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    • 31. 发明申请
    • DRIVING METHOD FOR PLASMA DISPLAY PANEL, AND PLASMA DISPLAY DEVICE
    • 等离子体显示面板的驱动方法和等离子体显示装置
    • US20120092394A1
    • 2012-04-19
    • US13378188
    • 2010-06-17
    • Hidehiko ShojiTakahiko OriguchiNaoyuki Tomioka
    • Hidehiko ShojiTakahiko OriguchiNaoyuki Tomioka
    • G09G3/28G09G5/10
    • G09G3/296G09G3/2022G09G3/293G09G2310/0213G09G2330/025G09G2340/16G09G2360/16
    • A stable address discharge is caused by preventing an increase in the necessary scan pulse voltage (amplitude), and thereby achieves high image display quality. For this purpose, the image display area of a plasma display panel is divided into a plurality of regions, and a partial light-emitting rate is detected in each region. The partial light-emitting rate in a current subfield is set as a first partial light-emitting rate. The partial light-emitting rate used for magnitude comparison between the partial light-emitting rates in a subfield identical with the current subfield in a field immediately preceding the field to which the current subfield belongs to is set as a second partial light-emitting rate. The absolute value of the difference between the first partial light-emitting rate and the second partial light-emitting rate is calculated in each region. In the region where the value is equal to or larger than a light-emitting rate threshold value, the first partial light-emitting rate is used for the magnitude comparison between the partial light-emitting rates in the current subfield. In the region where the value is smaller than the light-emitting rate threshold value, the second partial light-emitting rate is used for the magnitude comparison between the partial light-emitting rates in the current subfield.
    • 通过防止必要的扫描脉冲电压(振幅)的增大,可以实现稳定的寻址放电,从而实现高的图像显示质量。 为此,等离子体显示面板的图像显示区域被划分为多个区域,并且在每个区域中检测到部分发光率。 将当前子场中的部分发光率设定为第一部分发光率。 将与当前子场所属的场之前的场中与当前子场相同的子场中的部分发光率之间的幅度比较的部分发光率设定为第二部分发光率。 在各区域中计算出第一部分发光率与第二部分发光率之差的绝对值。 在该值等于或大于发光率阈值的区域中,第一部分发光率用于当前子场中的部分发光率之间的幅度比较。 在该值小于发光率阈值的区域中,将第二部分发光率用于当前子场中的部分发光率之间的幅度比较。
    • 32. 发明申请
    • PLASMA DISPLAY DEVICE AND METHOD FOR DRIVING PLASMA DISPLAY PANEL
    • 等离子体显示装置和驱动等离子体显示面板的方法
    • US20110157258A1
    • 2011-06-30
    • US13061590
    • 2009-06-03
    • Takahiko OriguchiHidehiko ShojiTomoyuki Saito
    • Takahiko OriguchiHidehiko ShojiTomoyuki Saito
    • G09G3/28G09G5/10
    • G09G3/293G09G3/296G09G2310/0218G09G2360/16H04N5/66
    • A stable address discharge is caused to enhance the image display quality. For this purpose, a plasma display panel, a scan electrode driving circuit, and a partial light-emitting rate detecting circuit are provided. The scan electrode driving circuit performs an address operation by applying a scan pulse to scan electrodes in address periods. The partial light-emitting rate detecting circuit divides the display area of the plasma display panel into a plurality of regions, and detects a rate of the number of discharge cells to be lit with respect to the number of all the discharge cells in each region, as a partial light-emitting rate, in each subfield. In a predetermined subfield where the number of sustain pulses is smaller than the number of sustain pulses in the immediately preceding subfield, the scan electrode driving circuit changes the order of applying the scan pulse to the scan electrodes, according to the partial light-emitting rates in the immediately preceding subfield.
    • 引起稳定的寻址放电,提高图像显示质量。 为此,提供了等离子体显示面板,扫描电极驱动电路和部分发光速率检测电路。 扫描电极驱动电路通过在寻址周期中对扫描电极施加扫描脉冲来执行寻址操作。 部分发光率检测电路将等离子体显示面板的显示区域划分为多个区域,并且相对于每个区域中的所有放电单元的数量来检测放电单元数量的点亮率, 作为部分发光率,在每个子场中。 在维持脉冲数小于前一个子场中的维持脉冲数的预定子场中,扫描电极驱动电路根据部分发光率改变对扫描电极施加扫描脉冲的顺序 在前一个子场。
    • 33. 发明申请
    • PLASMA DISPLAY DEVICE AND DRIVE METHOD OF PLASMA DISPLAY PANEL
    • 等离子体显示装置的等离子显示装置和驱动方法
    • US20110050752A1
    • 2011-03-03
    • US12863668
    • 2009-05-13
    • Takahiko OriguchiHidehiko ShojiKazuhiro Yamada
    • Takahiko OriguchiHidehiko ShojiKazuhiro Yamada
    • G09G5/10G09G3/20
    • G09G3/2983G09G3/2022G09G3/2051G09G2300/0426G09G2320/0209G09G2320/0266G09G2330/021G09G2360/16
    • Crosstalk between adjacent discharge cells is reduced for a stable sustain discharge. A plasma display panel has scan electrodes and sustain electrodes arranged so that the positions of the corresponding scan electrode and sustain electrode are alternately interchanged in each display electrode pair, and image signal processing circuit converts an image signal into image data indicating light emission and no light emission in each discharge cell in each subfield. The image signal processing circuit generates the image data so that a combination of image data is avoided. One of two adjacent discharge cells having side-by-side scan electrodes is lit and the other of the discharge cells is unlit in one subfield of a plurality of subfields forming one field, and the one of the discharge cells is unlit and the other of the discharge cells is lit in a subfield after the one subfield in the same field.
    • 降低相邻放电单元之间的串扰以实现稳定的维持放电。 等离子体显示面板具有扫描电极和维持电极,其布置成使得相应的扫描电极和维持电极的位置在每个显示电极对中交替地交换,并且图像信号处理电路将图像信号转换为指示发光的图像数据,并且不发光 每个子场中的每个放电单元的发射。 图像信号处理电路生成图像数据,从而避免图像数据的组合。 具有并排扫描电极的两个相邻的放电单元之一被点亮,并且另一个放电单元在形成一个场的多个子场中的一个子场中不亮,并且一个放电单元是不亮的,另一个 放电单元在同一场的一个子场之后的子场中点亮。
    • 35. 发明申请
    • DRIVING DEVICE, DRIVING METHOD AND PLASMA DISPLAY APPARATUS
    • 驱动装置,驱动方法和等离子显示装置
    • US20100201678A1
    • 2010-08-12
    • US12677223
    • 2008-08-20
    • Takahiko OriguchiHidehiko ShojiYasuaki MutouTakateru Sawada
    • Takahiko OriguchiHidehiko ShojiYasuaki MutouTakateru Sawada
    • G06F3/038
    • G09G3/2927G09G3/2965G09G2310/066
    • A first ramp waveform (RW1) rising from a first potential (Vscn) to a second potential (Vscn+Vset) is applied to a plurality of scan electrodes (SCi) in a first period (t5 to t6), and a driving waveform dropping from a third potential (Ve1) to a fourth potential (0V) is applied to a plurality of sustain electrodes (SUi) before the first period (t5 to t6), and the plurality of sustain electrodes are held at the fourth potential (0V) in the first period (t5 to t6). At this time, a second ramp waveform (RW10) rising from a fifth potential (0 V) to a sixth potential (Vd) according to change of a potential of the first ramp waveform (RW1) is applied to a plurality of data electrodes (Dj) in a second period (t5 to t5a) that starts at a starting time point (t5) of the first period (t5 to t6) and is shorter than the first period (t5 to t6), thereby preventing generation of strong discharges between the plurality of data electrodes (Dj) and the plurality of scan electrodes (SCi).
    • 从第一电位(Vscn)向第二电位(Vscn + Vset)上升的第一斜坡波形(RW1)在第一时段(t5至t6)中被施加到多个扫描电极(SCi),并且驱动波形下降 从第三电位(Ve1)到第四电位(0V)在第一期间(t5〜t6)之前施加到多个维持电极(SUi),并且多个维持电极保持在第四电位(0V) 在第一个时期(t5到t6)。 此时,根据第一斜坡波形(RW1)的电位的变化从第五电位(0V)向第六电位(Vd)上升的第二斜坡波形(RW10)被施加到多个数据电极 (t5〜t6)的开始时刻(t5)开始的第二期间(t5〜t5a),并且短于第一期间(t5〜t6),从而防止在第一期间 多个数据电极(Dj)和多个扫描电极(SCi)。
    • 37. 发明申请
    • PLASMA DISPLAY DEVICE AND PLASMA-DISPLAY-PANEL DRIVING METHOD
    • 等离子体显示装置和等离子显示面板驱动方法
    • US20090284446A1
    • 2009-11-19
    • US12092188
    • 2007-07-06
    • Takahiko OriguchiHidehiko ShojiMitsuo Ueda
    • Takahiko OriguchiHidehiko ShojiMitsuo Ueda
    • G09G3/28
    • G09G3/294G09G3/2022G09G3/2965G09G2310/066
    • A plasma display device includes a plasma display panel that has plural scan electrodes and plural sustain electrodes constituting display electrode pairs; and a sustain pulse generating circuit that divides a field period into a plurality of sub fields having an initializing period, an address period, and a sustain period and that generates the sustain pulse with a variable rising slope. The sustain pulse generating circuit generates at least two kinds of sustain pulses in which the rising slope of one sustain pulse is steeper than that of the other sustain pulse in the sustain period of at least one sub field of the plural sub fields and applies the sustain pulse having the steeper rising slope to one electrode of each display electrode pair continuously twice or more at the end of the sustain period.
    • 等离子体显示装置包括具有多个扫描电极和构成显示电极对的多个维持电极的等离子体显示面板; 以及维持脉冲发生电路,其将场周期划分为具有初始化周期,寻址周期和维持周期的多个子场,并且生成具有可变上升斜率的维持脉冲。 维持脉冲发生电路产生至少两种维持脉冲,其中一个维持脉冲的上升斜率比多个子场中的至少一个子场的维持周期中的另一个维持脉冲的上升斜率更陡峭, 在维持周期结束时,每个显示电极对的一个电极具有更陡峭的上升斜率连续两次或更多次的脉冲。
    • 38. 发明申请
    • METHOD OF DRIVING PLASMA DISPLAY PANEL AND PLASMA DISPLAY APPARATUS
    • 驱动等离子显示面板和等离子显示设备的方法
    • US20090091514A1
    • 2009-04-09
    • US11913815
    • 2007-02-26
    • Takahiko OriguchiHidehiko ShojiMitsuo Ueda
    • Takahiko OriguchiHidehiko ShojiMitsuo Ueda
    • G09G3/28
    • G09G3/2022G09G3/2927G09G3/296G09G2310/066
    • Plural subfields are provided in one single field period, where each subfield has an initialization period during which a gradient waveform voltage gently falling is applied to a scan electrode to generate initializing discharge in a discharge cell; a writing period during which a scan pulse voltage is applied to a scan electrode to generate writing discharge in a discharge cell; and a sustain period during which sustain discharge is generated in a discharge cell selected, by the number of times corresponding to a luminance weight. The lowest voltage of a falling gradient waveform voltage in a subfield with the smallest luminance weight is set so as to be lower than that with the largest luminance weight. A method of driving a plasma display panel is provided that generates stable writing discharge without increasing voltage required for generating writing discharge even for a large-screen, high-luminance panel.
    • 提供多个子场,其中每个子场具有初始化周期,在该初始化期间,缓慢下降的梯度波形电压被施加到扫描电极,以在放电单元中产生初始化放电; 将扫描脉冲电压施加到扫描电极以在放电单元中产生写入放电的写入周期; 以及在所选择的放电单元中产生持续放电的维持期间,与亮度权重对应的次数。 将具有最小亮度权重的子场中的下降梯度波形电压的最低电压设置为低于具有最大亮度权重的子场中的最低电压。 提供了一种驱动等离子体显示面板的方法,即使对于大屏幕,高亮度面板也能产生稳定的写入放电而不增加产生写入放电所需的电压。
    • 39. 发明授权
    • Plasma display device and method of driving the same
    • 等离子体显示装置及其驱动方法
    • US08570248B2
    • 2013-10-29
    • US12669826
    • 2008-07-10
    • Takahiko OriguchiHidehiko Shoji
    • Takahiko OriguchiHidehiko Shoji
    • G09G3/28
    • G09G3/2927G09G3/294G09G3/2965G09G2310/066G09G2320/0209
    • A voltage of sustain electrodes is lowered from Ve1 to a ground potential at a time point immediately before a first SF (sub-field). Then, a pulsed positive voltage is applied to data electrodes at a starting time point of a setup period of the first SF. Immediately before this, a large amount of negative wall charges is stored on the sustain electrodes and positive wall charges are stored on the data electrodes, and therefore application of the pulsed positive voltage to the data electrodes generates strong discharges between the sustain electrodes and the data electrodes. After that, application of a ramp voltage to scan electrodes is started at a time point, generating setup discharges between the scan electrodes and the sustain electrodes.
    • 在第一SF(子场)之前的时刻,维持电极的电压从Ve1降低到接地电位。 然后,在第一SF的建立周期的起始时刻,对数据电极施加脉冲正电压。 在此之前,在维持电极上存储大量的负壁电荷,并且在数据电极上存储正的壁电荷,因此向数据电极施加脉冲正电压在维持电极和数据之间产生强放电 电极。 之后,在时间点开始对扫描电极施加斜坡电压,产生扫描电极与维持电极之间的建立放电。
    • 40. 发明授权
    • Driving device, driving method and plasma display apparatus
    • 驱动装置,驱动方法和等离子体显示装置
    • US08471785B2
    • 2013-06-25
    • US12677223
    • 2008-08-20
    • Takahiko OriguchiHidehiko ShojiYasuaki MutouTakateru Sawada
    • Takahiko OriguchiHidehiko ShojiYasuaki MutouTakateru Sawada
    • G09G3/28
    • G09G3/2927G09G3/2965G09G2310/066
    • A first ramp waveform (RW1) rising from a first potential (Vscn) to a second potential (Vscn+Vset) is applied to a plurality of scan electrodes (SCi) in a first period (t5 to t6), and a driving waveform dropping from a third potential (Ve1) to a fourth potential (0V) is applied to a plurality of sustain electrodes (SUi) before the first period (t5 to t6), and the plurality of sustain electrodes are held at the fourth potential (0V) in the first period (t5 to t6). At this time, a second ramp waveform (RW10) rising from a fifth potential (0 V) to a sixth potential (Vd) according to change of a potential of the first ramp waveform (RW1) is applied to a plurality of data electrodes (Dj) in a second period (t5 to t5a) that starts at a starting time point (t5) of the first period (t5 to t6) and is shorter than the first period (t5 to t6), thereby preventing generation of strong discharges between the plurality of data electrodes (Dj) and the plurality of scan electrodes (SCi).
    • 从第一电位(Vscn)向第二电位(Vscn + Vset)上升的第一斜坡波形(RW1)在第一时段(t5至t6)中被施加到多个扫描电极(SCi),并且驱动波形下降 从第三电位(Ve1)到第四电位(0V)在第一期间(t5〜t6)之前施加到多个维持电极(SUi),并且多个维持电极保持在第四电位(0V) 在第一个时期(t5到t6)。 此时,根据第一斜坡波形(RW1)的电位的变化从第五电位(0V)向第六电位(Vd)上升的第二斜坡波形(RW10)被施加到多个数据电极 (t5〜t6)的开始时刻(t5)开始的第二期间(t5〜t5a),并且短于第一期间(t5〜t6),从而防止在第一期间 多个数据电极(Dj)和多个扫描电极(SCi)。