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    • 1. 发明授权
    • Driving method of AC type plasma display panel
    • 交流型等离子显示面板的驱动方法
    • US06768478B1
    • 2004-07-27
    • US09670615
    • 2000-09-27
    • Koichi WaniKazunori HiraoKoji AotoYoshihito Tahara
    • Koichi WaniKazunori HiraoKoji AotoYoshihito Tahara
    • G09G328
    • G09G3/2022G09G3/2927G09G3/294G09G2310/066G09G2320/0228
    • The object of the present invention is to provide a method of driving of an AC type plasma display panel with higher emitting efficiency without increasing the external-sustain voltage VSUS, even if the discharge sustain gap dp is extended. An AC type plasma display panel according to the present invention comprises a first and second substrates arranged opposite to each other. The first substrate includes a plurality pairs of a first and second electrodes extending parallel each other, and a dielectric layer covering thereon. The second substrate includes a plurality of third electrodes extending in a direction crossing the first and second electrodes, and a plurality of partition walls between each third electrode. A method of the panel according to the present invention comprises applying a voltage so that the discharge generated in the first opposing discharge space progresses towards a second opposing discharge space and extends along the third electrode. Therefore, the positive column discharge can be achieved so that the high emission efficiency can be realized.
    • 本发明的目的是提供一种驱动具有较高发射效率的AC型等离子体显示面板的方法,而不会增大外部维持电压VSUS,即使放电维持间隙dp延长。一种AC型等离子体显示面板, 本发明包括彼此相对布置的第一和第二基板。 第一基板包括多对彼此平行延伸的第一和第二电极以及覆盖在其上的电介质层。 第二基板包括在与第一和第二电极交叉的方向上延伸的多个第三电极,以及在每个第三电极之间的多个分隔壁。 根据本发明的面板的方法包括施加电压,使得在第一相对放电空间中产生的放电朝着第二相对放电空间前进,并沿着第三电极延伸。 因此,可以实现正列放电,从而可以实现高发射效率。
    • 4. 发明授权
    • Plasma display panel
    • 等离子显示面板
    • US06304031B1
    • 2001-10-16
    • US09118840
    • 1998-07-20
    • Koichi WaniKazunori Hirao
    • Koichi WaniKazunori Hirao
    • H01J1749
    • H01J11/32G09G3/2983G09G2330/045H01J11/12H01J2211/326
    • A high-capacity, high-definition plasma display panel capable of providing a high-quality image has an image display area 16 within which pairs of sustaining electrodes and pairs of scanning electrodes are disposed in an alternating fashion with each other. Each pair of the sustaining electrodes are connected at their opposite ends with each other and, similarly, each pair of the scanning electrodes are connected at their opposite ends with each other. A unitary pixel is defined at an intersection between one of data electrodes 8 and a group including a pair of the scanning electrode, one of pair of the sustaining electrodes adjacent such pair of the scanning electrodes and one of the next succeeding pair of the sustaining electrodes adjacent such pair of the scanning electrodes.
    • 能够提供高质量图像的高容量,高清晰度等离子体显示面板具有图像显示区域16,在该图像显示区域16中,维持电极对和扫描电极对以彼此交替的方式设置。 每对保持电极在其相对端彼此连接,并且类似地,每对扫描电极在其相对端彼此连接。 单位像素被定义在数据电极8和包括一对扫描电极的组之间的交点处,与这对扫描电极相邻的一对维持电极中的一个与下一个维持电极对之一 相邻的这对扫描电极。
    • 7. 发明授权
    • Plasma display panel with semitransparent front substrate and filter
    • 等离子显示面板带有半透明前基板和滤光片
    • US06552486B1
    • 2003-04-22
    • US09443850
    • 1999-11-19
    • Koichi WaniKazunori HiraoKoji AotoYoshihito Tahara
    • Koichi WaniKazunori HiraoKoji AotoYoshihito Tahara
    • H01J1749
    • H01J11/12H01J11/34H01J11/44H01J2211/444
    • A front substrate and a back substrate are placed opposing each other separated by a discharge space. The front substrate is made of a semitransparent material such as a dark color glass with a mean transmittance for visible light of 60 to 80%. On the front substrate, a group of electrodes including pairs of scanning electrodes and sustaining electrodes covered with a dielectric layer and a protective coating are provided. Data electrodes and spacers are formed on the back substrate, and phosphors are provided on the data electrodes towards the side of the spacers. A front filter, which is made of a semitransparent glass sheet with a mean transmittance for visible light of 60 to 80%, is disposed on the front side of the front substrate. The present invention realizes a display with less halation and high contrast. Also, a detection rate of a defect in electrodes, which are formed on the front substrate, improves.
    • 前衬底和后衬底彼此相对放置,由放电空间分开。 前基板由半透明材料制成,例如深色玻璃,对于可见光的平均透射率为60-80%。 在前基板上设置包括电介质层和保护涂层的扫描电极和维持电极对的一组电极。 在背面基板上形成数据电极和间隔物,在数据电极上设置磷光体朝向间隔物一侧。 在前面基板的正面设置有由半透明玻璃板制成的前置滤光片,其平均透射率为60〜80%的可见光。 本发明实现了具有较少晕影和高对比度的显示。 此外,形成在前基板上的电极的缺陷的检测率提高。