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    • 1. 发明授权
    • Distributed audio visual system and content directory management system and method thereof
    • 分布式视听系统和内容目录管理系统及其方法
    • US08452802B2
    • 2013-05-28
    • US12337592
    • 2008-12-17
    • Chi-Chun ChenJian-Hong LiuYi-Chang Zhuang
    • Chi-Chun ChenJian-Hong LiuYi-Chang Zhuang
    • G06F17/30
    • H04L12/2812H04L65/4084H04L67/104H04L67/1063H04L67/1095H04L2012/2849H04N7/165H04N21/2665H04N21/278
    • A distributed audio visual (AV) system including a plurality of media servers, a media renderer, and a control point which are connected to each other via a peer-to-peer network is provided. Each of the media servers includes a content directory management unit (CDMU) and a query content information (QCI) module, wherein the CDMU includes a synchronizer module and a content information maintainer (CIM) module. The synchronizer module synchronizes content information of AV contents stored in all the media servers. The CIM module records the content information and establishes an integrated content directory list according to the content information. The QCI module queries the content information. The control point obtains the integrated content directory list from one of the media servers and queries the content information related to all the AV contents, so as to control the media renderer to play the AV contents.
    • 提供了包括经由点对点网络彼此连接的多个媒体服务器,媒体渲染器和控制点的分布式视听(AV)系统。 每个媒体服务器包括内容目录管理单元(CDMU)和查询内容信息(QCI)模块,其中CDMU包括同步器模块和内容信息维护器(CIM)模块。 同步器模块同步存储在所有媒体服务器中的AV内容的内容信息。 CIM模块记录内容信息,并根据内容信息建立综合内容目录列表。 QCI模块查询内容信息。 控制点从媒体服务器之一获取综合内容目录列表,查询与所有AV内容有关的内容信息,以控制媒体渲染器播放AV内容。
    • 4. 发明申请
    • STORAGE MANAGEMENT SYSTEM AND METHOD THEREOF
    • 存储管理系统及其方法
    • US20070156763A1
    • 2007-07-05
    • US11308389
    • 2006-03-21
    • Jian-Hong LiuYi-Chang ZhuangLiun-Jou Tsai
    • Jian-Hong LiuYi-Chang ZhuangLiun-Jou Tsai
    • G06F17/30
    • G06F16/10
    • A storage management system and method thereof are disclosed. The storage management system includes a file system server, a metadata server, and an object storage device (OSD). The file system server is used for accessing a file through a virtual partition. The metadata server is used for storing metadata of the accessed file. The OSD which is managed by the metadata server has a plurality of storage units. When a file is accessed, a command for accessing the file is transmitted to the metadata server by the file system server, and the file system server performs file access operation to the OSD according to the metadata of the accessed file transmitted back by the metadata server.
    • 公开了一种存储管理系统及其方法。 存储管理系统包括文件系统服务器,元数据服务器和对象存储设备(OSD)。 文件系统服务器用于通过虚拟分区访问文件。 元数据服务器用于存储访问文件的元数据。 由元数据服务器管理的OSD具有多个存储单元。 当访问文件时,由文件系统服务器将用于访问该文件的命令发送到元数据服务器,并且文件系统服务器根据由元数据服务器发回的访问文件的元数据对OSD执行文件访问操作 。
    • 7. 发明授权
    • Multimedia file sharing method and system thereof
    • 多媒体文件共享方法及其系统
    • US08806051B2
    • 2014-08-12
    • US13370292
    • 2012-02-09
    • Chun-Yu WangHsu-Cheng LinChia-Ying TsaiJian-Hong Liu
    • Chun-Yu WangHsu-Cheng LinChia-Ying TsaiJian-Hong Liu
    • G06F15/173
    • H04L67/06
    • A multimedia file sharing method and a system thereof are provided herein, which applies the virtual file technology to achieve near real time multimedia sharing and transparent receiving functions. In the method, an interface software system is established through a network to speed up playing of multimedia files by different multimedia players. The interface software provides a speeding up and near real time multimedia playing effect for sharing multimedia through the network, by which for different transmissions of multimedia files or for playing multimedia files with different formats, the multimedia player is not necessary to modify or add the software of the players to meet the streaming protocols or container. In addition, the interface software is capable of providing the effect of playing the multimedia files by the players with satisfied quality and near real time performance.
    • 本文提供了一种多媒体文件共享方法及其系统,其应用虚拟文件技术来实现近实时多媒体共享和透明接收功能。 在该方法中,通过网络建立了界面软件系统,以加速不同多媒体播放器播放多媒体文件。 界面软件提供了一种加速和接近实时的多媒体播放效果,用于通过网络共享多媒体,通过多媒体文件的不同传输或播放具有不同格式的多媒体文件,多媒体播放器不需要修改或添加软件 的玩家满足流媒体协议或容器。 另外,界面软件能够提供质量和接近实时性能的玩家播放多媒体文件的效果。
    • 8. 发明申请
    • MULTIMEDIA FILE SHARING METHOD AND SYSTEM THEREOF
    • 多媒体文件共享方法及其系统
    • US20130138736A1
    • 2013-05-30
    • US13370292
    • 2012-02-09
    • Chun-Yu WangHsu-Cheng LinChia-Ying TsaiJian-Hong Liu
    • Chun-Yu WangHsu-Cheng LinChia-Ying TsaiJian-Hong Liu
    • G06F15/16
    • H04L67/06
    • A multimedia file sharing method and a system thereof are provided herein, which applies the virtual file technology to achieve near real time multimedia sharing and transparent receiving functions. In the method, an interface software system is established through a network to speed up playing of multimedia files by different multimedia players. The interface software provides a speeding up and near real time multimedia playing effect for sharing multimedia through the network, by which for different transmissions of multimedia files or for playing multimedia files with different formats, the multimedia player is not necessary to modify or add the software of the players to meet the streaming protocols or container. In addition, the interface software is capable of providing the effect of playing the multimedia files by the players with satisfied quality and near real time performance.
    • 本文提供了一种多媒体文件共享方法及其系统,其应用虚拟文件技术来实现近实时多媒体共享和透明接收功能。 在该方法中,通过网络建立了界面软件系统,以加速不同多媒体播放器播放多媒体文件。 界面软件提供了一种加速和接近实时的多媒体播放效果,用于通过网络共享多媒体,通过多媒体文件的不同传输或播放具有不同格式的多媒体文件,多媒体播放器不需要修改或添加软件 的玩家满足流媒体协议或容器。 另外,界面软件能够提供质量和接近实时性能的玩家播放多媒体文件的效果。
    • 9. 发明申请
    • Method for forming Au-bump with clean surface
    • 用清洁表面形成Au凸块的方法
    • US20080131981A1
    • 2008-06-05
    • US11950358
    • 2007-12-04
    • Shih-Hsiung LinPo-Jui ChenJian-Hong Liu
    • Shih-Hsiung LinPo-Jui ChenJian-Hong Liu
    • H01L21/66
    • H01L22/22
    • A method for fabricating and testing a semiconductor wafer includes sputtering a TiW layer on a passivation layer and on pads, next sputtering a seed layer, made of gold, on the TiW layer, next forming a photoresist layer on the seed layer, next electroplating gold bumps on the seed layer exposed by openings in the photoresist layer, next removing the photoresist layer, next removing the seed layer not under the gold bumps, next etching the TiW layer not under the gold bumps with an etchant containing H2O2 at a temperature of between 35 and 50 degrees C, or with an etchant containing H2O2 and with ultrasonic waves applied to the etchant, next contacting probe tips of a probe card with some of the gold bumps, next cleaning the probe tips until repeating the step of contacting the probe tips with some of the gold bumps at greater than 100 times, and then after cleaning the probe tips, repeating the step of contacting the probe tips with some of the gold bumps.
    • 一种用于制造和测试半导体晶片的方法包括在钝化层和焊盘上溅射TiW层,接下来在TiW层上溅射由金构成的晶种层,接着在种子层上形成光致抗蚀剂层,接下来的电镀金 在光致抗蚀剂层中由开口暴露的晶种层上的突起,接下来去除光致抗蚀剂层,接下来除去不在金凸块之下的种子层,接着用含有H 2的蚀刻剂蚀刻不在金凸块之下的TiW层, 在35至50℃的温度下,或用含有H 2 O 2 O 2的蚀刻剂和超声波 应用于蚀刻剂,接下来将探针卡的探针尖端与一些金凸块接触,然后清洁探针尖端,直到重复将探针尖端与一些金凸块接触大于100次的步骤,然后清洁 探针尖端,重复探针尖端与其中一些接触的步骤 金块。