Claims
- 1. A method of driving an antiferroelectric liquid crystal display having a pair of substrates and an antiferroelectric liquid crystal material held between the substrates, comprising the steps of:providing a scan period for driving the antiferroelectric liquid crystal display, the scan period comprised of a selected period for selecting a stable state of the antiferroelectric liquid crystal and an unselected period for maintaining the stable state of the antiferrolectric liquid crystal, modulating a select pulse during said selected period to select said stable state, and changing an amount of light transmittance from the start to the end of said unselected period gradually, thereby to display gradations.
- 2. A method of driving an antiferroelectric liquid crystal display having a pair of substrates, an antiferroelectric liquid crystal material held between the substrates and forming a matrix of cells serving as pixels, comprising the steps of:providing a plurality of scan periods for driving the antiferroelectric liquid crystal display, the scan periods consisting of a selected period and an unselected period, providing during each selected period a select pulse for selecting a stable state and an auxiliary gradation pulse following just after the select pulse, maintaining substantially uniform the duration of each selected period in which the select pulse and auxiliary pulse occur, and modulating said auxiliary gradation pulse to control a change of amount of light transmittance of the antiferroelectric liquid crystal display during the entire unselected period to display gradations.
- 3. A method of driving an antiferroelectric liquid crystal display according to claim 2, wherein the step of providing an auxiliary gradation pulse includes providing said auxiliary gradation pulse with a polarity opposite to the polarity of said select pulse.
- 4. A method of driving an antiferroelectric liquid crystal display having a pair of substrates, an antiferroelectric liquid crystal material held between the substrates and forming a matrix of cells serving as pixels, scan electrodes formed on one of the substrates, signal electrodes formed on the other substrate and facing the scan electrodes, and two polarizer plates to hold the substrates between them, the polarization axes of the polarizer plates being orthogonal to each other, the major axis of an average molecule of the liquid crystal material being substantially in parallel with the polarization axis of one of the polarizer plates, comprising the steps of:providing a plurality of time frames for driving the display, each of the plurality of time frames having at least two scan periods, and each of the scan periods consisting of a selected period and an unselected period, providing during each selected period a select pulse for selecting a stable state and an auxiliary gradation pulse following just after the select pulse, maintaining substantially uniform the duration of each selected period in which the select pulse and auxiliary pulse occur, and modulating said auxiliary gradation pulse to control a change of amount of light transmittance of the antiferroelectric liquid crystal display during the entire unselected period to display gradations.
- 5. A method of driving an antiferroelectric liquid crystal display according to claim 4, wherein the step of providing an auxiliary gradation pulse includes providing said auxiliary gradation pulse with a polarity opposite to the polarity of said select pulse.
- 6. A method of driving an antiferroelectric liquid crystal display having a pair of substrates and an antiferroelectric liquid crystal material held between the substrates, comprising the steps of:providing a plurality of scan periods for driving the antiferroelectric liquid crystal display, each scan period including a selected period and an unselected period, providing during each selected period a selected pulse for selecting a stable state and an auxiliary pulse following just after the select pulse, maintaining substantially uniform the duration of each selected period in which the select pulse and auxiliary pulse occur, and modulating said select pulse and auxiliary pulse to control a change of amount of light transmittance of the antiferroelectric liquid crystal display during the entire unselected period to display gradations.
- 7. A method of driving an antiferroelectric liquid crystal display according to claim 6, wherein the step of providing an auxiliary pulse includes providing said auxiliary pulse with a polarity opposite to the polarity of said select pulse.
- 8. A method of driving an antiferroelectric liquid crystal display having a pair of substrates and an antiferroelectric liquid crystal material held between the substrates, comprising the steps of:providing a plurality of scan periods for driving the antiferroelectric liquid crystal display, the scan periods consisting of a selected period and an unselected period, providing during each selected period a select pulse for selecting a stable state and an auxiliary gradation pulse following just after the select pulse, maintaining substantially uniform the duration of each selected period in which the select pulse and auxiliary pulse occur, and modulating said auxiliary gradation pulse during the scan periods to control a change of amount of light transmittance of the antiferroelectric liquid crystal display during the entire unselected period to display gradations.
- 9. A method of driving an antiferroelectric liquid crystal display according to claim 8, wherein the step of providing an auxiliary gradation pulse includes providing said auxiliary gradation pulse with a polarity opposite to the polarity of said select pulse.
Parent Case Info
This is a division of application Ser. No. 08/484,906, filed Jun. 7, 1995, now U.S. Pat. No. 5,973,659.
US Referenced Citations (3)
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