The present invention relates to the field of liquid crystal display, in particular to array substrate, LCD and manufacturing method of the array substrate.
Liquid crystal molecules of VA (Vertical Alignment Mode) liquid crystal display widely used in daily life are arranged directionally perpendicular to the array substrate and are axially symmetrical when electrical power is cut, and backlight cannot pass through the liquid crystal molecules, so the liquid crystal molecules can deflect in the electric field plane in the same deflecting direction when the electric field acts, which causes contrast reduction or gray level inversion of the display viewed from different points of view. To improve the wide-angle display effect of the VA liquid crystal, the American patent U.S. Pat. No. 6,822,715(B2) proposes an improvement scheme in pixel electrode design. As shown in
This scheme has the disadvantages that the hole openings 24a cut off the electrical power directly, so the openings 24a cannot function as electrodes; when the upper plate and the lower plate apply voltage, the electric field in the center of the above openings 24a hardly act, so the liquid crystal molecules are basically perpendicular to the array substrate, causing dark spots shown in
The first aim of the present invention is to provide an array substrate of a LCD which can improve the wide-angle display effect of VA liquid crystal and display no dark spots in pixel electrodes.
The purpose of the present invention is achieved by the following technical schemes.
An array substrate comprises insulation layers and an electrode layer densely covered with many pixel electrodes and has many electric field changing areas; the insulation layers in these areas are not as thick as those in other areas, and the pixel electrodes in the electric field changing areas and in other areas can be conducted.
Preferably, the insulation layer of the array substrate is a first insulation layer arranged at the bottom of the electrode layer; the first insulation layer has many depressed areas, the electrode layer depresses in the depressed areas, and these depressed areas are the electric field changing areas. This is the first embodiment.
Preferably, the array substrate comprises a first insulation layer arranged at the bottom of the electrode layer, and a second insulation layer covering the electrode layer, and the second insulation layer has many depressed areas which are the electric field changing areas. This is the second embodiment.
Preferably, the insulation layer of the array substrate is a first insulation layer arranged at the bottom of the electrode layer; the first insulation layer has many raised areas, the electrode layer raises in the raised areas, and these raised areas are the electric field changing areas. This is the third embodiment.
Preferably, the array substrate comprises a first insulation layer arranged at the bottom of the electrode layer, and a second insulation layer covering the electrode layer, and the second insulation layer has many raised areas which are the electric field changing areas. This is the fourth embodiment.
The second aim of the present invention is to provide a LCD which can improve the wide-angle display effect of VA liquid crystal and display no dark spots in pixel electrodes. The LCD comprises said array substrate.
The third aim of the present invention is to provide a manufacturing method of the array substrate of a LCD which can improve the wide-angle display effect of VA liquid crystal and display no dark spots in pixel electrodes, comprising the following steps:
A: Cover a first transparent substrate with the first insulation layer by the conventional method;
B: Etch the first insulation layer to make the thickness of the first insulation layer different from the thickness of insulation layers in other areas so as to form electric field changing areas;
C: Make pixel electrodes and a first alignment film successively on the first insulation layer by the conventional method;
The manufacturing method of the array substrate of a LCD also can comprise the following steps:
A: Cover the first transparent substrate with the first insulation layer and the pixel electrodes successively by the conventional method;
B: Cover the pixel electrodes with the second insulation layer, and etch the second insulation layer to make the thickness of the second insulation layer different from the thickness of insulation layers in other areas so as to form electric field changing areas;
C: Cover the second insulation layer with the first alignment film.
In the present invention, due to the electric field changing areas, the distance between the pixel electrodes and counter electrodes on the surface of the electric field changing areas is different from that in other areas and the electric field intensities on the surface of the electric field changing areas and on the surface of the electrodes are inconsistent when electrical power is applied, causing the inclination of the power line near these areas, so liquid crystal molecules can deflect in different special directions around these electric field changing areas, which can increase the display angle. The electric field changing areas can function as electrodes, so these areas still have strong electric field, which can reduce the number of vertical liquid crystal molecules and the size of dark spots, so as to enhance brightness and improve wide-angle display effect. Furthermore, for the hole opening, because the electrodes still act in the electric field changing areas, the range of the electric field changing areas can be more flexible, and the range of the electric field changing areas can be adjusted in accordance with the specific display condition, the controllable degree becomes preferable.
Wherein: 1. color filter substrate, 11. second transparent substrate, 12. color filter plate, 13. counter electrode, 14. second alignment film, 2. array substrate, 21. first transparent substrate, 22. first insulation layer, 23. pixel electrode, 24. first alignment film, 25. second insulation layer, 3. liquid crystal molecule, 4. electric field changing area, 51˜53. sub-pixel area, 6. thin film transistor, 61. grid scanning line, 62. data scanning line.
A LCD comprises an array substrate 2 and a color filter substrate 1, wherein said array substrate has many thin film transistors, each of which corresponds to one pixel electrode. The color filter substrate 1 has counter electrodes corresponding to the pixel electrodes to produce electric field; liquid crystal molecules are filled between the pixel electrodes and the counter electrodes; the array substrate has many electric field changing areas; the insulation layers in these areas are not as thick as those in other areas, and the pixel electrodes in the electric field changing areas and in other areas can be conducted. Due to the electric field changing areas, the electric field intensities on the surface of the electric field changing areas and on the surface of the electrodes are inconsistent when electrical power is applied, causing the inclination of the power line near these areas, so liquid crystal molecules can deflect in different special directions around these areas, which can expand the display angle. The electric field changing areas can function as electrodes, so these areas still have strong electric field, which can reduce the number of vertical liquid crystal molecules and the size of dark spots, so as to enhance brightness and improve wide-angle display effect.
The present invention is further described by figures and the preferred embodiments as follows.
As shown in
The manufacturing method of the array substrate 2 of a LCD comprises the following steps:
A: Cover a first transparent substrate 21 with the first insulation layer 22 by the conventional method;
B: Etch the first insulation layer 22 to make the first insulation layer 22 thinner than the insulation layers in other areas so as to form electric field changing areas 4;
C: Make pixel electrodes 23 and a first alignment film 24 successively on the first insulation layer 22 by the conventional method;
As shown in
The electric field intensities on the surface of the electric field changing areas 4 and on the surface of the electrodes are inconsistent when power is on, causing the inclination of the power line near these areas, so liquid crystal molecules 3 can deflect in different special directions around these areas 4, which can expand the display angle; electrodes still act in the electric field changing areas, so these areas still have stronger electric field, which can reduce the number of vertical liquid crystal molecules 3 and the size of dark spots, so as to enhance brightness and wide-angle display effect. Furthermore, for the hole openings, because the electrodes in the electric field changing areas still act, the range of the electric field changing areas can be more flexible, and the range of the electric field changing areas can be adjusted in accordance with the specific display condition, the controllable degree becomes preferable.
As shown in
The manufacturing method of the array substrate 2 of a LCD comprises the following steps:
A: Cover the first transparent substrate 21 with the first insulation layer 22 and the pixel electrodes 23 successively by the conventional method;
B: Cover the pixel electrodes 23 with the second insulation layer 25, and etch the second insulation layer 25 to make the second insulation layer 25 thinner than the insulation layers in other areas so as to form electric field changing areas 4;
C: Cover the second insulation layer 25 with the first alignment film 24.
As shown in
The electric field intensities on the surface of the electric field changing areas 4 and on the surface of the electrodes are inconsistent when power on, causing the inclination of the power line near these areas, so liquid crystal molecules 3 can deflect in different special directions around these areas 4, which can expand the display angle; electrodes still act in the electric field changing areas, so these areas still have strong electric field, which can reduce the number of vertical liquid crystal molecules 3 and the size of dark spots, so as to enhance brightness and wide-angle display effect. Furthermore, for the hole openings, because the electrodes in the electric field changing areas still act, the range of the electric field changing areas can be more flexible, and the range of the electric field changing areas can be adjusted in accordance with the specific display condition, the controllable degree becomes preferable.
As shown in
The manufacturing method of the array substrate 2 of a LCD comprises the following steps:
A: Cover a first transparent substrate 21 with the first insulation layer 22 by the conventional method;
B: Etch the first insulation layer 22 to make the first insulation layer 22 thicker than the insulation layers in other areas so as to form electric field changing areas 4;
C: Make pixel electrodes 23 and a first alignment film 24 successively on the first insulation layer 22 by the conventional method;
As shown in
The electric field intensities on the surface of the electric field changing areas 4 and on the surface of the electrodes are inconsistent when power on, causing the inclination of the power line near these areas, so liquid crystal molecules 3 can deflect in different special directions around these areas 4, which can expand the display angle; electrodes still act in the electric field changing areas, so these areas still have stronger electric field, which can reduce the number of vertical liquid crystal molecules 3 and the size of dark spots, so as to enhance brightness and wide-angle display effect. Furthermore, for the hole openings, because the electrodes in the electric field changing areas still act, the range of the electric field changing areas can be more flexible, and the range of the electric field changing areas can be adjusted in accordance with the specific display condition, the controllable degree becomes preferable.
As shown in
The manufacturing method of the array substrate 2 of a LCD comprises the following steps:
A: Cover the first transparent substrate 21 with the first insulation layer 22 and the pixel electrodes 23 successively by the conventional method;
B: Cover the pixel electrodes 23 with the second insulation layer 25, and etch the second insulation layer 25 to make the second insulation layer 25 thicker than the insulation layers in other areas so as to form electric field changing areas 4;
C: Cover the second insulation layer 25 with the first alignment film 24.
As shown in
When electrical power is applied, the electric field intensities on the surface of the electric field changing areas 4 and on the surface of the electrodes are inconsistent, causing the inclination of the power line near these areas, so liquid crystal molecules can deflect in different special directions around these electric field changing areas 4, which can expand the display angle. The electric field changing areas 4 can function as electrodes, so these areas still have strong electric field, which can reduce the number of vertical liquid crystal molecules 3 and the size of dark spots, so as to enhance brightness and improve wide-angle display effect. Furthermore, for the hole opening, because the electrodes still act in the electric field changing areas, the range of the electric field changing areas can be more flexible, and the range of the electric field changing areas can be adjusted in accordance with the specific display condition, the controllable degree becomes preferable.
The present invention is described in detail in accordance with the above contents with the specific preferred embodiments. However, this invention is not limited to the specific embodiments. For the ordinary technical personnel of the technical field of the present invention, on the premise of keeping the conception of the present invention, the technical personnel can also make simple deductions or replacements, and all of which should be considered to belong to the protection scope of the present invention.
Number | Date | Country | Kind |
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201110416371.4 | Dec 2011 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2011/084364 | 12/21/2011 | WO | 00 | 12/22/2011 |