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    • 135. 发明授权
    • Remote baggage screening system, software and method
    • 远程行李检查系统,软件和方法
    • US06707879B2
    • 2004-03-16
    • US10116714
    • 2002-04-03
    • Keith M. McClellandCraig DawsonYing HuangAndrea L. Whitson
    • Keith M. McClellandCraig DawsonYing HuangAndrea L. Whitson
    • G01N2304
    • G01V5/0083B64F1/368G06Q10/02H04L29/06H04L67/02H04L67/12H04L69/329
    • A system for remote inspection of items including at least one inspection machine constructed to examine an item under inspection to obtain information about the item, a database coupled to the at least one inspection machine that receives and stores the information about the item in an item file, the item including a unique item identifier, and an item file inspection device that receives the item file, analyzes data contained in the item file and records screening information based on an analysis of the item file. The system also includes a server that controls transfer of the item file and the screening information between the database and the item file inspection device. The screening information is linked with the item file using the unique item identifier. The item file inspection device is located remote from the at least one inspection machine.
    • 一种用于远程检查物品的系统,所述系统包括至少一个检查机构,所述检查机构被构造成检查被检查的物品以获取有关物品的信息;数据库,耦合到所述至少一个检验机器,所述数据库接收并存储关于所述物品的信息在物品文件 ,所述项目包括唯一的项目标识符,以及项目文件检查装置,其接收所述项目文件,分析所述项目文件中包含的数据,并且基于所述项目文件的分析来记录筛选信息。 该系统还包括一个控制项目文件的传送和数据库与项目文件检查装置之间的筛选信息的服务器。 筛选信息使用唯一的项目标识符与项目文件链接。 所述物品文件检查装置位于远离所述至少一个检查机器的位置。
    • 138. 发明授权
    • Method, structure and process flow to reduce line-line capacitance with low-K material
    • 方法,结构和工艺流程,以低K材料降低线路电容
    • US06531407B1
    • 2003-03-11
    • US09653153
    • 2000-08-31
    • Ying HuangEr-Xuan Ping
    • Ying HuangEr-Xuan Ping
    • H01L2131
    • H01L21/76844H01L21/76832H01L21/76834H01L21/76837H01L21/76852H01L21/76885H01L23/5222H01L23/5329H01L2924/0002H01L2924/00
    • An improved method, structure and process flow for reducing line-line capacitance using low dielectric constant (K) materials is provided. Embodiments in accordance with the present invention form structures for semiconductor devices having a single level of interconnection as well as semiconductor devices having multiple levels of interconnection. In embodiments of the present invention, an initial dielectric structure is formed having a first low-K material overlaid with a standard-K material. In subsequent processing, conductive interconnects are formed and the standard-K material replaced with a second low-K material. In some embodiments of the present invention, the first and-second low-K materials are the same material, in some embodiments the first and second low-K materials are different materials. Embodiments of the present invention having multiple levels of conductive interconnects are formed by employing methods and materials analogous to those used to form the first level of conductive interconnect and dielectric material disposed there between. Embodiments of the present invention employ low-K materials formed by spin-on processes as well as low-K materials formed by CVD processes.
    • 提供了使用低介电常数(K)材料降低线路电容的改进方法,结构和工艺流程。 根据本发明的实施例形成具有单级互连的半导体器件的结构以及具有多个互连级别的半导体器件。 在本发明的实施例中,形成具有覆盖有标准K材料的第一低K材料的初始电介质结构。 在随后的处理中,形成导电互连,并用第二低K材料代替标准K材料。 在本发明的一些实施方案中,第一和第二低K材料是相同的材料,在一些实施方案中,第一和第二低K材料是不同的材料。 具有多层导电互连的本发明的实施例通过采用类似于用于形成第一级导电布线和介于其之间的介电材料的方法和材料而形成。 本发明的实施例采用通过旋涂工艺形成的低K材料以及通过CVD工艺形成的低K材料。
    • 139. 发明授权
    • Method and apparatus for fractionation using generalized dielectrophoresis and field flow fractionation
    • 使用广义介电电泳和场流分馏法进行分馏的方法和装置
    • US06287832B1
    • 2001-09-11
    • US09395890
    • 1999-09-14
    • Frederick F. BeckerPeter R. C. GascoyneYing HuangXiao-Bo Wang
    • Frederick F. BeckerPeter R. C. GascoyneYing HuangXiao-Bo Wang
    • C12N1300
    • G01N30/0005B03C5/028G01N2030/0035G01N2030/0065
    • The present disclosure is directed to a novel apparatus and novel methods for the separation, characterization, and manipulation of matter. In particular, the invention combines the use of frequency-dependent dielectric and conductive properties of particulate matter and solubilized matter with the properties of the suspending and transporting medium to discriminate and separate such matter. The apparatus includes a chamber having at least one electrode element and at least one inlet and one output port into which cells are introduced and removed from the chamber. Matter carried through the chamber in a fluid stream is then displaced within the fluid by a dielectrophoretic (DEP) force caused by the energized electrode. Following displacement within the fluid, matter travels through the chamber at velocities according to the velocity profile of the chamber. After the matter has transmitted through the chamber, it exits at the opposite end of the chamber at a characteristic position. Methods according to the invention involve using the apparatus for discriminating and separating matter for research, diagnosis of a condition, and therapeutic purposes. Examples of such methods may include separation of mixtures of cells, such as cancer cells from normal cells, separation of parasitized erythrocytes from normal erythrocytes, separation of nucleic acids, and others.
    • 本公开涉及用于分离,表征和操纵物质的新型装置和新颖方法。 特别地,本发明结合了使用频率依赖的电介质和颗粒物质和溶解物质的导电性质与悬浮和输送介质的性质,以区分和分离这种物质。 该装置包括具有至少一个电极元件和至少一个入口和一个输出端口的腔室,细胞从腔室中被引入和移出。 然后通过流体流中的腔室进行的物质由通电电极引起的介电电泳(DEP)力在流体内移动。 在流体内移动之后,物质按照腔室的速度分布以速度行进通过腔室。 在事件已经通过室之后,其在特定位置处在室的相对端处离开。 根据本发明的方法涉及使用该装置来鉴别和分离用于研究,病症诊断和治疗目的的物质。 这些方法的实例可以包括分离细胞混合物,例如来自正常细胞的癌细胞,从正常红细胞分离寄生的红细胞,分离核酸等。