Claims
- 1. A display apparatus comprising:
- a display panel having a matrix electrode structure in which pixel regions are formed by intersection portions of scan electrodes and data electrodes and non-pixel regions are formed by non-intersection portions;
- drive means for applying scan signals to the scan electrodes and applying data signals to the data electrodes in synchronization with the scan signals;
- drive voltage generating means for supplying drive voltage to said drive means;
- a power supply source for supplying power to said drive voltage generating means;
- switching means for switching ON/OFF the electrical connection between said drive voltage generating means and said power supply source;
- detection means for detecting whether or not said switching means has been switched on and generating a detection signal in response to the detection; and
- control means for, in response to receipt of the detection signal, controlling said drive means so as to apply a constant voltage V.sub.c to the scan electrodes and apply, to the data electrodes, a signal voltage of a level sufficiently high to cause the non-pixel regions to achieve a uniform optical state, at a period for interrupting a writing operation of the pixel regions by said drive means and after said writing operation.
- 2. A display apparatus according to claim 1 further comprising means for setting the uniform optical state of the non-pixel regions to a dark state.
- 3. A display apparatus according to claim 1, wherein liquid crystal is enclosed among the scan electrodes and the data electrodes.
- 4. A display apparatus according to claim 3, wherein the liquid crystal is ferroelectric liquid crystal.
- 5. A display apparatus comprising:
- a display panel having a matrix electrode structure in which pixel regions are formed by intersection portions of scan electrodes and data electrodes and non-pixel regions are formed by non-intersection portions;
- drive means for applying scan signals to the scan electrodes and applying data signals to the data electrodes in synchronization with the scan signals;
- drive voltage generating means for supplying drive voltage to said drive means;
- a power supply source for supplying power to said drive voltage generating means;
- switching means for switching ON/OFF the electrical connection between said drive voltage generating means and said power supply source;
- detection means for detecting whether or not said switching means has been switched on and generating a detection signal in response to the detection; and
- control means for, in response to receipt of the detection signal, controlling said drive means so as to apply a constant voltage V.sub.c to the scan electrodes and apply, to the data electrodes, a signal voltage of a level sufficiently high to cause the non-pixel regions to achieve a uniform optical state, at a period for interrupting a writing operation of the pixel regions by said drive means and after said writing operation.
- 6. A display apparatus according to claim 5 further comprising means for setting the uniform optical state of the non-pixel regions to a dark state.
- 7. A display apparatus according to claim 5, wherein liquid crystal is enclosed among the scan electrodes and the data electrodes.
- 8. A display apparatus according to claim 7, wherein the liquid crystal is ferroelectric liquid crystal.
- 9. A display apparatus comprising:
- a display panel having a matrix electrode structure in which pixel regions are formed by intersection portions of scan electrodes and data electrodes and non-pixel regions are formed by non-intersection portions;
- drive means for applying scan signals to the scan electrodes and applying data signals to the data electrodes in synchronization with the scan signals;
- drive voltage generating means for supplying drive voltage to said drive means;
- a power supply source for supplying power to said drive voltage generating means;
- switching means for switching ON/OFF the electrical connection between said drive voltage generating means and said power supply source; and
- control means for controlling said drive means to write data onto the pixel regions after said switching means has been switched on, to interrupt, in accordance with receipt of a signal for interrupting the writing operation when said control means has received, during the writing operation, the signal for interrupting the writing operation and to apply a constant voltage V.sub.c to the scan electrodes and apply, to the data electrodes, a signal voltage of a level sufficiently high to cause the non-pixel regions to achieve a uniform optical state.
- 10. A display apparatus according to claim 9 further comprising means for setting the uniform optical state of the non-pixel regions to a dark state.
- 11. A display apparatus according to claim 9, wherein liquid crystal is enclosed among the scan electrodes and the data electrodes.
- 12. A display apparatus according to claim 11, wherein the liquid crystal is ferroelectric liquid crystal.
- 13. A display apparatus comprising:
- a display panel having a matrix electrode structure in which pixel regions are formed by intersection portions of scan electrodes and data electrodes and non-pixel regions are formed by non-intersection portions;
- drive means for applying scan signals to the scan electrodes and applying data signals to the data electrodes in synchronization with the scan signals;
- drive voltage generating means for supplying drive voltage to said drive means;
- a power supply source for supplying power to said drive voltage generating means;
- switching means for switching ON/OFF the electrical connection between said drive voltage generating means and said power supply source;
- detection means for detecting whether or not said switching means has been switched on and generating a detection signal in response to the detection;
- illumination means for illuminating said display panel from a rear position; and
- control means for, in response to receipt of the detection signal, controlling said drive means so as to apply a constant voltage V.sub.c to the scan electrodes and apply, to the data electrodes, a signal voltage of a level sufficiently high to cause the non-pixel regions to achieve a uniform optical state, at a period for interrupting a writing operation of the pixel regions by said drive means and before said writing operation, said control means further controlling said illumination means so as to be lit off at the period for interrupting said writing operation of the pixel regions and before said writing operation.
- 14. A display apparatus according to claim 13 further comprising means for setting the uniform optical state of the non-pixel regions to a dark state.
- 15. A display apparatus according to claim 13, wherein liquid crystal is enclosed among the scan electrodes and the data electrodes.
- 16. A display according to claim 15, wherein the liquid crystal is ferroelectric liquid crystal.
- 17. A display apparatus comprising:
- a display panel having a matrix electrode structure in which pixel regions are formed by intersection portions of scan electrodes and data electrodes and non-pixel regions are formed by non-intersection portions;
- drive means for applying scan signals to the scan electrodes and applying data signals to the data electrodes in synchronization with the scan signals;
- drive voltage generating means for supplying drive voltage to said drive means;
- a power supply source for supplying power to said drive voltage generating means;
- switching means for switching ON/OFF the electrical connection between said drive voltage generating means and said power supply source;
- detection means for detecting whether or not said switching means has been switched on and generating a detection signal in response to the detection;
- illumination means for illuminating said display panel from a rear position; and
- control means for, in response to receipt of the detection signal, controlling said drive means so as to apply a constant voltage V.sub.c to the scan electrodes and apply, to the data electrodes, a signal voltage of a level sufficiently high to cause the non-pixel regions to achieve a uniform optical state, at a period for interrupting a writing operation of the pixel regions by said drive means and after said writing operation, said control means further controlling said illumination means so as to be lit off at the period for interrupting a writing operation of the pixel regions and before the writing operation.
- 18. A display apparatus according to claim 17 further comprising means for setting the uniform optical state of the non-pixel regions to a dark state.
- 19. A display apparatus according to claim 17, wherein liquid crystal is enclosed among the scan electrodes and the data electrodes.
- 20. A display apparatus according to claim 19, wherein the liquid crystal is ferroelectric liquid crystal.
- 21. A display apparatus comprising:
- a display panel having a matrix electrode structure in which pixel regions are formed by intersection portions of scan electrodes and data electrodes and non-pixel regions are formed by non-intersection portions;
- drive means for applying scan signals to the scan electrodes and applying data signals to the data electrodes in synchronization with the scan signals;
- drive voltage generating means for supplying drive voltage to said drive means;
- a power supply source for supplying power to said drive voltage generating means;
- switching means for switching ON/OFF the electrical connection between drive voltage generating means and said power supply source;
- illumination means for illuminating said display panel from a rear position; and
- control means for controlling said drive means to write data onto the pixel regions after said switching means has been switched on, to interrupt, in accordance with receipt of a signal for interrupting the writing operation when said control means has received, during the writing operation, the signal for interrupting the writing operation and to apply a constant voltage V.sub.c to the scan electrodes and apply, to the data electrodes, a signal voltage of a level sufficiently high to cause the non-pixel regions to achieve a uniform optical state, said control means further controlling said illumination means to be lit off before the signal voltage is applied to the matrix electrode structure.
- 22. An apparatus according to claim 21 further comprising means for setting the uniform optical state of the non-pixel regions to a dark state.
- 23. An apparatus according to claim 21, wherein liquid crystal is enclosed among the scan electrodes and the data electrodes.
- 24. An apparatus according to claim 23, wherein the liquid crystal is ferroelectric liquid crystal.
Priority Claims (3)
Number |
Date |
Country |
Kind |
4-331065 |
Nov 1992 |
JPX |
|
4-352175 |
Dec 1992 |
JPX |
|
4-354847 |
Dec 1992 |
JPX |
|
Parent Case Info
This application is a continuation of Application Ser. No. 08/152,022 filed Nov. 15, 1993, now abandoned.
US Referenced Citations (15)
Foreign Referenced Citations (1)
Number |
Date |
Country |
404138417 |
May 1992 |
JPX |
Non-Patent Literature Citations (2)
Entry |
Hinotani, K., Flat Fluorescent Lamp for LCD Back-Light, 1988 International Display Research Conference, pp. 52-55. |
Y. Gohara et al., "A 1280.times.1280 Matrix-Addressed FLC Light Valve for the Image Projection Display," SID International Symposium Digest of Technical Papers, pp. 257-260 (1991). |
Continuations (1)
|
Number |
Date |
Country |
Parent |
152022 |
Nov 1993 |
|