Automobile blind spot detection system and method
    131.
    发明授权
    Automobile blind spot detection system and method 有权
    汽车盲点检测系统及方法

    公开(公告)号:US09041552B2

    公开(公告)日:2015-05-26

    申请号:US13346783

    申请日:2012-01-10

    Applicant: Xiao Lin Yu

    Inventor: Xiao Lin Yu

    Abstract: A system is provided for detecting a blind spot for a driver of a vehicle. The system includes a side mirror. The side mirror is arranged on a body of the vehicle and includes a side mirror body, a mirror, and a supporting structure. The system also includes a detection system. The detection system is physically coupled with the side mirror to detect an object in a detection zone of the detection system. The detection zone covers the blind spot, and the detection system includes a detection module, an alert indicator, and a control module. The detection module includes at least one of a transmitter and a receiver, and the alert indicator is configured to send an alert light to the driver at a predetermined angle such that the alert light does not interfere with drivers of other vehicles close to the vehicle.

    Abstract translation: 提供一种用于检测车辆驾驶员的盲点的系统。 该系统包括一个侧镜。 侧视镜布置在车辆的主体上,并且包括侧镜体,反射镜和支撑结构。 该系统还包括检测系统。 检测系统与侧镜物理耦合以检测检测系统的检测区域中的对象。 检测区域覆盖盲区,检测系统包括检测模块,报警指示器和控制模块。 检测模块包括发射机和接收机中的至少一个,并且警报指示器被配置为以预定角度向驾驶员发送警报灯,使得警报灯不会干扰靠近车辆的其他车辆的驾驶员。

    Method for node communication
    132.
    发明授权
    Method for node communication 有权
    节点通信方法

    公开(公告)号:US08891515B2

    公开(公告)日:2014-11-18

    申请号:US13411642

    申请日:2012-03-05

    Applicant: Lin Yu

    Inventor: Lin Yu

    CPC classification number: H04L12/6418

    Abstract: A method for node communication for use in a rack system is provided. The method includes providing a detecting unit for connecting to the nodes via a circuit switching device; predefining a linked list in which a limit of times for the detecting unit to communicate with each of the nodes is set; sequentially selecting one node of the nodes so that the detecting unit is connected to the one node via the circuit switching device; adding an assigned communication parameter between the detecting unit and the one node selected to the linked list, wherein a number of times of communication corresponding to the assigned communication parameter is not greater than the limit of times; and performing communication between the detecting unit and the one node selected in accordance with the assigned communication parameter in the linked list.

    Abstract translation: 提供了一种用于在机架系统中使用的节点通信的方法。 该方法包括提供一个经由电路交换装置连接到节点的检测单元; 预先设定检测单元与每个节点通信的时间限制的链表; 顺序地选择节点的一个节点,使得检测单元经由电路交换装置连接到一个节点; 在所述检测单元和所选择的所述链接列表中的所述一个节点之间添加分配的通信参数,其中与所分配的通信参数对应的通信次数不大于所述时间限制; 以及在所述检测单元和根据所述链接列表中的所分配的通信参数选择的所述一个节点之间执行通信。

    Method for controlling rack system using RMC to determine type of node based on FRU's message when status of chassis is changed
    133.
    发明授权
    Method for controlling rack system using RMC to determine type of node based on FRU's message when status of chassis is changed 有权
    使用RMC控制机架系统的方法,用于当机架状态发生变化时,基于FRU的消息来确定节点的类型

    公开(公告)号:US08656003B2

    公开(公告)日:2014-02-18

    申请号:US13412627

    申请日:2012-03-06

    Applicant: Lin Yu

    Inventor: Lin Yu

    CPC classification number: H05K7/20836

    Abstract: A method for controlling a rack system including a plurality of detachable chassis, where at lease one node is disposed in the chassis and a rack management controller (RMC) is disposed in the rack system. First, at least one detecting unit connected to the RMC and the node of the chassis in the rack system is provided. Next, a status message of the chassis is detected for determining whether the status of the chassis is changed. When the status is changed, the detecting unit determines whether the node corresponding to the chassis exists in the rack system. When the node exists, the detecting unit acquires a message of a field replaceable unit (FRU) of the node. Thereafter, the detecting unit transmits the message of the FRU to the RMC. Then, the RMC determines a type of the node according to the message of the FRU.

    Abstract translation: 一种用于控制包括多个可拆卸底盘的机架系统的方法,其中至少一个节点设置在机架中,并且机架管理控制器(RMC)设置在机架系统中。 首先,提供与机架系统中的RMC和​​机架的节点连接的至少一个检测单元。 接下来,检测到机箱的状态消息,以确定机箱的状态是否改变。 当状态改变时,检测单元确定与机架对应的节点是否存在于机架系统中。 当节点存在时,检测单元获取节点的现场可替换单元(FRU)的消息。 此后,检测单元将FRU的消息发送给RMC。 然后,RMC根据FRU的消息确定节点的类型。

    THROUGH SILICON VIA (TSV) ISOLATION STRUCTURES FOR NOISE REDUCTION IN 3D INTEGRATED CIRCUIT
    134.
    发明申请
    THROUGH SILICON VIA (TSV) ISOLATION STRUCTURES FOR NOISE REDUCTION IN 3D INTEGRATED CIRCUIT 审中-公开
    通过硅(TSV)隔离结构减少3D集成电路中的噪声

    公开(公告)号:US20140008817A1

    公开(公告)日:2014-01-09

    申请号:US14024925

    申请日:2013-09-12

    CPC classification number: H01L23/481 H01L2924/0002 H01L2924/00

    Abstract: Through silicon via (TSV) isolation structures are provided and suppress electrical noise such as may be propagated through a semiconductor substrate when caused by a signal carrying active TSV such as used in 3D integrated circuit packaging. The isolation TSV structures are surrounded by an oxide liner and surrounding dopant impurity regions. The surrounding dopant impurity regions may be P-type dopant impurity regions that are coupled to ground or N-type dopant impurity regions that may advantageously be coupled to VDD. The TSV isolation structure is advantageously disposed between an active, signal carrying TSV and active semiconductor devices and the TSV isolation structures may be formed in an array that isolates an active, signal carrying TSV structure from active semiconductor devices.

    Abstract translation: 提供通过硅通孔(TSV)隔离结构,并且抑制诸如在由3D集成电路封装中使用的携带有源TSV的信号引起的时候可能通过半导体衬底传播的电噪声。 隔离TSV结构被氧化物衬垫和周围的掺杂剂杂质区包围。 周围的掺杂剂杂质区域可以是耦合到接地的P型掺杂剂杂质区域或者可以有利地连接到VDD的N型掺杂剂杂质区域。 TSV隔离结构有利地设置在有源信号承载TSV和有源半导体器件之间,并且TSV隔离结构可以形成为将有源信号传输TSV结构与有源半导体器件隔离的阵列。

    Crystalline form I of 3,4′5-trihydroxy-stilbene-3-β-D glucoside
    135.
    发明授权
    Crystalline form I of 3,4′5-trihydroxy-stilbene-3-β-D glucoside 有权
    3,4'5-三羟基 - 二苯乙烯-3-β-D葡萄糖苷的结晶形式I

    公开(公告)号:US08575115B2

    公开(公告)日:2013-11-05

    申请号:US12097321

    申请日:2006-08-28

    CPC classification number: C07H15/20

    Abstract: The present invention relates to a novel crystalline form of a Compound 3,4′,5-trihydroxy-stilbene-3-β-D-glucoside (polydatin) and a method of preparation and use thereof, and to a pharmaceutical composition containing crystalline form I of 3,4′,5-trihydroxy-stilbene-3-β-D-glucoside. Crystalline form I of 3,4′,5-trihydroxy-stilbene-3-β-D-glucoside of the present invention has a stable crystalline morphology, a definite melting point and a good chemical stability. Such a novel form of 3,4′,5-trihydroxy-stilbene-3-β-D-glucoside possesses the properties required for the preparation of solid formulations and is easily tabletable and readily formable when formulated, which allows for substantial decrease in raw materials costs, more facile operations in production and easier control over quality in industrial drug production, and moreover, better convenience in storage.

    Abstract translation: 本发明涉及化合物3,4',5-三羟基 - 二苯乙烯-3-β-D-葡萄糖苷(多聚糖)的新结晶形式及其制备和应用的方法,以及含有结晶形式的药物组合物 I的3,4',5-三羟基 - 二苯乙烯-3-β-D-葡萄糖苷。 本发明的3,4',5-三羟基 - 二苯乙烯-3-β-D-葡萄糖苷的结晶形式I具有稳定的结晶形态,确定的熔点和良好的化学稳定性。 这种3,4',5-三羟基 - 二苯乙烯-3-β-D-葡萄糖苷的新形式具有制备固体制剂所需的性质,并且在配制时易于制成并易于成型,这允许原料 材料成本较高,生产操作更加容易,工业药品生产质量更易于控制,而且储存更方便。

    Method for tuning service performance of multi-task system and multi-task system thereof
    136.
    发明授权
    Method for tuning service performance of multi-task system and multi-task system thereof 有权
    调整多任务系统及其多任务系统的业务性能的方法

    公开(公告)号:US08549525B2

    公开(公告)日:2013-10-01

    申请号:US11681819

    申请日:2007-03-05

    CPC classification number: G06F9/4887 G06F9/4881

    Abstract: A method for executing a first and a second task in M time units is disclosed. The method includes comparing the priority of the first task and the task. If the first task has a higher priority than the second task, the first task is executed. The first task is then suspended after the first duration, and the second task is executed for a second duration.

    Abstract translation: 公开了一种用于以M个时间单位执行第一和第二任务的方法。 该方法包括比较第一任务和任务的优先级。 如果第一个任务的优先级高于第二个任务,则执行第一个任务。 然后在第一个持续时间之后暂停第一个任务,第二个任务执行第二个持续时间。

    III-V compound semiconductor epitaxy from a non-III-V substrate
    137.
    发明授权
    III-V compound semiconductor epitaxy from a non-III-V substrate 有权
    III-V族化合物半导体外延从非III-V衬底

    公开(公告)号:US08377796B2

    公开(公告)日:2013-02-19

    申请号:US12539374

    申请日:2009-08-11

    Abstract: A method of forming a circuit structure includes providing a substrate; forming recesses in the substrate; forming a mask layer over the substrate, wherein the mask layer covers non-recessed portions of the substrate, with the recesses exposed through openings in the mask layer; forming a buffer/nucleation layer on exposed portions of the substrate in the recesses; and growing a group-III group-V (III-V) compound semiconductor material from the recesses until portions of the III-V compound semiconductor material grown from the recesses join each other to form a continuous III-V compound semiconductor layer.

    Abstract translation: 形成电路结构的方法包括提供基板; 在基板上形成凹部; 在所述基板上形成掩模层,其中所述掩模层覆盖所述基板的非凹部,所述凹部通过所述掩模层中的开口暴露; 在所述凹部中的所述基板的暴露部分上形成缓冲/成核层; 以及从所述凹部生长第III族V族化合物半导体材料,直到从所述凹部生长的所述III-V族化合物半导体材料的部分相互连接形成连续的III-V族化合物半导体层。

    3D VISUAL DISPLAY SYSTEM AND METHOD
    138.
    发明申请
    3D VISUAL DISPLAY SYSTEM AND METHOD 审中-公开
    3D视觉显示系统和方法

    公开(公告)号:US20120300298A1

    公开(公告)日:2012-11-29

    申请号:US13118426

    申请日:2011-05-29

    Applicant: Xiao Lin Yu

    Inventor: Xiao Lin Yu

    CPC classification number: G02B27/2285

    Abstract: A three-dimensional (3D) display system is provided. The 3D display system includes at least one 3D display element containing a series of element bases, and each element base includes a plurality of light-emitting elements in a predetermined arrangement. The 3D display system also includes a moving mechanism coupled to the 3D display element for causing the 3D display element to move along a predetermined direction. Further, the 3D display system includes a controller configured to control respective light-emitting conditions of the plurality of light-emitting elements contained in each element base, when each element base is moving in the predetermined direction, to create dynamic pixels based on persistence of vision so as to form a layer of 2D display. The layers of 2D display corresponding to the series of element bases overlap together to form a 3D display.

    Abstract translation: 提供三维(3D)显示系统。 3D显示系统包括至少一个包含一系列元件基座的3D显示元件,并且每个元件基底包括预定布置的多个发光元件。 3D显示系统还包括耦合到3D显示元件的移动机构,用于使3D显示元件沿预定方向移动。 此外,3D显示系统包括控制器,其被配置为当每个元件基座沿预定方向移动时,控制包含在每个元件基底中的多个发光元件的各自的发光状态,以基于持续性产生动态像素 视觉,以形成一层2D显示。 对应于一系列元素基底的2D显示层重叠在一起形成3D显示。

    DEPOLYMERIZED GLYCOSAMINOGLYCAN FROM THELENOTA ANANAS AND PREPERATION METHOD THEREOF
    139.
    发明申请
    DEPOLYMERIZED GLYCOSAMINOGLYCAN FROM THELENOTA ANANAS AND PREPERATION METHOD THEREOF 有权
    来自THENENOTA ANANAS的分解的谷氨酰胺聚糖及其制备方法

    公开(公告)号:US20120270834A1

    公开(公告)日:2012-10-25

    申请号:US13512142

    申请日:2010-10-25

    CPC classification number: A61K31/737 A61K31/726 C08B37/0063

    Abstract: Disclosed is a depolymerized glycosaminoglycan from Thelenota ananas (dTHG), weight average molecular weight of which is about 8000˜20000 Da, and monosaccharide components of which are acetylgalactosamine (GalNAc), glucuronic acid (GlcUA), fucose (Fuc) or their sulfates (expressed as —OSO3−), in which molar ratio of GalNAc:GlcUA:Fuc:—OSO3− is about 1:(1±0.3):(1±0.3):(3.5±0.5). Said dTHG is a potent endogenous inhibitor of factor X, which has good anticoagulant and antithrombotic activity, and can be used for the prevention and/or treatment of thrombotic diseases. Also provided is a method for preparing said dTHG, which comprises steps of 1) extracting and obtaining fucosylated glycosaminoglycan (THG) from the body wall of Thelenota ananas; 2) depolymerizing THG to obtain dTHG by method of peroxide depolymerization or method of peroxide depolymerization catalyzed by catalyst of the fourth period transition metal ions; 3) removing impurities with lower and/or higher molecular weight in dTHG.

    Abstract translation: 公开了来自Thelenota ananas(dTHG)的解聚糖胺聚糖(dTHG),其重均分子量为约8000-20000Da,其单糖组分为乙酰半乳糖胺(GalNAc),葡糖醛酸(GlcUA),岩藻糖(Fuc)或其硫酸盐 表达为-OSO3-),其中GalNAc:GlcUA:Fuc:-OSO3-的摩尔比为约1:(1±0.3):(1±0.3):(3.5±0.5)。 所述dTHG是一种有效的因子X的内源性抑制剂,其具有良好的抗凝血和抗血栓形成活性,可用于预防和/或治疗血栓性疾病。 还提供了一种制备所述dTHG的方法,其包括以下步骤:1)从Thelenota ananas的体壁提取并获得岩藻糖基化的糖胺聚糖(THG); 2)解聚THG,通过过氧化物解聚法或第四周期过渡金属离子催化剂催化的过氧化物解聚方法得到dTHG; 3)去除dTHG中具有较低和/或更高分子量的杂质。

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