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    • 13. 发明申请
    • VIA ANTENNA FIX IN DEEP SUB-MICRON CIRCUIT DESIGNS
    • 通过天线固定在深层次微电路设计中
    • US20090026502A1
    • 2009-01-29
    • US11828515
    • 2007-07-26
    • Yi WuKenan Yu
    • Yi WuKenan Yu
    • H02H9/00H01L21/82H01L27/10
    • H01L27/0629H01L27/0255
    • A filler cell for use in fabricating an integrated circuit. The filler cell couples a power supply rail of an adjacent logic cell to a power supply rail of another adjacent logic cell. The filler cell also has a diode to bleed charge accumulated on the power rails of the adjacent logic cells to the substrate. The diode is reverse biased during normal integrated circuit operation. A method for fabricating an integrated circuit with a power grid. At least one filler cell is placed on the integrated circuit to bleed away charge accumulated on the power grid during the fabrication of the integrated circuit. The filler cell is connected to a supply rail of an adjacent logic cell.
    • 一种用于制造集成电路的填充电池。 填充单元将相邻逻辑单元的电源轨耦合到另一相邻逻辑单元的电源轨。 填充单元还具有二极管,以将积聚在相邻逻辑单元的电源轨上的电荷泄放到衬底。 在正常集成电路操作期间,二极管反向偏置。 一种用电网制造集成电路的方法。 在集成电路的制造期间,至少一个填充单元被放置在集成电路上以排除积聚在电网上的电荷。 填充单元连接到相邻逻辑单元的电源轨。
    • 14. 发明申请
    • Method for performing handovers in a communication system
    • 在通信系统中进行切换的方法
    • US20080096562A1
    • 2008-04-24
    • US11790413
    • 2007-04-25
    • Yi WuMikael LatvalaJanne Tuononen
    • Yi WuMikael LatvalaJanne Tuononen
    • H04Q7/20
    • H04W8/26H04L29/12301H04L61/2076H04L69/16H04L69/163H04W36/0011H04W36/12H04W36/24H04W80/06
    • The invention relates to a method wherein a transport layer association is established. Thereafter, a handover condition is detected in the first mobile node, which obtains a second address. The second address is updated to a first name server node. A query message is sent to a second name server node for an address of the second mobile node. The second address is indicated to the second mobile node. The first mobile node waits for a response from the second name server node or the second mobile node. Upon receiving a new address for the second mobile node from the second name server node, the first mobile node repeats the indication of the second address of the first mobile node to the second mobile node using the new address as a destination address for the second mobile node.
    • 本发明涉及一种建立传输层关联的方法。 此后,在获得第二地址的第一移动节点中检测到切换条件。 第二个地址被更新到名字服务器节点。 向第二名称服务器节点发送关于第二移动节点的地址的查询消息。 第二个地址被指示给第二个移动节点。 第一移动节点等待来自第二名称服务器节点或第二移动节点的响应。 在从第二名称服务器节点接收到第二移动节点的新地址时,第一移动节点使用新地址作为第二移动台的目的地地址重复第二移动节点的第二移动节点的第二地址的指示 节点。
    • 15. 发明授权
    • Megasonic cleaning using supersaturated cleaning solution
    • 超声波清洗使用过饱和清洗液
    • US07156111B2
    • 2007-01-02
    • US10864929
    • 2004-06-10
    • Cole S. FranklinYi WuBrian Fraser
    • Cole S. FranklinYi WuBrian Fraser
    • B08B3/00
    • B08B3/12H01L21/67051Y10S438/906
    • A method and system for the megasonic cleaning of one or more substrates that reduces damage to the substrate(s) resulting from the megasonic energy. The substrates are supported in a process chamber and contacted with a cleaning solution comprising a cleaning liquid having carbon dioxide gas dissolved in the cleaning liquid in such amounts that the carbon dioxide gas is at a supersaturated concentration for the conditions within the process chamber. Megasonic energy is then transmitted to the substrate. The cleaning solution provides protection from damage resulting from the application of megasonic/acoustical energy. In another aspect, the invention is a system for carrying out the method. The invention is not limited to carbon dioxide but can be used in conjunction with any gas that, when so dissolved in a cleaning liquid, protects substrates from being damaged by the application of megasonic/acoustical energy.
    • 用于超声波清洗一个或多个基板的方法和系统,其减少由兆声波能量引起的对基板的损坏。 基板被支撑在处理室中,并与包括清洁液体的清洁溶液接触,所述清洗溶液具有溶解在清洗液中的二氧化碳气体,其量使二氧化碳气体处于处理室内的条件的过饱和浓度。 然后将兆声波能量传输到基板。 清洁液可以防止因应用超声波/声能造成的损坏。 另一方面,本发明是一种执行该方法的系统。 本发明不限于二氧化碳,而是可以与任何气体一起使用,当这些气体溶解在清洁液体中时,可以保护基材免受应用兆声/声能的损害。
    • 17. 发明申请
    • Megasonic processing system with gasified fluid
    • 具有气化流体的超声波处理系统
    • US20050087209A1
    • 2005-04-28
    • US10931457
    • 2004-09-01
    • Thomas NicolosiYi WuIsmail Kaskkoush
    • Thomas NicolosiYi WuIsmail Kaskkoush
    • B08B3/12H01L21/00
    • H01L21/67051B08B3/12B08B2203/005G03F7/42G03F7/425G03F7/428H01L21/02052
    • An apparatus and method for substrate processing, specifically including cleaning and/or photoresist stripping, in non-immersion type megasonic processing tools. In one embodiment, the invention utilizes the concept of dissolving a gas into a liquid at or near the point of use with a gasifier, such as a membrane contactor, during the processing of the substrate, thus eliminating the need for pre-made liquid/gas processing mixtures that are typically stored in auxiliary tanks. In one aspect, the invention is an apparatus comprising: a process chamber having a support for supporting a substrate; a source of liquid; a supply line coupling said source of liquid to said process chamber; a gasifier operatively coupled to said supply line, said gasifier causing a gas to be dissolved into said liquid to form a mixture of said liquid and said gas; means for applying a film of said mixture to one side of said substrate while on said support, said first means being in fluid association with said supply line; and a transmitter configured to apply sonic energy to said substrate. The method comprises, in one aspect: supporting a substrate in a process chamber; supplying a liquid to said process chamber from a source of said liquid via a supply line; dissolving a gas into said liquid with a gasifer operatively coupled to said supply line to form a mixture of said liquid and said gas; applying a film of said mixture to one side of said substrate; and applying sonic energy to said substrate while said mixture is being applied. When used to remove photoresist from substrates, the fluid will preferably be deionized water and the gas will be ozone gas.
    • 一种用于非浸没式兆声处理工具中的衬底处理的装置和方法,具体包括清洗和/或光刻胶剥离。 在一个实施方案中,本发明利用在基材处理期间将气体溶解到与使用点处或附近的液体的概念,例如膜接触器,因此不需要预制的液体/ 通常储存在辅助罐中的气体处理混合物。 一方面,本发明是一种装置,包括:处理室,具有用于支撑基板的支撑件; 液体来源; 将所述液体源连接到所述处理室的供应管线; 气化器,其可操作地耦合到所述供应管线,所述气化器引起气体溶解到所述液体中以形成所述液体和所述气体的混合物; 用于在所述支撑件上将所述混合物的膜施加到所述衬底的一侧上的装置,所述第一装置与所述供应管线流体相连; 以及发射机,被配置为向所述基底施加声能。 该方法在一个方面包括:在处理室中支撑衬底; 通过供应管线从所述液体源向所述处理室供应液体; 将气体溶解到所述液体中,其中气体可操作地连接到所述供应管线以形成所述液体和所述气体的混合物; 将所述混合物的膜施加到所述基底的一侧; 以及在施加所述混合物时将声能施加到所述衬底。 当用于从基底去除光致抗蚀剂时,流体优选是去离子水,气体将是臭氧气体。
    • 19. 发明授权
    • Fast recovering for network listening schemes in synchronization over air for small cells
    • 快速恢复网络侦听方案在空中同步小细胞
    • US09363777B2
    • 2016-06-07
    • US14407612
    • 2012-06-14
    • Gaojin WuYi WuXingchen Guo
    • Gaojin WuYi WuXingchen Guo
    • H04W56/00H04J11/00H04L5/14
    • H04W56/001H04J11/0079H04J2011/0096H04L5/14H04W56/0015
    • The present invention provides methods, apparatuses and a program relating to fast recovering for network listening schemes in synchronization over air for small cells. The present invention includes tracking, at a first base station, a reference signal of a second base station, determining, whether the reference signal can be tracked, if it is determined that the reference signal can be tracked, adjusting, at the first base station, a system clock of the first base station based on the reference signal of the second base station, and estimating and storing parameters relating to a frequency difference between the system clock of the first base station and a system clock of the second base station, and if it is determined that the reference signal cannot be reliably tracked, adjusting the system clock of the first base station based on the stored parameters.
    • 本发明提供了关于小型小区空中同步的网络监听方案的快速恢复的方法,装置和程序。 本发明包括在第一基站处跟踪第二基站的参考信号,确定是否可以跟踪参考信号,如果确定可以跟踪参考信号,则在第一基站 ,基于第二基站的参考信号的第一基站的系统时钟,以及估计和存储与第一基站的系统时钟和第二基站的系统时钟之间的频率差有关的参数,以及 如果确定不能可靠地跟踪参考信号,则基于所存储的参数来调整第一基站的系统时钟。
    • 20. 发明授权
    • Augmenting image data based on related 3D point cloud data
    • 基于相关3D点云数据增强图像数据
    • US08872851B2
    • 2014-10-28
    • US12890251
    • 2010-09-24
    • Maha El ChoubassiIgor V. KozintsevYi WuYoram GatHorst Haussecker
    • Maha El ChoubassiIgor V. KozintsevYi WuYoram GatHorst Haussecker
    • G09G5/00G06T7/00G06T17/00G06T11/00
    • G06T7/0081G06T7/11G06T11/00G06T17/00G06T2207/10028G06T2210/56
    • Embodiments of the invention describe processing a first image data and 3D point cloud data to extract a first planar segment from the 3D point cloud data. This first planar segment is associated with an object included in the first image data. A second image data is received, the second image data including the object captured in the first image data. A second planar segment related to the object is generated, where the second planar segment is geometrically consistent with the object as captured in the second image data. This planar segment is generated based, at least in part, on the second image data, the first image data and the first planar segment. Embodiments of the invention may further augment the second image data with content associated with the object. This augmented image may be displayed such that the content is displayed geometrically consistent with the second planar segment.
    • 本发明的实施例描述了处理第一图像数据和3D点云数据以从3D点云数据中提取第一平面段。 该第一平面段与包括在第一图像数据中的对象相关联。 接收第二图像数据,第二图像数据包括在第一图像数据中捕获的对象。 产生与对象相关的第二平面段,其中第二平面段与第二图像数据中捕获的对象几何一致。 至少部分地基于第二图像数据,第一图像数据和第一平面片段生成该平面片段。 本发明的实施例可以进一步增加具有与对象相关联的内容的第二图像数据。 可以显示该增强图像,使得内容与第二平面段几何一致地显示。