Claims
- 1. A plasma display panel driving system for a display panel having a first common electrode arranged at a back plate side, first independent electrodes arranged to extend parallel to and alternately with portions of said first common electrode at the back plate side, a second common electrode arranged at a face plate side and having portions extending transversely to said portions of said first common electrode and said first independent electrodes arranged at the back plate side, second independent electrodes arranged to extend parallel to and alternately with said portions of said second common electrode at the face plate side, an inner partition positioned between said first common and first independent electrodes at the back plate side and said second common and second electrodes at the face plate side and having an aperture therein connecting a space at the back plate side and a space at the face plate side, and a fluorescent layer arranged in said space at the face plate side, said driving system comprising a driver for driving said first and second independent and common electrodes through a full writing period, a front surface erasing period, a writing period, and a discharge sustaining period, said driver including means for supplying a first full writing pulse to said first common electrode at the back plate side and for supplying a second full writing pulse having a polarity which is opposite to the polarity of said first full writing pulse to said first independent electrodes at the back plate side for causing discharge between said first common electrode and said first independent electrodes in the full writing period.
- 2. A plasma display panel driving system according to claim 1, wherein said driver effects driving for a period comprised of a plurality of sub-field periods, wherein each sub-field period includes the full writing period, the front surface erasing period, the writing period and the discharge sustaining period.
- 3. A plasma display panel driving system according to claim 2, wherein the period comprised of the plurality of sub-fields is one field period for display of one image.
- 4. A plasma display panel driving system according to the claim 1, wherein said aperture is provided at the point of intersection of one of said first independent electrodes at the back plate side and one of said second independent electrodes at the face plate side.
- 5. A plasma display panel driving system according to the claim 1, wherein said driver further includes a generator for supplying a protecting pulse to said second independent electrodes at the face plate side during the full writing period.
- 6. A plasma display panel driving system according to claim 5, wherein said driver further includes another generator for supplying another protecting pulse to said second common electrode at the face plate side during the full writing period.
- 7. A plasma display panel driving system according to the claim 1, wherein said driver further includes at least one protection pulse generator for supplying at least one protecting pulse having a polarity which is the same as an initial polarity of a pulse supplied to said first independent electrodes at the back plate side to said second independent electrodes at the face plate side during the full writing period for preventing discharges between said first and second independent electrodes at the back plate side and the face plate side, respectively, and between said first independent electrode at the back plate side and said second common electrode at the face plate side.
- 8. A plasma display panel driving system according to the claim 7, further comprising another protection pulse generator for supplying another protection pulse of the same polarity and the same timing as the at least one protection pulse to said second common electrode at the face plate side.
- 9. A plasma display panel driving system according to any one of claims 5, 6, 7 or 8, wherein said second full writing pulse has a first edge and a second edge substantially delimiting the width thereof, and said at least one protecting pulse has a first edge starting before the first edge of said second full writing pulse and has a second edge ending after the second edge of said second full writing pulse.
- 10. A plasma display panel driving system according to claim 9, wherein an interval between said first edge of said at least one protecting pulse and said first edge of said second full writing pulse is at least 10 μsec, and an interval between said second edge of said second full writing pulse and said second edge of said at least one protecting pulse is at least 10 μsec.
- 11. A plasma display panel driving system according to claim 1, wherein said driver further includes a generator for supplying a short erase pulse to at least one of said second independent electrodes at the face plate side during the front surface erasing period after said full writing period.
- 12. A plasma display panel driving system according to claim 11, wherein said driver further includes a generator for supplying a short erase pulse to said second common electrode at the face plate side during the front surface erasing period after said full writing period.
- 13. A plasma display panel driving system according to claim 12, wherein said short erase pulse applied to one of said at least one second independent electrodes and said second common electrode has a pulse width narrower than a pulse width of said short erase pulse applied to the other of said at least one second independent electrodes and said second common electrode.
- 14. A plasma display panel driving system according to claim 1, wherein said driver further comprises at least one writing pulse generator for supplying a first writing pulse having a pulse width of 1 μsec to 4 μsec to said first independent electrodes at the back plate side and for supplying a second writing pulse having the same pulse width and opposite polarity as said first writing pulse to said second independent electrodes at the face plate side for performing writing discharging between said first and second independent electrodes, and means for maintaining said second common electrode at the face plate side at a high voltage at least during application of said first and second writing pulses.
- 15. A plasma display panel driving system according to claim 1, wherein said driver further includes means for supplying at least one pulse to at least one of said second independent electrodes and said second common electrode during said discharge sustaining period after said writing period.
- 16. A plasma display panel driving system for a display panel having a first common electrode arranged at a back plate side, first independent electrodes arranged to extend parallel to and alternately with portions of said first common electrode at the back plate side, a second common electrode arranged at a face plate side and having portions extending transversely to said portions of said first common electrode and said first independent electrodes arranged at the back plate side, second independent electrodes arranged to extend parallel to and alternately with said portions of said second common electrode at the face plate side, an inner partition positioned between said first common and first independent electrodes at the back plate side and said second common and second electrodes at the face plate side and having an aperture therein connecting a space at the back plate side and a space at the face plate side, and a fluorescent layer arranged in said space at the face plate side, said driving system comprising:driving means for driving said first and second common and independent electrodes through a full writing period, a front surface erasing period, a writing period, and a discharge sustaining period in each sub-field period of one field period for display of one image, said driving means including; first means for supplying a first full writing pulse to said first common electrode at the back plate side and for supplying a second full writing pulse having a polarity which is opposite to said first full writing pulse to said first independent electrodes at the back plate side for causing discharge between said first common electrode and said first independent electrodes in the full writing period; second means for supplying at least one protecting pulse during the full writing period; third means for supplying at least one short erase pulse during the front surface erasing period; fourth means for supplying at least one writing pulse during the writing period; and fifth means for supplying at least one discharge sustaining pulse during the discharge sustaining pulse; wherein said first means supplies said first full writing pulse to said common electrode at the back plate side, said first means and said fourth means supply said second full writing pulse and said writing pulse to said first independent electrodes at the back plate side, said second means and said third means supply said at least one protecting pulse, said at least at least one short erase pulse and said at least one discharge sustaining pulse to said second independent electrodes at the face plate side, and said second means and said third means supply said at least one protecting pulse, said at least one erasing pulse and said at least one discharge sustaining pulse to said second common electrode at the face plate side.
- 17. A plasma display panel driving system according to claim 16, wherein said driving means further includes sixth means for maintaining said second common electrode at the face plate side at a high voltage at least during application of the at least one writing pulse in the writing period.
- 18. A plasma display panel driving method for a display panel having a first common electrode arranged at a back plate side, first independent electrodes arranged to extend parallel to and alternately with portions of said first common electrode at the back plate side, second common electrode arranged at a face plate side and having portions extending transversely to said first common and first independent electrodes arranged at the back plate side, a second independent electrodes arranged to extend parallel to and alternately with said portions of said second common electrode at the face plate side, an inner partition positioned between said first common and first independent electrodes at the back plate side and said second common and said second independent electrodes at the face plate side and having an aperture therein connecting a space at the back plate side and a space at the face plate side, and a fluorescent layer arranged in said space at the face plate side, said driving method comprising the steps of driving said first and second independent and common electrodes through a full writing period, a front surface erasing period, a writing period, and a discharge sustaining period including supplying a first full writing pulse to said first common electrode at the back plate side and supplying a second full writing pulse having a polarity which is opposite to the polarity of said first full writing pulse to said first independent electrodes at the back plate side for causing discharge between said first common electrode and said first independent electrodes in the full writing period.
- 19. A plasma display panel driving method according to the claim 18, further comprising the step of supplying a protecting pulse to said second independent electrodes at the face plate side during the full writing period.
- 20. A plasma display panel driving method according to the claim 19, further comprising the step of supplying another protecting pulse to said second common electrode at the face plate side during the full writing period.
- 21. A plasma display panel driving method according to the claim 18, further comprising the steps of for supplying at least one protecting pulse having a polarity which is the same as an initial polarity of a pulse supplied to said first independent electrodes at the back plate side to said second independent electrodes at the face plate side during the full writing period for preventing discharges between said first and second independent electrodes at the back plate side and the face plate side, respectively, and between said first independent electrode at the back plate side and said second common electrode at the face plate side.
- 22. A plasma display panel driving method according to the claim 21, further comprising the step of supplying another protection pulse of the same polarity and the same timing as the at least one protection pulse to said second common electrode at the face plate side.
- 23. A plasma display panel driving method according to any one of claims 19, 20, 21 or 22, wherein said second full writing pulse has a first edge and a second edge substantially delimiting the width thereof, and said at least one protecting pulse has a first edge starting before the first edge of said second full writing pulse and has a second edge ending after the second edge of said second full writing pulse.
- 24. A plasma display panel driving system according to claim 23, wherein an interval between said first edge of said at least one protecting pulse and said first edge of said second full writing pulse is at least 10 μsec, and an interval between said second edge of said second full writing pulse and said second edge of said at least one protecting pulse is at least 10 μsec.
CROSS REFERENCE TO RELATED APPLICATION
This application is related to copending U.S. application Ser. No. 08/525,975, entitled Gas Discharge Display Panel and Method Thereof, filed by all of the inventors herein and others, on Sep. 7, 1995.
US Referenced Citations (4)