EP0762373B1

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

Abstract

This record has no abstract on file.

EP0762373B1, drawing sheet 1
Sheet 1 of 34

Term

Term ended

Expired 5 August 2016, 10.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

22 claims: 5 independent, 17 dependent

  1. 1
    A method of driving a plasma display panel, the plasma display panel having a substrate (11), a plurality of X-electrodes (X1 to Xn+1; X1 to X2n) formed at said substrate, a plurality of Y-electrodes (Y1 to Yn) formed at said substrate and a plurality of address electrodes formed at said substrate or at another substrate facing said substrate, each Y-electrode being arranged between two X-electrodes, and said address electrodes crossing the X-electrodes and the Y-electrodes, the method comprising the steps of, for each of the Y-electrodes:(1) causing a first address discharge to occur between the Y-electrode and the address electrodes selected in correspondence with display data in a first field or frame, and causing a discharge to occur between the Y-electrode and the X-electrode which is adjacent to the Y-electrode on a first side using the first address discharge as a trigger to generate a first wall charge required for a sustaining discharge in correspondence to the display data in the first field or frame;(2) after said wall charge has been generated, causing a sustaining discharge only between the Y-electrode and the X-electrode which is adjacent to the Y-electrode on the first side in correspondence to the display data in the first field or frame;(3) causing a second address discharge to occur between the Y-electrode and the address electrodes selected in correspondence with display data in a second field or frame and causing a discharge to occur between the Y-electrode and the X-electrode which is adjacent the Y-electrode on a second side using the second address discharge as a trigger to generate a second wall charge required for a sustaining discharge in correspondence with the display data in the second field or frame;and (4) after the second wall charge has been generated, causing a sustaining discharge only between the Y-electrode and the X-electrode which is adjacent to the Y-electrode on the second side in correspondence to the display data in the second field or frame.
  2. 7
    A method according to any of claims 4 to 6, wherein both said first field and said second field consist of a plurality of subfields with numbers of sustaining discharge pulses different from one another, the method further comprising:prior to said first address discharge in a first subfield of said first field and for i = 1 to n, causing a discharge to occur between said electrode Yi and said electrode Xi and between said electrode Yi and said electrode Xi+1 in order to eliminate wall charge for all pixels or to generate wall charge for all pixels;prior to said first address discharge in the other subfields of said first field and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, causing a discharge D1 to occur between said electrode Yo and said electrode Xo and a discharge D2 to occur between said electrode Ye and said electrode Xe with a time lag from said discharge D1 in order to eliminate or to generate wall charge only for pixels in said first field;prior to said second address discharge in a first subfield of said second field and for i = 1 to n, causing a discharge to occur between said electrode Yi and said electrode Xi and between said electrode Yi and said electrode Xi+1 in order to eliminate wall charge for all pixels or to generate wall charge for all pixels;and prior to said second address discharge in the other subfields of said second field and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, causing a discharge D3 to occur between said electrode Yo and said electrode Xo+1 and a discharge D4 to occur between said electrode Ye and said electrode Xe+1 with a time lag from said discharge D3 in order to eliminate or to generate wall charge only for pixels in said second field.
  3. 10
    A plasma display apparatus (20; 20A; 20B; 20C; 20D) comprising:a plasma display panel having a substrate (11), a plurality of X-electrodes (X1 to Xn+1;X1 to X2n) and a plurality of Y-electrodes (Y1 to Yn) formed at said substrate, and a plurality of address electrodes formed at said substrate or at another substrate facing said substrate, each Y-electrode being arranged between two X-electrodes, and said address electrodes crossing the X-electrodes and the Y-electrodes;and an electrode drive circuit (22-27),     characterised in that said electrode drive circuit (22-27) includes: first 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 data in a first field or frame and for causing a discharge to occur between said electrode Yi and the X-electrode which is adjacent to the Y-electrode on a first side 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 or frame;first sustaining means (24-27) for causing, after said first wall charge has been generated, for each of the Y-electrodes, a sustaining discharge only between the Y-electrode and the X-electrode which is adjacent the Y-electrode on the first side in correspondence with said display data in said first field or frame;second 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 or frame and for causing a discharge to occur between said electrode Yi and the X-electrode which is adjacent to the Y-electrode on a second side 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 or frame;and second sustaining means (24-27) for causing, after said second wall charge has been generated, for each of the Y-electrodes, a sustaining discharge only between the Y-electrode and the X-electrode which is adjacent the Y-electrode on the second side in correspondence with said display data in said second field or frame.
  4. 17
    Apparatus according to any of claims 13 to 16, wherein both said first field and said second field consist of a plurality of subfields with numbers of sustaining discharge pulses different from one another and wherein said electrode drive circuit further comprises:first field reset means for causing, prior to said first address discharge in a first subfield of said first field and for i = 1 to n, a discharge to occur between said electrode Yi and said electrode Xi and between said electrode Yi and said electrode Xi+1 in order to eliminate wall charge for all pixels or to generate wall charge for all pixels;and for causing, prior to said first address discharge in the other subfields of said first field and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, a discharge D1 to occur between said electrode Yo and said electrode Xo and a discharge D2 to occur between said electrode Ye and said electrode Xe with a time lag from said discharge D1 in order to eliminate or to generate wall charge only for pixels in said first field;and second field reset means for causing, prior to said second address discharge in a first subfield of said second field and for i = 1 to n, a discharge to occur between said electrode Yi and said electrode Xi and between said electrode Yi and said electrode Xi+1 in order to eliminate wall charge for all pixels or to generate wall charge for all pixels;and for causing, prior to said second address discharge in the other subfields of said second field and for odd numbers (o) among 1 to n and for even numbers (e) among 1 to n, a discharge D3 to occur between said electrode Yo and said electrode Xo+1 and a discharge D4 to occur between said electrode Ye and said electrode Xe+1 with a time lag from said discharge D3 in order to eliminate or generate wall charge only for pixels in said second field.
  5. 18
    Apparatus according to any of claims 10 to 17, 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.