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    • 21. 发明申请
    • ILLUMINATION APPARATUS, IMAGING APPARATUS, CAMERA SYSTEM, AND CONTROL METHOD
    • 照明设备,成像设备,摄像机系统和控制方法
    • US20140376901A1
    • 2014-12-25
    • US14311735
    • 2014-06-23
    • CANON KABUSHIKI KAISHA
    • Toshiki MiyakawaYuji Yamamoto
    • G03B15/05
    • G03B15/05G03B2215/0528G03B2215/0585G03B2215/0592
    • An illumination apparatus includes a main body, a movable unit, a first driving unit, a second driving unit, and a control unit. The movable unit is rotatable with respect to the main body and includes a light emitting unit and an optical member disposed in front of the light emitting unit to refract incident light. The first driving unit rotates the movable unit with respect to the main body. The second driving unit moves at least one of the light emitting unit and the optical member to change relative positions. Power is supplied to the second driving unit from a power source that supplies power to the first driving unit. The control unit controls a rotation operation performed using the first driving unit and a moving operation performed using the second driving unit so that the rotation operation is performed after the moving operation is performed.
    • 照明装置包括主体,可移动单元,第一驱动单元,第二驱动单元和控制单元。 可移动单元相对于主体可旋转,并且包括发光单元和设置在发光单元前面以折射入射光的光学构件。 第一驱动单元使可移动单元相对于主体旋转。 第二驱动单元移动发光单元和光学构件中的至少一个以改变相对位置。 从向第一驱动单元供电的电源向第二驱动单元供电。 控制单元控制使用第一驱动单元执行的旋转操作和使用第二驱动单元执行的移动操作,使得在执行移动操作之后执行旋转操作。
    • 22. 发明授权
    • Photographic system
    • 摄影系统
    • US08457483B2
    • 2013-06-04
    • US13018201
    • 2011-01-31
    • Erik SowderJohn B. Baker
    • Erik SowderJohn B. Baker
    • G03B15/03G03B15/06
    • G03B15/06G03B15/05G03B2215/0585
    • A photographic system includes a first light grid including cells, and a first alignment feature. A bezel including a retainer for retaining at least the first light grid, and an alignment feature for aligning at least the first light grid within said light grid retainer. A formable portion including a reflective surface, wherein the formable portion is for retainably formed into a snoot, wherein said bezel is disposed at a distal end of the formable portion, and wherein the reflective surface is for reflecting light from a photographic light source within the formable portion. A base portion coupled to the formable portion, wherein the base portion is for coupling to the photographic light source.
    • 摄影系统包括包括单元的第一光栅和第一对准特征。 包括用于保持至少第一光栅的保持器的边框和用于对准所述光栅保持器内的至少第一光栅的对准特征。 一种可成形部分,包括反射表面,其中所述可成形部分用于可保持地形成为鼻孔,其中所述边框设置在所述可成形部分的远端,并且其中所述反射表面用于将来自照相光源的光 可成形部分。 耦合到可成形部分的基部,其中基部用于耦合到照相光源。
    • 23. 发明授权
    • Calibration camera with spectral depth
    • 具有光谱深度的校准相机
    • US08190007B2
    • 2012-05-29
    • US12922717
    • 2009-03-13
    • Eduard Johannes MeijerJan De GraafMarcus Antonius Verschuuren
    • Eduard Johannes MeijerJan De GraafMarcus Antonius Verschuuren
    • G03B37/02
    • H04N5/2256G03B15/05G03B2215/05G03B2215/0585H04N17/002
    • An imaging device (300), a lighting control system (400) including the imaging device (300), and a method for aligning with a reference image lighting of a site (220) illuminated by least one light source (240) are provided. The imaging device (300) and/or the lighting control system (400) include at least one processor (410) configured to control the imaging device (300) and the light source (240). The imaging device (300) has an array of reflectors (320) including selectable reflectors; a lens configured to receive image rays (330) for forming an image including pixels and provide the image rays (330) to the array of reflectors (320) for reflection as reflected rays (355); and a detector (310) configured to receive the reflected rays (355) and detect characteristics of each pixel of the image for form a resolved image. The processor (410) is further configured to sequentially select each reflector (350) of the array of reflectors (320) for reflecting the reflected rays (355) towards the detector (310).
    • 提供了一种成像设备(300),包括成像设备(300)的照明控制系统(400)和用于与由至少一个光源(240)照明的场所(220)的参考图像照明进行对准的方法。 成像设备(300)和/或照明控制系统(400)包括配置成控制成像设备(300)和光源(240)的至少一个处理器(410)。 成像装置(300)具有包括可选反射器的反射器阵列(320) 配置为接收用于形成包括像素的图像的图像射线(330),并将所述图像射线(330)提供给所述反射器阵列(320)以作为反射射线(355)反射; 以及被配置为接收所述反射光线(355)并检测所述图像的每个像素的特征以形成分辨图像的检测器(310)。 处理器(410)还被配置为顺序地选择反射器阵列(320)的每个反射器(350),以将反射光线(355)反射到检测器(310)。
    • 27. 发明公开
    • Steerable illumination source for portable devices
    • Orientierbare BeleuchtungsquellefürtragbareGeräte
    • EP2711773A2
    • 2014-03-26
    • EP13185380.6
    • 2013-09-20
    • Palo Alto Research Center Incorporated
    • Schmaelzle, Philipp H.Stowe, Timothy D.Debruyker, Dirk
    • G03B15/02G03B15/03F21V7/00G02B26/08G03B15/05
    • G03B15/02G02B26/0841G02B26/085G03B15/03G03B2215/0528G03B2215/0585H04M1/22
    • A subsystem is disclosed providing a steerable-beam light source (10). An array (16) of micromechanical reflectors may be disposed to selectively direct portions of light from a light source (14) to selected targets (O) in a scene, such as for providing composed illumination for still or video photography. The array (16) of reflectors may be continuously steerable, thereby achieving more than the mere inefficient patterning of illumination light available from prior art projection approaches, but instead efficiently redirecting light to the desired regions of the scene. The subsystem may be sufficiently compact so as to permit integration with a compact camera into a cellular telephone, a tablet computer, a laptop computer, a digital still-image camera, a digital video-image camera, and so on. The array (16) may be operated in conjunction with a camera controller to selectively illuminate one or more targets (O) of focus or zoom or omit illumination of undesirable image regions.
    • 公开了一种提供可转向光束光源(10)的子系统。 可以设置微机电反射器的阵列(16)以选择性地将来自光源(14)的光的一部分引导到场景中的选定目标(O),例如用于为静止或视频摄影提供合成照明。 反射器的阵列(16)可以是连续可控的,从而实现比现有技术的投影方法可获得的照明光的低效图案化,而是有效地将光重定向到场景的期望区域。 该子系统可以足够紧凑,以便允许将小型照相机集成到蜂窝电话,平板计算机,膝上型计算机,数字静态图像相机,数字视频图像相机等中。 阵列(16)可以与照相机控制器一起操作以选择性地照亮一个或多个焦点或变焦目标(O)或省略不期望的图像区域的照明。