Information storage medium storing multi angle data, and recording method and reproducing apparatus thereof
    94.
    发明授权
    Information storage medium storing multi angle data, and recording method and reproducing apparatus thereof 有权
    存储多角度数据的信息存储介质及其记录方法和再现装置

    公开(公告)号:US08761569B2

    公开(公告)日:2014-06-24

    申请号:US12276486

    申请日:2008-11-24

    Abstract: A method of storing multi angle data. Data for a plurality of angles of a scene are stored in interleaved blocks. Sizes of the interleaved blocks are integral multiples of sizes of integral numbered aligned units that include packets. Angle change points are included in each of the interleaved blocks, allowing a reproducing apparatus to seamlessly jump from one angle to another angle during reproduction of the multi angle data. A number of the angle points recorded on the information storage medium is computed so that a jumping distance required by the data during reproduction does not exceed a maximum jumping distance of a reproducing apparatus.

    Abstract translation: 一种存储多角度数据的方法。 用于场景的多个角度的数据被存储在交织块中。 交错块的大小是包括分组的整数编号的对齐单元的大小的整数倍。 角度变化点包括在每个交错块中,允许再现装置在多角度数据的再现期间从一个角度无缝跳跃到另一个角度。 计算记录在信息存储介质上的多个角度点,使得再现期间数据所需的跳跃距离不超过再现装置的最大跳跃距离。

    DEVICE FOR MANUFACTURING SEMICONDUCTOR OR METALLIC OXIDE INGOT
    95.
    发明申请
    DEVICE FOR MANUFACTURING SEMICONDUCTOR OR METALLIC OXIDE INGOT 有权
    用于制造半导体或金属氧化物的装置

    公开(公告)号:US20140150717A1

    公开(公告)日:2014-06-05

    申请号:US14239227

    申请日:2012-08-17

    Abstract: Provided is an apparatus for manufacturing a semiconductor or metal oxide ingot by sequentially inducing a liquid-to-solid phase transition of a liquid raw material following a solidification direction, the apparatus including: a crucible containing a semiconductor or metal oxide raw material; a cooling unit spaced apart from the crucible at a predetermined distance in a vertical direction, when a height direction of the crucible is designated by the vertical direction and a direction perpendicular to the vertical direction is designated by a horizontal direction; a first heating unit spaced apart from the crucible at a predetermined distance in the horizontal direction and surrounding a circumferential surface of the crucible; and an insulating member provided between the crucible and the cooling unit in the horizontal direction, a position of the insulating member being shifted by a shifting unit.

    Abstract translation: 本发明提供一种通过依次在固化方向上引起液体原料的液相 - 固相转变来制造半导体或金属氧化物锭的装置,该装置包括:含有半导体或金属氧化物原料的坩埚; 当坩埚的高度方向由垂直方向指定并且垂直于垂直方向的方向由水平方向指定时,在垂直方向上以预定距离与坩埚隔开预定距离的冷却单元; 第一加热单元,其在水平方向上以预定距离与坩埚隔开并围绕坩埚的圆周表面; 以及绝缘构件,其在水平方向上设置在所述坩埚和所述冷却单元之间,所述绝缘构件的位置被移动单元移位。

    Apparatus and method for detecting radiation
    97.
    发明授权
    Apparatus and method for detecting radiation 有权
    辐射检测装置及方法

    公开(公告)号:US08536553B2

    公开(公告)日:2013-09-17

    申请号:US12957852

    申请日:2010-12-01

    CPC classification number: H01L27/14634 G01T1/246 H01L27/14676 H01L27/14692

    Abstract: An apparatus and method for detecting radiation are provided. The apparatus includes an upper electrode layer transmitting radiation; a first insulating layer blocking charges from the upper electrode layer; a photoconductive layer becoming photoconductive upon exposure to the radiation; a second insulating layer protecting the photoconductive layer from a plasma discharge; a lower substrate facing the second insulating layer; a plurality of barrier ribs defining a cell structure between the second insulating layer and the lower substrate; a gas layer included in an inner chamber inside the cell structure and generating a plasma discharge; a bottom electrode formed on the lower substrate; a first radio frequency (RF) electrode formed over the bottom electrode and connected to a ground source; a second RF electrode to which RF power for generating plasma is applied; and a third insulating layer surrounding the first and second RF electrodes and thus insulating the first and second RF electrodes from the gas layer and the bottom electrode.

    Abstract translation: 提供了一种用于检测辐射的装置和方法。 该装置包括发射辐射的上电极层; 从上部电极层阻挡电荷的第一绝缘层; 光电导层在暴露于辐射时变得光电导; 保护光电导层免受等离子体放电的第二绝缘层; 面向所述第二绝缘层的下基板; 多个阻挡肋,限定所述第二绝缘层和所述下基板之间的电池结构; 包括在所述电池结构内的内室中并产生等离子体放电的气体层; 形成在下基板上的底电极; 形成在所述底部电极上并连接到地源的第一射频(RF)电极; 施加用于产生等离子体的RF功率的第二RF电极; 以及围绕第一和第二RF电极并因此使第一和第二RF电极与气体层和底部电极绝缘的第三绝缘层。

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