Claims
- 1. A method of driving an electroluminescent display panel including an electroluminescent layer disposed between a group of scanning electrodes and a group of data electrodes, a plurality of pixels being defined by the intersections of said scanning electrodes and said data electrodes comprising:
- (a) applying a first voltage pulse of a first polarity to selected pixels of a first scanning electrode line or a group of scanning electrode lines;
- (b) applying a second voltage pulse, juxtaposed in time to said first voltage pulse and of a second polarity opposite to said first polarity, to selected pixels of a second scanning electrode line or a group of scanning electrode lines substantially adjacent to said first scanning electrode line or group of scanning electrode lines to thereby mask perceived display flicker.
- 2. A method of driving an electroluminescent display panel including an electroluminescent layer disposed between a group of scanning electrodes and a group of data electrodes, a plurality of pixels being defined by the intersections of said scanning electrodes and said data electrodes, said scanning electrodes being arranged in alternating even and odd groups, comprising:
- (a) applying a first voltage pulse of a first polarity to selected pixels of an odd scanning electrode line;
- (b) applying a second voltage pulse, juxtaposed in time to said first voltage pulse and of a second polarity opposite to said first polarity, to selected pixels of an even scanning electrode line adjacent to said odd scanning electrode line;
- repeating said steps of (a) and (b) to successive odd and even scanning electrode lines until said first and second voltage pulses have been applied to all selected pixels of each scanning electrode line.
- 3. A method as recited in claim 2 further comprising the steps of:
- (c) applying a pulse having said second voltage to selected pixels of each odd scanning electrode line;
- (d) applying a pulse having said first voltage and being juxtaposed in time to said pulse having said second voltage to selected pixels of an even scanning electrode line adjacent to said odd scanning electrode line;
- repeating said steps of (c) and (d) to successive odd and even scanning lines until said pulses of said first and second voltages have been applied to all selected pixels of each scanning electrode line.
- 4. A method as recited in claim 3, wherein said steps of applying a pulse having a first voltage include,
- precharging all said pixels with a precharge voltage;
- discharging all said pixels associated with non-selected data electrodes while applying a pull-up voltage to leave only those pixels associated with a selected data electrode charged; and
- applying a first writing pulse of said first polarity to said scanning electrodes of one of said odd or even groups to which said selected pixels are not associated, a selected scanning lines associated with said selected pixels being grounded, said applied voltage pulling up said one of said groups of scanning electrodes to form said first writing pulse when superimposed on said precharge voltage remaining in said selected data electrode.
- 5. A method, as recited in claim 4, wherein said steps of applying a pulse having a second voltage include,
- precharging all said pixels with a precharge voltage;
- discharging all said pixels associated with a selected data electrode while applying a pull-up voltage to leave only those pixels associated with non-selected data electrodes charged;
- applying a second writing pulse of said second polarity to said selected pixels by applying a voltage directly to said scanning electrodes of one of said odd or even groups to which said selected pixels are associated while applying a source potential voltage to said other group of said odd or even groups, a net voltage being applied to said pixels.
- 6. A drive system for a thin-film electroluminescent (EL) matrix display panel comprising:
- data side electrodes formed on one major surface of the thin-film electroluminescent (EL) matrix display panel substantially along a first direction;
- scanning side electrodes formed on the opposing major surface of said thin-film electroluminescent (EL) matrix display panel in a second direction substantially perpendicular to said first direction, said scanning side electrodes being alternately divided into odd number scanning electrodes and even number scanning electodes;
- a pull-up charge driving circuit;
- a precharge driving circuit;
- a write driving circuit for providing a first and a second write pulse;
- a source level switching circuit;
- an odd side first type channel high voltage MOS driver connected to said odd number scanning electodes at one end thereof, the other end of said odd side first type channel high voltage MOS driver being connected to said source level switching circuit;
- an odd side second type channel high voltage MOS driver connected to said odd number scanning electrodes at one end thereof, the other end of said odd side second type channel high voltage MOS driver being connected to said pull-up charge driving circuit and said write driving circuit;
- an even side first type channel high voltage MOS driver connected to said even number scanning electrodes at one end thereof, the other end of said even side first type channel high voltage MOS driver being connected to said source level switching circuit;
- an even side second type channel high voltage MOS driver connected to said even number scanning electrodes at one end thereof, the other end of said even side second type channel high voltage MOS driver being connected to said pull-up charge driving circuit and said write driving circuit; and
- a data side first type channel high voltage MOS driver connected to said data side electrodes at one end thereof, the other end of said data side first type channel high voltage MOS driver being connected to a ground level;
- switching means for sequentially switching between a first and second driving field;
- said odd side second type channel MOS driver providing said first write pulse to said odd number scanning electrodes when an even number scanning electrode is selected in said first driving field and providing said second write pulse to a selected odd number scanning electrode when in said second driving field;
- said even-side second type channel MOS driver providing said first write pulse to said even number scanning electrodes when an odd number scanning electrode is selected in said first driving field and providing said second write pulse to a second even number scanning electrode in said second driving field;
- said first write pulse provided being of a polarity opposite to said second write pulse in the time juxtaposed application of said first and second write pulses to adjacent scanning side electrodes reducing perceptible display flicker.
- 7. The method of claim 1 wherein each said scanning line of said pixels is driven by an alternating voltage of said first and second pixels.
- 8. A method of driving an electroluminescent matrix display panel having a plurality of pixels arranged in odd and even scan lines, comprising:
- (a) driving pixels of said even scan lines with a first alternating voltage waveform having first and second pulses of opposite voltage polarity;
- (b) driving pixels of said odd scan lines with a second alternating voltage waveform having said first and second pulses of opposite voltage polarity;
- said steps (a) and (b) of driving a said second pulse of said second alternating voltage waveform to each said odd scan line adjacent a said even scan line juxtaposed in time with the application of a said first pulse of said first alternating voltage waveform and applying a said first pulse of said second alternating voltage waveform to each said odd scan line adjacent a said even scan line juxtaposed in time with the application of a said second pulse of said first alternating waveform thereby masking perceived display flicker.
- 9. The method of claim 3 wherein said steps (a) and (b) of applying develop a series of first frame pulses and said steps (c) and (d) of applying develop a series of second frame pulses;
- the first frame pulses and second frame pulses of each said scanning electrode line having a constant phase difference therebetween.
- 10. A drive system for an electroluminescent (EL) matrix display panel comprising:
- a plurality of data electrodes formed on a first major surface of said matrix display panel and generally extending in a first direction;
- a plurality of scanning electrodes formed on a second major surface of said matrix display panel in a direction orthagonal to said first direction, said scanning electrodes being arranged in odd and even scanning electrode groups having their electrodes alternately arranged on said second major surface;
- said first and second major surfaces of said matrix display panel being separated by an electroluminescent material, said scanning electrodes and said data electrodes intersecting to form picture elements at each of the intersections therebetween;
- scanning drive means connected to said scanning electrodes for sequentially supplying said scanning electrodes with write voltage pulses, said drive means driving said odd and even scanning electrodes in first and second fields, said odd scanning electrodes being driven with a positive write voltage during the first field and a negative write voltage during the second field;
- data drive means connected to said data electrodes for selectively charging or discharging each said data electrode with a modulation voltage to selectively develop a net voltage between a said scanning electrode supplied a write voltage and each said selected data side electrode to selectively color the picture elements formed at the intersections thereof;
- the application of a positive write voltage and a negative write voltage to alternate scanned electrodes in each frame reducing perceptible display flicker.
- 11. The drive system of claim 10, wherein said modulation voltage is applied to a said data electrode associated with a picture element simultaneous to the application of a said write voltage pulse to said picture element.
- 12. The drive system of claim 10, wherein said scanning drive means includes,
- an odd side first type channel high voltage driver connected to said odd scanning electrodes for applying positive write voltage thereto,
- an odd side second type channel high voltage driver connected to said even scanning electrodes for applying negative write voltage thereto,
- an even side first type channel high voltage drive connected to said even scanning electodes for applying positive write voltages thereto; and
- an even side second type channel high voltage driver connected to said odd scanning electrodes for applying negative write voltages thereto.
Priority Claims (1)
Number |
Date |
Country |
Kind |
59-105375 |
May 1984 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 06/737,068 filed on May 23, 1985, now abandoned.
US Referenced Citations (5)
Continuations (1)
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Number |
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737068 |
May 1985 |
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