1. A lens actuator for an optical pickup apparatus, comprising:
a movable holder to hold a lens; and
an actuator to move the holder in a tracking direction and a focusing direction,
wherein the actuator comprises a yoke and a magnet, and the holder contacts with the yoke before the holder contacts with the magnet, when the holder moves in the tracking direction.
2. The lens actuator of claim 1, wherein a length of the yoke in the tracking direction is longer than a length of the magnet in the tracking direction.
3. The lens actuator of claim 1, wherein an interval between the yoke and the holder in the tracking direction is shorter than an interval between the magnet and the holder.
4. The lens actuator of claim 1, wherein the yoke and the magnet are disposed in an opening of the holder, and a width of the opening in the tracking direction is narrower at a position facing with the yoke than a position facing with the magnet.
5. The lens actuator of claim 4, wherein in the opening, a protrusion is formed at a position facing with the yoke.
6. An optical pickup apparatus comprising:
a lens actuator for an optical pickup apparatus, comprising a movable holder to hold a lens, and an actuator to move the holder in a tracking direction and a focusing direction; and
a housing to fix the lens actuator,
wherein the actuator comprises a yoke and a magnet, and the holder contacts with the yoke before the holder contacts with the magnet, when the holder moves in the tracking direction.
7. The optical pickup apparatus of claim 6, wherein a length of the yoke in the tracking direction is longer than a length of the magnet in the tracking direction.
8. The optical pickup apparatus of claim 6, wherein an interval between the yoke and the holder in the tracking direction is shorter than an interval between the magnet and the holder.
9. The optical pickup apparatus of claim 6, wherein the yoke and the magnet are disposed in an opening of the holder, and a width of the opening in the tracking direction is narrower at a position facing with the yoke than a position facing with the magnet.
10. The optical pickup apparatus of claim 9, wherein in the opening, a protrusion is formed at a position facing with the yoke.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A method of improving the contrast ratio of an encapsulated electrophoretic display comprising the steps of:
a. providing a two-particle electrophoretic display consisting of at least one first particle of a first color and a first electrical charge and at least one second particle of a second color and a second electrical charge;
b. suspending said first particles and said second particles in a suspension medium contained in a matrix of cells each having a viewed region and a non-viewed region;
c. applying an AC field to said first particles and to said second particles to vibrate and separate both said first and said second particles;
d. applying a DC field having a first polarity to said first particles and to said second particles affects a first color state by causing migration of said first particles toward said viewed region and said second particles towards said non-viewed region, wherein steps c) and d) are applied simultaneously for at least a portion of time;
e. changing said DC voltage from a first voltage to a second voltage;
f. at least once, changing said DC voltage from said second voltage to a third voltage and finally changing back to said second voltage while affecting same said first color state.
2. The method of claim 1, wherein said DC voltage changes linearly.
3. The method of claim 1, wherein said DC voltage changes non-linearly.
4. The method of claim 1, further comprising the step of changing said DC voltage from said second voltage to said third voltage and changing back to said second voltage.
5. An electrophoretic display comprising:
a cell having a viewed region and a non-viewed region;
a dyed suspending fluid;
a plurality of particles of a first electrical charge;
said particles are dispersed within said suspending fluid;
said particles have a first color and said suspending fluid has a second color;
wherein application of a first electrical field causes said particles to vibrate and separate from each other;
wherein application of a second electrical field having a first polarity affects a first color state by causing said particles to migrate towards said viewed region;
said first electrical field is an alternating current field;
said second electrical field is a direct current (DC) field;
said DC field varies from a first voltage to a second voltage; and,
wherein said application of said direct current electrical field, in at least one cycle, is changed from said first voltage to said second voltage and changed back to said first voltage while affecting same said first color state.
6. An electrophoretic display comprising:
a cell having a viewed region and a non-viewed region;
a suspending fluid;
a plurality of first particles of a first electrical charge;
a plurality of second particles of a second electrical charge;
said first particles and said second particles dispersed within said suspending fluid;
said first particles have a first color and said second particles have a second color;
wherein application of an alternating current (AC) electrical field causes said first particles and said second particles to vibrate and separate from each other and to detach from said cell surfaces;
wherein application of a subsequent direct current (DC) electrical field having a first polarity affects a first color state by causing said first particles to migrate towards said viewed region and said second particles to migrate towards said non-viewed region; and;
wherein said application of said direct current electrical field is ramped in at least one cycle from one voltage to another voltage, and back to said one voltage while affecting same said first color state.
7. The display of claim 6, wherein the ramping of said at least one cycle is continuous.
8. The display of claim 6, wherein said AC field includes a voltage, said DC voltage is less than an amplitude of said AC voltage.
9. An electrophoretic display comprising:
a cell having a viewed region and a non-viewed region;
a suspending fluid;
a plurality of first particles of a first electrical charge;
a plurality of second particles of a second electrical charge;
said first particles and said second particles dispersed within said suspending fluid;
said first particles have a first color and said second particles have a second color;
wherein application of an alternating current (AC) electrical field causes said first particles and said second particles to vibrate and separate from each other and to detach from said cell surfaces;
wherein application of a subsequent direct current (DC) electrical field having a first polarity affects a first color state by causing said first particles to migrate towards said viewed region and said second particles to migrate towards said non-viewed region; and,
wherein said application of said direct current electrical field is ramped in at least one cycle from one voltage to another voltage, and back to said one voltage while affecting same said first color state, wherein duration of the ramping is from about 10 milliseconds to about 10 seconds.