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    • 8. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20110133639A1
    • 2011-06-09
    • US12674507
    • 2009-09-28
    • Takuji TsujitaJun HashimotoRyuichi MuraiHiroyuki KadoMasashi GotouYukihiro MoritaYasuyuki Noguchi
    • Takuji TsujitaJun HashimotoRyuichi MuraiHiroyuki KadoMasashi GotouYukihiro MoritaYasuyuki Noguchi
    • H01J17/49
    • H01J11/12H01J11/40
    • A plasma display panel (PDP) featuring the display performance of high definition display and a high brightness, and yet, a lower power consumption is disclosed. A front panel of this PDP includes display electrodes formed on a front glass substrate, a dielectric layer covering the display electrodes, and a protective layer formed on the dielectric layer. A rear panel of this PDP includes address electrodes formed along a direction intersecting with the display electrodes, and barrier ribs. The front panel and the rear panel confront each other to form a discharge space which is filled with discharge gas and is portioned by the barrier ribs. The protective layer is formed of a metal oxide made of MgO and CaO. X-ray diffraction analysis on the surface of the protective layer finds that the metal oxide has a peak between a diffraction angle where a peak of MgO occurs and a diffraction angle where a peak of CaO occurs along an identical orientation of the MgO peak.
    • 公开了具有高清晰度显示器的显示性能和高亮度的等离子体显示面板(PDP),而且具有较低的功耗。 该PDP的前面板包括形成在前玻璃基板上的显示电极,覆盖显示电极的电介质层和形成在电介质层上的保护层。 该PDP的后面板包括沿着与显示电极相交的方向形成的寻址电极和阻挡肋。 前面板和后面板彼此面对以形成填充有放电气体并且被隔壁分隔的放电空间。 保护层由MgO和CaO制成的金属氧化物形成。 在保护层的表面上的X射线衍射分析发现,金属氧化物在发生MgO的峰的衍射角与沿着MgO峰的相同取向发生CaO的峰的衍射角之间具有峰。
    • 9. 发明授权
    • Gas discharge panel and gas light-emitting device
    • 气体放电面板和气体发光装置
    • US06291943B1
    • 2001-09-18
    • US09254886
    • 1999-06-04
    • Ryuichi MuraiAkira ShiokawaHiroyosi TanakaYoshiki SasakiMasaki AokiMasatoshi KudohYuusuke TakadaHiroyuki Kado
    • Ryuichi MuraiAkira ShiokawaHiroyosi TanakaYoshiki SasakiMasaki AokiMasatoshi KudohYuusuke TakadaHiroyuki Kado
    • H01J1312
    • H01J11/12H01J11/14H01J11/50
    • The object of the present invention is to provide a gas discharge panel, where the conversion efficiency of discharge energy into visible rays and the panel brightness are improved, with the color purity being improved as far as possible. To achieve this object, in a gas discharge panel, the pressure of discharge gas is set in a range of 800-4000 Torr, that is higher than a conventional gas pressure. Also, a rare gas mixture including helium, neon, xenon, and argon is used as discharge gas charged into discharge spaces, instead of conventional discharge gas. Here, it is preferable that the proportion of Xe is set to 5% by volume or less, that of Ar 0.5% by volume or less, and that of He under 55% by volume. With this rare gas mixture, the light-emission efficiency is improved, with the firing voltage being suppressed. Furthermore, display electrodes and address electrodes are arranged on the surface of either of a front cover plate and a back plate, with a dielectric layer existing between the display electrodes and the address electrodes. With this construction, addressing is performed with a relatively low voltage even if the gas pressure is high.
    • 本发明的目的是提供一种气体放电面板,其中放电能量转换成可见光的转换效率和面板亮度得到改善,色纯度尽可能地得到改善。 为了达到这个目的,在气体放电面板中,放电气体的压力设定在比常规气体压力高的800-4000乇的范围内。 此外,使用包含氦,氖,氙和氩的稀有气体混合物作为放电气体,而不是传统的放电气体。 这里,优选Xe的比例为5体积%以下,Ar为0.5体积%以下,He为55体积%以下。 利用这种稀有气体混合物,随着点火电压的抑制,发光效率提高。 此外,显示电极和寻址电极布置在前盖板和背板之一的表面上,在显示电极和寻址电极之间存在电介质层。 利用这种结构,即使气体压力高,也以相对低的电压进行寻址。