EP0444705A2

Liquid crystal element and liquid crystal apparatus using the same.

Abstract

A ferroelectric liquid crystal element comprises a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed. The substrates are provided with electrodes to which voltages are applied, and are subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal. The ferroelectric liquid crystal has an orientation state represented by the following condition. ϑ < α + δ wherein α is a pretilt angle of the ferroelectric liquid crystal, ϑ is a tilt angle, and δ is an inclination angle of an Sm*C layer. The ferroelectric liquid crystal exhibits at least two stable states in orientation. An angle ϑa, half the angle between optical axes of these two stable states, and the tilt angle ϑ of the ferroelectric liquid crystal satisfy the condition ϑ > ϑa > ϑ/2.

EP0444705A2, drawing sheet 1
Sheet 1 of 90

Term

Term ended

Projected expiry passed 1 March 2011, 15.6 years ago.

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47 claims: 33 independent, 14 dependent

  1. 1
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein    the ferroelectric liquid crystal has an orientation state represented by the following condition:ϑ ϑa > ϑ/2.
  2. 2
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein    the ferroelectric liquid crystal has an orientation state represented by the following condition:ϑ < α + δ where α is a pretilt angle of the ferroelectric liquid crystal, ϑ is a tilt angle, and δ is an inclination angle of an Sm*C layer, the ferroelectric liquid crystal exhibits at least two stable states in orientation, and a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the two stable states.
  3. 3
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltage are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein    the ferroelectric liquid crystal has an orientation state represented by the following condition:ϑ < α + δ where α is a pretilt angle of the ferroelectric liquid crystal, ϑ is a tilt angle, and δ is an inclination angle of an Sm*C layer, and the ferroelectric liquid crystal has a total of three or four stable states in orientation, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols.
  4. 5
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal can have an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state is caused by defects in an order of lightening and hairpin defects with respect to a direction in which the liquid crystal molecules float from the orientation surface by the pretilt, the ferroelectric liquid crystal in the orientation state exhibits at least two stable states, and an angle ϑa 1/2 between optical axes of these two stable states and the tilt angle ϑ of the ferroelectric liquid crystal satisfy the following condition:ϑ > ϑa > ϑ/2.
  5. 6
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal can have an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state is caused by defects in an order of lightening and hairpin defects with respect to a direction in which the liquid crystal molecules float from the orientation surface by the pretilt, the ferroelectric liquid crystal in the orientation state exhibits at least two stable states, and a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the two stable states.
  6. 7
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal can have an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state is caused by defects in an order of lightening and hairpin defects with respect to a direction in which the liquid crystal molecules float from the orientation surface by the pretilt, and the ferroelectric liquid crystal in the orientation state has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols.
  7. 9
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal can have an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state is caused by defects in an order of lightening and hairpin defects with respect to a rubbing direction, the ferroelectric liquid crystal exhibits at least two stable states in orientation, and an angle ϑa 1/2 between optical axes of these two stable states and the tilt angle ϑ of the ferroelectric liquid crystal satisfy the following condition:ϑ > ϑa > ϑ/2.
  8. 10
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal can have an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state is caused by defects in an order of lightening and hairpin defects with respect to a rubbing direction, the ferroelectric liquid crystal state exhibits at least two stable states in orientation, and a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the two stable states.
  9. 11
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal can have an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state is caused by defects in an order of lightening and hairpin defects with respect to a rubbing direction, and the ferroelectric liquid crystal in the orientation state has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols.
  10. 13
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis, orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal does not have a change in orientation accompanying defects during cooling from a high temperature of an SmA phase or the like to a temperature of an Sm*C phase, the ferroelectric liquid crystal in the orientation state has at least two stable states, and an angle ϑa 1/2 between optical axes of these two stable states and the tilt angle ϑ of the ferroelectric liquid crystal satisfy the following condition:ϑ > ϑa >ϑ/2.
  11. 14
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal does not have a change in orientation accompanying defects during cooling from a high temperature of an SmA phase or the like to a temperature of an Sm*C phase, the ferroelectric liquid crystal in the orientation state has at least two stable states, and a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the two stable states.
  12. 15
    A ferroelectric liquid crystal element comprising a ferroelectric liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the ferroelectric liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the ferroelectric liquid crystal, wherein the ferroelectric liquid crystal does not have a change in orientation accompanying defects during cooling from a high temperature of an SmA phase or the like to a temperature of an Sm*C phase, and the ferroelectric liquid crystal in the orientation state has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols.
  13. 23
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the chiral smectic liquid crystal, and the chiral smectic liquid crystal having an orientation state satisfying the following condition:ϑ ϑa > ϑ/2 in an orientation state exhibiting at least two stable states.
  14. 24
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being oriented in one axis so as to orient the chiral smectic liquid crystal, wherein    the chiral smectic liquid crystal consists of a chiral smectic liquid crystal used in a first orientation state satisfying condition T₁/T₂ ϑa > ϑ/2 where ϑa is an angle which is 1/2 an angle formed by optical axes of the two stable states, and ϑ is a tilt angle of the chiral smectic liquid crystal.
  15. 25
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the chiral smectic liquid crystal, wherein    the chiral smectic liquid crystal consists of a chiral smectic liquid crystal used in a first orientation state satisfying condition T₁/T₂ < 2.5 at the same temperature    where    T₂ is a pulse width threshold value of a portion surrounded by lightening and hairpin defects in a second orientation state, when the chiral smectic liquid crystal exhibits an orientation state surrounded by hairpin and lightening defects, the lighting and hairpin defects occurring in an order named with respect to a direction of floating of liquid crystal molecules from an orientation surface, the floating being caused by a pretilt, and    T₁ is a pulse width threshold value of a portion outside the portion surrounded by the hairpin and lightening defects in a first orientation state, the first orientation state causing the chiral smectic liquid crystal to exhibit at least two stable states, and the first orientation state satisfying a condition wherein a color formed by the first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by the second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the first and second stable states.
  16. 26
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the chiral smectic liquid crystal, wherein    the chiral smectic liquid crystal consists of a chiral smectic liquid crystal used in a first orientation state satisfying condition T₁/T₂ < 2.5 at the same temperature    where    T₂ is a pulse width threshold value of a portion surrounded by lightening and hairpin defects in a second orientation state, when the chiral smectic liquid crystal exhibits an orientation state surrounded by hairpin and lightening defects, the lighting and hairpin defects occurring in an order named with respect to a direction of floating of liquid crystal molecules from an orientation surface, the floating being caused by a pretilt, and    T₁ is a pulse width threshold value of a portion outside the portion surrounded by the hairpin and lightening defects in a first orientation state, the first orientation state satisfying a condition wherein the chiral smectic liquid crystal in the orientation state has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols, and wherein the first orientation state is set in the first and second stable states having the small transmittances corresponding to the light extinction level.
  17. 27
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the chiral smectic liquid crystal, wherein    the chiral smectic liquid crystal consists of a chiral smectic liquid crystal used in a first orientation state satisfying condition T₁/T₂ ϑa > ϑ/2.
  18. 28
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axis orientation treatment so as to orient the chiral smectic liquid crystal, wherein    the chiral smectic liquid crystal consists of a chiral smectic liquid crystal used in a first orientation state satisfying condition T₁/T₂ < 2.5 at the same temperature    where    T₂ is a pulse width threshold value of a portion surrounded by lightening and hairpin defects in a second orientation state, when the chiral smectic liquid crystal exhibits an orientation state surrounded by hairpin and lightening defects, the lighting and hairpin defects occurring in an order named with respect to a rubbing direction, and    T₁ is a pulse width threshold value of a portion outside the portion surrounded by the hairpin and lightening defects in a first orientation state, the first orientation state causing the chiral smectic liquid crystal to exhibit at least two stable states, and the first orientation state satisfying a condition wherein a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the first and second stable states.
  19. 29
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages are applied and being subjected to one axes orientation treatment so as to orient the choral smectic liquid crystal, wherein    the chiral smectic liquid crystal consists of a chiral smectic liquid crystal used in a first orientation state satisfying condition T₁/T₂ < 2.5 at the same temperature    where    T₂ is a pulse width threshold value of a portion surrounded by lightening and hairpin defects in a second orientation state, when the chiral smectic liquid crystal exhibits an orientation state surrounded by hairpin and lightening defects, the lighting and hairpin defects occurring in an order named with respect to a rubbing direction, and    T₁ is a pulse width threshold value of a portion outside the portion surrounded by the hairpin and lightening defects in a first orientation state, the first orientation state satisfying a condition wherein the chiral smectic liquid crystal in the orientation state has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols, and wherein the first orientation state is set in the first and second stable states having the small transmittances corresponding to the light extinction level.
  20. 30
    A liquid crystal element comprising a chiral smectic liquid crystal and a pair of substantially parallel substrates having opposite surfaces between which the chiral smectic liquid crystal is sealed, the substrates being provided with electrodes to which voltages voltages are applied and being subjected to one axis orientation treatment so as to orient the chiral smectic liquid crystal, wherein the chiral smectic liquid crystal has an orientation state satisfying the following condition:ϑ 2.5 at the same temperature    where    T₁ is a pulse width threshold value of the chiral smectic liquid crystal in a first liquid crystal element satisfying the following condition: ϑ > ϑa > ϑ/2 where ϑa is an angle which is 1/2 an angle formed by optical axes of the two stable states, and ϑ is a tilt angle of the chiral smectic liquid crystal, and    T₂ is a pulse width threshold value of the chiral smectic liquid crystal in a second liquid crystal element having the orientation state represented by condition ϑ > α + δ , the second liquid crystal element being obtained by replacing a first orientation film of the first liquid crystal element with a second orientation film.
  21. 31
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state represented by the following condition:ϑ ϑa > ϑ/2 where ϑa is an angle which is 1/2 the angle of the optical axes of the two stable states, and ϑ is the tilt angle of the ferroelectric liquid crystal, and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  22. 32
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state represented by the following condition:ϑ < α + δ where α is a pretilt angle of the ferroelectric liquid crystal, ϑ is a tilt angle, and δ is an inclination angle of an Sm*C layer, the ferroelectric liquid crystal in the orientation state exhibiting at least two stable states, and the orientation state defined such that a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the first and second stable states, and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  23. 33
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state represented by the following condition:ϑ < α + δ where α is a pretilt angle of the ferroelectric liquid crystal, ϑ is a tilt angle, and δ is an inclination angle of an Sm*C layer, the orientation state being defined such that the ferroelectric liquid crystal has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols, and wherein the first orientation state is set in the first and second stable states having the small transmittances corresponding to the light extinction level, and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  24. 35
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each oriented in one axis, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state being caused by defects in an order of lightening and hairpin defects with respect to a direction of floating of liquid crystal molecules from an orientation surface caused by a pretilt, the ferroelectric liquid crystal in the orientation state exhibiting at least two stable states, and an angle ϑa 1/2 between optical axes of these two stable states and the tilt angle ϑ of the ferroelectric liquid crystal satisfying the following condition:ϑ > ϑa > ϑ/2 and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  25. 36
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each oriented in one axis, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state being caused by defects in an order of lightening and hairpin defects with respect to a direction of floating of liquid crystal molecules from an orientation surface caused by a pretilt, and the ferroelectric liquid crystal in the orientation state exhibiting at least two stable states, and the orientation state being defined such that a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the first and second stable states, and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  26. 37
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each oriented in one axis, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state being caused by defects in an order of lightening and hairpin defects with respect to a direction of floating of liquid crystal molecules from an orientation surface caused by a pretilt, and the orientation state being defined such that the ferroelectric liquid crystal has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols, and means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  27. 39
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state being caused by defects in an order of lightening and hairpin defects with respect to a rubbing direction, the ferroelectric liquid crystal in the orientation state exhibiting at least two stable states, and an angle ϑa 1/2 the angle between optical axes of these two stable states and the tilt angle ϑ of the ferroelectric liquid crystal satisfying the following condition:ϑ > ϑa > ϑ/2 and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  28. 40
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state being caused by defects in an order of lightening and hairpin defects with respect to a rubbing direction, the ferroelectric liquid crystal in the orientation state exhibiting at least two stable states, and the orientation state being defined such that a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the first and second stable states, and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  29. 41
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates and having an orientation state surrounded by hairpin or lightening defects upon application of a stress to substrates by a foreign material such as a spacer interposed between the substrates, the orientation state being caused by defects in an order of lightening and hairpin defects with respect to a rubbing direction, and the orientation state being defined such that the ferroelectric liquid crystal has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols, and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  30. 43
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each oriented in one axis, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates, having no change in orientation accompanying defects during cooling from a high temperature of an SmA phase or the like to a temperature of an Sm*C phase, and having at least two stable states in the orientation state, and an angle ϑa 1/2 between optical axes of these two stable states and the tilt angle ϑ of the ferroelectric liquid crystal satisfying the following condition:ϑ > ϑa > ϑ/2 and    means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  31. 44
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment, the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates, having no change in orientation accompanying defects during cooling from a high temperature of an SmA phase or the like to a temperature of an Sm*C phase, and having at least two stable states in the orientation state, and the orientation state being defined such that a color formed by a first stable state upon rotation of one polarization plate from a position of a light-absorbing axis of the other polarization plate perpendicular to the one polarization plate through 3° to 30° clockwise is the same as that formed by a second stable state upon rotation through the same range of angles counterclockwise when a light-absorbing axis of one polarization plate is located at a position for bisecting an angle formed by optical axes of the first and second stable states, and means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  32. 45
    A ferroelectric liquid crystal apparatus comprising    a ferroelectric liquid crystal element including    a pair of substrates having a scanning electrode group and a data electrode group and each subjected to one axis orientation treatment the axis of one of the pair of substrates being parallel or substantially parallel to the axis of the other of the pair of substrates and having the same direction as that of the other of the pair of substrates, and    a ferroelectric liquid crystal sealed between the pair of substrates, having no change in orientation accompanying defects during cooling from a high temperature of an SmA phase or the like to a temperature of an Sm*C phase, and having an orientation state defined such that the ferroelectric liquid crystal has a total of three or four stable states, i.e., two stable states having small transmittances corresponding to almost a light extinction level under crossed Nicols and one or two stable states having large transmittances corresponding to the light extinction level under crossed Nicols, and means for applying a scanning signal to the scanning electrode group, the scanning signal being constituted by two phases, i.e., an erase phase and a write phase having different polarities, and the scanning signal having an absolute value of a voltage applied to a pixel of the erase phase to be larger than that applied to a pixel of the write phase.
  33. 47
    An apparatus according to any one of claims 31, 32, 35, 36, 39, 40, 43, and 44, wherein the orientation state has three or four different stable states without being through the lightening and hairpin defects.
Independent claims33