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    • 3. 发明申请
    • Plasma display panel
    • 等离子显示面板
    • US20070029908A1
    • 2007-02-08
    • US10576213
    • 2004-10-28
    • Masashi GotoMikihiko NishitaniKatsumi AdachiYoshinori YamadaSatoshi Ikeda
    • Masashi GotoMikihiko NishitaniKatsumi AdachiYoshinori YamadaSatoshi Ikeda
    • H01J21/10
    • H01J11/24H01J11/12H01J2211/245
    • A plasma display panel in which a plurality of pairs of display electrodes extending in a row direction are aligned on a surface of a first substrate, a plurality of address electrodes extending in a column direction are disposed in a stripe pattern on a surface of a second substrate, the first and second substrates are disposed opposite each other so that the pairs of display electrodes and the address electrodes cross over sandwiching discharge space therebetween, and a discharge cell is formed corresponding to each crossover portion. The pairs of display electrodes are composed of a metallic material, each display electrode of each pair of display electrodes includes a base part extending in the row direction and a plurality of opposing parts extending from the base part into a discharge interval between the each pair of display electrodes. In each discharge cell, at least two discharge starting gaps are formed, each discharge starting gap existing between opposing parts that respectively belong each of the pair display electrodes and being at least partially over the address electrode. Discharge space exists between the each discharge starting gap and the address electrode, and peaks in electric field intensity are formed at each of the opposing parts.
    • 一种等离子体显示面板,其中沿行方向延伸的多对显示电极在第一基板的表面上排列,沿列方向延伸的多个寻址电极以条纹图案设置在第二基板的表面上 基板,第一基板和第二基板彼此相对布置,使得成对的显示电极和寻址电极在其间夹着放电空间交叉,并且对应于每个交叉部分形成放电单元。 这些显示电极对由金属材料构成,每对显示电极的每个显示电极包括沿行方向延伸的基部和从基部延伸到每对显示电极之间的放电间隔的多个相对部分 显示电极。 在每个放电单元中,形成至少两个放电起始间隙,每个放电起始间隙存在于分别对应于每对显示电极并且至少部分地位于寻址电极之间的相对部分之间。 在每个放电起始间隙和寻址电极之间存在放电空间,并且在每个相对部分处形成电场强度的峰值。
    • 4. 发明申请
    • Plasma display panel
    • 等离子显示面板
    • US20070052348A1
    • 2007-03-08
    • US10576671
    • 2004-10-28
    • Masashi GotoMikihiko NishitaniKatsumi AdachiYoshinori YamadaSatoshi Ikeda
    • Masashi GotoMikihiko NishitaniKatsumi AdachiYoshinori YamadaSatoshi Ikeda
    • H01J1/62
    • H01J11/24H01J11/12H01J2211/245
    • The present invention is a plasma display panel in which a plurality of pairs of display electrodes extending in a row direction are disposed on a surface of a first substrate and a plurality of discharge cells are formed along each pair of display electrodes, wherein, at least within each discharge cell, each display electrode of the pair of display electrodes comprises a bus line and a band-shaped electrode member that is electrically connected to the bus line, the band-shaped electrode member extending in the row direction and being disposed at least mainly on a same side of the bus line as a gap between the pair of display electrodes, and each band-shaped electrode member has at least one cut-out formed from a gap-side edge towards the bus line, each cut-out having a length that is shorter than a distance between the gap-side edge and the bus line. When the plasma display panel is driven, peaks in electric field intensity are respectively formed in the discharge cell in regions of the electrode member on both sides of the cut-outs. Here, The display electrodes can be constructed from bus lines and transparent electrodes both extending in the row direction, and the band-shaped electrode member can be a transparent electrode.
    • 本发明是一种等离子体显示面板,其中沿着行方向延伸的多对显示电极设置在第一基板的表面上,并且沿着每对显示电极形成多个放电单元,其中至少 在每个放电单元内,一对显示电极的每个显示电极包括母线和与母线电连接的带状电极构件,带状电极构件沿行方向延伸并且至少设置 主要在总线的同一侧作为一对显示电极之间的间隙,并且每个带状电极构件具有从间隙侧边缘朝向总线形成的至少一个切口,每个切口具有 长度短于间隙侧边缘和总线之间的距离。 当驱动等离子体显示面板时,在切口两侧的电极构件的区域中,在放电单元中分别形成有电场强度的峰值。 这里,显示电极可以由沿行方向延伸的总线线路和透明电极构成,带状电极部件也可以是透明电极。
    • 6. 发明授权
    • Plasma display panel driving circuit and plasma display apparatus
    • 等离子显示面板驱动电路和等离子体显示装置
    • US07583033B2
    • 2009-09-01
    • US11671154
    • 2007-02-05
    • Satoshi Ikeda
    • Satoshi Ikeda
    • G09G3/10G09G3/28
    • G09G3/294G09G3/292G09G3/296G09G3/298G09G2330/028
    • A plasma display panel driving circuit for driving a plasma display panel which has a plurality of scan electrodes and sustain electrodes and operates as a capacitive load, by applying a different waveform in each of a reset period, address period and sustain period, includes a voltage multiplying circuit having a first input terminal to which 0 or a first voltage is inputted and a second input terminal to which a second voltage that is smaller than the first voltage is inputted. The voltage multiplying circuit is operable to generate a voltage prepared by adding the second voltage to a voltage equivalent to integral multiple of the first voltage.
    • 一种用于驱动具有多个扫描电极和维持电极并用作电容性负载的等离子体显示面板的等离子体显示面板驱动电路,通过在复位周期,寻址周期和维持周期中施加不同的波形,包括电压 具有输入0或第一电压的第一输入端子的倍增电路和输入小于第一电压的第二电压的第二输入端子。 电压倍增电路可操作以产生通过将第二电压加到等于第一电压的整数倍的电压而制备的电压。
    • 10. 发明申请
    • Optical Signal Receiver
    • 光信号接收机
    • US20080253776A1
    • 2008-10-16
    • US10587050
    • 2005-08-05
    • Koji KikushimaSatoshi Ikeda
    • Koji KikushimaSatoshi Ikeda
    • H04B10/06
    • H04B10/66H04B10/25751H04N7/22
    • An optical signal receiver is provided for converting an optical signal being intensity-modulated with high frequency signals, to desired frequency electric signals for output. The optical signal receiver (50) according to the invention receives and converts an optical signal being intensity-modulated with high frequency signals such as a microwave or millimeter wave, to electric signals, which are converted to desired intermediate frequencies by a block down converter (52). By converting the high frequency signals to the desired intermediate frequencies, the transmission loss through transmission media such as a coaxial cable (60) can be reduced. Also, the high frequency characteristics required for an electric connector used at a connecting point with the transmission media are alleviated, so that an inexpensive connector can be used.
    • 提供了一种光信号接收器,用于将用高频信号进行强度调制的光信号转换成期望的频率电信号以用于输出。 根据本发明的光信号接收器(50)接收并转换被高频信号(例如微波或毫米波)强度调制的光信号到电信号,该信号通过块降频转换器转换成所需的中频 52)。 通过将高频信号转换为期望的中频,可以减少诸如同轴电缆(60)之类的传输介质的传输损耗。 此外,减轻了在与传输介质的连接点处使用的电连接器所需的高频特性,从而可以使用便宜的连接器。