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    • 2. 发明申请
    • METHODS AND APPARATUS FOR MANIPULATION AND/OR DETECTION OF BIOLOGICAL SAMPLES AND OTHER OBJECTS
    • 用于操纵和/或检测生物样本和其他对象的方法和装置
    • WO2005099419A9
    • 2005-12-01
    • PCT/US2005012719
    • 2005-04-13
    • HARVARD COLLEGEHAM DONHEEWESTERVELT ROBERTHUNT THOMASLIU YONGLEE HAKHO
    • HAM DONHEEWESTERVELT ROBERTHUNT THOMASLIU YONGLEE HAKHO
    • G01R33/30G01R33/465G01R33/56
    • G01R33/302B01L3/502761B01L2200/0668B01L2200/147B01L2300/0816B01L2300/0819B01L2300/0877B01L2300/1822B01L2300/1827B01L2400/043G01N15/1031G01N24/08G01N24/10G01R33/307G01R33/34092G01R33/3415G01R33/465G01R33/4808G01R33/5604
    • Methods and apparatus for manipulation, detection, imaging, characterization, sorting and/or assembly of biological or other materials, involving an integration of CMOS or other semiconductor-based technology and microfluidics. In one implementation, various components relating to the generation of electric and/or magnetic fields are implemented on an IC chip that is fabricated using standard protocols. The generated electric and/or magnetic fields are used to manipulate and/or detect one or more dielectric and/or magnetic particles and distinguish different types of particles. A microfluidic system is fabricated either directly on top of the IC chip, or as a separate entity that is then appropriately bonded to the IC chip, to facilitate the introduction and removal of cells in a biocompatible environment, or other particles/objects of interest suspended in a fluid. The patterned electric and/or magnetic fields generated by the IC chip can trap and move biological cells or other objects inside the microfluidic system. Electric and/or magnetic field generating components also may be controlled using signals of various frequencies so as to detect one or more cells, particles or objects of interest, and even the type of particle or object of interest, by measuring resonance characteristics associated with interactions between samples and one or more of the field-generating devices. Such systems may be employed in a variety of biological and medical related applications, including cell sorting and tissue assembly.
    • 用于操作,检测,成像,表征,分选和/或组装生物或其他材料的方法和装置,涉及CMOS或其他基于半导体的技术和微流体的集成。 在一个实现中,与使用标准协议制造的IC芯片上实现与电场和/或磁场的产生相关的各种组件。 产生的电场和/或磁场用于操纵和/或检测一个或多个电介质和/或磁性颗粒并区分不同类型的颗粒。 微流体系统直接制造在IC芯片的顶部上,或者作为独立的实体,然后适当地结合到IC芯片,以便促进在生物相容性环境中引入和去除细胞,或其它悬浮的粒子/物体 在流体中。 由IC芯片产生的图案化电场和/或磁场可以捕获并移动微流体系统内的生物细胞或其它物体。 可以使用各种频率的信号来控制电场和/或磁场产生组件,以便通过测量与相互作用相关联的共振特性来检测一个或多个感兴趣的细胞,颗粒或感兴趣的物体,甚至是感兴趣的粒子或物体的类型 样本和一个或多个场产生装置之间。 这样的系统可以用于各种生物和医学相关应用,包括细胞分选和组织组装。
    • 3. 发明申请
    • METHODS AND APPARATUS BASED ON COPLANAR STRIPLINES
    • 基于CopLAN条带的方法和装置
    • WO2005011101A3
    • 2005-08-25
    • PCT/US2004023311
    • 2004-07-19
    • HARVARD COLLEGEHAM DONHEEANDRESS WILLIAMLIU YONG
    • HAM DONHEEANDRESS WILLIAMLIU YONG
    • H01P3/00H01P3/08H01P5/02H03B5/18H01P7/08
    • H01P3/026H01P5/02H03B5/1841H03B5/1852
    • Methods and apparatus for implementing various coplanar stripline (CPS) configurations, including standing wave oscillators (SWOs) using coplanar striplines (CPS). One example is given by a quarter-wavelength (lambda/4) coplanar stripline standing wave oscillator (SWO), while another implementation utilizes a closed-loop coplanar stripline configuration. In various aspects, SWOs are configured to optimize sinusoidal performance at high frequencies with low power dissipation by incorporating various features that dramatically increase the quality factor Q of the oscillator. In particular, in one aspect, an amplitude-dependent tailored distributed amplification scheme is employed as a mode control technique using multiple amplifiers having different gains along the length of the coplanar stripline. In another aspect, a coplanar stripline configured such that its resistance per unit length R and conductance per unit length G are discreet or continuous functions of position along the coplanar stripline is employed to reduce SWO losses. In another aspect, an enhancement of the quality factor Q is achieved while at the same time reducing the phase velocity of waves propagating in the SWO, thereby also facilitating the fabrication of relatively smaller devices. In yet another aspect, SWOs are configured with frequency adjustability that is again optimized to reduce power dissipation while facilitating significant adjustments of oscillator frequency.
    • 用于实现各种共面带状线(CPS)配置的方法和装置,包括使用共面带状线(CPS)的驻波振荡器(SWO)。 一个例子由四分之一波长(λ/ 4)共面带状线驻波振荡器(SWO)给出,而另一个实施方案利用闭环共面带状线配置。 在各个方面,SWO被配置为通过结合各种特征来显着提高振荡器的品质因数Q来优化具有低功耗的高频下的正弦曲线性能。 特别地,在一个方面,采用幅度相关的定制分布放大方案作为使用具有沿着共面带状线长度的不同增益的多个放大器的模式控制技术。 在另一方面,构造为使得其每单位长度R的电阻和每单位长度G的电导的共面带状线被采用以沿着共面带状线的位置的谨慎或连续的函数来减少SWO损耗。 另一方面,实现质量因子Q的增强,同时降低在SWO中传播的波的相速度,从而也有助于制造相对较小的装置。 在另一方面,SWO配置有频率可调整性,再次优化以降低功耗,同时有助于振荡器频率的显着调整。
    • 4. 发明申请
    • METHODS AND APPARATUS BASED ON COPLANAR STRIPLINES
    • 基于共面条纹的方法和设备
    • WO2005011101A9
    • 2005-06-02
    • PCT/US2004023311
    • 2004-07-19
    • HARVARD COLLEGEHAM DONHEEANDRESS WILLIAMLIU YONG
    • HAM DONHEEANDRESS WILLIAMLIU YONG
    • H01P3/00H01P3/08H01P5/02H03B5/18H03B9/00
    • H01P3/026H01P5/02H03B5/1841H03B5/1852
    • Methods and apparatus for implementing various coplanar stripline (CPS) configurations, including standing wave oscillators (SWOs) using coplanar striplines (CPS). One example is given by a quarter-wavelength (lambda/4) coplanar stripline standing wave oscillator (SWO), while another implementation utilizes a closed-loop coplanar stripline configuration. In various aspects, SWOs are configured to optimize sinusoidal performance at high frequencies with low power dissipation by incorporating various features that dramatically increase the quality factor Q of the oscillator. In particular, in one aspect, an amplitude-dependent tailored distributed amplification scheme is employed as a mode control technique using multiple amplifiers having different gains along the length of the coplanar stripline. In another aspect, a coplanar stripline configured such that its resistance per unit length R and conductance per unit length G are discreet or continuous functions of position along the coplanar stripline is employed to reduce SWO losses. In another aspect, an enhancement of the quality factor Q is achieved while at the same time reducing the phase velocity of waves propagating in the SWO, thereby also facilitating the fabrication of relatively smaller devices. In yet another aspect, SWOs are configured with frequency adjustability that is again optimized to reduce power dissipation while facilitating significant adjustments of oscillator frequency.
    • 用于实现各种共面带状线(CPS)配置的方法和设备,包括使用共面带状线(CPS)的驻波振荡器(SWO)。 一个例子是由四分之一波长(λ/ 4)共面带状线驻波振荡器(SWO)给出的,而另一种实施方式利用了闭环共面带状线配置。 在各个方面,SWO被配置成通过结合各种特征来优化具有低功率耗散的高频率下的正弦性能,所述特征显着增加振荡器的品质因数Q. 特别地,在一个方面,采用幅度相关的定制分布式放大方案作为使用沿着共面带状线的长度具有不同增益的多个放大器的模式控制技术。 在另一方面,共面带状线被配置为使得其每单位长度的电阻R和每单位长度的电导G是沿着共面带状线的离散或连续位置功能,以减小SWO损耗。 另一方面,实现了品质因数Q的增强,同时降低了在SWO中传播的波的相速度,由此也便于制造相对较小的器件。 在另一方面,SWO被配置为具有频率可调性,该频率可调性再次被优化以减少功率消耗,同时促进振荡器频率的显着调整。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR RELAYING COMMUNICATION BETWEEN AN ACCESS POINT AND A STATION IN A WIRELESS NETWORK
    • 用于在无线网络中继续接入点与站之间的通信的方法和设备
    • WO2013184505A3
    • 2014-03-13
    • PCT/US2013043593
    • 2013-05-31
    • MARVELL WORLD TRADE LTDLIU YONG
    • LIU YONG
    • H04W74/04
    • H04B7/15H04W74/04H04W84/047
    • A network including an access point, a client station, and a proxy station. The proxy station is configured to communicate with the access point during a first period. During the first period the proxy station is configured to receive, from the access point, downlink data intended for the client station, and transmit, to the access point, uplink data received from the client station and intended for the access point. The proxy station is further configured to communicate with the client station during a second period. During the second period the proxy station is configured to receive, from the client station, the uplink data intended for the access point, and transmit, to the client station, the downlink data intended for the client station.
    • 包括接入点,客户端站和代理站的网络。 代理站被配置为在第一时段期间与接入点通信。 在第一时段期间,代理站被配置为从接入点接收意图用于客户站的下行链路数据,并且向接入点发送从客户站接收并且意图用于接入点的上行链路数据。 代理站还被配置为在第二时段期间与客户站进行通信。 在第二时段期间,代理站被配置为从客户站接收意图用于接入点的上行链路数据,并向客户站传送意图用于客户站的下行链路数据。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR GENERATING SECURITY MATERIAL
    • 用于生成安全材料的方法和装置
    • WO2011005399A3
    • 2011-03-10
    • PCT/US2010037706
    • 2010-06-08
    • MARVELL WORLD TRADE LTDLAMBERT PAUL ALIU YONG
    • LAMBERT PAUL ALIU YONG
    • H04W12/04
    • H04L9/0833H04L63/062H04L63/065H04L63/0892H04L2209/601H04W12/04H04W84/045
    • An apparatus and method establish a secure, direct, station-to-station communication between a first station and a second station in a topology (e.g., PBSS) having a central secret holder/provider that allows secure, direct, station-to-station communications and that allows secure station-to-station broadcast communications. The first station and the second station will have previously established a security association (SA) with a topology control point (PCP). The method includes creating pair-wise unique material for the first station. The pair-wise unique material is computed as a function of (i) a known shared secret associated with the PCP, (ii) a first piece of unique data associated with the first station, and (iii) a second piece of unique data associated with the second station. The method includes securely communicating the pair-wise unique material from the first station to the second station.
    • 一种装置和方法在具有中央秘密保持器/提供者的拓扑结构(例如,PBSS)中的第一站和第二站之间建立安全,直接的站间站通信,其允许安全,直接,站到站 通信,并允许安全的站到站广播通信。 第一站和第二站先前已经建立了具有拓扑控制点(PCP)的安全关联(SA)。 该方法包括为第一站创建成对的独特材料。 计算成对独特材料作为(i)与PCP相关联的已知共享秘密的功能,(ii)与第一站相关联的第一块唯一数据,以及(iii)第二段唯一数据相关联 与第二站。 该方法包括将成对唯一的材料从第一站安全地传送到第二站。