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    • 1. 发明申请
    • Plasma Display Device and Method of Driving the Same
    • 等离子显示装置及其驱动方法
    • US20090135094A1
    • 2009-05-28
    • US12185142
    • 2008-08-04
    • Masayuki ShibataKatsumi ItoNaoki ItokawaTomonari Misawa
    • Masayuki ShibataKatsumi ItoNaoki ItokawaTomonari Misawa
    • G09G3/10
    • G09G3/2927G09G3/294G09G3/2983G09G2310/0224G09G2360/16
    • A plasma display device capable of realizing an interlace drive in one line display and an interlace drive in two lines display by switching thereof without deteriorating display quality, is provided. The interlace drive in one line display and the interlace drive in two lines display are realized such that: the interlace drive in one line display is performed by applying a sustain pulse for even display lines or odd display lines within a plasma display panel in each frame; and the interlace drive in two lines display is performed by applying the sustain pulse while setting the even display lines and the odd display lines adjacent above and below as one set and writing an identical data thereto. In addition, the all-cell reset is performed once per unit time at the interlace drive in two lines display, and an increase of background luminance is prevented by suppressing the increase in the number of times of the all-cell reset in the two lines display.
    • 提供了一种能够实现一行显示中的隔行驱动和通过切换显示两行的隔行扫描而不劣化显示质量的等离子体显示装置。 实现一行显示中的交错驱动和两行显示中的隔行驱动,使得:通过在每帧中的等离子体显示面板内施加用于偶数显示行或奇数显示行的维持脉冲来执行一行显示中的交错驱动 ; 并且通过施加维持脉冲来执行两行显示中的隔行驱动,同时将偶数显示行和奇数显示行设置为一组,并将相同的数据写入其中。 此外,在隔行扫描驱动中,每单位时间执行全信元复位两行显示,并且通过抑制两行中的全单元复位次数的增加来防止背景亮度的增加 显示。
    • 2. 发明授权
    • Driving method for plasma display panel and plasma display device
    • 等离子显示面板和等离子体显示装置的驱动方法
    • US08207912B2
    • 2012-06-26
    • US12269721
    • 2008-11-12
    • Naoki ItokawaKatsumi ItoMasaki KimuraJunichi KumagaiYasunobu HashimotoTomokatsu Kishi
    • Naoki ItokawaKatsumi ItoMasaki KimuraJunichi KumagaiYasunobu HashimotoTomokatsu Kishi
    • G09G3/28
    • G09G3/294G09G3/2965
    • Sustain pulses are alternately applied to a pair of display electrodes of discharge cells provided in a plasma display panel (PDP) to generate a sustain discharge to display an image on the PDP. The sustain pulses include two-crests discharge voltage waveforms having a first maximum and second maximum values, in which discharges are generated twice in a half cycle. After applying a sustain pulse having a one-crest discharge voltage waveform to a pair of display electrodes, a predetermined number of sustain pulses of two-crests discharge voltage waveforms are consecutively applied. A time, from applying a second sustain pulse of a two-crests discharge voltage waveform to clamping a voltage of the second sustain pulse to the second maximum value, is made longer than a time, from applying a first sustain pulse of a two-crests discharge voltage waveform to clamping a voltage of the first sustain pulse to the second maximum value.
    • 延迟脉冲交替施加到设置在等离子体显示面板(PDP)中的放电单元的一对显示电极,以产生维持放电以在PDP上显示图像。 维持脉冲包括具有第一最大值和第二最大值的二峰放电电压波形,其中在半周期内产生放电两次。 在对一对显示电极施加具有一峰放电电压波形的维持脉冲之后,连续施加预定数量的两峰放电电压波形的维持脉冲。 通过将两峰放电电压波形的第二维持脉冲施加到将第二维持脉冲的电压钳位到第二最大值的时间比通过施加两峰的第一维持脉冲的时间长 放电电压波形以将第一维持脉冲的电压钳位到第二最大值。
    • 3. 发明申请
    • Plasma Display Device
    • 等离子显示装置
    • US20090058765A1
    • 2009-03-05
    • US12183673
    • 2008-07-31
    • Yasunobu HashimotoMasaki KimuraTomokatsu KishiKatsumi ItoNaoki ItokawaHideaki Ohki
    • Yasunobu HashimotoMasaki KimuraTomokatsu KishiKatsumi ItoNaoki ItokawaHideaki Ohki
    • G09G3/28
    • G09G3/296G09G3/2983G09G3/299G09G2310/0224G09G2330/022
    • Between a sustain circuit outputting a sustain pulse and a scan circuit (even) driving a Y electrode of an even display line, there is provided a first switch capable of making the Y electrode of the even display line be in a high impedance state, and between the sustain circuit and a scan circuit (odd) driving a Y electrode of an odd display line, there is provided a second switch capable of making the Y electrode of the odd display line be in the high impedance state. By first and second switches, the Y electrode of the even display line and the Y electrode of the odd display line can be independently controlled to be in the high impedance states, whereby discharge of the even display line can be restrained in a sustain period of an odd frame, while a discharge of the odd display line can be restrained in a sustain period of an even frame, thereby realizing an interlace drive without complicating a circuit configuration.
    • 输出维持脉冲的维持电路和驱动均匀显示线的Y电极的扫描电路(偶数)之间,设置有使均匀显示线的Y电极处于高阻抗状态的第一开关,以及 在维持电路和驱动奇数显示行的Y电极的扫描电路(奇数)之间,设置有能够使奇数显示行的Y电极处于高阻抗状态的第二开关。 通过第一和第二开关,可以将偶数显示行的Y电极和奇数显示行的Y电极独立地控制为处于高阻抗状态,从而可以在维持期间抑制偶数显示行的放电 可以在偶数帧的维持期间抑制奇数显示行的放电,从而实现隔行扫描而不使电路结构复杂化。
    • 6. 发明申请
    • Driving method of plasma display panel and plasma display device
    • 等离子体显示面板和等离子体显示装置的驱动方法
    • US20080055195A1
    • 2008-03-06
    • US11645010
    • 2006-12-26
    • Keishin NagaokaYoshikazu KanazawaNaoki Itokawa
    • Keishin NagaokaYoshikazu KanazawaNaoki Itokawa
    • G09G3/10
    • G09G3/2942G09G3/2965
    • A technique which relates to discharge in sustain operation of a PDP device and a driving waveform thereof, and which can improve luminous efficiency to achieve stability while reducing a possibility of failure of discharge is provided. In a generating operation of a sustain pulse in a sustain pulse generating circuit, after LU-ON (t1 to t2), a voltage applied on electrodes is raised up to a sufficiently-high voltage, namely, a sustain voltage according to an ON state of a CU circuit (t2 to t3), and discharge is started, CU is once turned OFF (t3), then a first discharge peak is formed (t11). Thereafter, CU is turned ON again before discharge is converged (t12) to raise a voltage value and form a second discharge peak (t14). Since a voltage Vi to start discharge is sufficiently high, a possibility of discharge failure is suppressed, and an effect of improvement in luminous efficiency is not ruined.
    • 本发明涉及PDP器件的维持放电及其驱动波形的放电技术,能够提高发光效率,同时降低放电故障的可能性。 在维持脉冲发生电路中的维持脉冲的产生操作中,在LU-ON(t 1至t 2)之后,施加在电极上的电压升高到足够高的电压,即根据 CU电路的导通状态(t 2〜t 3),放电开始,CU一旦被断开(t 3),则形成第一放电峰(t 11)。 此后,在放电被收敛之前(t 12),CU再次导通以升高电压值并形成第二放电峰值(t 14)。 由于开始放电的电压Vi足够高,因此抑制放电故障的可能性,并且不会损害提高发光效率的效果。