EP0762373A2

Plasma display panel, method of driving the same performing interlaced scanning, and plasma display apparatus

Abstract

An electrode drive circuit (22-27) performs interlaced scanning, ensuring that the phases of the sustaining pulse in odd-numbered lines and even-numbered lines L1 to L8 formed between surface discharge electrodes (X1 to X5, Y1 to Y4) are opposite to each other. When either odd-numbered lines or even-numbered lines are displayed, the voltages applied between the electrodes of the undisplayed lines are at zero, eliminating the necessity for partitioning walls for the surface discharge electrodes. Pairs of X electrodes are provided on respective upper and lower sides of a Y electrode. The areas between the Y and X electrodes on the upper sides are assigned to be display lines for odd-numbered frames, and the areas between the Y and X electrodes on the lower sides are assigned to be display lines for even-numbered frames. Alternate areas between the surface discharge electrodes are assigned as blind lines and a discharge light emission in the blind lines is blocked or incident light to the blind lines from the outside is absorbed. Address electrodes (A1 to A6) are provided for each monochromatic pixel column and selectively connected with the pads above them, performing simultaneous selection of lines.

EP0762373A2, drawing sheet 1
Sheet 1 of 35

Term

Term ended

Projected expiry passed 5 August 2016, 10.1 years ago.

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20 claims: 10 independent, 10 dependent

  1. 1
    A plasma display apparatus (20; 20A; 20B; 20C; 20D) comprising:a plasma display panel having a substrate (11), electrodes X1 to Xn+1 and Y1 to Yn formed at said substrate (11) and address electrodes (Al, A2...) formed at said substrate (11) or at another substrate (16) facing said substrate (11), said electrodes X1 to Xn+1 being arranged in numerically sequential order,an electrode Yi being between an electrode Xi and an electrode Xi+1 for each i = 1 to n, said address electrodes (Al, A2...) crossing said electrodes X1 to Xn+1 and Y1 to Yn;and an electrode drive circuit (22-27),    characterised in that said electrode drive circuit (22-27) includes: first field addressing means (21-23) for causing a first address discharge to occur between an electrode Yi, where i goes from 1 to n, and that or those address electrodes selected in correspondence with display datan a first field of a frame and for causing a discharge to occur between said electrode Yi and an electrode Xi using said first address discharge as a trigger to generate a first wall charge required for a sustaining discharge in correspondence with said display data in said first field;first field sustaining means (24-27) for supplying, after said first wall charge has been generated and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, a first AC sustaining pulse between an electrode Yo and an electrode Xo and for supplying a second AC sustaining pulse between an electrode Ye and an electrode Xe;second field addressing means (21-23) for causing a second address discharge to occur between an electrode Yi, where i goes from 1 to n, and that or those address electrodes selected in correspondence with display data in a second field of said frame and for causing a discharge to occur between said electrode Yi and an electrode Xi+1 using said second address discharge as a trigger to generate a second wall charge required for a sustaining discharge in correspondence with said display data in said second field;and second field sustaining means (24-27) for supplying, after said second wall charge has been generated and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, a third AC sustaining pulse between said electrode Yo and an electrode Xo+1 and for supplying a fourth AC sustaining pulse between said electrode Ye and an electrode Xe+1.
  2. 7
    A plasma display apparatus according to any one of the preceding claims, wherein each of said electrodes X1 to xn+1 and Y1 to Yn includes:a transparent electrode formed at said substrate;and a metal electrode formed at said transparent electrode along the central line of said transparent electrode with a width smaller than that of said transparent electrode.
  3. 8
    A plasma display apparatus (20E) comprising:a plasma display panel having a substrate (11) electrodes X1 to X2n and Y1 to Yn formed at said substrate (11) and address electrodes (A1, A2...) formed at said substrate (11) or at another substrate (16) facing said substrate, electrodes Xo, Yi and Xe being arranged in numerically sequential order where o = 2i - 1, e = 2i and i = 1 to n, said address electrodes (A1, A2...) crossing said electrodes X1 to X2n and Y1 to Yn;and an electrode drive circuit (22-27),    characterised in that said electrode drive circuit (22-27) includes: odd-numbered frame addressing means (21-23) operable, for o = 2i - 1 and i = 1 to n, for causing a first address discharge to occur between an electrode Yi and that or those address electrodes (Al, A2...) selected in correspondence with display data in an odd-numbered frame and for causing a discharge to occur between an electrode Yi and an electrode Xo using said first address discharge as a trigger to generate a first wall charge required for a sustaining discharge in correspondence with said display data in said odd-numbered frame;odd-numbered frame sustaining means (26B) operable, for o = 2i - 1 and i = 1 to n, for supplying a first AC sustaining pulse between an electrode Yi and an electrode Yo after said first wall charge has been generated;even-numbered frame addressing means (21-23) operable, for e = 2i and i = 1 to n, for causing a second address discharge to occur between an electrode Yi and said address electrodes selected in correspondence with display data in an even-numbered frame and for causing a discharge to occur between said electrode Yi and an electrode Xe using said second address discharge as a trigger to generate a second wall charge required for a sustaining discharge in correspondence with said display data in said even-numbered frame;and even-numbered frame sustaining means (27B) operable, for e = 2i and i = 1 to n, for supplying a second AC sustaining pulse between said electrode Yi and an electrode Ye after said second wall charge has been generated.
  4. 11
    A plasma display panel (10C) comprising a substrate (11), sustaining electrodes (Xn, Yn) for sustaining discharge and extending alongside one another at said substrate (11) and address electrodes (An) formed at said substrate (11) or at another substrate (16) facing said substrate (11), said address electrodes (An) crossing said sustaining electrodes (Xn, Yn), characterised by light blocking means at (41, 42, 43) non-display lines (Bn) lying between adjacent ones of said sustaining electrodes (Xn, Yn).
  5. 13
    A plasma display apparatus comprising:a plasma display panel having a substrate (11), electrodes X1 to Xn and Y1 to Yn formed at said substrate, address electrodes (An) formed at said substrate (11) or at another substrate (16) facing said substrate (11), electrodes Xi and Yi being arranged alternately and extending alongside one another where i = 1 to n;and an electrode drive circuit,    characterised in that light blocking means (41-43) are provided between electrodes Yi and Xi+1, where i = 1 to n-1 and in that said electrode drive circuit includes: reset means operable, for i = 1 to n - 1, for causing a discharge to occur between said electrode Yi and an electrode Xi+1 by ensuring that voltage waveforms applied to said electrodes Xi and Yi are in phase with each other and that voltage waveforms applied to said electrode Xn and said electrode Yn are in phase with each other in a reset period;addressing means (21-23) operable, for i = 1 to n, for causing an address discharge to occur between either said electrode Xi or Yi and an address electrode (An) selected in correspondence with display data and for causing a discharge to occur between said electrodes Xi and Yi using said address discharge as a trigger to generate a wall charge required for a sustaining discharge in correspondence with said display data in an address period after said reset period has elapsed;and sustaining means (24-27) operable, for i = 1 to n, for supplying an AC sustaining pulse between said electrode Xi and said electrode Yi in a sustain period after said address period has elapsed.
  6. 14
    A plasma display panel comprising a substrate (11), groups of address electrodes (All, A21;A12, A22 etc.) formed alongside one another at said substrate (11) and scanning electrodes for causing a discharge between said groups of address electrodes and said scanning electrodes to generate a wall charge required for a sustaining discharge corresponding to display data, said scanning electrodes crossing said address electrode groups, each of said address electrode groups including at least two address electrodes (All, A21;A12, A22 etc.) formed alongside one another at said substrate (11) corresponding to one monochromatic pixel column, there being pads arranged along a lengthwise direction of the address electrodes corresponding to each monochromatic pixel, the number of pads for each group being at least one more than the number of electrodes in the group concerned, contacts being provided for connecting one pad to one of said address electrodes in a regular manner along said lengthwise direction of the address electrodes.
  7. 16
    A method of driving a plasma display panel, said plasma display panel having a substrate, electrodes X1 to Xn+1 and Y1 to Yn formed at said substrate and address electrodes formed at said substrate or at another substrate facing said substrate, said electrodes X1 to Xn+1 being arranged in numerically sequential order, with an electrode Yi being arranged between an electrode Xi and an electrode xi+1 for each i = 1 to n, said address electrodes crossing said electrodes X1 to Xn+1 and Y1 to Yn said method comprising the steps of:(1) for i = 1 to n, causing a first address discharge to occur between said electrode Yi and said address electrodes selected in correspondence to display data in a first field of a frame and causing a discharge to occur between said electrode Yi and said electrode Xi using said first address discharge as a trigger to generate a first wall charge required for a sustaining discharge in correspondence to said display data in said first field;(2) after said first wall charge has been generated and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, supplying a first AC sustaining pulse between an electrode Yo and an electrode Xo and supplying a second AC sustaining pulse between an electrode Ye and an electrode Xe;(3) for i = 1 to n, causing a second address dlscharge to occur between said electrode Yi and said address electrodes selected in correspondence with display data in a second field of said frame and causing a discharge to occur between said electrode Yi and said electrode Xi+1 using said second address discharge as a trigger to generate a second wall charge required for a sustaining discharge in correspondence with said display data in said second field;and (4) after said second wall charge has been generated and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, supplying a third AC sustaining pulse between said electrode Yo and said electrode Xo+1 and supplying a fourth AC sustaining pulse between said electrode Ye and said electrode Xe+1.
  8. 18
    A method of driving a plasma display panel, said plasma display panel having a substrate, electrodes X1 to X2n formed at said substrate, electrodes Y1 to Yn formed at said substrate and address electrodes formed at said substrate or at another substrate facing said substrate, electrodes Xo, Yi and Xe being arranged in numerically sequential order where o = 2i - 1, e = 2i and i = 1 to n, said address electrodes crossing said electrodes X1 to X2n and Y1 to Yn, said method comprising the steps of:for o = 2i - 1 and i = 1 to n, causing a first address discharge to occur between said electrode Yi and said address electrodes selected in correspondence with display data in an odd-numbered frame and causing a discharge to occur between said electrode Yi and said electrode Xo using said first address discharge as a trigger to generate a first wall charge required for a sustaining discharge in correspondence with said display data in said odd-numbered frame;for o = 2i - 1 and i = 1 to n, supplying a first AC sustaining pulse between said electrode Yi and said electrode Yo after said first wall charge has been generated;for e = 2i and i = 1 to n, causing a second address discharge to occur between said electrode Yi and said address electrodes selected in correspondence with display data in an even-numbered frame and causing a discharge to occur between said electrode Yi and said electrode Xe using said second address discharge as a trigger to generate a second wall charge required for a sustaining discharge in correspondence with said display data in said even-numbered frame;and for e = 2i and i = 1 to n, supplying a second AC sustaining pulse between said electrode Yi and said electrode Ye after said second wall charge has been generated.
  9. 19
    A method of driving a plasma display panel, said plasma display panel having a substrate, electrodes X1 to Xn formed at said substrate, electrodes Y1 to Yn formed at said substrate, address electrodes formed at said substrate or at another substrate facing said substrate and light blocking means between electrodes Yi and Xi+1, where i = 1 to n-1, electrodes Xi and Yi being arranged alternately and extending alongside one another where i = 1 to n, said method comprising the steps of:for i = 1 to n - 1, causing a discharge to occur between said electrode Yi and an electrode xi+1 by ensuring that voltage waveforms applied to said electrodes X1 and Y1 are in phase with each other and that voltage waveforms applied to said electrode Xn and said electrode Yn are in phase with each other in a reset period;for i = 1 to n, causing an address discharge to occur between either of said electrodes Xi or Yi and said address electrode selected in correspondence with display data and causing a discharge to occur between said electrode Xi and electrode Yi using said address discharge as a trigger to generate a wall charge required for a sustaining discharge in correspondence with said display data in an address period after said reset period has elapsed;and for i = 1 to n, supplying an AC sustaining pulse between said electrode Xi and said electrode Yi in a sustain period after said address period has elapsed.
  10. 20
    A method of driving a plasma display panel, said plasma display panel having a substrate, address electrode groups formed alongside one another at said substrate and scanning electrodes, for causing a discharge between said address electrode groups and said scanning electrodes to generate a wall charge required for a sustaining discharge in correspondence with display data, said scanning electrodes crossing said address electrode groups, wherein each of said address electrode groups includes:m (m≥2) number of address electrodes formed alongside one another at said substrate corresponding to one monochromatic pixel column;pads arranged along a lengthwise direction of said address electrodes corresponding to each monochromatic pixel, said pads being above said m number of address electrodes relative to said substrate;and contacts for connecting one pad to one of said address electrodes in a regular manner along said lengthwise direction of said address electrodes;said method comprising the steps of: selecting simultaneously m number of said scanning electrodes facing said pads connected to said m number of address electrodes;and applying voltages corresponding to display data to said m number of address electrodes simultaneously;whereby scanning of said scanning electrodes is executed in units of m lines.