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    • 3. 发明申请
    • DEPLOYABLE RAMP ASSEMBLY
    • 合格的RAMP大会
    • US20110088178A1
    • 2011-04-21
    • US12579619
    • 2009-10-15
    • Yves FontaineMichel Morin
    • Yves FontaineMichel Morin
    • B60P1/43B65G69/28A61G3/06
    • B65G69/2811A61G3/061A61G3/067B60P1/433
    • A deployable ramp assembly including a fixed ramp portion and a pivotable ramp portion connected thereto through a direct pivot connection to pivot between stowed and deployed positions defined at a first angle from one another, a cover member pivotally connected to the fixed portion to pivot between closed and opened positions defined at a second angle from one another which is substantially smaller than the first angle, a drive assembly pivoting the cover member between the closed and opened positions, and a multiplier assembly interconnecting the pivotable portion and the cover member to transfer the pivoting motion of the cover member to the pivotable portion in an amplified manner, the multiplier assembly bringing the pivotable portion in the stowed position when the cover member is in the closed position and the pivotable portion in the deployed position when the cover member is in the opened position.
    • 一种可展开的斜坡组件,其包括固定的斜坡部分和可枢转的斜坡部分,所述斜坡部分通过直接的枢转连接件连接到所述可转动的斜坡部分,以便以彼此之间的第一角度限定的收起位置和展开位置之间枢转;枢转地连接到固定部分以在闭合 以及以相对于第一角度为第二角度限定的打开位置,将盖构件在闭合位置和打开位置之间枢转的驱动组件和将可枢转部分和盖构件互连以将枢转 盖构件以放大的方式运动到可枢转部分,当盖构件处于关闭位置时,乘法器组件将可枢转部分置于收起位置,并且当盖构件处于打开状态时,可枢转部分处于展开位置 位置。
    • 8. 发明授权
    • Method and phase mask for manufacturing a multi-channel optical grating
    • 用于制造多通道光栅的方法和相位掩模
    • US07352931B1
    • 2008-04-01
    • US11372454
    • 2006-03-08
    • Yves PainchaudMichel PoulinMichel Morin
    • Yves PainchaudMichel PoulinMichel Morin
    • G02B6/34
    • G02B6/02138
    • A method for manufacturing a complex multi-channel optical grating using a phase mask is presented. A plurality of sub-gratings is designed, each having an individual spectral response designed to produce one of the channels of the multi-channel grating. The target profile of the grating is determined based on the combination of the index profiles of the individual sub-gratings, the target index profile defining a target spectral response of the multi-channel grating. A modified index profile having a smooth apodization profile but providing the same spectral response as the target index profile, at least within a spectral region of interest, is determined and encoded into the phase mask. The phase mask is then used to photoinduce the grating in a photosensitive medium.
    • 提出了使用相位掩模制造复合多通道光栅的方法。 设计了多个子光栅,每个子光栅具有设计成产生多通道光栅的一个通道的单个光谱响应。 基于各个子光栅的折射率分布的组合,确定多通道光栅的目标光谱响应的目标折射率分布来确定光栅的目标轮廓。 至少在感兴趣的光谱区域内,确定具有光滑变迹曲线但是提供与目标折射率分布相同的光谱响应的经修改的折射率分布,并将其编码到相位掩模中。 然后使用相位掩模在光敏介质中对光栅进行光诱导。
    • 10. 发明授权
    • Optical imaging of turbid media with depth-related discrimination
    • 浑浊介质的光学成像与深度相关的辨别
    • US06415172B1
    • 2002-07-02
    • US09489528
    • 2000-01-21
    • Yves PainchaudStéphane ChatignyMichel Morin
    • Yves PainchaudStéphane ChatignyMichel Morin
    • A61B500
    • A61B5/0091A61B5/4312G01N21/4795
    • The method for scanning a turbid medium involves displacing an optical signal source over a first face of the medium and a corresponding optical detector over an opposite face from one respective spatial location to another. Each spatial location is associated with a corresponding input region on the first face and a corresponding output region on the opposite second face. The optical detector in response to optical signals detected from each of the output regions generates a primary set of image data, secondary and/or tertiary image data by scanning the turbid medium using input regions and output regions of different sizes. The various sets of image data obtained may be manipulated in any manner, namely subjected to a data processing technique, so as to, for example, highlight the differences or similarities between the images.
    • 用于扫描混浊介质的方法包括在介质的第一面上移动光信号源,并在相对的面上从相应的空间位置到另一空间位置移动对应的光学检测器。 每个空间位置与第一面上的对应输入区域和相对的第二面上的对应的输出区域相关联。 响应于从每个输出区域检测到的光信号,光学检测器通过使用不同大小的输入区域和输出区域扫描浊度介质来生成主要图像数据,次级和/或三级图像数据。 获得的各组图像数据可以以任何方式被操纵,即经受数据处理技术,以便例如突出显示图像之间的差异或相似之处。