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    • 2. 发明公开
    • PLENOPTIC IMAGING DEVICE EQUIPPED WITH AN ENHANCED OPTICAL SYSTEM
    • 配备增强型光学系统的普通成像设备
    • EP3293961A1
    • 2018-03-14
    • EP17188486.9
    • 2017-08-30
    • Thomson Licensing
    • VANDAME, BenoitBABON, FredericDRAZIC, Valter
    • H04N5/225
    • G02B3/0056G02B3/0075G02B13/0015G02B13/0055G02B27/0075H04N5/2254H04N5/2259H04N13/232
    • It is proposed a plenoptic imaging device comprising a micro-lens array (620) placed between a main lens (610) and a photosensor (630), said micro-lens array comprising a plurality of microlenses each configured to project a micro-image onto the photosensor, said main lens covering a central field-of-view of the scene according to capture axis. The plenoptic imaging device comprises multi-faceted optical means (650) having at least two facets and placed in a plane adjacent to the aperture diaphragm plane and centred on the main optical axis, each facet being configured to angularly rotated the capture axis with respect to the main optical axis so as to capture a rotated field-of-view from the central field-of-view, and so that the captured rotated field-of-views form an expanded field-of-view covering said central field-of-view.
    • 提出了一种全光成像设备,其包括置于主透镜(610)和光传感器(630)之间的微透镜阵列(620),所述微透镜阵列包括多个微透镜,每个微透镜被配置为将微图像投影到 光传感器,所述主透镜根据捕获轴线覆盖场景的中心视场。 全光成像装置包括具有至少两个小平面并放置在与孔径光阑平面相邻并以主光轴为中心的平面中的多面光学装置(650),每个小平面构造成相对于 主光轴以便捕获来自中心视场的旋转视场,并且使得所捕获的旋转视场形成覆盖所述中心视场的扩大的视场, 视图。
    • 8. 发明公开
    • METHOD FOR MANUFACTURING LENS MODULE, AND LENS MODULE
    • 琳琅满目的柠檬
    • EP2682797A1
    • 2014-01-08
    • EP12752308.2
    • 2012-02-27
    • FUJIFILM Corporation
    • MATSUNO RyoYONEYAMA SatoshiKOIKE TakashiHASEGAWA Kazuhide
    • G02B7/02
    • G02B7/021B29D11/00307G02B3/0062G02B3/0075G02B13/0085
    • A lens module capable of preventing a deterioration of optical properties and a method for manufacturing thereof are provided. Optical axes of lens portions of superimposed lens arrays are aligned. Substrate portions of the other lens arrays of the superimposed lens arrays except the lowermost lens array are cut by a first cutting portion. Subsequently, thermosetting resins are supplied from a gap between cut surfaces of the cut substrate portion so as to fill a gap between the substrate portions of the superimposed lens arrays with the thermosetting resins and to cause the thermosetting resins to integrally cover the cut surfaces of the substrate portion and a surface of the substrate portion of the uppermost lens array. Thereafter, the thermosetting resins are cured, and an individual lens module is separated by cutting the substrate portion of the lowermost lens array using a second cutting portion.
    • 提供了能够防止光学特性劣化的透镜模块及其制造方法。 重叠透镜阵列的透镜部分的光轴对齐。 除最低透镜阵列之外的重叠透镜阵列的其他透镜阵列的基板部分被第一切割部分切割。 随后,从切割的基板部分的切割表面之间的间隙提供热固性树脂,以便填充叠加的透镜阵列的基板部分与热固性树脂之间的间隙,并使热固性树脂一体地覆盖 衬底部分和最上面的透镜阵列的衬底部分的表面。 此后,固化热固性树脂,并且通过使用第二切割部分切割最下面的透镜阵列的基板部分来分离单独的透镜模块。