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    • 91. 发明授权
    • Insulating structure for L-shaped terminal
    • L形端子绝缘结构
    • US08840428B2
    • 2014-09-23
    • US13515821
    • 2010-11-29
    • Takashi OmaeKazuki Zaitsu
    • Takashi OmaeKazuki Zaitsu
    • H01R9/05
    • H01R13/648H01R13/506H01R13/53
    • To electromagnetically-shield an L-shaped terminal in a compact and reliable manner while easily and securely fixing the L-shaped terminal, there is employed an insulating split inner housing having an L-shaped terminal receiving portion including an electric-contact-portion-side receiving portion covering an electric contact portion of the L-shaped terminal connected to a shielded wire and a wire-connection-portion-side receiving portion covering a wire connection portion of the L-shaped terminal, the electric-contact-portion-side receiving portion is covered by a conductive shield shell, the wire-connection-portion-side receiving portion is covered by a conductive housing connected to the shield shell and to a shield portion of the shielded wire, and the L-shaped terminal is insulated by the inner housing from the shield shell and the conductive housing.
    • 为了在容易且牢固地固定L形端子的同时以紧凑且可靠的方式对L形端子进行电磁屏蔽,采用具有L形端子接收部分的绝缘分裂内壳体,该L形端子接收部分包括电接触部分 - 侧接收部分覆盖连接到屏蔽线的L形端子的电接触部分和覆盖L形端子的导线连接部分的电线接合部分侧接收部分,电接触部分侧 接线部分由导电屏蔽壳覆盖,线路连接部分侧接收部分由与屏蔽壳连接的导电壳体和屏蔽线的屏蔽部分覆盖,并且L形端子被 内壳从屏蔽壳和导电外壳。
    • 93. 发明授权
    • Method of preparing live viral vaccines by genetic engineering of viral genome
    • 通过病毒基因组的遗传工程制备活病毒疫苗的方法
    • US08834892B2
    • 2014-09-16
    • US13214634
    • 2011-08-22
    • Baik Lin SeongYo Han JangKwang Hee LeeYoung Ho Byun
    • Baik Lin SeongYo Han JangKwang Hee LeeYoung Ho Byun
    • A61K39/145A61K39/12C12N7/00
    • A61K39/145A61K39/12A61K2039/5254A61K2039/543C07K2319/50C12N7/00C12N2760/16122C12N2760/16134C12N2760/16162Y02A50/388
    • Disclosed is an attenuation method of an influenza virus, that is, a reassortant virus and a preparation method thereof. The disclosed reassortant virus has, in a ratio of 6:2, genes encoding a recombinant non-toxic protein and a wild type non-toxic protein, and genes encoding toxic proteins, HA (hemagglutinin) and NA (neuraminidase), of an influenza virus, the recombinant non-toxic protein consisting of a substituted caspase recognition sequence without a change of a protein size within the wild type non-toxic protein of the influenza virus. The disclosed attenuated influenza virus shows a high attenuation without a reduction of productivity in a fertilized egg. Accordingly, the method can be used as an economically efficient live vaccine preparation method which has both safety and efficiency and can use a fertilized egg as a production system. Also, since a protein is not removed or modified during attenuation, the method can be used in combination with a conventional attenuated vaccine preparation technology such as cold-adaptation.
    • 公开了流感病毒的减毒方法,即重配病毒及其制备方法。 公开的重配病毒以6:2的比例存在编码重组无毒蛋白质和野生型无毒蛋白质的基因,以及编码流感的毒性蛋白质HA(血凝素)和NA(神经氨酸酶)的基因) 病毒,由流感病毒的野生型无毒蛋白质中没有蛋白质大小变化的取代的半胱天冬酶识别序列组成的重组无毒蛋白质。 所公开的减毒流感病毒显示出高的衰减,而不会降低受精卵的生产力。 因此,该方法可以用作经济有效的活疫苗制备方法,其具有安全性和效率,并且可以使用受精卵作为生产系统。 此外,由于蛋白质在衰减期间不被去除或修饰,所以该方法可以与传统的减毒疫苗制备技术如冷适应联合使用。
    • 95. 发明授权
    • Diagnosis system and method of oxygen sensor for hybrid vehicle
    • 混合动力汽车氧传感器诊断系统及方法
    • US08831818B2
    • 2014-09-09
    • US13683303
    • 2012-11-21
    • Hyundai Motor CompanyKia Motors Corporation
    • Taekwook Park
    • G01M17/00F01N11/00G06F17/00
    • G06F17/00F01N11/007Y02T10/47Y10S903/93
    • A diagnosis method of an oxygen sensor for hybrid vehicles is disclosed, which includes receiving a diagnosis request signal for the diagnosis of an oxygen sensor from an EMS (Engine Management System) which is configured to control the engine; determining when a passive-run condition is occurring, under which the speed of a vehicle is within a previously set deceleration range as an accelerator is turned off in response to receiving the diagnosis request signal, and disengaging the engine clutch when the passive-run condition is occurring. Next fuel is cut to the engine in response to receiving a diagnosis request signal while the engine operating at a previously set reference speed by controlling the HSG once the engine clutch is disengaged. Once the above steps are complete a diagnosis of the oxygen sensor is then performed.
    • 公开了一种用于混合动力车辆的氧传感器的诊断方法,其包括从被配置为控制发动机的EMS(发动机管理系统)接收用于诊断氧传感器的诊断请求信号; 确定当被动运行状态何时发生,当车辆的速度响应于接收到诊断请求信号而关闭加速器时,车辆的速度在预先设定的减速范围内,并且当被动运行条件 正在发生。 一旦发动机离合器分离,通过控制HSG,发动机以预先设定的基准速度运转,响应于接收到诊断请求信号而将下一个燃料切割到发动机。 一旦上述步骤完成,则执行氧传感器的诊断。
    • 96. 发明授权
    • Automated building monitoring system
    • 自动化楼宇监控系统
    • US08831784B2
    • 2014-09-09
    • US13332808
    • 2011-12-21
    • I-Yu WangMing-Hsien PanChin-Hsuan Chang
    • I-Yu WangMing-Hsien PanChin-Hsuan Chang
    • G05B15/02
    • G05B15/02G05B2219/2642H04L12/2818H04L12/2825H04L12/2834
    • An automated building monitoring system for monitoring a plurality of apparatuses in a building, includes: a plurality of controllers for controlling the plurality of apparatuses; a controlling platform for providing control-setting information; and a controlling server connected to the controllers and the controlling platform for receiving and storing the control-setting information provided by the controlling platform, and obtaining real-time data of the controllers or real-time data of the apparatuses via the controllers, the controlling server controlling the controllers to control the apparatuses based on the control-setting information and the real-time data of the controllers or the apparatuses. When the controlling platform is abnormal or is abnormally connected to the controlling server, the controlling server continuously monitors the apparatuses in the building based on the stored real-time data of the controllers or the apparatuses.
    • 一种用于监视建筑物中的多个装置的自动化建筑物监控系统,包括:多个用于控制所述多个装置的控制器; 提供控制设置信息的控制平台; 以及连接到控制器的控制服务器和用于接收和存储由控制平台提供的控制设置信息的控制平台,以及经由控制器获得控制器的实时数据或设备的实时数据,控制 服务器根据控制器或设备的控制设置信息和实时数据控制控制器来控制设备。 当控制平台异常或与控制服务器异常连接时,控制服务器根据所存储的控制器或设备的实时数据连续监视建筑物内的设备。
    • 99. 发明授权
    • Method for etching a material in the presence of a gas
    • 在气体存在下蚀刻材料的方法
    • US08828255B2
    • 2014-09-09
    • US13320671
    • 2010-05-12
    • Francis BailletNicolas Gondrexon
    • Francis BailletNicolas Gondrexon
    • C03C15/00C23F1/00H01L21/311H01L21/3213
    • H01L21/31111C23F1/00H01L21/32134
    • The invention relates to a method for etching a structure (1) including at least one material (4) to be etched, said method consisting in: selecting at least one chemical species that can react with the material (4) to be etched; selecting at least one soluble compound that can release this chemical species; producing a solution (11) containing said compound; placing the structure (1) in a position such that the surface of the material to be etched is in the presence of the solution and additional bubbles of a gas; and producing high-frequency ultrasounds in the solution, at at least one frequency, capable of generating reactive cavitation bubbles such that the chemical species is generated in the presence of these additional bubbles and reacts with the material to be etched, thereby producing a soluble compound or a precipitate.
    • 本发明涉及一种用于蚀刻包括至少一种待蚀刻材料(4)的结构(1)的方法,所述方法包括:选择至少一种可与要蚀刻的材料(4)反应的化学物质; 选择至少一种可释放该化学物质的可溶性化合物; 产生含有所述化合物的溶液(11) 将结构(1)放置在使待蚀刻材料的表面存在溶液和气体的附加气泡的位置; 并且以至少一个频率在溶液中产生能够产生反应性空化气泡的高频超声波,使得在存在这些附加气泡的情况下产生化学物质并与待蚀刻的材料反应,从而产生可溶化合物 或沉淀。