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    • 1. 发明授权
    • Optical fiber faceplates including convergent constituent imaging conduits and tiled imaging arrays incorporating the same
    • 光纤面板包括会聚成像导管和并入其中的平铺成像阵列
    • US07856161B2
    • 2010-12-21
    • US12074871
    • 2008-03-06
    • Kevin Tabor
    • Kevin Tabor
    • G02B6/04
    • G02B6/08
    • 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 in a direction that 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.
    • 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。 构成成像导管沿导管轴线延伸,所述管道轴线沿着使得通过图像输入面输入的图像沿着至少一个尺寸减小尺寸以便通过图像输出面输出的方向相互会聚。 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。
    • 4. 发明申请
    • Illumination assembly including a rigid light-guiding element incorporating a numerical-aperture alteration taper
    • 照明组件包括具有数值孔径改变锥度的刚性光导元件
    • US20060250814A1
    • 2006-11-09
    • US11411637
    • 2006-04-26
    • Kevin Tabor
    • Kevin Tabor
    • G02B6/00
    • G02B6/4298G02B6/0006
    • An illumination assembly includes a light-emitting element that emits light over a light-source numerical aperture and an elongated light-guiding element including opposed incident and emission ends between which ends light propagates by total internal reflection. The light-guiding element includes along a portion of its length a numerical-aperture alteration taper having opposed small and large ends exhibiting, respectively, a small-end numerical aperture and a large-end numerical aperture lower in magnitude than the small-end numerical aperture. The alteration taper is oriented such that the small end is more proximate the incident end than the large end. The incident end is in light-collecting proximity and alignment with the light-emitting element such that light emitted from the light-emitting element over the small-end numerical aperture and received into the small end of the alteration taper is emitted from the emission end of the light-guiding element at an emission numerical aperture lower in magnitude than the small-end numerical aperture.
    • 照明组件包括在光源数值孔径上发射光的发光元件和细长的导光元件,其包括相对的入射和发射端,其两端之间的光通过全内反射传播。 导光元件沿其长度的一部分包括数值孔径改变锥形,其具有相对的小端和大端,分别具有比小端数值小的小端数值孔径和大端数值孔径 光圈。 改变锥形被定向成使得小端比入口端更靠近入口端。 入射端与发光元件聚光接近并对准,使得从小端数值孔径发射的发光元件的光被接收到变化锥形的小端,从发射端发射 在小于小端数值孔径的发射数值孔径处的导光元件。
    • 5. 发明授权
    • Optical components with variable electro-chromic extra-mural absorption capability
    • 光电组件具有可变的电致色域外壁吸收能力
    • US08335419B2
    • 2012-12-18
    • US12589634
    • 2009-10-26
    • Kevin Tabor
    • Kevin Tabor
    • G02B6/04
    • G02F1/0115G02B6/08G02F1/15
    • An optical component includes at least one light-guiding element with a side surface extending between incident and emission faces between which light that is introduced into the incident face can propagate by internal reflection. Disposed over at least a portion of the side surface of at least one of the at least one light-guiding elements is an extramural absorption material that is configured to selectively absorb “stray light” that enters the incident face of the light-guiding element, but which exists through the side surface instead of the emission face. The absorption material is fabricated, at least in part, from an electro-chromic material exhibiting a translucency that is selectively adjustable in response to changes in at least one of (i) electrical current applied through at least a portion of the absorption material and (ii) an electrical potential difference applied between disparate locations within the absorption material.
    • 光学部件包括至少一个导光元件,其具有在入射面和射出面之间延伸的侧表面,在该表面之间引入入射面的光可通过内部反射传播。 在至少一个导光元件中的至少一个的导光元件的侧表面的至少一部分上设置的是外部吸收材料,其被配置为选择性地吸收进入光导元件的入射面的杂散光,但是哪个 通过侧表面而不是发射面存在。 所述吸收材料至少部分地由表现出半透明性的电铬材料制成,所述半透明度可以响应于(i)通过吸收材料的至少一部分施加的电流和( ii)在吸收材料内的不同位置之间施加的电势差。
    • 6. 发明申请
    • Rigid multi-directional imaging bundle and imaging assembly incorporating the same
    • 刚性多方向成像束和包含其的成像组件
    • US20110242272A1
    • 2011-10-06
    • US12932219
    • 2011-02-18
    • Kevin TaborScott A. RaszkaKerry Highbarger
    • Kevin TaborScott A. RaszkaKerry Highbarger
    • H04N5/225G02B6/06G02B6/28
    • G02B6/06G06T1/0007H04N5/23238H04N5/247
    • 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 the 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. Optically aligned with each image-input face is a focusing element that defines a field of view correlating to a spatial region. An image of the spatial region correlating to the field of view defined by a focusing element is acquired and projected onto the image-input face with which that focusing element is optically aligned. Images conducted through the branch elements, and outputted through the common image-output face, are optically communicated to an image detector array. The image detector array is communicatively linked to a data processing system including image-enhancing algorithms that eliminate redundant content among plural images in order to create a composite image that simulates a single, large-field-of-view image.
    • 多向成像组件包括具有至少两个刚性图像传导分支元件的多向成像束。 每个分支元件具有相对的图像输入和图像输出面以及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。 与每个图像输入面光学对准的是定义与空间区域相关的视场的聚焦元件。 获取与由聚焦元件限定的视场相关的空间区域的图像并投影到与该聚焦元件光学对准的图像输入面上。 通过分支元件传送并通过公共图像输出面输出的图像被光学地传送到图像检测器阵列。 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,以便创建模拟单个大视场图像的合成图像。
    • 8. 发明授权
    • Light conduits having peripheral, shape-defining polymer overmolds
    • 具有外围形状限定聚合物包覆成型的光导管
    • US07400795B2
    • 2008-07-15
    • US11973177
    • 2007-10-06
    • Scott A. RaszkaKevin TaborPaulettel Onorato
    • Scott A. RaszkaKevin TaborPaulettel Onorato
    • G02B6/26G02B6/036
    • G02B6/03694G02B6/02033G02B6/4298
    • An elongated light-guiding element includes opposed incident and emission ends between which light propagates by total internal reflection. The light-guiding element includes a glass core with first and second glass core ends and a glass-core outer surface. A non-glass polymeric optical layer extends over at least a portion of the length of the glass core and is disposed peripherally thereabout. The optical layer has first and second optical-layer ends and an optical-layer exterior surface extending between the first and second optical-layer ends. The glass core and the polymeric optical layer exhibit indices of refraction that are matched to one another as closely as practicable such that the combination of the glass core and the optical layer exhibits optical properties similar to those that would be exhibited by an optical element of similar shape and dimensions fabricated from a single, continuous mass of optical material having a refractive index equal to the that of the glass core material.
    • 细长的导光元件包括相对的入射和发射端,光之间通过全内反射传播。 导光元件包括具有第一和第二玻璃芯端部和玻璃芯外表面的玻璃芯。 非玻璃聚合物光学层在玻璃芯的长度的至少一部分上延伸并且围绕其周边设置。 光学层具有第一和第二光学层端部以及在第一和第二光学层端部之间延伸的光学层外表面。 玻璃芯和聚合物光学层的折射指数彼此紧密地相互匹配,使得玻璃芯和光学层的组合表现出类似于由类似的光学元件显示的光学性能 由具有等于玻璃芯材料的折射率的单一连续质量的光学材料制造的形状和尺寸。
    • 9. 发明申请
    • Optical components with variable electro-chromic extra-mural absorption capability
    • 光电组件具有可变的电致色域外壁吸收能力
    • US20100119200A1
    • 2010-05-13
    • US12589634
    • 2009-10-26
    • Kevin Tabor
    • Kevin Tabor
    • G02B6/08G02B6/02
    • G02F1/0115G02B6/08G02F1/15
    • An optical component includes at least one light-guiding element with a side surface extending between incident and emission faces between which light that is introduced into the incident face can propagate by internal reflection. Disposed over at least a portion of the side surface of at least one of the at least one light-guiding elements is an extramural absorption material that is configured to selectively absorb “stray light” that enters the incident face of the light-guiding element, but which exists through the side surface instead of the emission face. The absorption material is fabricated, at least in part, from an electro-chromic material exhibiting a translucency that is selectively adjustable in response to changes in at least one of (i) electrical current applied through at least a portion of the absorption material and (ii) an electrical potential difference applied between disparate locations within the absorption material.
    • 光学部件包括至少一个导光元件,其具有在入射面和射出面之间延伸的侧表面,在该表面之间引入入射面的光可通过内部反射传播。 至少一个导光元件中的至少一个的至少一个导光元件的侧表面的至少一部分上设置有外部吸收材料,其被配置为选择性地吸收进入导光元件的入射面的“杂散光” 但是通过侧表面而不是发射面存在。 所述吸收材料至少部分地由显示半透明度的电铬材料制成,所述半透明度可以响应于(i)通过至少一部分吸收材料施加的电流和( ii)在吸收材料内的不同位置之间施加的电势差。