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    • 5. 发明授权
    • Plasma display device
    • 等离子显示装置
    • US06603446B1
    • 2003-08-05
    • US09160292
    • 1998-09-25
    • Yoshikazu KanazawaTakeshi KuwaharaHaruo Koizumi
    • Yoshikazu KanazawaTakeshi KuwaharaHaruo Koizumi
    • G09G328
    • G09G3/296G09G3/299G09G2310/0218
    • Disclosed is a configuration of a PDP in which different sustaining discharge signals are applied to odd-numbered ones of X electrodes and Y electrodes and even-numbered ones thereof respectively. Owing to the configuration, the wiring in a drive circuit for driving the X electrodes or Y electrodes is simplified, and a scan driver can be formed with an IC or ICs. A plasma display device has a display panel including first to third electrodes. Sustaining discharge signals that are mutually out of phase are applied alternately to adjoining ones of the first electrodes and adjoining ones of the second electrodes respectively. Consequently, first display cells are defined between the second electrodes and the first electrodes on one side of the second electrodes, and second display cells are defined between the second electrodes and the first electrodes on the other side of the second electrodes. Interlacing where the first display cells and second display cells are allowed alternately and repeatedly to glow for display is carried out. A drive circuit for driving the second electrodes includes a first drive circuit for outputting a pulsating voltage to be applied to the odd-numbered second electrodes, a second drive circuit for outputting a pulsating voltage to be applied to the even-numbered second electrodes, and third circuits associated with the second electrodes for applying the pulsating voltages, which are output from the first drive circuit and second drive circuit, to the second electrodes, and for applying a scanning signal selectively to the second electrodes. In the plasma display device, the third circuits are grouped into third odd circuits to be connected to the odd-numbered ones of the second electrodes, and third even circuits to be connected to the even-numbered ones of the second electrodes. The third odd circuits are integrated into at least one chip, and the third even circuits are integrated into at least one chip.
    • 公开了一种PDP,其中不同的维持放电信号分别施加到X电极和Y电极及其偶数编号的奇数编号的PDP。 由于该结构,用于驱动X电极或Y电极的驱动电路中的布线被简化,并且可以用IC或IC形成扫描驱动器。 等离子体显示装置具有包括第一至第三电极的显示面板。 相互不相位的保持放电信号分别交替施加到相邻的第一电极和相邻的第二电极。 因此,在第二电极和第二电极的一侧上的第一电极之间限定第一显示单元,并且在第二电极和第二电极的另一侧上的第一电极之间限定第二显示单元。 执行交替重复允许第一显示单元和第二显示单元发光以进行显示的隔行扫描。 用于驱动第二电极的驱动电路包括用于输出施加到奇数编号的第二电极的脉动电压的第一驱动电路,用于输出施加到偶数第二电极的脉动电压的第二驱动电路,以及 与第二电极相关联的第三电路,用于将从第一驱动电路和第二驱动电路输出的脉动电压施加到第二电极,并将扫描信号选择性地施加到第二电极。 在等离子体显示装置中,将第三电路分组为与第二电极中的奇数号电极连接的第三奇数电路,以及要连接到第二电极的第二偶数电路的第三偶数电路。 第三奇数电路集成到至少一个芯片中,并且第三偶数电路集成到至少一个芯片中。
    • 7. 发明授权
    • Method for driving plasma display panel
    • 驱动等离子体显示面板的方法
    • US08018168B2
    • 2011-09-13
    • US11842734
    • 2007-08-21
    • Noriaki SetoguchiShigeharu AsaoYoshikazu Kanazawa
    • Noriaki SetoguchiShigeharu AsaoYoshikazu Kanazawa
    • G09G3/10
    • G09G5/18G09G3/2022G09G3/28G09G3/2922G09G3/2925G09G3/2927G09G3/2932G09G3/296G09G2310/0224G09G2310/04G09G2310/066G09G2320/0238
    • Disclosed is a method for driving a plasma display panel in which a plurality of first electrodes and second electrodes are arranged parallel to each other, a plurality of third electrodes are arranged to cross the first and second electrodes, and discharge cells defined with areas in which the electrodes cross mutually are arranged in the form of a matrix. According to the driving method, a reset period is a period during which the distribution of wall charges in the plurality of discharge cells is uniformed. An addressing period is a period during which wall charges are produced in the discharge cells according to display data. A sustain discharge period is a period during which sustain discharge is induced in the discharge cells in which wall charges are produced during the addressing period. The driving method in accordance with the present invention comprises a step of applying a first pulse in which an applied voltage varies with time so as to induce first discharge in the lines defined by the first and second electrodes, and a step of applying a second pulse in which an applied voltage varies with time so as to induce second discharge as erase discharge in the lines defined by the first and second electrodes. These steps are carried out during the reset period.
    • 公开了一种用于驱动等离子体显示面板的方法,其中多个第一电极和第二电极彼此平行地布置,多个第三电极布置成与第一和第二电极交叉,并且排出单元被限定在其中 相互交叉的电极以矩阵的形式排列。 根据驱动方法,复位期间是多个放电单元中的壁电荷分布均匀的期间。 寻址周期是根据显示数据在放电单元中产生壁电荷的期间。 维持放电期间是在寻址期间产生壁电荷的放电单元中产生维持放电的期间。 根据本发明的驱动方法包括施加施加电压随时间变化的第一脉冲以在由第一和第二电极限定的线中引起第一次放电的步骤,以及施加第二脉冲的步骤 其中施加的电压随时间变化,以便在由第一和第二电极限定的线中的擦除放电时引起第二放电。 这些步骤在复位期间进行。
    • 9. 发明授权
    • Plasma display device with shielding parts on transparent electrodes
    • 等离子显示装置,透明电极上有屏蔽部件
    • US07012370B2
    • 2006-03-14
    • US09881740
    • 2001-06-18
    • Yoshikazu KanazawaShigeharu Asao
    • Yoshikazu KanazawaShigeharu Asao
    • H01J17/49
    • H01J11/12H01J11/24H01J11/44H01J2211/245H01J2211/444
    • A plurality of discharge electrodes having transparent electrodes connected to bus electrodes are arranged on the inner side of a front substrate. Alternatively, discharge electrodes having transparent electrodes and capable of discharging between their respective neighboring electrodes on both sides are arranged on the inner side of the front substrate. The front substrate is provided on the side of the display surface where discharge-generated light radiates out to the exterior. Shielding parts for shielding incident light from the exterior are formed on the transparent electrodes, or along the front substrate. Accordingly, the shielding parts reduce the surface reflection to improve the bright room contrast ratio. Forming the shielding parts with the same material as that of the bus electrodes prevents fabrication processes from becoming complicated. The areas of the shielding parts can be varied with the luminescent colors of cells, to change the luminescent brightness by the cell.
    • 具有连接到总线电极的透明电极的多个放电电极设置在前基板的内侧。 或者,具有透明电极且能够在其两侧的各个相邻电极之间排出的放电电极布置在前基板的内侧。 前面基板设置在显示表面上,其中放电产生的光辐射到外部。 用于屏蔽来自外部的入射光的屏蔽部分形成在透明电极上或沿着前基板。 因此,屏蔽部件减少了表面反射,以提高亮室对比度。 用与母线电极相同的材料形成屏蔽部件,防止制造工艺变得复杂。 屏蔽部分的区域可以随着电池的发光颜色而变化,以改变电池的发光亮度。