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    • 5. 发明申请
    • METHOD FOR PROCESSING FORWARD ERROR CORRECTION, FEC, DATA, DEVICE AND SYSTEM THEREOF
    • 用于处理前向纠错,FEC,数据,设备及其系统的方法
    • US20120297266A1
    • 2012-11-22
    • US13536633
    • 2012-06-28
    • Jin XUXin XuQiong Lei
    • Jin XUXin XuQiong Lei
    • H03M13/05G06F11/10
    • H04L1/0618H03M13/03H04L1/0045H04L1/0075
    • A method for processing Forward Error Correction, FEC, data, which includes: a sender encapsulates the FEC data to be a Transport Stream, TS, message, sets FEC identification information in the TS message, and encapsulates the TS message to be a Real-time Transport Protocol, RTP, message; then sends the RTP message to a terminal side. The reception end receives the RTP message; if the reception end has a function for FEC decoding, the reception end identifies the FEC data according to the FEC identification information in the TS message of the received RTP message, and recovers the missed media message according to the FEC data; if the reception end does not have the function for FEC decoding, the reception end processes the RTP message after removing the message header. The embodiments of the present invention also provide a transmission and processing device.
    • 一种用于处理前向纠错,FEC,数据的方法,包括:发送方将FEC数据封装为传输流,TS消息,在TS消息中设置FEC标识信息,并将TS消息封装为实时 时间传输协议,RTP,消息; 然后将RTP消息发送到终端侧。 接收端收到RTP消息; 如果接收端具有用于FEC解码的功能,则接收端根据接收的RTP消息的TS消息中的FEC识别信息来识别FEC数据,并根据FEC数据恢复丢失的媒体消息; 如果接收端不具有用于FEC解码的功能,则接收端在移除消息报头之后处理RTP消息。 本发明的实施例还提供一种传输和处理装置。
    • 7. 发明申请
    • CAMERA FOR MULTIPLE PERSPECTIVE IMAGE CAPTURING
    • 多个视觉图像摄像机的摄像机
    • US20100289881A1
    • 2010-11-18
    • US12775024
    • 2010-05-06
    • Jin XU
    • Jin XU
    • H04N13/02
    • H04N5/23238H04N5/232H04N13/221
    • A multiple perspective image camera has a plurality of camera elements, and coupling elements for mechanically coupling the camera elements together pairwise, as a “chain”. Each camera element generates an image using light rays incident on the camera element 81 in a single respective plane, and the coupling elements maintain the positions of the camera elements such that the planes of the camera elements share a common direction. The image captured by each camera element is elongate in the common direction. The respective elongate images are combined to form a multiple perspective image, successive strips of the output image being derived from the successive camera elements. The camera includes a control system for controlling the camera elements to take their respective images simultaneously, and communication paths for extracting the elongate images from the respective camera elements.
    • 多透视图像摄像机具有多个照相机元件和用于将照相机元件成对地机械耦合在一起的耦合元件,作为“链条”。 每个相机元件在单个相应平面中使用入射在相机元件81上的光线产生图像,并且耦合元件保持相机元件的位置,使得相机元件的平面共享公共方向。 由每个相机元件拍摄的图像在公共方向上是细长的。 相应的细长图像被组合以形成多个透视图像,输出图像的连续条带是从连续的相机元件导出的。 相机包括用于控制相机元件以同时拍摄它们各自的图像的控制系统,以及用于从各个相机元件提取细长图像的通信路径。
    • 8. 发明申请
    • IN-SITU LOW-K CAPPING TO IMPROVE INTEGRATION DAMAGE RESISTANCE
    • IN-SITU LOW-K CAPPING提高集成耐损伤性
    • US20120156890A1
    • 2012-06-21
    • US13305559
    • 2011-11-28
    • KANG SUB YIMJin XUSure NGOAlexandros T. DEMOS
    • KANG SUB YIMJin XUSure NGOAlexandros T. DEMOS
    • H01L21/3105
    • H01L21/02214H01L21/02126H01L21/02203H01L21/02216H01L21/02274H01L21/02348H01L21/02362H01L21/7682H01L21/76829H01L2221/1047
    • A method and apparatus for forming low-k dielectric layers that include air gaps is provided. In one embodiment, a method of processing a substrate is provided. The method comprises disposing a substrate within a processing region, reacting an organosilicon compound, with an oxidizing gas, and a porogen providing precursor in the presence of a plasma to deposit a porogen containing low-k dielectric layer comprising silicon, oxygen, and carbon on the substrate, depositing a porous dielectric capping layer comprising silicon, oxygen and carbon on the porogen containing low-k dielectric layer, and ultraviolet (UV) curing the porogen containing low-k dielectric layer and the porous dielectric capping layer to remove at least a portion of the porogen from the porogen containing low-k dielectric layer through the porous dielectric capping layer to convert the porogen containing low-k dielectric layer to a porous low-k dielectric layer having air gaps.
    • 提供了一种用于形成包括气隙的低k电介质层的方法和装置。 在一个实施例中,提供了一种处理衬底的方法。 该方法包括在等离子体存在下将处理区域内的底物,有机硅化合物与氧化气体和造孔剂提供前体反应,将含有硅,氧和碳的低k电介质层的致孔剂沉积在 在包含低k电介质层的致孔剂上沉积包含硅,氧和碳的多孔电介质覆盖层,以及紫外线(UV)固化包含低k电介质层的致孔剂和多孔介电覆盖层以除去至少一个 致孔剂部分由含有低k电介质层的致孔剂穿过多孔介电覆盖层,以将含有低介电常数的介电层转化为具有气隙的多孔低k电介质层。
    • 9. 发明申请
    • SPRING SUPPORTED LOWER CLAMPER FOR DIRECT TENSILE TEST
    • 弹簧支撑下夹紧器用于直接拉伸试验
    • US20080276719A1
    • 2008-11-13
    • US11931162
    • 2007-10-31
    • Jin XUJianfeng LIUHeping XIE
    • Jin XUJianfeng LIUHeping XIE
    • G01N3/08
    • G01N3/08G01N2203/0441
    • The present invention discloses a spring supported lower clamper for direct tensile test, comprising a lower connection member, a lower end cap for holding a sample, a lower chain for connecting the lower connection member with the lower end cap, and spring-type supporting means for supporting a broken-apart lower part of the sample formed during the tensile test and the lower end cap. During the tensile test, the sample, the lower end cap and the lower chain are supported by the spring-type supporting means. Thus the sample can be prevented from being broken abruptly when a tensile force in the sample reaches its maximum level, and the mechanical behavior after the maximum tensile force is reached can be measured.
    • 本发明公开了一种用于直接拉伸试验的弹簧支撑的下夹持器,包括下连接构件,用于保持样品的下端盖,用于连接下连接构件与下端盖的下链,以及弹簧式支撑装置 用于支撑在拉伸试验期间形成的样品的分解下部和下端盖。 在拉伸试验期间,样品,下端盖和下链由弹簧型支撑装置支撑。 因此,当样品中的拉力达到其最大水平时,可以防止样品突然断裂,并且可以测量达到最大拉伸力之后的机械性能。