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    • 3. 发明授权
    • Chip antenna and method of manufacturing the same
    • 芯片天线及其制造方法
    • US06724347B2
    • 2004-04-20
    • US10178328
    • 2002-06-20
    • Isao TomomatsuTakahiro UenoMitsuo YoshinoShinji SatohHiroki Hamada
    • Isao TomomatsuTakahiro UenoMitsuo YoshinoShinji SatohHiroki Hamada
    • H01Q138
    • H01Q1/2283B29C45/0025B29C45/14639B29L2031/3456H01Q1/22H01Q1/38H01Q1/40H01Q9/40H01Q9/42H01Q11/04
    • Of margins of a resin molding with an antenna element buried therein which lie around the antenna element, a margin on that side of the resin molding where a gate mark remains is made larger than margins on other sides where there is no gate mark. Particularly, when the antenna element has a line antenna portion and a capacitance-adding portion provided at a distal end of the line antenna portion, the resin molding is injection-molded in such a way that a gate mark can be formed on that side where the capacitance-adding portion is located. Those portions of the resin molding where the terminal portions are led out are dented from levels of portions around those portions. This provides a chip antenna which has a simple structure with a high mechanical strength and does not prevent separation or cracking from occurring in the resin molding in which the antenna element is buried and a method of manufacturing the chip antenna.
    • 在埋设在天线元件周围的天线元件的树脂模制品的边缘处,留下栅极标记的树脂模制品侧的边缘大于没有栅极标记的另一侧的边缘。 特别地,当天线元件具有线天线部分和设置在线天线部分的远端处的电容增加部分时,树脂模制件以这样的方式被注射成型,即可以在那一侧形成栅极标记 电容添加部分被定位。 端子部分被引出的树脂模塑件的那些部分由这些部分周围的部分的凹陷凹陷。 这提供了具有机械强度高的简单结构的芯片天线,并且不防止在埋设天线元件的树脂模制件中发生分离或破裂以及制造芯片天线的方法。
    • 8. 发明授权
    • Plasma display panel and method for manufacturing the same
    • 等离子显示面板及其制造方法
    • US08040064B2
    • 2011-10-18
    • US12738076
    • 2008-02-19
    • Yasuhito YamaryoYoshiyuki KanekoHiroyuki TachiharaTakahiro UenoTakashi KawasakiAtsuo Ohtomi
    • Yasuhito YamaryoYoshiyuki KanekoHiroyuki TachiharaTakahiro UenoTakashi KawasakiAtsuo Ohtomi
    • H01J1/62
    • H01J11/40H01J9/02H01J11/12
    • It is an object of the present invention to provide a plasma display panel with an improved panel structure for improving a discharge time-lag and, more particularly, to provide a plasma display panel with a new protective film structure, the plasma display panel having uniformed panel properties suitable for mass production with a high yield.A PDP of the present invention which provides a pair of substrate assemblies opposed to each other sandwiching discharge spaces formed to seal a discharge gas therein, wherein one of the pair of substrate assemblies comprises: display electrodes arranged on a substrate; a dielectric layer for covering the display electrodes; and a protective layer for covering the dielectric layer, the protective layer is configured so that a plurality of MgO single crystals are adhered to an MgO film in such a manner that crystal orientations of the plurality of MgO single crystals are aligned in one direction, and a value which is three times of a standard deviation of coverage factors of the MgO single crystals on the MgO film, divided by a mean value of the coverage factors is 20% or less.
    • 本发明的目的是提供一种具有改进的面板结构的等离子体显示面板,用于改善放电时间延迟,更具体地说,提供具有新的保护膜结构的等离子体显示面板,等离子体显示面板具有均匀的 面板适用于大批量生产,产量高。 本发明的PDP提供了一对相对的夹持放电空间的衬底组件,用于将放电气体密封在其中,其中一对衬底组件中的一个包括:布置在衬底上的显示电极; 用于覆盖所述显示电极的介电层; 以及用于覆盖电介质层的保护层,保护层被构造成使得多个MgO单晶以使得多个MgO单晶的晶体取向沿一个方向排列的方式粘附到MgO膜上,并且 MgO膜上的MgO单晶的覆盖系数的标准偏差的三倍除以覆盖系数的平均值的值为20%以下。
    • 9. 发明授权
    • Cooperative control system of robots
    • 机器人协同控制系统
    • US07558646B2
    • 2009-07-07
    • US10494583
    • 2002-11-07
    • Naoyuki MatsumotoMasatoshi SanoTsuyoshi MaeharaNobuyasu ShimomuraTakahiro Ueno
    • Naoyuki MatsumotoMasatoshi SanoTsuyoshi MaeharaNobuyasu ShimomuraTakahiro Ueno
    • G05B19/042
    • B25J9/1682G05B2219/33097G05B2219/39051G05B2219/39124G05B2219/39141
    • The present invention has a communication connection means (21) which mutually connects communicatably control units (Ca, Cb) for individually controlling operations of robots (Ra, Rb) to constitute a network, input means (37a, 37b) which are respectively installed in the control units and input operation instructions of the robots, and timing signal generation means (69a, 69b). The control units are selectively set to any one of an independent function execution mode, a master function execution mode, and a slave function execution mode, and among the control units, the control unit (Ca) to perform a master operation is set to the master function execution mode, and the residual control unit (Cb) is set to the slave function execution mode, and by correcting a minimum interruption period (Ts(b)) of the slave side control unit (Cb), a control time (ta11, ta12, ta13) to the master robot (Ra) of the master side control unit (Ca) is delayed by a predetermined time (T) to perform the cooperative operation. By doing this, the control units are always kept in the synchronized state, thus the operations of the robots can be prevented from variations.
    • 本发明具有通信连接装置(21),其连接用于单独控制机器人(Ra,Rb)的操作的可通信控制单元(Ca,Cb)以构成网络,输入装置(37a,37b)分别安装在 机器人的控制单元和输入操作指令,以及定时信号生成装置(69a,69b)。 控制单元被选择性地设置为独立功能执行模式,主功能执行模式和从功能执行模式中的任何一个,并且在控制单元中,执行主操作的控制单元(Ca)被设置为 主功能执行模式,剩余控制单元(Cb)被设定为从功能执行模式,并且通过校正从侧控制单元(Cb)的最小中断周期(Ts(b)),控制时间(ta11 ,ta12,ta13)到主控制单元(Ca)的主机器人(Ra)延迟预定时间(T)以执行协作操作。 通过这样做,控制单元总是保持在同步状态,从而可以防止机器人的操作变化。