列捕获,照片和其他图像信息可从结果数据中提取出来。 与会聚光学元件一起使用,这些光栅的版本提供有关成像场景中物体的深度信息。 该深度信息可以被计算地提取以获得场景的深度图。

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