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    • 41. 发明授权
    • Video player
    • 视频播放器
    • US08607285B2
    • 2013-12-10
    • US13474389
    • 2012-05-17
    • Sanjay RamanMichael MurrayHenry YaoMartin Oliver Pedrick
    • Sanjay RamanMichael MurrayHenry YaoMartin Oliver Pedrick
    • H04N21/20
    • H04N21/235H04N21/4622
    • Methods, systems, and tangible computer-readable memory media are disclosed that relate to a video player configured to play a video file. During playback, the video player, in one embodiment, is configured to access metadata relating to, but separate from, the video file to dynamically display graphical content distinct from the video file. A server system may receive, from a client computer system (e.g., of the video owner), information specifying metadata for the video file. This metadata may specify the display of overlay graphics and/or navigation graphics, the overlay of audio, etc. Additionally, the metadata may specify items needed to perform a process depicted in an instructional video; upon playing the video, the video player may provide one or more purchase links for such items. In one embodiment, a server system may edit the underlying video file—e.g., to include overlay graphics.
    • 公开了与被配置为播放视频文件的视频播放器相关的方法,系统和有形计算机可读存储器介质。 在播放期间,在一个实施例中,视频播放器被配置为访问与视频文件相关但与之分开的元数据,以动态地显示与视频文件不同的图形内容。 服务器系统可以从客户计算机系统(例如,视频所有者)接收指定视频文件的元数据的信息。 该元数据可以指定覆盖图形和/或导航图形的显示,音频的叠加等。此外,元数据可以指定执行教学视频中描绘的过程所需的项目; 在播放视频时,视频播放器可以为这些项目提供一个或多个购买链接。 在一个实施例中,服务器系统可以编辑底层视频文件,例如包括重叠图形。
    • 47. 发明授权
    • Apparatus, method, and system of NAND defect management
    • NAND缺陷管理的设备,方法和系统
    • US07669092B2
    • 2010-02-23
    • US11710794
    • 2007-02-26
    • Michael Murray
    • Michael Murray
    • G11C29/00G11C16/04
    • G11C29/04G06F12/0246G06F2212/7201G11C29/08G11C29/76
    • Various embodiments comprise apparatus, methods, and systems that include an apparatus comprising a memory device configurable as a plurality of erase block groups including a base erase block group, wherein each of the plurality of erase block groups comprises a plurality of erase blocks each identified by a matching unique plurality of erase block numbers unique within the plurality of erase blocks and matching across the plurality of erase block groups; and a mapping table coupled to the plurality of erase block groups to store at least one group address number corresponding to one of the matching unique plurality of erase block numbers identifying a non-defective erase block in the base erase block group, and corresponding to several of the matching unique plurality of erase block numbers identifying a single non-defective erase block in each of the plurality of erase block groups other than the base erase block group.
    • 各种实施例包括装置,方法和系统,其包括装置,其包括可配置为包括基本擦除块组的多个擦除块组的存储器件,其中多个擦除块组中的每一个包括多个擦除块,每个擦除块由 在多个擦除块内唯一的匹配唯一的多个擦除块号,并且跨越多个擦除块组进行匹配; 以及映射表,其耦合到所述多个擦除块组,以存储对应于所述基本擦除块组中识别无缺陷擦除块的匹配唯一多个擦除块号中的一个的至少一个组地址号, 识别除了基本擦除块组之外的多个擦除块组中的每一个中的单个无缺陷擦除块的匹配的唯一多个擦除块号。
    • 49. 发明申请
    • Methods of automatically generating dummy fill having reduced storage size
    • 自动生成减少存储大小的虚拟填充的方法
    • US20080121939A1
    • 2008-05-29
    • US11593892
    • 2006-11-06
    • Michael MurrayVan Nguyen
    • Michael MurrayVan Nguyen
    • H01L27/10G06F17/50
    • H01L22/20G03F1/36H01L2924/0002H01L2924/00
    • The disclosure relates generally to production of lithography masks such as used in mass production of monolithic integrated circuits (IC's). Layers of such IC's often need to be filled with dummy-fill. In accordance with the disclosure, dummy-objects are first generated by a conventional flat-fill technique and then they are automatically surrounded by outlines that are substantially wrinkle-free. The outlines are cleared of the original flat-fill and then used as areas that are to be automatically tiled by an auto-tiling program. Tiles are then re-filled with array definitions of regularly-spaced dummy-objects. The arrays consume less data storage space than do the original, individually-specified (flat-filled) dummy-objects. The array data is appended to layout data of functional objects in a layer of the integrated monolithic device (IC) to thereby generate a dummy-filled tapeout file. The dummy-filled tapeout file is subjected to pre-tapeout rules checking and then transmitted via a network to a mask house for production of a corresponding lithography mask. The lithography mask is used to mass produce corresponding integrated circuits.
    • 本公开通常涉及用于批量生产单片集成电路(IC)的光刻掩模的生产。 这种IC的层通常需要填充虚拟填充。 根据本公开,虚拟物体首先通过常规的平填技术生成,然后它们被基本上无皱纹的轮廓自动地包围。 轮廓线被清除原始的平面填充,然后被用作自动平铺程序自动平铺的区域。 然后使用规则间隔的虚拟对象的数组定义重新填充瓷砖。 与原始的,单独指定的(平坦填充的)虚拟对象相比,阵列消耗的数据存储空间较少。 将阵列数据附加到集成单片设备(IC)的层中的功能对象的布局数据,从而生成虚拟填充的流图文件。 虚拟填充的流图文件经受预先流图规则检查,然后经由网络传输到掩模室,以生产相应的光刻掩模。 光刻掩模用于批量生产相应的集成电路。