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    • 21. 发明申请
    • Plasma display panel
    • 等离子显示面板
    • US20070216307A1
    • 2007-09-20
    • US11643809
    • 2006-12-22
    • Jae-Ik KwonWon-Ju YiHo-Young AhnKyoung-Doo KangDong-Young LeeSoo-Ho ParkSeok-Gyun Woo
    • Jae-Ik KwonWon-Ju YiHo-Young AhnKyoung-Doo KangDong-Young LeeSoo-Ho ParkSeok-Gyun Woo
    • H01J17/49
    • H01J11/54H01J11/16
    • A plasma display panel having an improved exhaustion capacity. The plasma display panel includes a first substrate and a second substrate facing each other, an electrode sheet arranged between the first substrate and the second substrate and partitioning a space between the first substrate and the second substrate into a plurality of discharge cells, the electrode sheet including a plurality of pairs of discharge electrodes arranged within a plurality of barrier ribs, the plurality of pairs of discharge electrodes adapted to generate a discharge in the plurality of discharge cells, the electrode sheet extending throughout a discharge area where a discharge is generated and into a non-discharge area surrounding at least a portion of the discharge area and a spaced layer arranged on portions of the first substrate corresponding to the non-discharge area, wherein at least a portion of the electrode sheet within the discharge area is spaced apart from the first substrate by an exhaustion space and a portion of the electrode sheet in the non-discharge area is arranged between the spaced layer and the second substrate.
    • 具有改善的排气能力的等离子体显示面板。 等离子体显示面板包括第一基板和彼此面对的第二基板,布置在第一基板和第二基板之间并将第一基板和第二基板之间的空间分隔成多个放电单元的电极板,电极板 包括布置在多个阻挡肋内的多对放电电极,所述多对放电电极适于在所述多个放电单元中产生放电,所述电极片延伸穿过产生放电的放电区域并且进入 围绕所述放电区域的至少一部分的非放电区域和布置在所述第一衬底对应于所述非放电区域的部分上的间隔层,其中所述放电区域内的所述电极片的至少一部分与 所述第一基板由耗尽空间和所述电极片的一部分处于不放电状态 区域布置在间隔层和第二基板之间。
    • 24. 发明申请
    • Plasma display panel (PDP)
    • 等离子显示面板(PDP)
    • US20070040507A1
    • 2007-02-22
    • US11496617
    • 2006-08-01
    • Kyoung-Doo KangWon-Ju YiHo-Young AhnDong-Young LeeSoo-Ho ParkSeok-Gyun WooJae-Ik Kwon
    • Kyoung-Doo KangWon-Ju YiHo-Young AhnDong-Young LeeSoo-Ho ParkSeok-Gyun WooJae-Ik Kwon
    • H01J17/49
    • H01J11/46H01J11/16
    • A Plasma Display Panel (PDP) that prevents bad terminal portions of discharge electrodes includes: a pair of substrates spaced apart from each other and facing each other; a sheet interposed between the pair of substrates and including barrier rib portions partitioning discharge cells, along with the pair of substrates, and dielectric ribs arranged on edges of the sheet; discharge electrodes including discharge portions arranged in the barrier rib part portions and adapted to effect a discharge, terminal portions contacting the dielectric ribs, having a thickness of 0.5˜2 μm, and spaced apart from each other, and connection portions connecting the discharge portions and the terminal portions; a signal transmitting element including conductive wires contacting the terminal portions and spaced apart from each other; phosphor layers arranged within the discharge cells; and a discharge gas contained within the discharge cells.
    • 一种防止放电电极的不良端子部分的等离子体显示面板(PDP)包括:彼此间隔开并面对的一对基板; 介于所述一对基板之间并且包括分隔放电单元的隔离肋以及所述一对基板和布置在所述片材的边缘上的介质肋的片材; 放电电极,其包括布置在隔壁部分中的排出部分,并且适于实现放电,接触电介质肋的端子部分,厚度为0.5〜2μm,并且彼此间隔开;以及连接部分,其连接排出部分和 端子部分; 信号传输元件,包括接触端子部分并彼此间隔开的导线; 荧光体层布置在放电单元内; 以及包含在放电单元内的放电气体。
    • 25. 发明申请
    • Method of driving plasma display panel and plasma display apparatus driven using the method
    • 使用该方法驱动等离子体显示面板和等离子体显示装置的驱动方法
    • US20070035475A1
    • 2007-02-15
    • US11478651
    • 2006-07-03
    • Dong-Young LeeWon-Ju YiHo-Young AhnKyoung-Doo KangSoo-Ho ParkSeok-Gyun WooJae-Ik Kwon
    • Dong-Young LeeWon-Ju YiHo-Young AhnKyoung-Doo KangSoo-Ho ParkSeok-Gyun WooJae-Ik Kwon
    • G09G3/28
    • G09G3/2022G09G3/2927G09G3/2983G09G2310/066G09G2320/0257G09G2320/0261G09G2320/043
    • In a method and apparatus for improving the address discharge efficiency of a plasma display panel (PDP), the PDP has a new structure which improves light-emitting efficiency and reduces a permanent afterimage. The PDP includes first and second substrates spaced apart from each other, a barrier rib which, together with the first and second substrates partitions discharge cells which are discharge spaces, first and second electrodes extending so as to cross each other in the barrier rib, a phosphor layer formed in the discharge cells, and a discharge gas in the discharge cells. In the method and apparatus, each unit frame used to express an image is divided into a plurality of sub-fields, and each of the sub-fields is divided into a reset period wherein all discharge cells are initialized, an address period wherein a discharge cell which is turned on or off is selected from all discharge cells, and a sustain period wherein a sustain discharge is performed for a discharge cell selected to be turned on in the address period according to gray-level weights allocated to each of the sub-fields. In addition, a falling pulse is applied to the first electrode in the reset period, and scan pulses are sequentially applied to the first electrode in the address period. The electric potential of a low level of the scan pulse is lower than the electric potential of a minimum level of the falling pulse.
    • 在用于提高等离子体显示面板(PDP)的寻址放电效率的方法和装置中,PDP具有提高发光效率并减少永久残像的新结构。 PDP包括彼此间隔开的第一和第二基板,隔壁与第一和第二基板一起分隔作为放电空间的放电单元,第一和第二电极在隔离肋中彼此交叉延伸, 在放电单元中形成的荧光体层和放电单元中的放电气体。 在该方法和装置中,用于表示图像的每个单位帧被划分为多个子场,并且每个子场被划分为其中所有放电单元被初始化的复位周期,其中放电 从所有放电单元中选择导通或关断的单元,以及维持周期,其中对于在寻址周期中选择导通的放电单元,根据分配给每个子单元的灰度级权重执行维持放电, 领域。 此外,在复位周期中,向第一电极施加下降脉冲,并且在寻址周期中将扫描脉冲依次施加到第一电极。 扫描脉冲的低电平的电位低于下降脉冲的最小电平的电位。
    • 27. 发明申请
    • Method of driving plasma display panel and plasma display device driven using the method
    • 使用该方法驱动等离子体显示面板和等离子体显示装置的驱动方法
    • US20070035476A1
    • 2007-02-15
    • US11489365
    • 2006-07-18
    • Dong-Young LeeWon-Ju YiHo-Young AhnKyoung-Doo KangSoo-Ho ParkSeok-Gyun WooJae-Ik Kown
    • Dong-Young LeeWon-Ju YiHo-Young AhnKyoung-Doo KangSoo-Ho ParkSeok-Gyun WooJae-Ik Kown
    • G09G3/28
    • G09G3/2983G09G2310/066
    • A method of driving a plasma display panel (PDP) and a plasma display device driven by the method are disclosed. In one embodiment, a display image is represented by a plurality of unit frames, and each unit frame is divided into a plurality of sub-fields. Each of the sub-fields includes a reset period when all discharge cells are initialized, an address period when a discharge cell that is turned on or off is selected from all discharge cells, and a sustain period when a sustain discharge is performed for a discharge cell selected to be turned on in the address period according to gray-level weights allocated to each of the sub-fields. Furthermore, a rising ramp pulse and a falling ramp pulse are applied to the first electrode in the reset period. According to one embodiment of the invention, reset light generated by a reset discharge can be minimized in a reset period, and wall charges in discharge cells can be precisely controlled so that light-emitting efficiency is improved and the likelihood of a permanent afterimage being left on the display is reduced.
    • 公开了一种驱动等离子体显示面板(PDP)的方法和由该方法驱动的等离子体显示装置。 在一个实施例中,显示图像由多个单位帧表示,并且每个单位帧被分成多个子场。 每个子场包括当所有放电单元被初始化时的复位周期,从所有放电单元中选择导通或截止的放电单元的寻址周期,以及对放电进行维持放电的维持期间 根据分配给每个子场的灰度级权重,在地址周期中选择要开启的单元。 此外,在复位期间,向第一电极施加上升斜坡脉冲和下降斜坡脉冲。 根据本发明的一个实施例,复位放电产生的复位光可以在复位周期中最小化,并且可以精确地控制放电单元中的壁电荷,从而提高发光效率,并且留下永久残像的可能性 在显示屏上减少了。