Claims
- 1. An active matrix type display including a plurality of pixels arranged in a matrix, said display controlling display of said pixels at every pixel, said display comprising:
a plurality of gate lines extending in row directions, said gate lines transmitting gate voltages; a plurality of data lines extending in column directions, said data lines transmitting video voltages; switching elements arranged correspondingly to intersection points of said gate lines and said data lines; pixel electrodes connected to said data lines through said switching elements; a plurality of first and second supplementary capacity lines extending in the row directions correspondingly to each line of said pixel electrodes; and a supplementary capacity electrode arranged to be superposed on any one of said first and said second supplementary capacity lines at each pixel.
- 2. The display according to claim 1, wherein said first and said second supplementary capacity lines receive a first and a second supplementary capacity voltages opposite in phase to each other, said voltages changing during off periods of said switching elements.
- 3. The display according to claim 1, wherein a fixed voltage is applied to an opposite electrode formed on an opposite substrate opposed to a substrate including said pixel electrodes formed thereon, and said first and said second supplementary capacity lines receive a first and a second supplementary capacity voltages opposite in phase to each other, said voltages changing during off periods of said switching elements.
- 4. The display according to claim 1, wherein said supplementary capacity electrode at each pixel is alternately superposed on any one of said first and said second supplementary capacity lines for every row of said pixels as a unit.
- 5. The display according to claim 1, wherein said supplementary capacity electrode of each pixel is alternately superposed on any one of said first and said second supplementary capacity lines for every predetermined plural number of continuous rows of said pixels as a unit.
- 6. The display according to claim 1, wherein said first and said second supplementary capacity lines are superposed on all of said supplementary capacity electrodes arranged correspondingly to each row of said pixels at which said first and said second supplementary capacity lines are formed.
- 7. The display according to claim 6, wherein said supplementary capacity electrodes form supplementary capacities with one group of said first and said second supplementary capacity lines, and said supplementary capacity electrodes include dummy wiring superposed on the other group of said first and said second supplementary capacity lines, which do not form said supplementary capacities.
- 8. The display according to claim 1, wherein said gate lines are arranged between said first and said second supplementary capacity lines in pixel regions in which said pixel electrodes are formed.
- 9. The display according to claim 8, wherein said gate lines includes gate electrodes constituting said switching elements, said gate electrodes formed from said gate lines as boundary lines in regions in which said supplementary capacity electrodes are arranged.
- 10. An active matrix type display including a plurality of pixels arranged in a matrix, said display controlling display of said pixels by every pixel, said display comprising:
a plurality of pixel electrodes arranged in a matrix on a first substrate; switching elements severally connected to said pixel electrodes; first or second supplementary capacity electrode arranged severally at every pixel region in which said pixel electrodes are arranged; a first and a second supplementary capacity lines arranged correspondingly to each row of said pixel electrodes; and a first and a second supplementary capacities composed of any one of said first and said second supplementary capacity lines and said first and said second supplementary capacity electrodes superposed on said one of said first and said second supplementary capacity lines, wherein said display performs display by applying either of a first video signal voltage having a polarity inverting at every frame period and a second video signal voltage having a polarity inverse to said polarity of said first video signal voltage to said pixel electrodes and said first and said second supplementary capacity electrodes, and said display supplies a first and a second supplementary capacity voltages to said first and said second supplementary capacity lines, said supplementary capacity voltages changing in level during periods in which said switching elements are turned off.
- 11. The display according to claim 10, wherein said display supplies said first video signal voltage to said first supplementary capacity electrodes and said display supplies said second video signal voltage to said second supplementary capacity electrodes during periods in which said switching elements are turned on, and
a level of said first supplementary capacity voltage supplied to said first supplementary capacity lines changes to have a polarity same as that of said first video signal voltage, and a level of said second supplementary capacity voltage supplied to said second supplementary capacity lines changes to the same polarity as that of said second video signal voltage during periods in which said switching elements are turned off.
- 12. The display according to claim 10, wherein said display supplies said first video signal voltage to said first supplementary capacity electrodes, said display supplies said first supplementary capacity voltage having a polarity inverse to that of said video signal voltage to said first supplementary capacity lines, said display supplies said second video signal voltage to said second supplementary capacity electrodes, and said display supplies said second supplementary capacity voltage having a polarity inverse to that of said second video signal voltage to said second supplementary capacity lines during periods in which said switching elements are turned on, and
a level of said first supplementary capacity voltage changes to the same polarity as said first video signal voltage, and a level of said second supplementary capacity voltage changes to the polarity of said second video signal voltage during periods in which said switching elements are turned off.
- 13. The display according to claim 10, said display further comprising a common electrode arranged on a second substrate, wherein a fixed voltage is applied to said common electrode.
- 14. The display according to claim 10, wherein levels of said first and said second supplementary capacity voltages are changed immediately after said switching elements are turned off during periods in which said switching elements are off.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of the date of the earlier filed provisional application, having U.S. Provisional Application No. 60/435,826, filed on Dec. 20, 2002, which is incorporated herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60435826 |
Dec 2002 |
US |