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    • 91. 发明申请
    • MOTION VECTOR PREDICTORS (MVPs) FOR BI-PREDICTIVE INTER MODE IN VIDEO CODING
    • 运动矢量预测器(MVPs)用于视频编码中的双重预测互动
    • US20120230392A1
    • 2012-09-13
    • US13352175
    • 2012-01-17
    • Yunfei ZhengWei-Jung ChienMarta Karczewicz
    • Yunfei ZhengWei-Jung ChienMarta Karczewicz
    • H04N7/28H04N7/36
    • H04N19/463H04N19/159H04N19/176H04N19/196H04N19/197H04N19/52
    • This disclosure describes video coding techniques applicable to a bi-predictive inter mode that uses adaptive motion vector prediction (AMVP). In particular, this disclosure describes techniques for encoding or decoding video data in which AMVP is used to code a first motion vector and a second motion vector associated with a current video block that is coded in the bi-predictive inter mode. More specifically, this disclosure describes techniques in which one motion vector of a bi-predictive video block can be used to define a candidate motion vector predictor (MVP) for predicting another motion vector of the bi-predictive video block. In many examples, a scaled version of the first motion vector of the bi-predictive video block is used as the MVP for the second motion vector of the bi-predictive video block. By defining an additional MVP candidate for the second motion vector of a bi-predictive video block, improved compression may be achieved.
    • 本公开描述了适用于使用自适应运动矢量预测(AMVP)的双预测帧间模式的视频编码技术。 特别地,本公开描述了用于编码或解码视频数据的技术,其中使用AMVP来编码第一运动矢量和与以双预测帧间编码的当前视频块相关联的第二运动矢量。 更具体地,本公开描述了其中可以使用双预测视频块的一个运动矢量来定义用于预测双预测视频块的另一个运动矢量的候选运动矢量预测器(MVP)的技术。 在许多示例中,双预测视频块的第一运动矢量的缩放版本被用作双预测视频块的第二运动矢量的MVP。 通过为双预测视频块的第二运动矢量定义附加MVP候选,可以实现改进的压缩。
    • 93. 发明申请
    • VARIABLE LENGTH CODING OF VIDEO BLOCK COEFFICIENTS
    • 视频块系数的可变长度编码
    • US20120170662A1
    • 2012-07-05
    • US13338891
    • 2011-12-28
    • Marta KarczewiczXianglin WangWei-Jung ChienLiwei Guo
    • Marta KarczewiczXianglin WangWei-Jung ChienLiwei Guo
    • H04N7/30
    • H03M7/42H04N19/13H04N19/60H04N19/93
    • This disclosure describes techniques for coding transform coefficients for a block of video data. According to some aspects of this disclosure, a coder (e.g., an encoder or decoder) may map between a code number cn and level_ID and run values associated with a first transform coefficient of the block of video data according to a first technique (e.g., a structured mapping), and map between a code number cn and level_ID and run values associated with a second coefficient of the block using a second technique. According to other aspects of this disclosure, the coder may map between a code number cn and level_ID and run syntax elements using different mathematical relationships, depending on a determined value of the code number cn or the level_ID syntax element. For example, the coder may access a mapping table of a plurality of mapping tables differently, dependent on the determined value.
    • 本公开描述了用于编码视频数据块的变换系数的技术。 根据本公开的一些方面,编码器(例如,编码器或解码器)可以根据第一技术(例如,编码器或解码器)在视频数据块的第一变换系数与代码号cn和level_ID之间映射和运行值, 结构化映射),并且使用第二技术在代码号cn和level_ID之间映射和与块的第二系数相关联的运行值。 根据本公开的其他方面,编码器可以根据代码号cn或level_ID语法元素的确定值,在代码号cn和level_ID之间映射并使用不同的数学关系运行语法元素。 例如,编码器可以根据确定的值不同地访问多个映射表的映射表。
    • 94. 发明申请
    • ADAPTIVE MOTION VECTOR RESOLUTION SIGNALING FOR VIDEO CODING
    • 自适应运动矢量分解信号用于视频编码
    • US20120093226A1
    • 2012-04-19
    • US13247785
    • 2011-09-28
    • Wei-Jung ChienPeisong ChenMarta Karczewicz
    • Wei-Jung ChienPeisong ChenMarta Karczewicz
    • H04N7/32
    • H04N19/523H04N19/13H04N19/139H04N19/176H04N19/463H04N19/91
    • A video encoder may be configured to adaptively select a sub-pixel precision for motion vectors used to encode video data. The video encoder may further entropy encode an indication of the sub-pixel precision using context adaptive binary arithmetic coding, where the context may correspond to the size of a block of video data for the motion vector. For example, the size may correspond to the depth of a coding unit, the size of a prediction unit of the coding unit, and/or a type for the prediction unit. The video encoder may also interpolate values for one-sixteenth pixel positions of chrominance data using bilinear interpolation. The video encoder may further encode a motion vector difference value for the motion vector using an encoding scheme corresponding to the sub-pixel precision of the motion vector. A video decoder may use similar, reciprocal techniques for decoding the video data.
    • 视频编码器可以被配置为自适应地选择用于对视频数据进行编码的运动矢量的子像素精度。 视频编码器可以使用上下文自适应二进制算术编码进一步对子像素精度的指示进行熵编码,其中上下文可以对应于用于运动矢量的视频数据块的大小。 例如,大小可以对应于编码单元的深度,编码单元的预测单元的大小和/或预测单元的类型。 视频编码器也可以使用双线性插值内插色度数据的第十六象素位置的值。 视频编码器可以使用与运动矢量的子像素精度相对应的编码方案来进一步编码运动矢量的运动矢量差值。 视频解码器可以使用类似的互逆技术来解码视频数据。
    • 95. 发明申请
    • LOW COMPLEXITY ADAPTIVE FILTER
    • 低复杂自适应滤波器
    • US20120044992A1
    • 2012-02-23
    • US13194554
    • 2011-07-29
    • In Suk ChongWei-Jung ChienMarta Karczewicz
    • In Suk ChongWei-Jung ChienMarta Karczewicz
    • H04N7/32
    • H04N19/82H04N19/117H04N19/14H04N19/192H04N19/46H04N19/61H04N19/96
    • An interim filter determined for a previous series of video blocks can be applied to a current series of video blocks to determine an interim filter map for the current series of video blocks. Based on the interim filter map, a decoding filter can be determined. By applying the decoding filter to the current series of video blocks, a decoding filtering map can be determined. Based on CUs identified as having filtering off by the decoding filtering map, an interim filter for the current series of video blocks can be determined. The decoding filter and decoding filtering map can be transmitted to a decoder, while the interim filter and interim filter map may not be transmitted to a decoder. The interim filter for the current series of video blocks can be used to generate an interim filter map for a next series of video blocks.
    • 为先前的一系列视频块确定的中间滤波器可以应用于当前系列的视频块,以确定当前系列视频块的临时滤波器图。 基于临时滤波器图,可以确定解码滤波器。 通过将解码滤波器应用于当前系列视频块,可以确定解码滤波图。 基于被识别为通过解码滤波图进行滤波的CU,可以确定当前系列视频块的临时滤波器。 解码滤波器和解码滤波图可以被发送到解码器,而中间滤波器和中间滤波器图可以不被发送到解码器。 用于当前系列视频块的临时滤波器可用于为下一系列视频块生成临时滤波器图。
    • 99. 发明申请
    • PACKAGED STRUCTURE HAVING MAGNETIC COMPONENT AND METHOD THEREOF
    • 具有磁性元件的包装结构及其方法
    • US20110108317A1
    • 2011-05-12
    • US12699777
    • 2010-02-03
    • William Lee HARRISONJung-Chien CHANG
    • William Lee HARRISONJung-Chien CHANG
    • H05K1/11
    • H01F17/0033H01F17/062H05K1/165H05K3/427H05K3/4602H05K3/4652H05K2201/086H05K2201/09036H05K2201/097H05K2203/1178
    • A packaged structure having a magnetic component and a method of manufacturing the same are provided. The packaged structure includes an insulating substrate having a ring-typed recess, an island portion and a surrounding portion defined by the ring-typed recess, wherein the ring-typed recess is laterally between the island portion and the surrounding portion. The packaged structure further includes a ring-typed magnetic component placed in the ring-typed recess; an upper wiring layer above the insulating substrate and a lower wiring layer under the insulating substrate; an inner plated through hole vertically passing through the island portion and connecting the upper wiring layer and the lower wiring layer; an outer plated through hole vertically passing through the surrounding portion and connecting the upper wiring layer and the lower wiring layer, wherein the inner plated through hole, the outer plated through hole, the upper wiring layer and the lower wiring layer form a coil of wire surrounding the ring-typed magnetic component.
    • 提供具有磁性部件的封装结构及其制造方法。 封装结构包括具有环形凹部,岛状部分和由环型凹部限定的环绕部分的绝缘基板,其中环形凹部横向在岛部分和周围部分之间。 封装结构还包括放置在环型凹槽中的环型磁性部件; 绝缘基板上方的上布线层和绝缘基板下方的下布线层; 垂直穿过岛部并连接上布线层和下布线层的内电镀通孔; 外部电镀通孔垂直地穿过周围部分并连接上部布线层和下部布线层,其中内部电镀通孔,外部电镀通孔,上部布线层和下部布线层形成线圈 围绕环型磁性元件。
    • 100. 发明授权
    • Method of fabricating a carbon monoxide detector and a carbon monoxide detector fabricated using the same
    • 制造一氧化碳检测器的方法和使用该方法制造的一氧化碳检测器
    • US07866202B2
    • 2011-01-11
    • US12153301
    • 2008-05-16
    • Ko-Shao ChenShu-Juan LiaoYun-Huang ChenJung-Chien Chang
    • Ko-Shao ChenShu-Juan LiaoYun-Huang ChenJung-Chien Chang
    • G01N27/12H01L21/02
    • G01N27/125
    • Disclosed is a method of fabricating a carbon monoxide detector and a carbon monoxide detector fabricated using the same. Particularly disclosed is a method of fabricating a carbon monoxide detector, which can operate at room temperature and process high detecting selection, and the detector fabricated using the same. The method comprises: providing a substrate having an upper surface; forming two electrode sets on the upper surface of the substrate, and the two electrode sets combined to provide an interdigitated array electrode; forming a tin dioxide layer, which covers the portion of the two electrode sets and the portion of the upper surface; and forming an organic polymer layer on the surface of the tin dioxide layer. The carbon monoxide detector comprises: a substrate having an upper surface; two electrode sets, which are located on the upper surface of the substrate; a tin dioxide layer, which covers the portion of the two electrode sets and the portion of the upper surface; and an organic polymer layer, which is located on the surface of the tin dioxide layer.
    • 公开了一种制造一氧化碳检测器和使用其制造的一氧化碳检测器的方法。 特别公开了一种制造一氧化碳检测器的方法,其可在室温下操作并处理高检测选择,以及使用其制造的检测器。 该方法包括:提供具有上表面的基底; 在所述基板的上表面上形成两个电极组,并且所述两个电极组组合以提供交叉指示的阵列电极; 形成二氧化锡层,其覆盖两个电极组的一部分和上表面的一部分; 并在二氧化锡层的表面上形成有机聚合物层。 一氧化碳检测器包括:具有上表面的基板; 两个电极组,位于基板的上表面上; 二氧化锡层,其覆盖两个电极组的一部分和上表面的一部分; 以及位于二氧化锡层的表面上的有机聚合物层。