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    • 1. 发明申请
    • System and method for accessing media in a data storage system
    • 用于在数据存储系统中访问媒体的系统和方法
    • US20050081235A1
    • 2005-04-14
    • US10965570
    • 2004-10-14
    • Daniel RaguinDavid KentChristopher ButlerDavid Kindler
    • Daniel RaguinDavid KentChristopher ButlerDavid Kindler
    • G11B17/04G11B23/03
    • G11B17/049G11B23/0308G11B23/0328
    • A data storage system is provided which utilizes cartridges having data storage media. The system has a housing having an optical data storage system, such as a holographic data storage system. Each cartridge has a window through which the media may be partially or fully removed when located in the housing, a slot through which the data storage drive can engage the media upon a positioning mechanism, and a shutter mechanism which closes the window and slot. When the cartridge is inserted in the housing, its shutter mechanism is engaged to open the window and slot of the cartridge, and the media is coupled through the slot to the positioning mechanism, which partially or fully removes the media from the cartridge through the window for presentation to the optical data storage system. Once operation on the media is completed by the optical data storage system, the positioning mechanism moves the media back into the cartridge and is decoupled from the media. The shutter mechanism is engaged to close the window and slot prior to ejecting the cartridge from the housing. When media is sensitive to external light, the cartridges prevent external light from reaching media contained therein when the window and slot are closed.
    • 提供一种使用具有数据存储介质的盒的数据存储系统。 该系统具有具有诸如全息数据存储系统之类的光学数据存储系统的壳体。 每个墨盒具有一个窗口,当位于外壳中时,介质可以被部分地或完全地移除,窗口,数据存储驱动器可以通过定位机构与介质接合的狭槽,以及关闭窗口和狭槽的快门机构。 当盒被插入壳体中时,其挡板机构被接合以打开盒的窗口和狭槽,并且介质通过狭槽耦合到定位机构,该定位机构通过窗口部分地或完全地从盒中移除介质 用于呈现给光学数据存储系统。 一旦通过光学数据存储系统完成介质上的操作,定位机构将介质移回到盒中并与介质分离。 在将盒从壳体弹出之前,快门机构被接合以关闭窗口和狭槽。 当介质对外部光线敏感时,当窗口和插槽关闭时,墨盒可防止外界光到达其中所含的介质。
    • 2. 发明申请
    • Calibration of Holographic Data Storage Systems Using Holographic Media Calibration Features
    • 全息数据存储系统的校准使用全息介质校准功能
    • US20080008076A1
    • 2008-01-10
    • US11578709
    • 2005-04-15
    • Daniel RaguinChristopher Butler
    • Daniel RaguinChristopher Butler
    • G11B7/00
    • G11B7/00736G11B7/0065
    • Calibration of holographic data storage systems (HDSS) is provided by utilizing holographic media (4) having calibration features which can be read, written, or read and written by a HDSS (30). Calibration features may represent for example, surface-relief gratings, holographic recordings, amplitude varying regions, or magnetic regions, or a combination thereof, at locations on or within the media. One or more of the calibration features along media region (302) are media calibration features with media and format information, and other calibration features along region (301) are system calibration features for optically and mechanically aligning HDSS optics. The media (4) may have performance calibration features along region (307) which can be recorded by a HDSS and then read back to determine characteristics of the media. Different HDSS systems can read the calibration features of the media (4) when installed in each HDSS to obtain information about the media, and to optically and mechanically align the media for optimal operation with the media.
    • 全息数据存储系统(HDSS)的校准是通过利用具有可由HDSS(30)读取,写入或读取和写入的校准特征的全息介质(4)来提供的。 校准特征可以表示例如在介质上或介质上的位置处的表面浮雕光栅,全息记录,振幅变化区域或磁性区域,或其组合。 沿着介质区域(302)的一个或多个校准特征是具有介质和格式信息的介质校准特征,沿着区域(301)的其它校准特征是用于光学和机械对准HDSS光学器件的系统校准特征。 介质(4)可以具有沿区域(307)的性能校准特征,其可由HDSS记录,然后回读以确定介质的特性。 当安装在每个HDSS中时,不同的HDSS系统可以读取介质(4)的校准特征,以获得关于介质的信息,以及光学和机械对准介质以使介质达到最佳操作。
    • 4. 发明申请
    • Diffractive imaging system and method for the reading and analysis of skin topology
    • 衍射成像系统和皮肤拓扑学分析的方法
    • US20060119837A1
    • 2006-06-08
    • US11251062
    • 2005-10-14
    • Daniel RaguinDavid WaldmanPhillip MalyakJohn BergRichard Ingwall
    • Daniel RaguinDavid WaldmanPhillip MalyakJohn BergRichard Ingwall
    • G06K9/74
    • G06K9/00046A61B5/1172
    • An apparatus and a method for acquiring an image of skin topology. The apparatus comprises at least one light source, configured to form a source beam; at least one illuminating diffractive optical element (DOE) disposed in the optical path of the source beam, configured to diffract the source beam, thereby forming an illuminating beam; a skin contact surface, disposed in the optical path of the illuminating beam, configured to at least partially reflect the illuminating beam at regions of the boundary between the skin contact surface and skin that are not in contact with skin, thereby forming a reflected beam; at least one imaging diffractive optical element (DOE), disposed in the optical path of the reflected beam, configured to diffract the reflected light beam, thereby forming an image beam; and a sensor array, configured to receive at least a portion of the image beam and thereby to detect the acquired image.
    • 一种用于获取皮肤拓扑图像的装置和方法。 该装置包括至少一个光源,被配置为形成源光束; 设置在所述源光束的光路中的至少一个照明衍射光学元件(DOE),被配置为衍射所述源光束,从而形成照明光束; 设置在所述照明光束的光路中的皮肤接触表面,被配置为至少部分地将所述照射光束反射在所述皮肤接触表面和皮肤之间的与皮肤接触的边界之间的边界处,从而形成反射光束; 设置在反射光束的光路中的至少一个成像衍射光学元件(DOE),被配置为衍射反射光束,从而形成图像束; 以及传感器阵列,被配置为接收所述图像束的至少一部分,从而检测所获取的图像。
    • 6. 发明申请
    • Holographic data storage media with structured surfaces
    • 具有结构化表面的全息数据存储介质
    • US20050105150A1
    • 2005-05-19
    • US10988951
    • 2004-11-15
    • Daniel Raguin
    • Daniel Raguin
    • G02B1/11G11B7/0065G11B7/24G02B5/32
    • G11B7/0065G02B1/11G11B7/24
    • Holographic media for storing and reading holographic data is provided having one or more external or internal surfaces having structures for at least one of minimizing reflections from illumination incident the surface, or enhancing adhesion between surfaces within the media. Structures for minimizing reflections represent a grating pattern of subwavelength structures providing low reflectivity at the operating characteristics of holographic optical systems to use the media, such as spectral bandwidth, angular bandwidth, and polarization of illumination incident the media. Adhesion promotion may be provided by structures along an interior surface of the media, such as along an interfacing surface between photosensitive material of the media and a substrate material adjoining the photosensitive material. Such adhesion promotion may be provided by such structured surface with or without providing low reflectivity at the operating characteristics of holographic optical systems to use the media. The structures may be same or similar to one-, two-, or three-dimensional sinusoidal, triangular, staircase, moth eye, pyramidal, lamellar, or binary structures, or combinations thereof, and may be periodic or random.
    • 提供用于存储和读取全息数据的全息介质,其具有一个或多个外表面或内表面,该外表面或内表面具有用于使来自入射到表面的照明的反射最小化或增强介质内的表面之间的粘附中的至少一个的结构。 用于最小化反射的结构表示在使用介质的全息光学系统的操作特性(例如光谱带宽,角带宽和入射到介质的照明的偏振)下提供低反射率的亚波长结构的光栅图案。 可以通过沿着介质的内表面的结构提供粘合促进,例如沿着介质的感光材料与邻近感光材料的基底材料之间的界面表面。 这种粘附促进可以由这样的结构化表面提供,在使用该介质的全息光学系统的操作特性下提供或不提供低反射率。 结构可以与一维,二维或三维正弦,三角形,阶梯,蛾眼,金字塔形,层状或二元结构或其组合相同或相似,并且可以是周期性的或随机的。