Claims
- 1. An intraframe time-division multiplexing type display device in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated are combined with sub-frames during which no light is irradiated in order to render a gray-scale image, comprising:a display screen composed of a plurality of cells; and a sub-frame sequence setting circuit for setting a sequence of sub-frames within a frame during which a cell is lit; said sequence of sub-frames during which a cell is lit, which is set by said sub-frame sequence setting circuit, being able to be varied.
- 2. An intraframe time-division multiplexing type display device according to claim 1, wherein: said sub-frame sequence setting circuit includes a sub-frame sequence memory circuit for storing a sequence of sub-frames during which a cell is lit; and when said sequence of sub-frames during which a cell is lit is varied, the contents of said sub-frame sequence memory circuit are modified.
- 3. An intraframe time-division multiplexing type display device according to claim 1, wherein said sub-frame sequence setting circuit includes a random sequence generation circuit for generating a random sequence of sub-frames during which a cell is lit.
- 4. An intraframe time-division multiplexing type display device according to claim 3, wherein said sub-frame sequence setting circuit includes a sequence cancellation circuit for judging whether a sequence of sub-frames during which a cell is lit, which is generated by said random sequence generation circuit, is undesirable, and for canceling the sequence of sub-frames during which a cell is lit when the sequence of sub-frames is undesirable.
- 5. An intraframe time-division multiplexing type display device in which one frame is divided into a plurality of sub-frames, sub-frames during which light is irradiated are combined with sub-frames during which no light is irradiated in order to render a gray-scale image, and a plurality of combination patterns of said sub-frames can be used to render the same gray-scale level, comprising:a display screen composed of a plurality of cells; and a cell gray-scale pattern setting circuit for determining a combination pattern of sub-frames according to which a cell is lit; said cell gray-scale pattern setting circuit selecting a combination pattern, in which sub-frames arranged near the center of a frame are combined in preference, among all the plurality of combination patterns.
- 6. An intraframe time-division multiplexing type display device in which one frame is divided into a plurality of sub-frames, sub-frames during which light is irradiated are combined with sub-frames during which no light is irradiated in order to render a gray-scale image, and a plurality of combination patterns of said sub-frames can be used to render the same gray-scale level, comprising:a display screen composed of a plurality of cells; and a cell gray-scale pattern setting circuit for determining a combination pattern of sub-frames according to which a cell is lit; wherein: said cell gray-scale pattern setting circuit includes a pattern memory circuit for storing a plurality of modes each of which defines patterns of sub-frames in one-to-one correspondence with gray-scale levels; it is predetermined in which of said plurality of modes each cell is lit; and said cell gray-scale pattern setting circuit determines a combination pattern of sub-frames according to a mode associated with a cell.
- 7. An intraframe time-division multiplexing type display device according to claim 6, wherein said pattern memory circuit stores a first mode defining patterns in each of which sub-frames arranged on one side of a frame coincident with the start of display are combined in preference, and a second mode defining patterns in each of which sub-frames arranged on the other side of a frame coincident with the end of display are combined in preference.
- 8. An intraframe time-division multiplexing type display device according to claim 7, wherein cells among said plurality of cells belonging to the same address line on said display screen are set to the same mode, and said plurality of cells are set alternately to said first mode and second mode in units of a scan line.
- 9. An intraframe time-division multiplexing type display device according to claim 7, wherein cells among said plurality of cells belonging to the same scan line on said display screen are set to the same mode, and said plurality of cells are set alternately to said first mode and second mode in units of an address line.
- 10. An intraframe time-division multiplexing type display device according to claim 7, wherein said plurality of cells are set alternately to said first mode and second mode in units of a scan line and address line on said display screen, and cells set to said first mode and second mode are arranged in a zigzag form.
- 11. An intraframe time-division multiplexing type display device according to claim 10, wherein a group of a plurality of adjoining cells set to different modes is regarded as a unit, a level calculated by adding up gray-scale levels of cells belonging to said unit is regarded as a gray-scale level of said unit, and gray-scale display is thus achieved.
- 12. An intraframe time-division multiplexing type display device according to claim 11, wherein gray-scale levels of cells belonging to said unit are selected to be mutually approximate.
- 13. An intraframe time-division multiplexing type display device according to claim 7, wherein said plurality of cells set to said first mode and second mode are arranged at random.
- 14. An intraframe time-division multiplexing type display device according to claim 7, wherein said cells are set alternately to said first mode and second mode synchronously with a frame.
- 15. An intraframe time-division multiplexing type display device according to claim 7, wherein said cells are set at random to said first mode and second mode synchronously with a frame.
- 16. An intraframe time-division multiplexing type display device according to claim 7, wherein a luminance level associated with each sub-frame is determined with an amount of light irradiated during the sub-frame, and said plurality of sub-frames constituting a frame include at least one set of sub-frames associated with the same luminance level or approximate luminance levels.
- 17. An intraframe time-division multiplexing type display device according to claim 16, wherein said sub-frames associated with the same luminance level or approximate luminance levels include a sub-frame associated with the highest luminance level.
- 18. An intraframe time-division multiplexing type display device according to claim 17, wherein there exist two sub-frames associated with the highest luminance level and the two sub-frames are arranged near the start and end of a frame.
- 19. An intraframe time-division multiplexing type display device according to claim 17, wherein there exist three sub-frames associated with the highest luminance level and the three sub-frames are arranged near the center, start, and end of a frame.
- 20. An intraframe time-division multiplexing type display device according to claim 16, wherein there exist three sub-frames associated with the same luminance level or approximate luminance levels and the three sub-frames are arranged near the center, start, and end of a frame.
- 21. An intraframe time-division multiplexing type display device according to claim 20, wherein when three sub-frames associated with the same luminance level or approximate luminance levels are to be selected, in said first and second mode, sub-frames associated with the same luminance level or approximate luminance levels and arranged near the center of a frame are selected in preference, and thereafter, in said first mode, sub-frames associated with the same luminance level or approximate luminance levels and arranged near the start of the frame are selected in preference, while in said second mode, sub-frames associated with the same luminance level or approximate luminance levels and arranged near the end of the frame are selected in preference.
- 22. An intraframe time-division multiplexing type display device according to claim 16, wherein assuming that luminance levels associated with said plurality of sub-frames are set in descending order from the highest luminance level as Nn, Nn-1, Nn-2, etc., and N1, there is a sub-frame relative to which the relationship of Nn=Nn-1+Nn-2 is established.
- 23. An intraframe time-division multiplexing type display device according to claim 22, wherein according to included sequences of sub-frames during which a cell is lit, when a gray-scale level to be rendered is incremented by one, the states of a cell during sub-frames P, Q, and R associated with said luminance levels Nn, Nn-1, and Nn-2 are changed from unlit, lit, and lit states respectively to lit, unlit, and lit states respectively or from lit, unlit, and lit states respectively to lit, lit, and unlit states respectively.
- 24. An intraframe time-division multiplexing type display device according to claim 22, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 25. An intraframe time-division multiplexing type display device according to claim 24, wherein sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 26. An intraframe time-division multiplexing type display device according to claim 25, wherein the ratio of luminance levels associated with sub-frames arranged sequentially within one frame is 6:4:2:1:2:4:6.
- 27. An intraframe time-division multiplexing type display device according to claim 25, wherein the ratio of luminance levels associated with sub-frames arranged sequentially within one frame is 12:8:4:1:2:4:8:12.
- 28. An intraframe time-division multiplexing type display device according to claim 25, wherein the ratio of luminance levels associated with sub-frames arranged sequentially within one frame is 24:16:8:4:1:2:8:16:24.
- 29. An intraframe time-division multiplexing type display device according to claim 25, wherein the ratio of luminance levels associated with sub-frames arranged sequentially within one frame is 48:32:16:8:1:2:4:16:32:48.
- 30. An intraframe time-division multiplexing type display device according to claim 16, wherein assuming that the highest luminance level of all luminance levels associated with said plurality of sub-frames is a (a: integer), a value obtained by increasing a so that a becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups according to the associated luminance levels under the conditions of 2m<A≦3m, m<B≦2m, and C≦m, when the highest luminance level associated with each group is Xmax (X: A, B, or C), there is a sub-frame relative to which the relationship of a=Bmax+Cmax is established.
- 31. An intraframe time-division multiplexing type display device according to claim 30, wherein according to included sequences of sub-frames during which a cell is lit, when a gray-scale level to be rendered is incremented by one, the states of a cell during sub-frames P, Q, and R belonging to three groups A, B, and C associated with different luminance levels are changed from unlit, lit, and lit states respectively to lit, unlit, and lit states respectively or from lit, unlit, and lit states respectively to lit, lit, and unlit states respectively.
- 32. An intraframe time-division multiplexing type display device according to claim 30, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 33. An intraframe time-division multiplexing type display device according to claim 32, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 34. An intraframe time-division multiplexing type display device according to claim 16, wherein assuming that the highest luminance level of all luminance levels associated with said plurality of sub-frames is a (a: integer), a value obtained by increasing a so that a becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups A, B, and C according to the associated luminance levels under the conditions of 2m<A≦3m, m<B≦2m, and C≦m, when the highest luminance level associated with each group is Xmax (X: A, B, or C), there is a sub-frame relative to which the relationship of a<Bmax+Cmax is established.
- 35. An intraframe time-division multiplexing type display device according to claim 34, wherein according to included sequences of sub-frames during which a cell is lit, when a gray-scale level to be rendered is incremented by one, the states of a cell during sub-frames P, Q, and R belonging to three groups A, B, and C associated with different luminance levels are changed from unlit, lit, and lit states respectively to lit, unlit, and lit states respectively or from lit, unlit, and lit states respectively to lit, lit, and unlit states respectively.
- 36. An intraframe time-division multiplexing type display device according to claim 34, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 37. An intraframe time-division multiplexing type display device according to claim 36, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 38. An intraframe time-division multiplexing type display device according to claim 16, wherein assuming that luminance levels associated with said plurality of sub-frames are set in descending order from the highest luminance level as Nn, Nn-1, Nn-2, etc., and N1, there is a sub-frame relative to which the relationships of Nn=Nn-1+Nn-2 and Nn-1=Nn-2+Nn-3 are established.
- 39. An intraframe time-division multiplexing type display device according to claim 38, wherein according to included sequences of sub-frames during which a cell is lit, when a gray-scale level to be rendered is incremented by one, the states of a cell during sub-frames P, Q, and R associated with said luminance levels Nn, Nn-1, and Nn-2 are changed from unlit, lit, and lit states respectively to lit, unlit, and lit states respectively or from lit, unlit, and lit states respectively to lit, lit, and unlit states respectively, or the states of a cell during sub-frames Q, R, and S associated with said luminance levels Nn-1, Nn-2, and Nn-3 are changed from unlit, lit, and lit states respectively to lit, unlit, and lit states respectively or from lit, unlit, and lit states respectively to lit, lit, and unlit states respectively.
- 40. An intraframe time-division multiplexing type display device according to claim 38, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 41. An intraframe time-division multiplexing type display device according to claim 40, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 42. An intraframe time-division multiplexing type display device according to claim 41, wherein the ratio of luminance levels associated with sub-frames arranged sequentially within one frame is 10:6:4:2:1:2:4:6:10.
- 43. An intraframe time-division multiplexing type display device according to claim 41, wherein the ratio of luminance levels associated with sub-frames arranged sequentially within one frame is 20:12:8:4:1:2:4:8:12:20.
- 44. An intraframe time-division multiplexing type display device according to claim 41, wherein the ratio of luminance levels associated with sub-frames arranged sequentially within one frame is 40:24:16:8:4:1:2:8:16:24:40.
- 45. An intraframe time-division multiplexing type display device according to claim 16, wherein: assuming that the lowest luminance level is 1, at least one sub-frame is associated with a luminance level of which ratio is not a power of 2; and assuming that the lowest luminance level of which the ratio is not a power of 2 is b (b: integer), a value obtained by increasing b so that b becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups B1, C1, and D1 according to the associated luminance levels under the conditions of 2m<B1≦3m, m<C1≦2m, and D1≦m, when the highest luminance level associated with each group is X1max (X1: B1, C1, or D1), the relationships of b=C1max+D1max is established and there are at least two sub-frames of luminance level a to which the relationship of a=B1+C1 is established.
- 46. An intraframe time-division multiplexing type display device according to claim 45, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 47. An intraframe time-division multiplexing type display device according to claim 46, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 48. An intraframe time-division multiplexing type display device according to claim 16, wherein: assuming that the lowest luminance level is 1, at least one sub-frame is associated with a luminance level of which ratio is not a power of 2; and assuming that the lowest luminance level of which ratio is not a power of 2 is b (b: integer), a value obtained by increasing b so that b becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups B1, C1, and D1 according to the associated luminance levels under the conditions 2m<B1≦3m, m<C1≦2m, and D1≦m, when the highest luminance level associated with each group is X1max (X1: B1, C1, or D1), the relationships of b<C1max+D1max is established and there are at least two sub-frames of luminance level a in which the relationship of B1<a<B1+C1 is established.
- 49. An intraframe time-division multiplexing type display device according to claim 48, wherein one frame includes a plurality bf sub-frames associated with the highest luminance level.
- 50. An intraframe time-division multiplexing type display device according to claim 49, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 51. A method of displaying gray-scale in an intraframe time-division multiplexing type display device in which a display screen is composed of a plurality of cells, data to be displayed at the location of each cell is rewritten at intervals of a frame, and a luminance level of each cell is determined with an amount of light emanating from the cell during one frame, and in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated and sub-frames during which no light is irradiated are combined in order to render a gray-scale level, wherein:assuming that luminance levels associated with said plurality of sub-frames are set in descending order from the highest luminance level as Nn, Nn-1, Nn-2, etc., and N1, the relationship of Nn=Nn-1+Nn-2 is established.
- 52. A method of displaying gray-scale according to claim 51, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 53. A method of displaying gray-scale according to claim 52, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 54. A method of displaying gray-scale in an intraframe time-division multiplexing type display device in which a display screen is composed of a plurality of cells, data to be displayed at the location of each cell is rewritten at intervals of a frame, and a luminance level of each cell is determined with an amount of light emanating from the cell during one frame, and in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated and sub-frames during which no light is irradiated are combined in order to render a gray-scale level, wherein:assuming that the highest luminance level of all luminance levels associated with said plurality of sub-frames is a (a: integer), a value obtained by increasing a so that a becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups A, B, and C according to the associated luminance levels under the conditions of 2m<A≦3m, m<B≦2m, and C≦m, when the highest luminance level associated with each group is Xmax (X: A, B, or C), there is a sub-frame relative to which the relationship of a=Bmax+Cmax is established.
- 55. A method of displaying gray-scale according to claim 54, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 56. A method of displaying gray-scale according to claim 55, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 57. A method of displaying a gray-scale in an intraframe time-division multiplexing type display device in which a display screen is composed of a plurality of cells, data to be displayed at the location of each cell is rewritten at intervals of a frame, and a luminance level of each cell is determined with an amount of light emanating from the cell during one frame, and in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated and sub-frames during which no light is irradiated are combined in order to render a gray-scale level, wherein:assuming that the highest luminance level of all luminance levels associated with said plurality of sub-frames is a (a: integer), a value obtained by increasing a so that a becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups A, B, and C according to the associated luminance levels under the conditions of 2m<A≦3m, m<B≦2m, and C≦m, when the highest luminance level associated with each group is Xmax (X: A, B, or C), there is a sub-frame relative to which the relationship of a<Bmax+Cmax is established.
- 58. A method of displaying gray-scale according to claim 57, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 59. A method of displaying gray-scale according to claim 58, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 60. A method of displaying gray-scale in an intraframe time-division multiplexing type display device in which a display screen is composed of a plurality of cells, data to be displayed at the location of each cell is rewritten at intervals of a frame, and a luminance level of each cell is determined with an amount of light emanating from the cell during one frame, and in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated and sub-frames during which no light is irradiated are combined in order to render a gray-scale level, wherein:assuming that luminance levels associated with said plurality of sub-frames are set in descending order from the highest luminance level as Nn, Nn-1, Nn-2, etc. and N1, both the relationships of Nn=Nn-1+Nn-2 and Nn-1=Nn-2+Nn-3 are established.
- 61. A method of displaying gray-scale according to claim 60, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 62. A method of displaying gray-scale according to claim 61, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 63. A method of displaying gray-scale in an intraframe time-division multiplexing type display device in which a display screen is composed of a plurality of cells, data to be displayed at the location of each cell is rewritten at intervals of a frame, and a luminance level of each cell is determined with an amount of light emanating from the cell during one frame, and in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated and sub-frames during which no light is irradiated are combined in order to render a gray-scale level, wherein:assuming that the lowest luminance level is 1, at least one sub-frame is associated with a luminance level of which a ratio is not a power of 2; and assuming that the lowest luminance level of which a ratio is not a power of 2 is b (b: integer), a value obtained by increasing b so that b becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups B1, C1, and D1 according to the associated luminance levels under the conditions of 2m<B1≦3m, m<C1≦2m, and D1≦m, when the highest luminance level associated with each group is X1max (X1: B1, C1, or D1), the relationships of b=C1max+D1max is established and there are at least two sub-frames, of luminance level a to which the relationship of a=B1+C1 is established.
- 64. A method of displaying gray-scale according to claim 63, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 65. A method of displaying gray-scale according to claim 64, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 66. A method of displaying gray-scale in an intraframe time-division multiplexing type display device in which a display screen is composed of a plurality of cells, data to be displayed at the location of each cell is rewritten at intervals of a frame, and a luminance level of each cell is determined with an amount of light emanating from the cell during one frame, and in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated and sub-frames during which no light is irradiated are combined in order to render a gray-scale level, wherein:assuming that the lowest luminance level is 1, at least one sub-frame is associated with a luminance level of which ratio is not a power of 2; and assuming that the lowest luminance level of which a ratio is not a power of 2 is b (b: integer), a value obtained by increasing b so that b becomes a multiple of 3 is 3m (m: integer), and said sub-frames are divided into three groups B1, C1, and D1 according to the associated luminance levels under the conditions of 2m<B1≦3m, m<C1≦2m, and D1≦m, when the highest luminance level associated with each group is X1max (X1: B1, C1, or D1), the relationships of b<C1max+D1max is established and there is at least two sub-frames of luminance level a to which the relationship of B1<a<B1+C1 is established.
- 67. A method of displaying gray-scale according to claim 66, wherein one frame includes a plurality of sub-frames associated with the highest luminance level.
- 68. A method of displaying gray-scale according to claim 67, wherein said sub-frames associated with the highest luminance level are arranged at the start and end of one frame.
- 69. A method of displaying gray-scale in an intraframe time-division multiplexing type display device in which one frame during which an image is displayed on a display panel is composed of a plurality of sub-frames associated with different luminance levels and a cell is lit selectively during said plurality of sub-frames in order to render a gray-scale level, wherein:a bit corresponding to a sub-frame within an adjoining frame is used to cover a sub-frame within a frame during which a cell should be lit according to a gray-scale level represented by display data.
- 70. A method of displaying gray-scale according to claim 69, comprising a step of judging whether or not display data should be displayed in combination with display data corresponding to a succeeding frame, and a step at which when it is judged that display data should be displayed in combination with display data corresponding to the adjoining frame, a bit is delayed till a corresponding sub-frame within the adjoining frame.
- 71. A method of displaying gray-scale according to claim 69, wherein bits corresponding to sub-frames within an adjoining frame are used to cover sub-frames arranged near the start and end of a frame.
- 72. A method of displaying gray-scale according to claim 71, wherein: a sequence of sub-frames is such that sub-frames associated with smaller weights of luminance are arranged alternately across a sub-frame associated with the largest weight of luminance within a frame; and a sub-frame associated with the largest weight of luminance among sub-frames, which are associated with smaller weights of luminance, of which corresponding bits are judged to see whether or not the bits should be displayed in combination with display data corresponding to an adjoining frame, and which are arranged near the start and end of a frame, is arranged at the start or end of said frame.
- 73. A method of displaying gray-scale according to claim 71, wherein: a sequence of sub-frames is such that sub-frames associated with larger weights of luminance within a frame are arranged alternately at the start and end of said frame; it is sub-frames associated with larger weights of luminance that corresponding bits are judged to see whether or not the bits should be displayed in combination with display data corresponding to an adjoining frame; and sub-frames which are associated with smaller weights of luminance and of which corresponding bits are not judged to see if the bits should be displayed in combination with the display data corresponding to the adjoining frame are arranged across a sub-frame associated with the largest weight of luminance of all the sub-frames associated with smaller weights of luminance.
- 74. A method of displaying gray-scale according to claim 69, further comprising a step of judging whether an image represented by display data is a dynamic image or still image, wherein only when it is judged that said image is a still image, a bit corresponding to a sub-frame within an adjoining frame is used.
- 75. An intraframe time-division multiplexing type display method in which one frame is divided into a plurality of sub-frames, and sub-frames during which light is irradiated are combined with sub-frames during which no light is irradiated in order to render a gray-scale image, comprising:a sub-frame sequence setting step for setting a sequence of sub-frames within a frame; and a lighting step in which each cell of a display screen is lit according to said sequence of sub-frames, said sequence of sub-frames being able to be varied.
- 76. An intraframe time-division multiplexing type display method in which one frame is divided into a plurality of sub-frames, sub-frames during which light is irradiated are combined with sub-frames during which no light is irradiated in order to render a gray-scale image, and a plurality of combination patterns of said sub-frames can be used to render the same gray-scale level, comprising:a gray-scale pattern setting step for determining a combination pattern of sub-frames, in which sub-frames arranged near the center of a frame are combined in preference, among all the plurality of combination patterns; and a lighting step in which each cell of a display screen is lit according to said combination pattern of sub-frames.
- 77. An intraframe time-division multiplexing type display method in which one frame is divided into a plurality of sub-frames, sub-frames during which light is irradiated are combined with sub-frames during which no light is irradiated in order to render a gray-scale image, and a plurality of combination patterns of said sub-frames can be used to render the same gray-scale level, comprising:a gray-scale pattern setting step for determining a combination pattern of sub-frames; and a lighting step in which each cell of a display screen is lit according to said combination pattern of sub-frames, wherein a plurality of modes each of which defines patterns of sub-frames in one-to-one correspondence with gray-scale levels, it is predetermined in which of said plurality of modes each cell is lit, and a combination pattern of sub-frames is determined according to a mode associated with a cell.
- 78. An intraframe time-division multiplexing type display device comprising a display screen having a plurality of cells in which an individual frame is divided into a plurality of sub-frames and sub-frames thereof during which light is irradiated are combined with sub-frames thereof during which no light is irradiated in order to render a gray-scale image,wherein a plurality of modes respectively define patterns of sub-frames to be lit in order to render each gray-scale level, it is predetermined in which of said plurality of modes each cell is lit, and a gray-scale image is displayed by respectively lighting each cell according to the predetermined mode.
- 79. An intraframe time-division multiplexing type display device according to claim 78, wherein cells among said plurality of cells belonging to the same address line on said display screen are set to the same mode, and said plurality of cells are set alternately to said first mode and second mode in units of a scan line.
- 80. An intraframe time-division multiplexing type display device according to claim 78, wherein cells among said plurality of cells belonging to the same scan line on said display screen are set to the same mode, and said plurality of cells are set alternately to said first mode and second mode in units of an address line.
- 81. An intraframe time-division multiplexing type display device according to claim 78, wherein said plurality of cells are set alternately to said first mode and second mode in units of a scan line and address line on said display screen, and cells set to said first mode and second mode are arranged in a zigzag form.
- 82. An intraframe time-division multiplexing type display device according to claim 78, wherein said plurality of cells set to said first mode and second mode are arranged at random.
- 83. An intraframe time-division multiplexing type display device according to claim 78, wherein said cells are set alternately to said first mode and second mode synchronously with a frame.
- 84. An intraframe time-division multiplexing type display device according to claim 78, wherein said cells are set at random to said first mode and second mode synchronously with a frame.
- 85. A driving method driving an intraframe time-division multiplexing type display device including a display screen having a plurality of cells in which an individual frame is divided into a plurality of sub-frames and sub-frames thereof during which light is irradiated are combined with sub-frames thereof during which no light is irradiated in order to render a gray-scale image, comprising:judging whether or not display data should be displayed in combination with display data corresponding to an adjoining frame; and displaying a bit, which is judged to be displayed in combination with display data corresponding to an adjoining frame, during a corresponding sub-frame within the adjoining frame.
- 86. A driving method driving an intraframe time-division multiplexing type display device including a display screen composed of a plurality of cells in which an individual frame is divided into a plurality of sub-frames and sub-frames thereof during which light is irradiated are combined with sub-frames thereof during which no light is irradiated in order to render a gray-scale image, comprising:a plurality of modes respectively defining patterns of sub-frames to be lit in order to render each gray-scale level; and a gray-scale image being displayed by respectively lighting each cell according to one of said plurality of modes.
Priority Claims (3)
Number |
Date |
Country |
Kind |
6-014421 |
Feb 1994 |
JP |
|
6-264244 |
Oct 1994 |
JP |
|
7-216120 |
Aug 1995 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
This application is a divisional application of Ser. No. 08/702,064 filed Aug. 23, 1996, which in turn, is a continuation-in-part application of Ser. No. 08/368,002 filed Jan. 3, 1995 now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (6)
Number |
Date |
Country |
1-200396 |
Aug 1989 |
JP |
3-145691 |
Jun 1991 |
JP |
4-127194 |
Apr 1992 |
JP |
6-010991 |
Feb 1994 |
JP |
7-248743 |
Sep 1995 |
JP |
7-271325 |
Oct 1995 |
JP |
Non-Patent Literature Citations (1)
Entry |
Makino et al., “Improvement of Video Image Quality of AC-Plasma Display Panels by Suppressing the Unfavorable Coloration Effect with Sufficient Gray Shades Capability,” Proceedings of the Fifteenth International Display Research Conference, Oct. 16-18, 1995, Hamamatsu, Japan pp. 381-384. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08/368002 |
Jan 1995 |
US |
Child |
08/702064 |
|
US |