会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 21. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20090026950A1
    • 2009-01-29
    • US11917016
    • 2005-09-02
    • Hideki HaradaToshiyuki Nanto
    • Hideki HaradaToshiyuki Nanto
    • H01J17/49
    • H01J11/38H01J11/12
    • By making the thickness of a dielectric layer thinner than the thickness of each of electrodes, an opposed discharging phenomenon is exerted between the electrodes so that it becomes possible to reduce the discharging voltage between the electrodes. A plasma display panel is provided with a pair of substrates which are aligned face to face with each other with a discharge space placed inside thereof, a plurality of electrodes which are formed on the inner face of one of the substrates in a manner so as to be extended in a fixed direction, with a predetermined thickness, so that by generating a surface discharge, a screen display is carried out, and a dielectric layer which covers the electrodes, and in this structure, the dielectric layer is formed with a thickness which is thinner than the thickness of the electrodes.
    • 通过使电介质层的厚度比每个电极的厚度薄,在电极之间施加相反的放电现象,从而可以减小电极之间的放电电压。 等离子体显示面板设置有一对基板,其彼此面对地配置有放置在其内部的放电空间,多个电极以这样的方式形成在一个基板的内表面上, 以固定的方向延伸,具有预定的厚度,从而通过产生表面放电进行屏幕显示,并且在该结构中覆盖电极的介电层形成电介质层,其厚度为 比电极的厚度薄。
    • 24. 发明申请
    • Battery Controller and Voltage Abnormality Detection Method
    • 电池控制器和电压异常检测方法
    • US20120062238A1
    • 2012-03-15
    • US13213186
    • 2011-08-19
    • Tatsuhiko KawasakiKenji HaraToshiyuki NantoHirofumi Takahashi
    • Tatsuhiko KawasakiKenji HaraToshiyuki NantoHirofumi Takahashi
    • G01N27/416
    • G01R19/16542G01R31/396G01R35/00
    • A battery controller for controlling an assembled battery configured by connecting battery groups each including battery cells, includes: voltage measuring units that are provided respectively for the battery groups each to measure a voltage of each of the battery cells included in a corresponding battery group; a minimum value detecting unit that detects a minimum value of the battery cells for each of the battery groups based upon the measured voltage of each of the battery cells; a reference value setting unit that sets a reference value used to determine an abnormal voltage drop for each of the battery groups based upon the measured voltage of each of the battery cells; and an abnormality determining unit that makes a determination that an abnormal voltage drop is present, if a difference between the reference value and the minimum value exceeds a predetermined value, for each of the battery groups.
    • 一种电池控制器,用于控制通过连接包括电池单元的电池组而构成的组合电池,包括:电压测量单元,其分别设置用于各电池组,用于测量包括在相应的电池组中的每个电池单元的电压; 最小值检测单元,其基于每个电池单元的测量电压来检测每个电池组的电池单元的最小值; 基准值设定部,基于各电池单元的测定电压,设定用于确定各个电池组的异常电压降的基准值; 以及异常判定单元,对于每个电池组,如果基准值和最小值之间的差超过预定值,则确定存在异常电压降的确定。
    • 28. 发明申请
    • PLASMA DISPLAY PANEL AND DEPOSITION APPARATUS USED IN THE MANUFACTURING THEREOF
    • 其制造中使用的等离子体显示面板和沉积装置
    • US20090146563A1
    • 2009-06-11
    • US12281914
    • 2006-04-28
    • Toshiyuki Nanto
    • Toshiyuki Nanto
    • H01J61/00H01J9/00
    • C23C16/45565C23C16/5096H01J9/02H01J11/12H01J11/38
    • A plasma display panel has a screen (50) composed of a plurality of cells and a dielectric layer (17) across the entirety of the screen, and each cell includes a discharge space (31) filled with a discharge gas, a pair of electrodes (X, Y) for causing discharge in the discharge space (31), and a dielectric that is part of the dielectric layer (17) and that is interposed between the discharge space (31) and the electrodes (X, Y). The dielectric layer (17) has such a distribution of thickness that the dielectric layer is thinnest at the central portion of the screen and is gradually growing from the central portion of the screen toward the peripheral portions of the screen. The distribution of thickness in the dielectric layer makes the variation in the discharge delay between cells prominent, thereby relaxing the concentration of the discharge current.
    • 等离子体显示面板具有由整个屏幕的多个单元和电介质层(17)组成的屏幕(50),并且每个单元包括填充有放电气体的放电空间(31),一对电极 (31)中放电的电介质(X,Y),以及作为电介质层(17)的一部分并位于放电空间(31)和电极(X,Y)之间的电介质。 电介质层(17)的厚度分布如下:电介质层在屏幕的中央部分最薄,并且从屏幕的中央部分向屏幕的周边部分逐渐生长。 电介质层中的厚度分布使得电池之间的放电延迟的变化突出,从而放宽放电电流的浓度。