摘要:
A plasma display panel has a first substrate, plural pairs of display electrodes, a second substrate, and plural data electrodes. Each pair of the display electrodes is made up of a scanning electrode and a sustain electrode which are arranged parallel to each other on the first substrate. The second substrate is disposed opposite to the first substrate. A discharge space is formed between the first substrate and second substrate. The data electrodes are arranged in a direction perpendicular to the display electrodes on the second substrate. The data electrode is wider in peripheral portion of the second substrate than in a central portion of the second substrate.
摘要:
A plasma display panel has a first substrate, plural pairs of display electrodes, a second substrate, and plural data electrodes. Each pair of the display electrodes is made up of a scanning electrode and a sustain electrode which are arranged parallel to each other on the first substrate. The second substrate is disposed opposite to the first substrate. A discharge space is formed between the first substrate and second substrate. The data electrodes are arranged in a direction perpendicular to the display electrodes on the second substrate. The data electrode is wider in peripheral portion of the second substrate than in a central portion of the second substrate.
摘要:
A plasma display panel has a first substrate, plural pairs of display electrodes, a second substrate, and plural data electrodes. Each pair of the display electrodes is made up of a scanning electrode and a sustain electrode which are arranged parallel to each other on the first substrate. The second substrate is disposed opposite to the first substrate. A discharge space is formed between the first substrate and second substrate. The data electrodes are arranged in a direction perpendicular to the display electrodes on the second substrate. The data electrode is wider in peripheral portion of the second substrate than in a central portion of the second substrate.
摘要:
A plurality of subfields of a field period includes a subfield for performing an every-cell initialization causing an initial discharge in every discharge cell in an initialization period, and includes a subfield for performing a selective initialization causing the initial discharge in a predetermined discharge cell in the initialization period. In a low-luminance subfield, the every-cell initialization is performed, and a low-luminance subfield is subsequently located (in the field period) to the subfield for the every-cell initialization. In a sustain period of the subfield for performing the every-cell initialization or a sustain period of the low-luminance subfield, a width of a first sustain pulse is set wider than a width of a second sustain pulse, and the width of the second sustain pulse is set wider than the width of a third sustain pulse and subsequent others.
摘要:
The invention is a plasma display panel capable of stabilizing the addressing characteristics. A barrier rib is formed by longitudinal barrier ribs portion orthogonal to the scan electrodes and sustain electrodes on the front substrate, and side barrier rib portions crossing with these longitudinal barrier rib portions, to form cell spaces and form interstice portions between the cell spaces, and priming electrodes for producing a discharge between the front substrate and the rear substrate within the interstice portions are formed. Stable priming discharge is produced with certainty by the scan electrode and the priming electrode, hence decreasing the discharge time lag at the time of addressing and stabilizing the addressing characteristics.
摘要:
The invention is a plasma display panel capable of stabilizing the addressing characteristics. A barrier rib is formed by longitudinal barrier ribs portion orthogonal to the scan electrodes and sustain electrodes on the front substrate, and side barrier rib portions crossing with these longitudinal barrier rib portions, to form cell spaces and form interstice portions between the cell spaces, and priming electrodes for producing a discharge between the front substrate and the rear substrate within the interstice portions are formed. Stable priming discharge is produced with certainty by the scan electrode and the priming electrode, hence decreasing the discharge time lag at the time of addressing and stabilizing the addressing characteristics.
摘要:
Barrier ribs are disposed on a back substrate so as to separate main discharge cells and priming discharge cells, and the top parts of the barrier ribs are formed so as to abut on a front substrate. In a driving method, in an odd-numbered line writing time period, scan pulse Va is sequentially applied to odd-numbered scan electrode SCp and voltage Vq is applied to even-numbered sustain electrode SUp+1 to cause priming discharge between even-numbered sustain electrode SUp+1 and odd-numbered scan electrode SCp. In an even-numbered line writing time period, scan pulse Va is sequentially applied to even-numbered scan electrode SCp+1 and voltage Vq is applied to odd-numbered sustain electrode SUp to cause priming discharge between odd-numbered sustain electrode SUp and even-numbered scan electrode SCp+1.
摘要翻译:阻挡肋设置在后基板上,以便分离主放电单元和引发放电单元,并且形成障壁的顶部以抵靠在前基板上。 在驱动方法中,在奇数行写入时间周期中,将扫描脉冲Va顺序地施加到奇数扫描电极SC&lt; P&gt;,并且将电压Vq施加到偶数维持电极SU p + 1 SUB>以在偶数维持电极SU&lt; p + 1&gt;和奇数扫描电极SC&lt; P&gt;之间引起引发放电。 在偶数行写入时间段中,扫描脉冲Va顺序地施加到偶数扫描电极SC&lt; p + 1&gt;,并且将电压Vq施加到奇数维持电极SU < / SUB>以使得奇数维持电极SU&lt; P&lt;和偶数扫描电极SC&lt; p + 1&gt;之间的引发放电。
摘要:
Barrier ribs are disposed on a back substrate so as to separate main discharge cells formed of a display electrode pair and a data electrode which face each other and priming discharge cells formed of a clearance between two adjacent scan electrodes. The top parts of the barrier ribs are formed so as to abut on a front substrate. In a driving method, in an odd-numbered line writing time period, scan pulse Va is sequentially applied to odd-numbered scan electrode SCp and voltage Vq is applied to even-numbered scan electrode SCp+1 to cause priming discharge between scan electrode SCp+1 and odd-numbered scan electrode SCp. In an even-numbered line writing time period, scan pulse Va is sequentially applied to even-numbered scan electrode SCp+1 and voltage Vq is applied to odd-numbered scan electrode SCp to cause priming discharge between scan electrode SCp and even-numbered scan electrode SCp+1.
摘要翻译:阻挡肋设置在背面基板上,以分离由彼此面对的显示电极对和数据电极形成的主放电单元,并且由两个相邻的扫描电极之间的间隙形成的起动放电单元。 隔壁的顶部形成为与前基板抵接。 在驱动方法中,在奇数行写入时间段中,将扫描脉冲Va顺序地施加到奇数扫描电极SC&lt; P&gt;,将电压Vq施加到偶数扫描电极SC p + 1 SUB>以引起扫描电极SC&lt; p + 1&gt;和奇数扫描电极SC&lt; P&gt;之间的引发放电。 在偶数行写入时间段中,将扫描脉冲Va顺序地施加到偶数扫描电极SC&lt; p + 1&gt;,并且将电压Vq施加到奇数扫描电极SC&lt; / SUB>,以使扫描电极SC和P2与偶数扫描电极SC&lt; p + 1&gt;之间引起放电。
摘要:
Barrier ribs are disposed on a back substrate so as to separate main discharge cells formed of a display electrode pair and a data electrode which face each other and priming discharge cells formed of a clearance between two adjacent scan electrodes. The top parts of the barrier ribs are formed so as to abut on a front substrate. In a driving method, in an odd-numbered line writing time period, scan pulse Va is sequentially applied to odd-numbered scan electrode SCp and voltage Vq is applied to even-numbered scan electrode SCp+1 to cause priming discharge between scan electrode SCp+1 and odd-numbered scan electrode SCp. In an even-numbered line writing time period, scan pulse Va is sequentially applied to even-numbered scan electrode SCp+1 and voltage Vq is applied to odd-numbered scan electrode SCp to cause priming discharge between scan electrode SCp and even-numbered scan electrode SCp+1.
摘要翻译:阻挡肋设置在背面基板上,以分离由彼此面对的显示电极对和数据电极形成的主放电单元,并且由两个相邻的扫描电极之间的间隙形成的起动放电单元。 隔壁的顶部形成为与前基板抵接。 在驱动方法中,在奇数行写入时间段中,将扫描脉冲Va顺序地施加到奇数扫描电极SC&lt; P&gt;,将电压Vq施加到偶数扫描电极SC p + 1 SUB>以引起扫描电极SC&lt; p + 1&gt;和奇数扫描电极SC&lt; P&gt;之间的引发放电。 在偶数行写入时间段中,将扫描脉冲Va顺序地施加到偶数扫描电极SC&lt; p + 1&gt;,并且将电压Vq施加到奇数扫描电极SC&lt; / SUB>,以使扫描电极SC和P2与偶数扫描电极SC&lt; p + 1&gt;之间引起放电。
摘要:
A plurality of subfields configuring a field period include the subfield(s) in charge of an every-cell initialization operation of causing initial discharge in every discharge cell in an initialization period, and the subfield(s) in charge of a selective initialization operation of causing the initial discharge in any predetermined discharge cell in the initialization period. In at least low-luminance subfield, the every-cell initialization operation is performed, and a low-luminance subfield is disposed subsequent to the subfield(s) in charge of the every-cell initialization operation. In at least either a sustain period of the subfield in charge of the every-cell initialization operation or a sustain period of the low-luminance subfield, the width of a first sustain pulse P1 is set wider than the width of a second sustain pulse P2, and the width of the second sustain pulse P2 is set wider than the width of a third sustain pulse and subsequent others.
摘要翻译:构成场周期的多个子场包括负责初始化期间的各放电单元中的初始放电的每个单元初始化动作的子场,以及负责选择初始化动作的子场 在初始化期间使任何预定的放电单元中的初始放电。 在至少低亮度子场中,执行每个单元初始化操作,并且在每个单元初始化操作的子场之后设置低亮度子场。 在每单元初始化动作的子场的维持期间或低亮度子场的维持期间的至少一个中,将第一维持脉冲P 1的宽度设定为比第二维持脉冲的宽度宽 P 2,并且第二维持脉冲P 2的宽度被设定为宽于第三维持脉冲的宽度和其后的宽度。