Lenses, devices, methods and systems for refractive error
    81.
    发明授权
    Lenses, devices, methods and systems for refractive error 有权
    用于屈光不正的镜头,装置,方法和系统

    公开(公告)号:US09201250B2

    公开(公告)日:2015-12-01

    申请号:US14046356

    申请日:2013-10-04

    IPC分类号: G02C7/04 G02C7/06 A61F2/16

    摘要: The present disclosure is directed to lenses, devices, methods and/or systems for addressing refractive error. Certain embodiments are directed to changing or controlling the wavefront of the light entering a human eye. The lenses, devices, methods and/or systems can be used for correcting, addressing, mitigating or treating refractive errors and provide excellent vision at distances encompassing far to near without significant ghosting. The refractive error may for example arise from myopia, hyperopia, or presbyopia with or without astigmatism. Certain disclosed embodiments of lenses, devices and/or methods include embodiments that address foveal and/or peripheral vision. Exemplary of lenses in the fields of certain embodiments include contact lenses, corneal onlays, corneal inlays, and lenses for intraocular devices both anterior and posterior chamber, accommodating intraocular lenses, electro-active spectacle lenses and/or refractive surgery.

    摘要翻译: 本公开涉及用于解决屈光不正的透镜,装置,方法和/或系统。 某些实施例涉及改变或控制进入人眼的光的波前。 透镜,设备,方法和/或系统可以用于校正,寻址,减轻或治疗屈光不正,并且提供远近的距离的优良视觉,而不会有重大的重影。 屈光不正可能例如是由近视,远视或具有或不伴有散光的老花眼引起的。 透镜,装置和/或方法的某些公开的实施例包括解决中心凹和/或周边视觉的实施例。 在某些实施方案领域中的镜片的示例性实例包括隐形眼镜,角膜嵌体,角膜镶嵌物,以及用于眼内装置的眼前镜和后腔的镜片,容纳眼内透镜,电活动眼镜镜片和/或屈光手术。

    HEAD-UP DISPLAY DEVICE
    82.
    发明申请
    HEAD-UP DISPLAY DEVICE 有权
    顶部显示设备

    公开(公告)号:US20150323793A1

    公开(公告)日:2015-11-12

    申请号:US14699503

    申请日:2015-04-29

    申请人: DENSO CORPORATION

    IPC分类号: G02B27/01 G02B26/08

    摘要: A head-up display device is for projecting display light onto a projection member. The head-up display device includes a display, a reflecting member, an outside light prevention portion, and a state controller. The display emits the display light. The reflecting member reflects the display light emitted from the display in a reflection direction to project the display light onto the projection member. The outside light prevention portion changes between an entering state in which outside light is able to enter the display and a preventing state in which outside light is prevented from entering the display. The state controller controls the outside light prevention portion to be (i) in the entering state when the display light is projected onto the projection member and (ii) in the preventing state when the display light is not projected onto the projection member.

    摘要翻译: 平视显示装置用于将显示光投影到投影部件上。 平视显示装置包括显示器,反射部件,外部防光部分和状态控制器。 显示屏发出显示灯。 反射构件反射从显示器发射的反射方向的显示光,以将显示光投影到投影构件上。 外部防光部分在外部光能够进入显示器的进入状态和防止外部光线进入显示器的防止状态之间改变。 状态控制器将外部防光部控制为(i)当显示光投影到突出部件上时处于进入状态,以及(ii)当显示光不投射到突出部件上时的防止状态。

    Compact wavefront sensor module and its attachment to or integration with an ophthalmic instrument
    83.
    发明授权
    Compact wavefront sensor module and its attachment to or integration with an ophthalmic instrument 有权
    紧凑型波前传感器模块及其与眼科仪器的连接或集成

    公开(公告)号:US09179836B2

    公开(公告)日:2015-11-10

    申请号:US13964928

    申请日:2013-08-12

    发明人: Yan Zhou William Shea

    摘要: One embodiment disclosed is a compact wavefront sensor module to be attached to or integrated with an ophthalmic instrument for eye examination and/or vision correction procedures. The front lens for relaying the wavefront from the eye to a wavefront sampling plane is positioned at the optical input port of the wavefront sensor module. The front lens is shared by the wavefront sensor and the ophthalmic instrument, and the wavefront sensor module can be made very compact while still being able to cover a large eye wavefront measurement diopter range. Another embodiment disclosed is an ophthalmic device for measuring properties of a subject eye including an ophthalmic instrument integrated with the wavefront sensor module.

    摘要翻译: 所公开的一个实施例是紧凑的波前传感器模块,其被附接到眼科仪器或用于眼睛检查和/或视力矫正程序的集成。 用于将波前从眼睛中继到波前采样平面的前透镜位于波前传感器模块的光输入端口。 前透镜由波前传感器和眼科仪器共享,并且波前传感器模块可以制造得非常紧凑,同时仍然能够覆盖大眼睛波前测量屈光度范围。 所公开的另一实施例是用于测量被检眼的性质的眼科装置,包括与波前传感器模块集成的眼科仪器。

    Compound Eye Optical System And Imaging Device Using The Same
    85.
    发明申请
    Compound Eye Optical System And Imaging Device Using The Same 有权
    复眼系统及其成像设备

    公开(公告)号:US20150312496A1

    公开(公告)日:2015-10-29

    申请号:US14651580

    申请日:2013-12-04

    IPC分类号: H04N5/359 G02B27/10 G02B3/00

    摘要: A compound eye optical system forms a plurality of images with different fields of view for connecting the plurality of images with the different fields of view and outputting one composite image. The system includes: a plurality of individual eye optical systems forming the plurality of images with different fields of view on an imaging surface; and an overall optical system forming an image with a field of view incorporating the entire fields of view obtained by the plurality of individual eye optical systems on the imaging surface, wherein the individual eye optical systems and the overall optical system are configured by a lens array plate having a plurality of lenses integrally formed.

    摘要翻译: 复眼眼科系统形成具有不同视野的多个图像,用于连接具有不同视场的多个图像并输出一个合成图像。 该系统包括:多个单独的眼睛光学系统,其在成像表面上形成具有不同视场的多个图像; 以及整体光学系统,其形成具有并入由成像表面上的多个单独眼睛光学系统获得的整个视野​​的视场的图像,其中各个眼睛光学系统和整个光学系统由透镜阵列 板具有一体形成的多个透镜。

    Microlens array architecture for avoiding ghosting in projected images
    86.
    发明授权
    Microlens array architecture for avoiding ghosting in projected images 有权
    微透镜阵列架构,用于避免投影图像中的重影

    公开(公告)号:US09172853B2

    公开(公告)日:2015-10-27

    申请号:US14456132

    申请日:2014-08-11

    申请人: Lytro, Inc.

    摘要: Light-field image data is processed in a manner that reduces projection artifacts in the presence of variation in microlens position by calibrating microlens positions. Approximate centers of disks in a light-field image are identified, and gridded calibration is performed, by fitting lines to disk centers along orthogonal directions, and then fitting a rigid grid to the light-field image. For each grid region, a corresponding disk center is computed, and a displacement vector is generated. For each grid region, the final disk center is computed as the vector sum of the grid region's geometric center and displacement vector. Calibration data, including displacement vectors, is then used in calibrating disk centers for more accurate projection of light-field images. In at least one embodiment, the imaging geometry is arranged so that disks are separated by a gap, so as to limit or eliminate ghosting.

    摘要翻译: 以通过校准微透镜位置在存在微透镜位置的变化的情况下减少投影伪影的方式处理光场图像数据。 识别光场图像中的光盘近似中心,并通过沿着正交方向将线拟合到磁盘中心,然后将刚性网格装配到光场图像来执行网格校准。 对于每个网格区域,计算相应的磁盘中心,并生成位移矢量。 对于每个网格区域,最终的磁盘中心被计算为网格区域的几何中心和位移向量的向量和。 然后使用校准数据(包括位移矢量)来校准磁盘中心,以更准确地投射光场图像。 在至少一个实施例中,成像几何被布置成使得盘被间隙分开,以便限制或消除重影。

    ANTI-REFLECTION FILM, OPTICAL ELEMENT INCLUDING THE SAME, AND OPTICAL SYSTEM
    87.
    发明申请
    ANTI-REFLECTION FILM, OPTICAL ELEMENT INCLUDING THE SAME, AND OPTICAL SYSTEM 有权
    抗反射膜,包括它们的光学元件和光学系统

    公开(公告)号:US20150293267A1

    公开(公告)日:2015-10-15

    申请号:US14677108

    申请日:2015-04-02

    发明人: Kazuhiko Momoki

    IPC分类号: G02B1/11 G02B27/00 G02B1/118

    CPC分类号: G02B27/0018 G02B1/118

    摘要: Provided is an anti-reflection film, which is formed on substrate, the anti-reflection film having a laminated layer structure including, in order from the substrate: a first layer to a sixth layer each formed of a dielectric thin film; and a seventh layer formed by a wet process, in which the first to the sixth layers are formed of three kinds of mediums having different refractive indices from one another, and in which, when refractive indices of the three kinds of mediums at wavelength of 550 nm are defined as nL, nM, and nH, the first layer is formed of a medium having nM, the sixth layer is formed of a medium having nH, a layer formed of a medium having nL and a layer formed of a medium having off are spaced away from each other, and nL, nM, and nH are appropriately set.

    摘要翻译: 提供一种防反射膜,其形成在基板上,该抗反射膜具有层叠层结构,该层叠层结构从基板开始依次包括:由电介质薄膜形成的第一层至第六层; 以及通过湿法形成的第七层,其中第一层至第六层由彼此具有不同折射率的三种介质形成,并且其中当波长为550的三种介质的折射率 nm被定义为nL,nM和nH,第一层由具有nM的介质形成,第六层由具有nH的介质形成,由具有nL的介质形成的层和由具有关闭的介质形成的层 彼此间隔开,nL,nM和nH被适当地设定。

    ANNULAR OPTICAL SPACER AND OPTICAL LENS SYSTEM
    88.
    发明申请
    ANNULAR OPTICAL SPACER AND OPTICAL LENS SYSTEM 有权
    环形光学间隔器和光学透镜系统

    公开(公告)号:US20150253569A1

    公开(公告)日:2015-09-10

    申请号:US14265350

    申请日:2014-04-29

    发明人: Cheng-Feng LIN

    摘要: An annular optical spacer includes an outer annular surface, an inner annular surface, a first side surface, a second side surface and a plurality of protruding structures. The inner annular surface surrounds a central axis of the annular optical spacer and is opposite to the outer annular surface. The first side surface connects the outer annular surface with the inner annular surface. The second side surface connects the outer annular surface with the inner annular surface and is opposite to the first side surface. The protruding structures are regularly disposed on the inner annular surface. Each of the protruding structures extends along a direction from the first side surface to the second side surface and is integrated with the inner annular surface.

    摘要翻译: 环形光学间隔件包括外环形表面,内环形表面,第一侧表面,第二侧表面和多个突出结构。 内环形表面围绕环形光学间隔件的中心轴线并且与外环形表面相对。 第一侧表面将外环形表面与内环形表面连接。 第二侧表面将外环形表面与内环形表面连接并且与第一侧表面相对。 突出结构规则地设置在内环形表面上。 每个突出结构沿着从第一侧表面到第二侧表面的方向延伸并且与内环形表面一体化。

    Image reading device, housing of carriage and carriage
    89.
    发明授权
    Image reading device, housing of carriage and carriage 有权
    图像读取装置,托架和托架

    公开(公告)号:US09121992B2

    公开(公告)日:2015-09-01

    申请号:US14319238

    申请日:2014-06-30

    发明人: Tomohide Hozono

    摘要: A development device includes an imaging lens and light shielding walls. The imaging lens includes a body part having a constant diameter and both end parts arranged at both ends in an optical axial direction having diameters larger than the body part to capture a reflected light from a document onto an imaging part. The light shielding walls has a space with an interval larger than the diameter of the body part and smaller than the diameters of the both end parts, allowing the body part of the imaging lens to be arranged in the space, and shielding a light in the optical axial direction.

    摘要翻译: 显影装置包括成像透镜和遮光壁。 成像透镜包括具有恒定直径的主体部分,并且沿着具有比身体部分大的直径的光轴方向布置的两端部,以将来自文件的反射光捕获到成像部分上。 遮光壁具有间隔大于主体部分的直径的空间,并且小于两端部的直径,允许成像透镜的主体部分布置在该空间中,并且遮蔽 光轴方向。