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    • 72. 发明授权
    • Circuit protective composites
    • 电路保护复合材料
    • US06372992B1
    • 2002-04-16
    • US09680159
    • 2000-10-05
    • Rui Yang
    • Rui Yang
    • H01B708
    • H05K3/281B29C65/02B29C66/1122B29C66/433B29C66/45B29C66/69B29C66/91411B29C66/91933B29C66/91935B29L2031/3425B32B15/08B32B37/00B32B2305/34B32B2305/55
    • A composite, useful as a flexible circuit, includes at least a portion of an electrical conductor having a first surface opposite a second surface. A first homogeneous polymeric film contacts the first surface of at least a portion of the electrical conductor. A second homogeneous polymeric film contacts at least a portion of the first film and the second surface of the at least a portion of the electrical conductor. The first and second films infuse to form a continuous phase surrounding the at least a portion of an electrical conductor. A process for producing a flexible circuit including hermetic sealing by providing at least one electrically conductive trace having a first surface opposite a second surface. At least a portion of the first surface is attached to a first homogeneous polymeric film. A second homogeneous polymeric film is contacted with at least a portion of the first film and at least a portion of the second surface. Thereafter, application of pressure to the first and second films, for a time at a selected temperature, promotes polymer infusion to form a continuous phase surrounding at least a portion of an electrically conductive trace.
    • 用作柔性电路的复合材料包括具有与第二表面相对的第一表面的电导体的至少一部分。 第一均相聚合物膜接触电导体的至少一部分的第一表面。 第二均匀聚合物膜接触第一膜的至少一部分和电导体的至少一部分的第二表面。 第一和第二膜注入形成围绕电导体的至少一部分的连续相。 一种通过提供具有与第二表面相对的第一表面的至少一个导电迹线来生产包括气密密封的柔性电路的方法。 第一表面的至少一部分附着到第一均匀聚合物膜上。 第二均相聚合物膜与第一膜的至少一部分和第二表面的至少一部分接触。 此后,在选定温度下对第一和第二膜施加压力促进聚合物浸渍以形成围绕至少一部分导电迹线的连续相。
    • 74. 发明授权
    • Physical layer network coding using forward error correction codes
    • 使用前向纠错码的物理层网络编码
    • US09088351B2
    • 2015-07-21
    • US14005730
    • 2012-03-16
    • Weimin LiuRui YangPhilip J. Pietraski
    • Weimin LiuRui YangPhilip J. Pietraski
    • H04B15/00H04B7/155H04L1/00H04B7/15
    • H04B15/00H04B7/15H04B7/15521H04L1/0076
    • Two network nodes may exchange messages through a relay using physical-layer network coding combined with forward error correction coding (FEC). The relay determines a prime field order based on the channel condition and communicates the field order to the network nodes. Each network node encodes an outgoing message with linear codes over a field such as finite field of the field order, and transmits a signal carrying the encoded outgoing message. The relay receives a composite signal carrying the summation of the messages from the two network nodes. The relay decodes the composite signal and extracts a composite message with linear codes over finite field of field order, and broadcasts a signal carrying the composite message. Each network node receives the signal from the relay and extracts the message intended for it using linear subtraction over finite field of field order.
    • 两个网络节点可以使用结合前向纠错编码(FEC)的物理层网络编码通过中继交换消息。 继电器基于信道条件确定主场顺序,并将该场顺序传送到网络节点。 每个网络节点通过诸如场顺序的有限域的字段编码具有线性码的输出消息,并且发送携带编码的输出消息的信号。 继电器接收携带来自两个网络节点的消息总和的复合信号。 中继解码复合信号,并通过有限场场顺序提取具有线性码的复合消息,并广播携带复合消息的信号。 每个网络节点接收来自中继器的信号,并通过有限场域顺序使用线性减法提取预期的消息。
    • 78. 发明申请
    • MOBILE TERMINAL AND METHOD FOR SERVICE PROCESSING THEREOF
    • 移动终端及其服务处理方法
    • US20130035073A1
    • 2013-02-07
    • US13641543
    • 2011-04-07
    • Rui YangChunlei Zhao
    • Rui YangChunlei Zhao
    • H04W4/12H04W60/00
    • H04W4/50H04W4/12H04W88/02
    • A mobile terminal and a method for service processing thereof are provided in the present invention. The mobile terminal includes a determining module for determining whether the first service needs to be opened and obtaining a determining result; a register information collecting module for collecting the first register information used for opening the first service when said determining result indicates that the first service needs to be opened; a first transmission module for transmitting a first register request comprising first register information to the first server by using a communication module to request for opening the first service; a first receiving module for receiving the service setting information by using the communication module; and a setting module for setting the first service module according to the service setting information.
    • 本发明提供一种移动终端及其服务处理方法。 移动终端包括确定模块,用于确定是否需要打开第一服务并获得确定结果; 注册信息收集模块,用于当所述确定结果指示需要打开第一服务时收集用于打开第一服务的第一注册信息; 第一发送模块,用于通过使用通信模块请求打开所述第一服务来向所述第一服务器发送包括第一注册信息的第一注册请求; 第一接收模块,用于通过使用所述通信模块接收所述服务设置信息; 以及用于根据服务设置信息设置第一服务模块的设置模块。
    • 79. 发明授权
    • WSS with hitless switching
    • 无缝切换的WSS
    • US08280206B2
    • 2012-10-02
    • US12643922
    • 2009-12-21
    • Qianggao HuLiping SunLiu YangZhilin YuanHui XieRui Yang
    • Qianggao HuLiping SunLiu YangZhilin YuanHui XieRui Yang
    • G02B6/35G02B6/26G02B6/28
    • G02B6/29395G02B6/3594
    • A wavelength selective switch (WSS) with hitless switching. The WSS includes the fiber collimator array, the focusing lens, collimating lens, diffraction grating, focusing lens, and attenuation reflection unit array. Each attenuation reflection unit has an interconnected transmission-type MEMS attenuator and a one-dimension MEMS reflector. The transmission-type MEMS attenuator is positioned in the front of the one-dimension MEMS reflector. The central axis of the transmission-type MEMS attenuator aligns and coincides with that of the one-dimension MEMS reflector, with the two central axes being glued together. The WSS of the present invention effectively utilizes the combination of a one-dimension reflector array and a transmission-type optical attenuator chip. With the use of one-dimension reflector array, instead of the known two-dimension reflector array, the complexity of design and manufacture is greatly reduced, thereby reducing the production costs of the switch.
    • 具有无间断切换的波长选择开关(WSS)。 WSS包括光纤准直器阵列,聚焦透镜,准直透镜,衍射光栅,聚焦透镜和衰减反射单元阵列。 每个衰减反射单元具有互连的透射型MEMS衰减器和一维MEMS反射器。 传输型MEMS衰减器位于一维MEMS反射器的前面。 传输型MEMS衰减器的中心轴与一维MEMS反射器的中心轴对准并重合,两个中心轴被粘合在一起。 本发明的WSS有效地利用了一维反射器阵列和透射型光衰减器芯片的组合。 使用一维反射器阵列,而不是已知的二维反射器阵列,大大降低了设计和制造的复杂性,从而降低了开关的生产成本。