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    • 1. 发明专利
    • Optical component including function for adjusting light absorption capability
    • 光学部件,包括调节光吸收能力的功能
    • JP2011090272A
    • 2011-05-06
    • JP2009255028
    • 2009-11-06
    • Schott Corpショット コーポレーション
    • TABOR KEVIN
    • G02B6/00G02B6/08G02B6/44G02F1/15
    • G02F1/0115G02B6/08G02F1/15
    • PROBLEM TO BE SOLVED: To provide an optical component for optical transmission having an integrated light absorbing layer having an adjustable light absorption characteristic. SOLUTION: The optical component 10 for optical transmission includes a light-guiding element 20 having an incident surface 22f and an emission surface 24f opposed to each other, and a side surface 26 extending between the incident surface 22f and the emission surface 24f, and light entering from the incident surface 22f is propagated by internal reflection between the incident surface 22f and the emission surface 24f. The light absorbing layer 60 configured to selectively absorb "stray light" coming out through the side surface 26 of the light-guiding element 20 is arranged in at least a part of the side surface of the light-guiding element 20. The light absorbing layer 60 is formed of an electro-chromic material exhibiting translucency that is selectively adjustable according to a change of intensity in at least either (i) an electrical current applied through at least a part of the light absorbing layer 60, and (ii) an electrical potential difference applied between different spots in the light absorbing layer 60. COPYRIGHT: (C)2011,JPO&INPIT
    • 解决的问题:提供具有可调光吸收特性的集成光吸收层的光传输用光学部件。 解决方案:用于光传输的光学部件10包括具有彼此相对的入射表面22f和发射表面24f的导光元件20和在入射表面22f和发射表面24f之间延伸的侧表面26 从入射面22f入射的光通过入射面22f与射出面24f之间的内反射传播。 配置为选择性地吸收通过导光元件20的侧表面26出射的“杂散光”的光吸收层60被布置在导光元件20的侧表面的至少一部分中。光吸收层 60由电致变色材料形成,该电色材料根据至少一个(i)通过至少一部分光吸收层60施加的电流中的强度变化而选择性地调节,以及(ii)电 在光吸收层60中的不同点之间施加的电位差​​。版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Rigid multi-directional imaging bundle and imaging assembly incorporating the same
    • 刚性多方向成像组件和成像组件
    • JP2011199870A
    • 2011-10-06
    • JP2011060350
    • 2011-03-18
    • Schott Corpショット コーポレーション
    • TABOR KEVINRASZKA SCOTT AHIGHBARGER KERRY
    • H04N5/225G02B6/04
    • G02B6/06G06T1/0007H04N5/23238H04N5/247
    • PROBLEM TO BE SOLVED: To provide a self-supporting multi-directional imaging assembly that contemporaneously communicates multiple minimally-distorted images to a single planar detector array.SOLUTION: A multi-directional imaging assembly includes a multi-directional imaging bundle having at least two rigid image-conducting branch elements. Each branch element has opposed image-input and image-output faces and at least one bend between a plurality of faces. The branch elements are mutually bound such that the image-input faces are disparately directed and the image-output faces coincide to define a common image-output face. An image of the spatial region correlating to the field of view defined by a focusing element is acquired and is conducted through the branch element, and the image outputted through the common image-output face is optically transmitted to an image detector array. The image detector array is communicatively linked to a data processing system including image-enhancing algorithms that eliminate a redundant content among plural images in order to create a composite image that reproduces a single, large-field-of-view image.
    • 要解决的问题:提供一种同时将多个最小失真图像传送到单个平面检测器阵列的自支撑多向成像组件。解决方案:多向成像组件包括多向成像束,其具有至少两个 刚性图像传导分支元件。 每个分支元件具有相对的图像输入和图像输出面以及多个面之间的至少一个弯曲。 分支元件被相互约束,使得图像输入面被不同地定向,并且图像输出面重合以限定公共的图像输出面。 获取与由聚焦元件定义的视场相关的空间区域的图像,并通过分支元件传导,并且通过公共图像输出面输出的图像被光学传输到图像检测器阵列。 图像检测器阵列通信地链接到包括图像增强算法的数据处理系统,其消除多个图像中的冗余内容,以便创建再现单个大视场图像的合成图像。
    • 3. 发明专利
    • Optical fiber faceplate including convergent imaging conduits and tiled imaging arrays incorporating the same
    • 光学纤维包括整合成像导管和倾斜成像系统
    • JP2008233911A
    • 2008-10-02
    • JP2008069099
    • 2008-03-18
    • Schott Corpショット コーポレーション
    • TABOR KEVIN
    • G02B6/06G02B6/04
    • G02B6/08
    • PROBLEM TO BE SOLVED: To provide a reduced image thin type imaging module. SOLUTION: An imaging module includes an optical fiber faceplate with an image-input face, a planar image-output face, and a plurality of adjacently fused, internally reflecting imaging conduits extending between the image-input and image-output faces. The constituent imaging conduits extend along conduit axes that mutually converge such that an image inputted through the image-input face is reduced in size along at least one dimension for outputting through the image-output face. The imaging module further includes an imaging detector array including a plurality of photosensitive detector elements arranged in accordance with a predetermined array format. The faceplate is situated in front of the detector array such that light incident upon the image-input face is transmitted through the faceplate and optically communicated to the detector elements through the image-output face. Multiple imaging modules can be tiled in tight formations in order to form a larger format imaging array. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种缩小图像薄型成像模块。 解决方案:成像模块包括具有图像输入面的光纤面板,平面图像输出面以及在图像输入和图像输出面之间延伸的多个相邻熔合的内部反射成像导管。 构成成像导管沿着相互会聚的导管轴线延伸,使得通过图像输入面输入的图像沿至少一个尺寸减小,以便通过图像输出面输出。 成像模块还包括成像检测器阵列,其包括根据预定阵列格式布置的多个光敏检测器元件。 面板位于检测器阵列的前面,使得入射到图像输入面上的光透过面板并通过图像输出面光学地传送到检测器元件。 为了形成更大格式的成像阵列,可以将多个成像模块平铺在紧密的结构中。 版权所有(C)2009,JPO&INPIT