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    • 3. 发明授权
    • Plasma display panel and method of aging the same
    • 等离子显示屏和老化方法相同
    • US07303456B2
    • 2007-12-04
    • US11594737
    • 2006-11-09
    • Masaaki YamauchiTakashi AokiAkihiro MatsudaKoji Akiyama
    • Masaaki YamauchiTakashi AokiAkihiro MatsudaKoji Akiyama
    • H01J9/00
    • H01J9/445H01J2217/492
    • In an aging process in which a voltage having an alternate voltage component is applied to at least between a scan electrode and a sustain electrode so as to form a discharge dent (sputter dent) on a protecting layer, the aging discharge dent is formed so as to satisfy any one of the following. First, the discharge dent on the scan electrode-side has a width which is narrower than the discharge dent on the side of sustain electrode. Second, the discharge dent on the side of sustain electrode is formed so that the depth of the discharge dent in the area away from a scan electrode paired with a sustain electrode as a display electrode is shallower than the depth of the discharge dent in the area close to counterpart scan electrode.
    • 在具有交替电压分量的电压至少在扫描电极和维持电极之间施加电压以在保护层上形成放电凹陷(溅射凹陷)的老化过程中,老化放电凹陷形成为 以满足以下任何一个。 首先,扫描电极侧的放电凹陷的宽度比维持电极一侧的放电凹部窄。 第二,维持电极一侧的放电凹陷形成为使得与作为显示电极的维持电极配对的扫描电极的区域中的放电凹陷的深度比该区域中的放电凹陷的深度浅 靠近对应扫描电极。
    • 4. 发明授权
    • Method of manufacturing plasma display panel
    • 等离子体显示面板的制造方法
    • US07288012B2
    • 2007-10-30
    • US10533138
    • 2004-06-17
    • Koji AkiyamaKoji AotoMasaaki YamauchiTakashi AokiAkihiro Matsuda
    • Koji AkiyamaKoji AotoMasaaki YamauchiTakashi AokiAkihiro Matsuda
    • H01J9/00H01J9/44
    • H01J9/445G09G3/298G09G2320/0228
    • A plasma display panel is provided that includes scan electrodes, sustain electrodes, and address electrodes. A first pulse voltage for the address electrodes or a second pulse voltage for the address electrodes is applied to the address electrodes in an aging step in which aging discharge is performed by alternately applying pulse voltage for the scan electrodes and pulse voltage for the sustain electrodes at least across the scan electrodes and the sustain electrodes. The first pulse voltage has a rising edge timing synchronized with a rising edge timing of the pulse voltage for the scan electrodes and a pulse width smaller than that of the pulse voltage for the scan electrodes. The second pulse voltage has a rising edge timing synchronized with a rising edge timing of the pulse voltage for the sustain electrodes and a pulse width smaller than that of the pulse voltage for the sustain electrodes.
    • 提供了包括扫描电极,维持电极和寻址电极的等离子体显示面板。 用于寻址电极的第一脉冲电压或寻址电极的第二脉冲电压在老化步骤中被施加到寻址电极,在老化步骤中,通过交替地对扫描电极施加脉冲电压和维持电极的脉冲电压来进行老化放电 至少跨越扫描电极和维持电极。 第一脉冲电压具有与扫描电极的脉冲电压的上升沿定时同步的上升沿定时,并且脉冲宽度小于扫描电极的脉冲电压的脉冲宽度。 第二脉冲电压具有与维持电极的脉冲电压的上升沿定时同步的上升沿定时以及比维持电极的脉冲电压的脉冲宽度小的脉冲宽度。
    • 5. 发明申请
    • Aging method and aging apparatus for plasma display panel
    • 等离子体显示面板的老化方法和老化装置
    • US20060228972A1
    • 2006-10-12
    • US10552396
    • 2004-07-16
    • Koji AkiyamaKoji AotoMasaaki YamauchiTakashi Aoki
    • Koji AkiyamaKoji AotoMasaaki YamauchiTakashi Aoki
    • H01J9/24H01J61/52H01J17/49H01J9/00
    • H01J11/12H01J9/445
    • An aging method and an aging device are provided by which a plasma display panel that reduces the generation of irregular color and that has a high display quality can be obtained. An aging method and an aging apparatus for plasma display panels are disclosed which enable to obtain a plasma display panel with high display quality wherein color irregularities are suppressed. The aging apparatus for plasma display panels comprises a plurality of fans. When air is blown to a plasma display panel using the fans during aging of the plasma display panel, at least the direction or the amount of air blow by at least one of the fans is changed so that the temperatures of image display regions in the plasma display panel can be uniform, thereby suppressing color irregularities.
    • 提供了一种老化方法和老化装置,通过该方法可以获得减少不规则颜色的产生并且具有高显示质量的等离子体显示面板。 公开了一种用于等离子体显示面板的老化方法和老化装置,其能够获得具有高显示质量的等离子体显示面板,其中抑制了颜色不规则。 等离子体显示面板的老化装置包括多个风扇。 当在等离子体显示面板老化期间使用风扇将空气吹到等离子体显示面板时,至少由风扇中的至少一个风扇吹出的方向或吹入量至少使得等离子体中的图像显示区域的温度 显示面板可以均匀,从而抑制颜色不规则。
    • 7. 发明授权
    • Plasma display panel aging method and aging device
    • 等离子显示屏老化方法和老化装置
    • US07209098B2
    • 2007-04-24
    • US10517065
    • 2004-04-14
    • Masaaki YamauchiTakashi AokiKoji Akiyama
    • Masaaki YamauchiTakashi AokiKoji Akiyama
    • G09G3/28G09G3/20
    • H01J9/44G09G3/291G09G3/296G09G2320/043H01J2217/49
    • When aging is performed by applying aging voltage to a data electrode, a scan electrode, and a sustain electrode via respective inductors (301, 401, 302, 402, 303, 403) coupled to the electrodes, frequency of a ringing waveform included in an aging voltage waveform applied to the data electrode is set in a range of ½ to 2 times frequency of a ringing waveform included in an aging voltage waveform applied to the scan electrode. With the method above, the time required for aging is significantly shortened, and the aging with high efficiency in electric power is realized. Instead of using inductors (301, 302, 303) including a coil, controlling the length of lead wires (401, 402, 403) can also obtain desired inductance.
    • 通过经由分别耦合到电极的各个电感器(301,401,302,402,303,403)向数据电极,扫描电极和维持电极施加老化电压来进行老化,包括在电极 施加到数据电极的老化电压波形被设置在施加到扫描电极的老化电压波形中包括的振铃波形的频率的1/2到2倍的范围内。 通过上述方法,老化所需的时间显着缩短,实现了电力效率高的老化。 代替使用包括线圈的电感器(301,302,303),控制引线(401,402,403)的长度也可以获得期望的电感。
    • 10. 发明授权
    • Electron beam focusing device for use in a CRT
    • 用于CRT的电子束聚焦装置
    • US4980606A
    • 1990-12-25
    • US243850
    • 1988-09-13
    • Masaaki YamauchiYasuo Tanaka
    • Masaaki YamauchiYasuo Tanaka
    • H01J29/62H01J29/88
    • H01J29/88H01J29/624H01J2229/4827H01J2229/882
    • An electron beam focusing device for use in a cathode ray tube (CRT) including a first and a second conductor film each formed on the inner surface of a neck portion of the CRT, which are spaced apart from each other by a predetermined distance, and a resistive conductor film which connects the first and second conductor films with each other. The first conductor film is located before the second conductor film in a beam travelling direction. The additional conductor film has a higher resistivity than that of the first and second conductor films. The first conductor film is set at a higher potential than the second conductor film. A dark current flowing from a high potential side through the first conductor film, the resistive conductor film and the second conductor film produces a voltage drop across the resistive conductor film so that the surface potential of the resistive conductor film is stabilized, thus forming an electrostatic lens with a stabilized electric field.
    • 一种用于阴极射线管(CRT)的电子束聚焦装置,其包括第一和第二导体膜,每个第一导体膜和第二导体膜分别形成在阴极射线管颈部的内表面上,彼此间隔一预定距离;以及 电阻导体膜,其将第一和第二导体膜彼此连接。 第一导体膜位于第二导体膜之前沿光束移动方向。 附加导体膜的电阻率高于第一和第二导体膜的电阻率。 第一导体膜被设置在比第二导体膜更高的电位。 从高电位侧流过第一导体膜,电阻导体膜和第二导体膜的暗电流在电阻性导体膜上产生电压降,使得电阻导体膜的表面电位稳定,从而形成静电 透镜具有稳定的电场。