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    • 1. 发明授权
    • Pop-up drain stopper linkage assembly
    • 弹出式排水止动连杆总成
    • US08136179B2
    • 2012-03-20
    • US12201864
    • 2008-08-29
    • Chun-Hung LiWei-Mien HsuYongjun Wu
    • Chun-Hung LiWei-Mien HsuYongjun Wu
    • E03C1/244
    • E03C1/23E03C1/2302
    • A pop-up drain stopper linkage assembly includes a lift rod, a connecting bar, a pivot rod and a drain stopper. The bottom end of the lift rod forms an engagement part. The upper end of the connecting bar has an engagement groove for the engagement part of the lift rod being engaged and fixed, and the connecting bar has a plurality of holes spaced apart a distance away from the engagement groove. The second end of the pivot rod connects to the drain stopper and a section adjacent the first end has a plurality of fixed portions for tying in with the hole of the connecting bar, and each of the fixed portions and any one of the holes are capable of being passing through and positioning with each other. Thereby, the pop-up drain stopper linkage assembly can be quickly and conveniently assembled with reliable linking effect.
    • 弹出式排水止动器联动组件包括提升杆,连接杆,枢轴杆和排水塞。 提升杆的底端形成接合部。 连接杆的上端具有用于接合和固定提升杆的接合部分的接合槽,并且连接杆具有与接合槽间隔开一段距离的多个孔。 枢轴杆的第二端连接到排水止动件,与第一端相邻的部分具有多个用于与连接杆的孔接合的固定部分,并且每个固定部分和任何一个孔都能够 通过并相互定位。 由此,能够以可靠的连接效果快速且方便地组装弹出式排水止动连杆机构。
    • 2. 发明申请
    • QUICK INSTALLED JOINT ASSEMBLY
    • 快速安装联合装配
    • US20100032943A1
    • 2010-02-11
    • US12188589
    • 2008-08-08
    • Chun-Hung LIWei-Mien HsuYongjun Wu
    • Chun-Hung LIWei-Mien HsuYongjun Wu
    • F16L41/00
    • F16L41/023E03C1/0403F16L37/0985
    • A quick installed joint assembly includes a fitting body, a sleeve, and an inlet pipe. One end of the chamber of the body communicates with a water supply pipeline, and the other end communicates with an accommodation part and passing through the fitting body. The sleeve is disposed within the accommodation part and has stopper portions. Each stopper portion has a wedge-like portion and a hook portion is extending outwardly from the wedge-like portion. The body has plural openings corresponding to each stopper portion, so that one end of the inlet pipe can pass through the sleeve and be inserted within the chamber. The inlet pipe corresponding to the bottom edge of the stopper portion has a large diameter portion for leaning against on the stopper portion, so the hook portion can be hooked on the openings and the inside wall of the accommodation part can support the wedge-like portion.
    • 快速安装的接头组件包括配件主体,套筒和入口管。 本体室的一端与供水管道连通,另一端与容纳部分连通并穿过配件体。 套筒设置在容纳部分内并具有止动部分。 每个止动部分具有楔形部分,并且钩部分从楔形部分向外延伸。 主体具有对应于每个止挡部分的多个开口,使得入口管的一端可以穿过套筒并插入腔室内。 对应于止动部分的底部边缘的入口管具有用于靠在止动部分上的大直径部分,因此钩部分可以钩在开口上,并且容纳部分的内壁可以支撑楔形部分 。
    • 3. 发明授权
    • Bitstream manipulation and verification of encoded digital media data
    • 编码数字媒体数据的比特流处理和验证
    • US09215471B2
    • 2015-12-15
    • US12945728
    • 2010-11-12
    • Jarred BonaparteFiroz DalalYongjun Wu
    • Jarred BonaparteFiroz DalalYongjun Wu
    • H04N19/40H04N19/89H04N7/52
    • H04N19/40G06F21/83H04N7/52H04N19/89
    • Disclosed herein are representative embodiments of methods, apparatus, and systems for manipulating bitstreams of digital media data compressed according to a compression standard. Also disclosed are representative embodiments of methods, apparatus, and systems for evaluating compliance of an encoded bitstream of digital media data with a compression standard. In one exemplary embodiment, a conforming bitstream of compressed digital media data is input. One or more of the parameters in the bitstream are selectively altered into parameters that do not conform to the video compression standard. The selective alteration can be performed such that parameters that would make the bitstream non-decodable if altered are bypassed and left unaltered. A non-conforming bitstream that includes the one or more selectively altered parameters is output.
    • 这里公开了用于操纵根据压缩标准压缩的数字媒体数据的比特流的方法,装置和系统的代表性实施例。 还公开了用于评估数字媒体数据的编码比特流与压缩标准的符合性的方法,装置和系统的代表性实施例。 在一个示例性实施例中,输入压缩数字媒体数据的符合比特流。 将比特流中的一个或多个参数选择性地改变为不符合视频压缩标准的参数。 可以执行选择性改变,使得如果改变将使比特流不可解码的参数被绕过并保持不变。 输出包括一个或多个选择性地改变的参数的不合格比特流。
    • 4. 发明授权
    • Low-latency video decoding
    • 低延迟视频解码
    • US08885729B2
    • 2014-11-11
    • US12966914
    • 2010-12-13
    • Yongjun WuGang JiShyam Sadhwani
    • Yongjun WuGang JiShyam Sadhwani
    • H04N11/02H04N19/103H04N19/44H04N19/42H04N19/70H04N19/156
    • H04N19/188H04N19/103H04N19/156H04N19/1883H04N19/42H04N19/44H04N19/70
    • Techniques and tools for reducing latency in video decoding for real-time communication applications that emphasize low delay. For example, a tool such as a video decoder selects a low-latency decoding mode. Based on the selected decoding mode, the tool adjusts output timing determination, picture boundary detection, number of pictures in flight and/or jitter buffer utilization. For low-latency decoding, the tool can use a frame count syntax element to set initial output delay for a decoded picture buffer, and the tool can use auxiliary delimiter syntax elements to detect picture boundaries. To further reduce delay in low-latency decoding, the tool can reduce number of pictures in flight for multi-threaded decoding and reduce or remove jitter buffers. The tool receives encoded data, performs decoding according to the selected decoding mode to reconstruct pictures, and outputs the pictures for display.
    • 用于减少视频解码中延迟延迟的技术和工具,用于强调低延迟的实时通信应用。 例如,诸如视频解码器的工具选择低延迟解码模式。 基于选择的解码模式,该工具调整输出定时确定,图像边界检测,飞行中的图像数和/或抖动缓冲器利用率。 对于低延迟解码,该工具可以使用帧计数语法元素为解码图像缓冲区设置初始输出延迟,并且该工具可以使用辅助分隔符语法元素来检测图像边界。 为了进一步减少低延迟解码的延迟,该工具可以减少飞行中用于多线程解码的图片数量,并减少或删除抖动缓冲区。 该工具接收编码数据,根据选择的解码模式执行解码以重构图像,并输出用于显示的图像。
    • 5. 发明申请
    • MEMORY MANAGEMENT FOR VIDEO DECODING
    • 视频解码的内存管理
    • US20130051478A1
    • 2013-02-28
    • US13223079
    • 2011-08-31
    • Yongjun WuShyam Sadhwani
    • Yongjun WuShyam Sadhwani
    • H04N7/26
    • H04N19/423H04N19/0049H04N19/127H04N19/136H04N19/159H04N19/172H04N19/176H04N19/426H04N19/44
    • Techniques and tools described herein help manage memory efficiently during video decoding, especially when multiple video clips are concurrently decoded. For example, with clip-adaptive memory usage, a decoder determines first memory usage settings expected to be sufficient for decoding of a video clip. The decoder also determines second memory usage settings known to be sufficient for decoding of the clip. During decoding, memory usage is initially set according to the first settings. Memory usage is adaptively increased during decoding, subject to theoretical limits in the second settings. With adaptive early release of side information, the decoder can release side information memory for a picture earlier than the decoder releases image plane memory for the picture. The decoder can also adapt memory usage for decoded transform coefficients depending on whether the coefficients are for intra-coded blocks or inter-coded blocks, and also exploit the relative sparseness of non-zero coefficient values.
    • 这里描述的技术和工具有助于在视频解码期间有效地管理存储器,特别是当多个视频片段被同时解码时。 例如,利用剪辑自适应存储器使用,解码器确定预期对视频剪辑的解码足够的第一存储器使用设置。 解码器还确定已知足以解码剪辑的第二存储器使用设置。 在解码期间,最初根据第一个设置设置内存使用。 存储器使用在解码期间自适应地增加,受到第二设置中的理论限制。 利用辅助信息的适应性早期释放,解码器可以在解码器释放用于图像的图像平面存储器之前释放用于图像的侧信息存储器。 解码器还可以根据系数是用于帧内编码块还是帧间编码块来适应解码变换系数的存储器使用,并且还利用非零系数值的相对稀疏度。
    • 9. 发明申请
    • Error concealment techniques in video decoding
    • 视频解码中的错误隐藏技术
    • US20090323826A1
    • 2009-12-31
    • US12217039
    • 2008-06-30
    • Yongjun WuNaveen ThumpudiDaniel DinuWilliam R. Sanders
    • Yongjun WuNaveen ThumpudiDaniel DinuWilliam R. Sanders
    • H04N7/26
    • H04N19/895
    • Error concealment techniques for video decoding are described. For example, a video decoder after finding a corrupted picture in a bit stream, finds a suitable neighbor for the corrupted picture. For example, the video decoder favors pictures with the same parity as the corrupted picture and considers picture order count and picture corruption in choosing a neighbor. The decoder then modifies syntax elements for the encoded video in the bit stream to allow the neighbor to be used in concealing the corruption in the corrupted picture. The modification of syntax elements can depend on the particular video decoder implementation. For example, in a software-only multithreaded video decoder, a task graph is modified, while in a system utilizing video acceleration, syntax elements for reference lists are modified.
    • 描述视频解码的错误隐藏技术。 例如,在比特流中找到损坏的图像之后的视频解码器找到用于损坏的图像的合适的邻居。 例如,视频解码器有利于与损坏的图像具有相同奇偶性的图像,并且在选择邻居时考虑图像顺序计数和图像损坏。 然后,解码器修改比特流中编码视频的语法元素,以允许邻居用于隐藏损坏的图像中的损坏。 语法元素的修改可以取决于特定的视频解码器实现。 例如,在仅软件多线程视频解码器中,任务图被修改,而在利用视频加速的系统中,用于参考列表的语法元素被修改。