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    • 61. 发明申请
    • SEARCH TERM SECURITY
    • 搜索安全性
    • US20110113038A1
    • 2011-05-12
    • US12617160
    • 2009-11-12
    • Elmer K. CorbinRichard FerriMoon J. KimLev Kozakov
    • Elmer K. CorbinRichard FerriMoon J. KimLev Kozakov
    • G06F17/30
    • G06F21/6263G06F16/3338G06F21/50G06F2221/2119G06F2221/2123
    • As indicated above, the present invention transparently inserts search arguments/terms (referred to as noise) into a search string so that the search arguments themselves would not be clearly evident when a user is searching. The inserted noise terms are related to the underlying search terms. This would confuse a mining program and/or hacker looking for sensitive material (such as intellectual property). When the search results are returned, any “hits” resulting from noise will be removed transparently from the overall results. The insertion and removal under the present invention provides a more secure level of searching, yet is completely transparent to the end user. The inserted random search arguments are germane contextually to the search string.
    • 如上所述,本发明将搜索参数/术语(称为噪声)透明地插入到搜索字符串中,使得当用户正在搜索时搜索参数本身将不清楚。 插入的噪声项与底层搜索术语相关。 这将混淆采矿计划和/或寻找敏感材料(如知识产权)的黑客。 当返回搜索结果时,噪声产生的任何“命中”将从整体结果中透明地删除。 根据本发明的插入和移除提供了更安全的搜索水平,但是对最终用户是完全透明的。 插入的随机搜索参数是与搜索字符串内容相关的。
    • 63. 发明申请
    • STRUCTURE FOR SYMMETRICAL CAPACITOR
    • 对称电容器结构
    • US20100295156A1
    • 2010-11-25
    • US12851814
    • 2010-08-06
    • Choongyeun ChoJonghae KimMoon J. KimJean-Olivier PlouchartRobert E. Trzcinski
    • Choongyeun ChoJonghae KimMoon J. KimJean-Olivier PlouchartRobert E. Trzcinski
    • H01L29/92
    • H01L29/94H01L23/5223H01L27/0805H01L2924/0002H01L2924/00
    • Capacitance circuits are provided disposing a lower vertical-native capacitor metal layer above a planar front-end-of-line semiconductor base substrate, planar metal bottom plates spaced a bottom plate distance from the base and top plates above the bottom plates spaced a top plate distance from the base defining metal-insulator-metal capacitors, top plate footprints disposed above the base substrate smaller than bottom plate footprints and exposing bottom plate remainder upper lateral connector surfaces; disposing parallel positive port and negative port upper vertical-native capacitor metal layers over and each connected to top plate and bottom plate upper remainder lateral connector surface. Moreover, electrical connecting of the first top plate and the second bottom plate to the positive port metal layer and of the second top plate and the first bottom to the negative port metal layer impart equal total negative port and positive port metal-insulator-metal capacitor extrinsic capacitance.
    • 提供电容电路,其设置在平面前端半导体基底基板上方的下垂直电容器金属层,与底板间隔开的底板距离的平面金属底板和位于底板上方的顶板,间隔开顶板 距离限定金属 - 绝缘体 - 金属电容器的基底的距离,设置在基底基板之上的顶板印迹小于底板印迹并且暴露底板剩余的上横向连接器表面; 将平行的正端口和负端口上垂直电容器金属层布置在每个顶板和底板的上部剩余侧面连接器表面上。 此外,第一顶板和第二底板与正端口金属层以及第二顶板和第一底部到负极金属层的电连接赋予相等的总负端口和正端口金属 - 绝缘体 - 金属电容器 外在电容。
    • 64. 发明授权
    • Structure for symmetrical capacitor
    • 对称电容器结构
    • US07838384B2
    • 2010-11-23
    • US11970665
    • 2008-01-08
    • Choongyeun ChoJonghae KimMoon J. KimJean-Olivier PlouchartRobert E. Trzcinski
    • Choongyeun ChoJonghae KimMoon J. KimJean-Olivier PlouchartRobert E. Trzcinski
    • H01L21/20
    • H01L29/94H01L23/5223H01L27/0805H01L2924/0002H01L2924/00
    • Methods, articles and design structures for capacitance circuits are provided disposing a lower vertical-native capacitor metal layer above a planar front-end-of-line semiconductor base substrate, planar metal bottom plates spaced a bottom plate distance from the base and top plates above the bottom plates spaced a top plate distance from the base defining metal-insulator-metal capacitors, top plate footprints disposed above the base substrate smaller than bottom plate footprints and exposing bottom plate remainder upper lateral connector surfaces; disposing parallel positive port and negative port upper vertical-native capacitor metal layers over and each connected to top plate and bottom plate upper remainder lateral connector surface. Moreover, electrical connecting of the first top plate and the second bottom plate to the positive port metal layer and of the second top plate and the first bottom to the negative port metal layer impart equal total negative port and positive port metal-insulator-metal capacitor extrinsic capacitance.
    • 提供了用于电容电路的方法,制品和设计结构,其在平面前端半导体基底基板上方设置较低的垂直电容器金属层,平板金属底板与底座和顶板间隔开底板 底板与限定金属 - 绝缘体 - 金属电容器的基板间隔开顶板距离,顶板脚印设置在基底基板之上,小于底板印迹,并露出底板剩余的上横向连接器表面; 将平行的正端口和负端口上垂直电容器金属层布置在每个顶板和底板的上部剩余侧面连接器表面上。 此外,第一顶板和第二底板与正端口金属层以及第二顶板和第一底部到负极金属层的电连接赋予相等的总负端口和正端口金属 - 绝缘体 - 金属电容器 外在电容。
    • 65. 发明授权
    • Smart radio-frequency identification (RFID) infrastructure and method
    • 智能射频识别(RFID)基础设施和方法
    • US07659821B2
    • 2010-02-09
    • US11531723
    • 2006-09-14
    • Moon J. KimEric C. Yee
    • Moon J. KimEric C. Yee
    • G08B13/14
    • H04W88/02H04W24/00H04W92/18
    • The present invention provides a smart RFID infrastructure and method. Specifically, under the present invention, the infrastructure includes a set (e.g., one or more) of smart RFID tags adapted to communicate with one another, wherein each operating smart RFID tag is adapted to create an individual table of information pertaining to operation of other smart RFID tags. In addition, the infrastructure includes a set of writeable RFID tags adapted to communicate with and receive the individual table of information from each operating smart RFID tag, wherein each of the set of writeable RFID tags is further adapted to create a master table of information based on the individual table of information received from each operating smart RFID tag.
    • 本发明提供一种智能RFID基础设施和方法。 具体地说,在本发明的基础上,基础设施包括适于彼此通信的智能RFID标签的集合(例如,一个或多个),其中每个操作的智能RFID标签适于创建与其他操作相关的信息的单独表格 智能RFID标签。 此外,基础设施包括一组可写入的RFID标签,其适于与每个操作的智能RFID标签通信和接收各个信息表,其中所述一组可写入RFID标签中的每一个进一步适于创建基于信息的主表 在每个操作的智能RFID标签上收到的信息的个人表上。
    • 66. 发明申请
    • VISUAL INSPECTION SYSTEM
    • 视觉检查系统
    • US20090245615A1
    • 2009-10-01
    • US12057942
    • 2008-03-28
    • Moon J. KimYumi MoriHiroki NakanoMasakuni Okada
    • Moon J. KimYumi MoriHiroki NakanoMasakuni Okada
    • G06K9/00
    • G06K9/00973
    • This solution relates to machine vision computing environments, and more specifically relates to a system and method for selectively accelerating the execution of image processing applications using a cell computing system. The invention provides a high performance machine vision system over the prior art and provides a method for executing image processing applications on a Cell and BPE3 image processing system. Moreover, implementations of the invention provide a machine vision system and method for distributing and managing the execution of image processing applications at a fine-grained level via a PCIe connected system. The hybrid system is replaced with the BPE3 and the switch is also eliminated from the prior in order to meet over 1 GB processing requirement.
    • 该解决方案涉及机器视觉计算环境,更具体地涉及用于使用单元计算系统选择性地加速图像处理应用的执行的系统和方法。 本发明提供了一种超现有技术的高性能机器视觉系统,并提供了一种在Cell和BPE3图像处理系统上执行图像处理应用的方法。 此外,本发明的实现提供了一种用于经由PCIe连接的系统在细粒度级别分发和管理图像处理应用的执行的机器视觉系统和方法。 混合系统被BPE3替代,并且交换机也从之前的消除,以满足超过1 GB的处理要求。
    • 69. 发明申请
    • MEMORY TO MEMORY COMMUNICATION AND STORAGE FOR HYBRID SYSTEMS
    • 对混合系统的记忆体通信和存储的记忆
    • US20090150555A1
    • 2009-06-11
    • US11951709
    • 2007-12-06
    • Moon J. KimRajaram B. krishnamurthyJames R. Moulic
    • Moon J. KimRajaram B. krishnamurthyJames R. Moulic
    • G06F15/16
    • H04L67/1097G06F3/0605G06F3/0638G06F3/064G06F3/067
    • The present invention relates to memory to memory communication and storage for hybrid systems. Under the present invention, a data stream is received on a first computing device of a hybrid system. An attempt is made to store the data stream on the first computing device up to a per stream limit and a total storage limit of the first computing device. It is then determined whether to store at least a portion of the data stream on a second computing device of the hybrid system that is in communication with the first computing device. This decision is based on the per stream limit and the total storage limit of the first computing device as well as a per stream limit and a total storage limit of the second computing device. Thereafter, the at least a portion of the data stream and a control signal are communicated to the second computing device for storage.
    • 本发明涉及用于混合系统的存储器到存储器通信和存储。 在本发明中,在混合系统的第一计算设备上接收数据流。 尝试将数据流存储在第一计算设备上,直到第一计算设备的每流限制和总存储限制。 然后确定是否将数据流的至少一部分存储在与第一计算设备通信的混合系统的第二计算设备上。 该决定基于第一计算设备的每流限制和总存储限制以及第二计算设备的每流限制和总存储限制。 此后,数据流的至少一部分和控制信号被传送到第二计算设备以进行存储。