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    • 2. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20100314997A1
    • 2010-12-16
    • US12521624
    • 2009-02-10
    • Keiji HorikawaKoji AotoKaname Mizokami
    • Keiji HorikawaKoji AotoKaname Mizokami
    • H01J17/49
    • H01J11/12H01J11/38H01J11/40
    • A plasma display panel is formed of front panel (2) and rear panel (10). Front panel (2) includes glass substrate (3) on which display electrodes (6) are formed, dielectric layer (8) covering display electrodes (6), and protective layer (9) formed on dielectric layer (8). Rear panel (10) confronts front panel (2) to form discharge space (16) therebetween, and includes address electrodes (12) formed along a direction intersecting with display electrodes (6), primary dielectric layer (13) covering address electrodes (12), and barrier ribs (14) formed on primary dielectric layer (13) for partitioning discharge space (16). Protective layer (9) includes a primary film made of metal oxide and formed on dielectric layer (8), and an aggregated particle formed of several crystal particles aggregated together and made of metal oxide and attached to the primary film. A percentage of voids of primary dielectric layer (13) falls within a range from 2% to 20%.
    • 等离子体显示面板由前面板(2)和后面板(10)形成。 前面板(2)包括其上形成有显示电极(6)的玻璃基板(3),覆盖显示电极(6)的电介质层(8)和形成在电介质层(8)上的保护层。 后面板(10)面对前面板(2)以在其间形成放电空间(16),并且包括沿着与显示电极(6)交叉的方向形成的寻址电极(12),覆盖地址电极(12)的第一介电层 )和形成在用于分隔放电空间(16)的主电介质层(13)上的阻挡肋(14)。 保护层(9)包括由电介质层(8)形成的由金属氧化物构成的主膜和由几个结晶颗粒形成的凝集颗粒,其聚集在一起并由金属氧化物构成并附着到初级膜。 一次电介质层(13)的空隙率在2%〜20%的范围内。
    • 4. 发明授权
    • Plasma display panel comprising sputtering prevention layer
    • 等离子体显示面板包括防溅层
    • US08120254B2
    • 2012-02-21
    • US12519241
    • 2009-01-06
    • Koji AotoKeiji HorikawaKaname Mizokami
    • Koji AotoKeiji HorikawaKaname Mizokami
    • H01J17/49
    • H01J11/40H01J11/12
    • A plasma display panel (PDP) includes a front panel (2) having a front glass substrate (3) on which display electrodes (6) are formed, a dielectric layer (8) covering the display electrodes (6), and a protective layer (9) formed on the dielectric layer (8). The PDP panel also includes a rear panel (10) facing the front panel (2) to form a discharge space therebetween, and including address electrodes formed along a direction intersecting with the display electrodes (6) and barrier ribs partitioning the discharge space. The protective layer (9) includes a primary film (91) made of MgO and formed on the dielectric layer (8), and aggregated particles (92) formed of several crystal particles of MgO aggregated together and at least one type of particles (93) made of non-organic material and different from aggregated particles (92). The particles (92) and (93) are distributed on the primary film (91).
    • 等离子体显示面板(PDP)包括具有形成有显示电极(6)的前玻璃基板(3)的前面板(2),覆盖显示电极(6)的电介质层(8)和保护层 (9)形成在电介质层(8)上。 PDP面板还包括面向前面板(2)的后面板(10),以在它们之间形成放电空间,并且包括沿着与显示电极(6)相交的方向形成的寻址电极和分隔放电空间的阻挡肋。 保护层(9)包括形成在电介质层(8)上的由MgO制成的初级膜(91)和由几个结晶的MgO颗粒组成的凝集颗粒(92)和至少一种类型的颗粒(93 )由非有机材料制成并且不同于聚集颗粒(92)。 颗粒(92)和(93)分布在初级膜(91)上。
    • 7. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20100327741A1
    • 2010-12-30
    • US12519241
    • 2009-01-06
    • Koji AotoKeiji HorikawaKaname Mizokami
    • Koji AotoKeiji HorikawaKaname Mizokami
    • H01J17/49
    • H01J11/40H01J11/12
    • Disclosed is a plasma display panel comprising a front plate (2) wherein a dielectric layer (8) is so formed as to cover a display electrode (6) formed on a front glass substrate (3) and a protective layer (9) is formed on the dielectric layer (8), and a back plate so arranged as to face the front plate (2) so that a discharge space is formed therebetween. The back plate is provided with an address electrode lying in the direction intersecting the display electrode (6) and a partition wall which divides the discharge space. The protective layer (9) is obtained by forming a base film (91) composed of MgO on the dielectric layer (8), and distributing agglomerated particles (92), wherein several MgO crystal particles are agglomerated, and particles (93) of at least one inorganic material, which are different from the agglomerated particles (92), over the base film (91).
    • 公开了一种等离子体显示面板,其包括前板(2),其中形成电介质层(8)以覆盖形成在前玻璃基板(3)上的显示电极(6)并形成保护层(9) 在所述电介质层(8)上设置有与所述前板(2)相对配置的背板,以在其间形成放电空间。 背板设有位于与显示电极(6)相交的方向的寻址电极和分隔放电空间的分隔壁。 保护层(9)通过在电介质层(8)上形成由MgO构成的基膜(91)而得到,分散凝集的粒子(92),其中有几个MgO结晶粒子凝聚, 至少一种与凝聚颗粒(92)不同的无机材料,超过基膜(91)。
    • 8. 发明申请
    • Method of manufacturing plasma display panel
    • 等离子体显示面板的制造方法
    • US20060166585A1
    • 2006-07-27
    • US10533138
    • 2004-06-17
    • Koji AkiyamaKoji AotoMasaaki YamauchiTakashi AokiAkihiro Matsuda
    • Koji AkiyamaKoji AotoMasaaki YamauchiTakashi AokiAkihiro Matsuda
    • H01J9/24H01J9/00
    • H01J9/445G09G3/298G09G2320/0228
    • In a plasma display panel including scan electrodes, sustain electrodes, and address electrodes, first pulse voltage for the address electrodes or 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 rising edge timing synchronizing with 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 rising edge timing synchronizing with 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.
    • 在包括扫描电极,维持电极和寻址电极的等离子体显示面板中,在寻址电极中施加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,通过交替地进行老化放电 至少对扫描电极和维持电极两端施加用于扫描电极的脉冲电压和维持电极的脉冲电压。 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,并且具有小于扫描电极的脉冲电压的脉冲宽度的脉冲宽度。 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,并且具有小于维持电极的脉冲电压的脉冲宽度的脉冲宽度。
    • 9. 发明授权
    • Plasma display panel aging method
    • 等离子显示屏老化方法
    • US07629947B2
    • 2009-12-08
    • US10566156
    • 2005-05-24
    • Koji AkiyamaMasaaki YamauchiTakashi AokiKoji Aoto
    • Koji AkiyamaMasaaki YamauchiTakashi AokiKoji Aoto
    • G09G3/28
    • H01J9/445
    • Disclosed here is a method of aging a plasma display panel. The aging method of the present invention contains a first aging period and a second aging period. In the first aging period, applying voltage Vd1 to at least any one of the scan electrodes, the sustain electrodes, and the address electrodes suppress self-erase discharge that occurs in the wake of aging voltage generated by application of voltage in which the scan electrodes take a voltage level higher than the sustain electrodes. In the second aging period, applying voltage Vd2 to at least any one of the scan electrodes, the sustain electrodes, and the address electrodes suppress self-erase discharge that occurs in the wake of aging voltage generated by application of voltage in which the sustain electrodes take a voltage level higher than the scan electrodes.The above aging method offers a power-efficient aging process with the aging time accelerated.
    • 这里公开了使等离子体显示面板老化的方法。 本发明的老化方法包含第一老化期和第二老化期。 在第一老化期间,向扫描电极,维持电极和寻址电极中的至少一个施加电压Vd1,抑制在通过施加电压而产生的老化电压的后期发生的自擦除放电,其中扫描电极 取高于维持电极的电压电平。 在第二老化期间,向扫描电极,维持电极和寻址电极中的至少任一个施加电压Vd2,抑制在通过施加电压而产生的老化电压的后期发生的自擦除放电,其中维持电极 取高于扫描电极的电压电平。 上述老化方法提供了老化时间加快的功率老化过程。