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    • 5. 发明授权
    • Flat type cathode ray tube
    • 平板式阴极射线管
    • US4622497A
    • 1986-11-11
    • US708898
    • 1985-03-06
    • Hiroshi MiyamaYoshikazu KawauchiKaoru TomiiJun Nishida
    • Hiroshi MiyamaYoshikazu KawauchiKaoru TomiiJun Nishida
    • H01J31/12H01J29/70H01J29/72
    • H01J31/126
    • In a flat type cathode ray tube having a small depth relative to an image screen size, electron beams which are generated by heating vertically extending linear thermal cathodes are sequentially and vertically switched by a plurality of vertical scanning electrodes extending vertically and arranged perpendicularly to the linear thermal cathodes, are transmitted through an electron beam generating electrode having apertures formed therein corresponding to the linear thermal cathodes. The electron beams are horizontally deflected by horizontal deflection electrodes, and then directed to a phosphor layer on an image area of a faceplate. The electron beams are modulated by applying a modulation pulse voltage together with a heating D.C. voltage to the linear thermal cathodes, or by applying a modulation pulse signal to a modulation electrode arranged close to the electron beam generating electrode. A large image screen size is attained by the provision of the plurality of vertically extending linear thermal cathodes.
    • 在相对于图像屏幕尺寸具有较小深度的平面型阴极射线管中,通过垂直延伸的线性热阴极加热产生的电子束通过垂直延伸并垂直于线性放置的多个垂直扫描电极被顺序地和垂直切换 热阴极通过其中形成有对应于线性热阴极的孔的电子束产生电极传输。 电子束由水平偏转电极水平偏转,然后被引导到面板的图像区域上的荧光体层。 通过将调制脉冲电压与加热直流电压一起施加到线性热阴极,或通过将调制脉冲信号施加到靠近电子束产生电极布置的调制电极来调制电子束。 通过设置多个垂直延伸的线性热阴极可获得大的图像屏幕尺寸。
    • 6. 发明授权
    • Flat panel type display and method for driving the display
    • 平板显示器和驱动显示器的方法
    • US5117159A
    • 1992-05-26
    • US431413
    • 1989-11-03
    • Kaoru TomiiHiroshi MiyamaYoshikazu KawauchiJun Nishida
    • Kaoru TomiiHiroshi MiyamaYoshikazu KawauchiJun Nishida
    • G09G1/20H01J31/12
    • G09G1/20H01J31/124
    • A flat panel type display provided with a screen, control electrodes divided in a horizontal direction of the screen, light emitting fluorescent material formed on the control electrodes, a mesh-like electrode, scanning electrodes each divided in a vertical direction of the screen and facing the mesh-like electrode, an electron source for generating electron beams in the horizontal direction of the screen and deflection unit for deflecting the beams in the vertical direction. The deflection unit is provided with a signal supply device for applying first and second voltage levels to each scanning electrode. The first voltage level is at a level similar to that applied to the control or mesh-like electrode. The second voltage level is substantially less than the first voltage level. The second voltage level is sequentially applied to each scanning electrode during a vertical scan, for a fixed time period at least as long as the time required for vertically scanning a distance in which a path of an electron reflected from a position of beam incidence with the fluorescent material becomes substantially parallel to the scanning electrodes. The time period between the start of each sequential application of the second voltage level to each successive scanning electrode is a predetermined amount which differs from the fixed time period of the second voltage level.
    • 9. 发明授权
    • Flat type cathode ray tube and color image display apparatus utilizing
same
    • 平板式阴极射线管及利用该阴极射线管的彩色图像显示装置
    • US4736139A
    • 1988-04-05
    • US798335
    • 1985-11-15
    • Kaoru TomiiHiroshi MiyamaYoshikazu KawauchiJun Nishida
    • Kaoru TomiiHiroshi MiyamaYoshikazu KawauchiJun Nishida
    • H01J31/12H04N9/12H01J29/70H01J29/72
    • H04N9/12H01J31/126H01J2229/186
    • A flat type cathode ray tube comprises, in a vacuum enclosure, a plurality of vertically extending line cathodes, as many vertical scan electrodes as 1/n (n.gtoreq.2) of the number of horizontal scan lines arranged behind the line cathodes perpendicularly to the line cathodes, and modulation electrodes, planar grid electrodes, vertical deflection electrodes, horizontal deflection electrodes and a phosphor screen all of which are arranged sequentially in front of the line cathodes. The modulation electrodes are separated into a plurality of planar sections which are arranged in one-to-one correspondence with the respective line cathodes. The vertical deflection electrodes include two planar electrodes having respective electron beam passing openings provided therein which are shifted from each other. The horizontal deflection electrodes are divided into a plurality of sections in the direction of the electron beam paths.In a color display tube having a phosphor screen in which three primary color phosphors are arranged sequentially and repeatedly with black areas intervening therebetween, the timings for the electron beams to scan predetermined positions on the phosphor screen are stored, and a color video signal to be applied to the color display tube is controlled to make the electron beams correspond to the respective proper positions on the phosphor screen based on the stored timings, thereby compensating for a deviation occurring in the horizontal landing positions of the electron beams.
    • 平板型阴极射线管在真空外壳中包括多个垂直延伸的阴极,垂直扫描线的垂直扫描电极数为垂直于线阴极之后的水平扫描线数量的1 / n(n> / = 2) 线阴极,调制电极,平面栅电极,垂直偏转电极,水平偏转电极和荧光屏,均依次排列在阴极阴极前面。 调制电极被分离成与各个线阴极一一对应配置的多个平面部分。 垂直偏转电极包括彼此偏移地设置有各自的电子束通过开口的两个平面电极。 水平偏转电极沿电子束路径的方向分成多个部分。 在具有荧光屏的彩色显示管中,其中三原色荧光体依次布置并重复地与其间插入黑色区域,存储用于扫描荧光屏上的预定位置的电子束的定时,并且将彩色视频信号 控制施加到彩色显像管上,使电子束基于所存储的定时与荧光屏上的各个适当位置对应,从而补偿在电子束的水平着陆位置发生的偏差。