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    • 1. 发明授权
    • Process for producing ion implanted bubble device
    • 用于生产离子植入气泡装置的方法
    • US4568561A
    • 1986-02-04
    • US644963
    • 1984-08-28
    • Keiichi BetsuiTsutomu Miyashita
    • Keiichi BetsuiTsutomu Miyashita
    • H01F41/34B05D3/06
    • H01F41/34
    • A process for producing an ion implanted bubble device having bubble propagation tracks formed by implanting ions in a magnetic layer formed on a substrate. The process includes: implanting ions in the magnetic layer for forming a desirable bubble propagation track thereon; exposing the ion implanted magnetic layer to plasma in order to enhance the anisotropy field change .DELTA.Hk; coating an intermediate insulation film over the magnetic layer treated with plasma; and forming bubble propagation patterns of ferromagnetic material and/or conductor patterns of conductive material on the intermediate insulation film.
    • 一种用于制造离子注入气泡装置的方法,其具有通过将离子注入形成在基底上的磁性层中形成的气泡传播轨道。 该方法包括:在磁​​层中注入离子以在其上形成所需的气泡传播轨道; 将离子注入的磁性层暴露于等离子体,以增强各向异性场的变化△DELTA Hk; 在用等离子体处理的磁性层上涂覆中间绝缘膜; 并且在中间绝缘膜上形成铁磁材料和/或导电材料的导体图案的气泡传播图案。
    • 4. 发明申请
    • PLASMA DISPLAY PANEL AND ITS MANUFACTURING METHOD
    • 等离子显示面板及其制造方法
    • US20100289726A1
    • 2010-11-18
    • US12863640
    • 2008-11-28
    • Minoru HasegawaShinya FukutaKeiichi BetsuiYasunobu Hashimoto
    • Minoru HasegawaShinya FukutaKeiichi BetsuiYasunobu Hashimoto
    • G09G3/28H01J9/24
    • H01J11/40H01J9/02H01J11/12H01J11/38
    • A protective film (6) having a high secondary-emission coefficient is formed on a dielectric layer (5) so as to lower the discharge voltage of a plasma display panel. When the protective film (6) is exposed to the air, it will transform or become cloudy, or the secondary-emission coefficient will lower. To prevent this problem, an inert film (60) is formed on the surface of the protective film (6). As the inert film (60), a film of a metal oxide such as SiO2 and a film of a metal such as Tb are simultaneously formed. Thus, an inert film (60) excellent in barrier property against oxygen and water in the air and enabling easy sputtering from near the discharge electrode at the aging step can be obtained. With this, a plasma display panel exhibiting a low discharge voltage can be realized.
    • 在电介质层(5)上形成具有高二次发射系数的保护膜(6),以降低等离子体显示面板的放电电压。 当保护膜(6)暴露在空气中时,会变形或变得浑浊,或者二次发射系数降低。 为了防止这个问题,在保护膜(6)的表面上形成有惰性膜(60)。 作为惰性膜(60),同时形成诸如SiO 2的金属氧化物的膜和诸如Tb的金属的膜。 因此,可以获得在老化步骤中在空气中对氧气和水的隔离性优异的惰性膜(60),并能够在放电电极附近进行溅射。 由此,能够实现显示低放电电压的等离子体显示面板。