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    • 2. 发明申请
    • Autonomic sensor network ecosystem
    • 自主传感器网络生态系统
    • US20070073861A1
    • 2007-03-29
    • US11220961
    • 2005-09-07
    • Riz AmanuddinJonghae KimMoon KimEric Yee
    • Riz AmanuddinJonghae KimMoon KimEric Yee
    • G06F15/173
    • H04W84/18H04L43/0817H04L67/104H04L67/1046H04L67/1059H04L67/1068H04L67/1093H04L67/12H04W24/00H04W72/04H04W74/06H04W88/16
    • The present invention provides a method, system and program product for deploying and allocating resources, and addressing threats in an autonomic sensor network ecosystem. Specifically, under the present invention, the autonomic sensor network ecosystem includes a set (e.g., one or more) of sensor networks each having a set of sensor peers and at least one super peer; a set of micro grid gateways; and a set of enterprise gateways. Each micro grid gateway is typically adapted to receive requests from a sensor network, an enterprise gateway, and/or another micro grid gateway. Moreover, each micro grid gateway includes a request broker for receiving the requests; a request queue manager for queuing the requests; a scheduler for scheduling the requests; and a resource manager for monitoring the set of sensor networks.
    • 本发明提供了用于部署和分配资源以及解决自主传感器网络生态系统中的威胁的方法,系统和程序产品。 具体地说,在本发明的范围内,自主传感器网络生态系统包括一组(例如一个或多个)传感器网络,每个传感器网络具有一组传感器对等体和至少一个超级对等体; 一套微网格网关; 和一套企业网关。 每个微网格网关通常适于接收来自传感器网络,企业网关和/或另一微网格网关的请求。 此外,每个微网格网关包括用于接收请求的请求代理; 用于排队请求的请求队列管理器; 调度器,用于调度请求; 以及用于监测传感器网络集合的资源管理器。
    • 6. 发明申请
    • Symmetrical MIMCAP capacitor design
    • 对称MIMCAP电容设计
    • US20070267733A1
    • 2007-11-22
    • US11436251
    • 2006-05-18
    • Choongyeun ChoJonghae KimMoon KimJean-Olivier PlouchartRobert Trzcinski
    • Choongyeun ChoJonghae KimMoon KimJean-Olivier PlouchartRobert Trzcinski
    • H01L23/06
    • H01L29/94H01L23/5223H01L27/0805H01L2924/0002H01L2924/00
    • Semiconductor chip capacitance circuits and methods are provided comprising at least two capacitors mounted close to a substrate, wherein each capacitor has a lateral lower conductive plate mounted near enough to the substrate to have extrinsic capacitance greater than an upper plate extrinsic capacitance. One half of lower plates and one half of upper plates are connected to a first port, and a remaining one half of upper plates and lower plates are connected to a second port, the first and second port having about equal extrinsic capacitance from the lower plates. In one aspect, the substrate comprises a front-end-of-line capacitor defining a substrate footprint, and the at least two capacitors are back-end-of-line Metal-Insulator-Metal Capacitors disposed above the footprint. In another aspect, the at least two capacitors are at least four capacitors arrayed in a rectangular array generally parallel to the substrate.
    • 提供半导体芯片电容电路和方法,其包括安装在基板附近的至少两个电容器,其中每个电容器具有安装在基板附近的侧向下导电板,以具有大于上板外部电容的非本征电容。 下板的一半和上板的一半连接到第一端口,并且上板和下板的剩余的一半连接到第二端口,第一和第二端口具有与下板大致相等的外在电容 。 在一个方面,衬底包括限定衬底占位面积的前端电容器,并且至少两个电容器是设置在覆盖区之上的后端金属 - 绝缘体 - 金属电容器。 在另一方面,所述至少两个电容器是至少四个电容器,其排列成大致平行于衬底的矩形阵列。
    • 8. 发明申请
    • SHIELDING STRUCTURES FOR WIRELESS ELECTRONIC DEVICES WITH DISPLAYS
    • 具有显示屏的无线电子设备的屏蔽结构
    • US20120087065A1
    • 2012-04-12
    • US12899509
    • 2010-10-06
    • Moon KimAbbas Jamshidi RoudbariQishan YuWei YaoScott Mullins
    • Moon KimAbbas Jamshidi RoudbariQishan YuWei YaoScott Mullins
    • H05K7/00
    • H04B15/02G06F1/1656H04B1/40H04M1/0266
    • Electronic devices such as computers and handheld devices are provided. The electronic devices may have electrical components such as displays that are driven by driver circuitry. During operation, the driver circuitry may generate radio-frequency noise. Communications circuitry in the electronic devices may be shielded from the radio-frequency noise by radio-frequency shielding structures. The shielding structures may be mounted on portions of the display module, on a cover glass layer, or on other structures such as housing structures. The radio-frequency shielding structures may be formed from one or more metal segments. The metal segments may run along edges of the display. A device housing may have a ground formed from a conductive peripheral member that runs around peripheral edges of the housing and a conductive plate that is connected to the conductive peripheral member. The radio-frequency shielding structure may be connected to the ground using conductive structures.
    • 提供诸如计算机和手持设备之类的电子设备。 电子设备可以具有诸如由驱动器电路驱动的显示器的电气部件。 在操作期间,驱动器电路可能产生无线电频率噪声。 电子设备中的通信电路可以通过射频屏蔽结构屏蔽射频噪声。 屏蔽结构可以安装在显示模块的一部分上,覆盖玻璃层上,或其它结构上,如外壳结构上。 射频屏蔽结构可以由一个或多个金属片段形成。 金属片段可以沿着显示器的边缘延伸。 设备壳体可以具有由围绕壳体的周边边缘延伸的导电周边构件形成的接地和连接到导电周边构件的导电板。 射频屏蔽结构可以使用导电结构连接到地面。