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    • 12. 发明公开
    • Shielding device for optical and/or electronic apparatuses, and space vehicle comprising such device
    • 利用这样的装置为屏蔽的光学和/或电子设备和空间飞行器设备
    • EP2151704A1
    • 2010-02-10
    • EP08425546.2
    • 2008-08-07
    • Thales Alenia Space Italia S.p.A.
    • Attina, PrimoBonino, LucianaBertuccio, Enrico
    • G02B27/00G03B11/04B64G1/00
    • G02B27/0018B64G1/222B64G1/54B64G2001/224G02B5/005G02B7/22G03B11/00G03B11/045
    • A shielding device (20) for optical and/or electronic apparatuses (16) is described, wherein said apparatuses may cooperate with incident electromagnetic radiation (X1, X2), in particular for space telescopes, the shielding device including:
      - at least a filter (24, 26) provided for interacting with said incident electromagnetic radiation (X1, X2), for selectively filtering said radiation; and
      - a support structure (22) for the filter.
      The support structure (22) is an inflatable structure, which is able to achieve an operating stand-by configuration, in which it is substantially folded together, and an active operating configuration, in which it extends along the longitudinal extension axis s (ZZ), and is essentially completely unfolded. Furthermore, the filter (24, 26) includes a filter body, which is provided in order to be transversely positioned with respect to said longitudinal extension axis, when the support structure reaches its active operating configuration.
    • 一种保护装置(20)用于光学和/或电子设备(16)进行了说明,worin所述装置可以与入射电磁辐射(X1,X2)配合,特别是用于空间望远镜,该屏蔽装置包括: - 至少一个滤波器 (24,26)设置用于与所述入射电磁辐射(X1,X2)的交互,用于选择性地过滤所述辐射; 和 - 支撑结构(22),用于过滤器。 所述支撑结构(22)是可膨胀的结构,所有这些都能够在操作的待机配置,其中它基本上折叠在一起,并激活的操作的配置来实现,其中沿纵向延伸轴线S延伸(ZZ) ,而且是完全呼叫本质展开。 进一步,过滤器(24,26)包括过滤器主体,所有这些是为了提供相对于所述纵向延伸轴线被横向放置,当支撑结构达到其活性操作配置。
    • 13. 发明公开
    • A PORTABLE FOLDING VIRTUAL REALITY GLASSES WITH ADJUSTABLE FOCUS
    • 一个便携式折叠虚拟现实眼镜与可调焦点
    • EP3200007A1
    • 2017-08-02
    • EP16168321.4
    • 2016-05-04
    • Shenzhen D-Light Technology Corp., Ltd.
    • DUAN, ZhiminYAN, ZhengtaoXU, Zugang
    • G02B27/01G02B27/04G02B27/22G02B7/22
    • G02B7/22G02B27/0176G02B27/04G02B27/2257G02B2027/0136H04N9/3176
    • A portable folding virtual reality glasses with adjustable focus having a headband, a first supporting piece, a second supporting piece, an accordion folding piece and an eyeshade component, inner and outer sides of the headband are adhered and connected. A terminal supporting plate is provided between the front of the headband and the first supporting piece. A first supporting piece eyehole is provided at the front of the first supporting piece. When the virtual reality glasses is unfolded, the back ends of the first supporting piece extend to the eyeshade component and adhere to the eyeshade component. The inner side of the first supporting piece is provided with the second supporting piece. The accordion type folding piece is provided between the second supporting piece and the eyeshade component. The virtual reality glasses can be completely folded through the accordion type folding piece, compressing the size in the folded state to the minimum for easy carrying. The virtual reality glasses also has a reliable structure and is comfortable to wear. It can effectively avoid a light break-in and is advantageous for promotion.
    • 一种可调焦点的便携式折叠式虚拟现实眼镜,其具有头带,第一支撑件,第二支撑件,手风琴式折叠件和眼罩组件,头带的内侧和外侧粘合连接。 终端支撑板设置在头带的前部和第一支撑件之间。 第一支撑件眼孔设置在第一支撑件的前部。 当虚拟现实眼镜展开时,第一支撑片的后端延伸至眼罩部件并粘附于眼罩部件。 第一支撑件的内侧设置有第二支撑件。 手风琴式折叠件设置在第二支撑件和眼罩部件之间。 虚拟现实眼镜可以通过手风琴式折叠件完全折叠,将折叠状态下的尺寸压缩到最小以便携带。 虚拟现实眼镜也具有可靠的结构并且佩戴舒适。 它可以有效避免光线磨合,有利于促销。
    • 15. 发明公开
    • Culture observation apparatus
    • BellbachtungsgerätfürZellkulturen
    • EP1677136A1
    • 2006-07-05
    • EP05028519.6
    • 2005-12-27
    • Olympus Corporation
    • Tsuchiya, AtsuhiroHirano, RyuichiEndo, HideakiKoyama, KenichiHasegawa, KazuhiroKagayama, AkitsuguYamaguchi, Katsuyoshi
    • G02B27/00G02B21/00G02B21/24G02B21/02C12M1/00
    • C12M41/36C12M41/14G02B7/22G02B21/0088G02B21/02
    • A culture observation apparatus (100), which is used for observing a cultured cell (502) while culturing the cell (502), includes a culture device that cultures the cultured cell (502), and a microscope used for observing the cultured cell (502). The culture device includes a first space (202) that is controlled to an environment suitable for culture of the cell (502), and a second space (156) that is controlled to a lower humidity condition in comparison with the first space (202). The microscope includes an objective optical unit (310) including an objective lens (312; 810; 820; 830; 840; 850); the objective optical unit (310) having at least one portion located in the second space (156), and another portion extending into the first space (202) through an opening (146b) formed in a partition wall (146) that separates the first space (202) and the second space (156), with a gap between the objective optical unit (310) and the partition wall (146) being sealed by a sealing member (222), and
      the objective lens (312; 810; 820; 830; 840; 850) includes a plurality of lens groups (814A, 815A, 816A; 814B, 815B, 816B; 814C, 815C, 816C), with mutual spaces (A, B; A, B, C; D) among the lens groups vented to the second space (202).
    • 用于在培养细胞(502)时观察培养细胞(502)的培养观察装置(100)包括培养培养细胞(502)的培养装置和用于观察培养细胞的显微镜( 502)。 培养装置包括被控制到适于细胞培养的环境的第一空间(202)和与第一空间(202)相比被控制到较低湿度条件的第二空间(156) 。 该显微镜包括物镜光学单元(310),其包括物镜(312; 810; 820; 830; 840; 850); 所述物镜光学单元(310)具有位于所述第二空间(156)中的至少一个部分,以及通过形成在隔壁(146)中的开口(146b)延伸到所述第一空间(202)中的另一部分, 空间(202)和第二空间(156),物镜光学单元(310)和分隔壁(146)之间的间隙由密封构件(222)密封,物镜(312; 810; 820 ; 830; 840; 850)包括具有相互间隔(A,B; A,B,C; D)的多个透镜组(814A,815A,816A; 814B,815B,816B; 814C,815C,816C) 透镜组通向第二空间(202)。
    • 17. 发明申请
    • SPATIO-TEMPORALLY LIGHT MODULATED IMAGING SYSTEM INCLUDING VERTICAL CAMERAS, AND METHOD FOR CONFOCAL IMAGING AN OBJECT
    • 包括垂直相机的时空调光成像系统,以及共焦成像物体的方法
    • WO2017162256A1
    • 2017-09-28
    • PCT/EP2016/000520
    • 2016-03-24
    • MAX-PLANCK-GESELLSCHAFT ZUR FÖRDERUNG DER WISSENSCHAFTEN e. V.
    • DE VRIES, AnthonyFREUND, Tobias
    • G02B21/36
    • G02B21/008G02B7/22G02B21/0032G02B21/0048G02B21/362
    • A spatio-temporally light modulated imaging system (100) for confocal imaging an object (1) comprises a light modulating micro-mirror device (110) with an array of mirror elements, an imaging optic (120) being arranged for focusing illumination light from the micro-mirror device (110) onto the object (1) and directing detection light created in the object (1) in response to the illumination light towards the micro- mirror device (110), and a camera device (130) with at least one detector camera (131, 132) being arranged for collecting the detection light travelling via the mirror elements and a first optical relaying device (140) on a first optical axis (143), and for collecting the detection light travelling via the mirror elements and a second optical relaying device (150) on a second optical axis (153), wherein a camera body (135, 136) of the at least one detector camera (131, 132) is arranged with a vertical camera axis (137, 138), and at least one deflecting mirror (161, 162) is arranged for deflecting the detection light from the 'first and second optical axes (143, 153) to the vertical camera axis (137, 138). Furthermore, a method for confocal imaging an object (1) is disclosed.
    • 用于对象(1)共焦成像的时空光调制成像系统(100)包括具有镜元件阵列的光调制微镜器件(110),成像光学器件(120) )被布置用于将来自微镜器件(110)的照明光聚焦到物体(1)上并且响应于朝向微镜器件(110)的照明光而将在物体(1)中产生的检测光引导至 具有至少一个检测器照相机(131,132)的照相机装置(130)被布置成用于收集经由所述镜元件传播的检测光以及在第一光轴(143)上的第一光学中继装置(140),并且用于收集 所述检测光经由所述反射镜元件和第二光学中继装置(150)在第二光轴(153)上传播,其中所述至少一个检测器相机(131,132)的相机主体(135,136) 垂直摄像机轴(137,138)和至少一个偏转镜( 设置用于将来自第一和第二光轴(143,153)的检测光偏转到垂直摄像机轴(137,138)。 此外,公开了一种用于共焦成像物体(1)的方法。
    • 18. 发明申请
    • PRINTING APPARATUS FOR TRANSFERRING (ORDINARY AND 3D) DIGITAL IMAGES ONTO SILVER 35 MM FILM
    • 用于传输(常规和3D)数字图像到银色35毫米胶片的打印设备
    • WO2012123652A2
    • 2012-09-20
    • PCT/FR2012000091
    • 2012-03-14
    • SABRI YAHYA SAEED
    • SABRI YAHYA SAEED
    • G03B35/14G02B15/10G02B27/18G02B27/22G03B35/00H04N13/00
    • G03B35/14G02B7/22H04N13/00
    • The invention relates to a technical assembly for ordinary and three-dimensional digital printing, particularly for printing compressed three-dimensional images, one next to the other, on a single frame of silver 35 mm motion picture film while maintaining a high level of quality. Instead of reducing the size of the images, which degrades the quality thereof, the printing assembly first compresses both the left and right image and then prints the latter onto a single frame of silver 35 mm film. That is, the invention involves, from the outset, two compressed 35 mm images that are printed onto the 35 mm film by the novel printing apparatus without any loss of quality. The technical printing assembly comprises a standard printing apparatus, the motor of which is substituted with a stepper motor that converts the printing apparatus into an image-by-image printing system. A slide apparatus is also mounted behind the printing apparatus and is to receive the compressed left and right images and convert same into images that are printable onto the silver 35 mm film. The printing apparatus is then combined with a computer, where 3D-modeling software receives the left and right images from the camera and compresses said images while checking the size thereof instead of reducing the size thereof. Second software, i.e. printer software, manages the functionalities of the printing apparatus, sending the printing control to the stepper motor in order to move the latter.
    • 本发明涉及用于普通和三维数字印刷的技术组件,特别是用于在单个银色35mm电影胶片的框架上相互印刷压缩的三维图像,同时保持高水平的质量。 代替减小图像的尺寸,这降低了其质量,打印组件首先压缩左图像和右图像,然后将图像打印到单个银35mm胶片上。 也就是说,本发明从一开始就涉及通过新型印刷装置印刷到35mm膜上的两个压缩的35mm图像,而不会损失质量。 技术印刷组件包括标准印刷装置,其马达被步进马达代替,步进马达将打印装置转换成逐个图像打印系统。 还可以在打印设备的后面安装一个滑动装置,并且将其压缩的左和右图像接收并转换成能够印刷到银35mm薄膜上的图像。 然后将打印装置与计算机组合,其中3D建模软件从相机接收左图像和右图像,并且在检查其尺寸而不是缩小其尺寸的同时压缩所述图像。 第二软件,即打印机软件,管理打印装置的功能,将打印控制发送到步进电机,以便移动打印装置。