IP Library Granted Patent US 7,808,589
Granted Patent B2
US 7,808,589 · App. 11/878,422 · Granted Oct 5, 2010

Transflective liquid crystal display device having particular angle between initial liquid crystal alignment direction and pixel electrode projection direction

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Quick Facts
Patent No.
US 7,808,589
App. No.
11/878,422
Filed
Jul 24, 2007
Granted
Oct 5, 2010
Kind
B2
Art Unit
2871
USPC
349/114
Abstract

In a transflective liquid crystal display device, assuming that a narrower angle among angles formed by the initial liquid crystal alignment direction of a liquid crystal layer, and the projection direction of a pixel electrode of a transmissive unit is θt and that a narrower angle among angles formed by the initial liquid crystal alignment direction of the liquid crystal layer, and the projection direction of a pixel electrode of a reflective unit is θr, (1) when the liquid crystal layer possesses a positive-type liquid crystal, the relation of θt>θr is satisfied, and (2) when the liquid crystal layer possesses a negative-type liquid crystal, the relation of θr>θt is satisfied. The relations are satisfied by slanting or bending at least one of the pixel electrodes, and the reflectivity is improved.

Claims (88)

1. A transflective liquid crystal display device comprising:

a liquid crystal display panel,

wherein the liquid crystal display panel includes

a pair of substrates,

a liquid crystal layer interposed between the pair of substrates,

a plurality of sub-pixels,

a transmissive unit and a reflective unit, the transmissive unit and the reflective unit being possessed by each of the plurality of sub-pixels, and

a pixel electrode and an opposed electrode, the pixel electrode and the opposed electrode being formed on one of the pair of substrates and possessed by each of the plurality of sub-pixels,

wherein the pixel electrode is shared by the transmissive unit as a first pixel electrode and shared by the reflective unit as a second pixel electrode in each of the plurality of sub-pixels, and

wherein, assuming that a narrower angle of angles formed by an initial liquid crystal alignment direction of the liquid crystal layer and a projection direction of the first pixel electrode shared by the transmissive unit is θt and that a narrower angle of angles formed by the initial liquid crystal alignment direction of the liquid crystal layer and a projection direction of the second pixel electrode shared by the reflective unit is θr, a relation of θt >θr is satisfied when the liquid crystal layer is a positive-type liquid crystal and a relation of θr >θt is satisfied when the liquid crystal layer is a negative-type liquid crystal.

2. The transflective liquid crystal display device according to claim 1 ,

wherein the second pixel electrode shared by the reflective unit projects obliquely with respect to the first pixel electrode shared by the transmissive unit.

3. The transflective liquid crystal display device according to claim 1 ,

wherein one of the pair of substrates includes a video line, and

wherein at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit projects obliquely with respect to the video line.

4. The transflective liquid crystal display device according to claim 1 ,

wherein one of the pair of substrates includes a video line,

wherein the other of the pair of substrates includes a light blocking film formed corresponding to a boundary area between adjoining sub-pixels,

wherein at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit is arranged obliquely with respect to the video line, and

wherein the light blocking film of the reflective unit is arranged obliquely with respect to the video line, in concert with the at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit.

5. The transflective liquid crystal display device according to claim 1 ,

wherein one of the pair of substrates includes a scanning line,

wherein the other of the pair of substrates includes a light blocking film, and

wherein forming the light blocking film is omitted in a boundary area in the reflective unit between sub-pixels adjoining along the scanning line.

6. The transflective liquid crystal display device according to claim 1 ,

wherein the second pixel electrode shared by the reflective unit possesses more elements than the first pixel electrode shared by the transmissive unit.

7. The transflective liquid crystal display device according to claim 1 ,

wherein one of the pair of substrates includes a scanning line,

wherein the other of the pair of substrates includes a light blocking film and a color filter, and

wherein forming the light blocking film and the color filter is omitted and an aperture wider than a width of the light blocking film is provided, in a boundary area in the reflective unit between sub-pixels adjoining along the scanning line.

8. The transflective liquid crystal display device according to claim 1 ,

wherein one of the pair of substrates includes a plurality of video lines, and

wherein a pixel electrode of each of the sub-pixels is arranged between two adjoining video lines of the plurality of video lines.

9. The transflective liquid crystal display device according to claim 1 ,

wherein the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit are each bending.

10. The transflective liquid crystal display device according to claim 9 ,

wherein one of the pair of substrates includes a video line, and

wherein the video line is bending in concert with a shape of one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit.

11. A transflective liquid crystal display device comprising:

a liquid crystal display panel,

wherein the liquid crystal display panel includes

a pair of substrates,

a liquid crystal layer interposed between the pair of substrates,

a plurality of sub-pixels,

a transmissive unit and a reflective unit, the transmissive unit and the reflective unit being possessed by each of the plurality of sub-pixels, and

a pixel electrode and an opposed electrode, the pixel electrode and the opposed electrode being formed on one of the pair of substrates and possessed by each of the plurality of sub-pixels,

wherein the opposed electrode is planer in shape, and the pixel electrode is formed above the opposed electrode through an intermediate insulating film,

wherein the pixel electrode is shared by the transmissive unit as a first pixel electrode and shared by the reflective unit as a second pixel electrode in each of the plurality of sub-pixels, and

wherein, assuming that a narrower angle of angles formed by an initial liquid crystal alignment direction of the liquid crystal layer and a projection direction of the first pixel electrode shared by the transmissive unit is θt and that a narrower angle of angles formed by the initial liquid crystal alignment direction of the liquid crystal layer and a projection direction of the second pixel electrode shared by the reflective unit is θr, a relation of θt >θr is satisfied when the liquid crystal layer is a positive-type liquid crystal and a relation of θr >θt is satisfied when the liquid crystal layer is a negative-type liquid crystal.

12. The transflective liquid crystal display device according to claim 11 ,

wherein the second pixel electrode shared by the reflective unit projects obliquely with respect to the first pixel electrode shared by the transmissive unit.

13. The transflective liquid crystal display device according to claim 11 ,

wherein one of the pair of substrates includes a video line, and

wherein at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit projects obliquely with respect to the video line.

14. The transflective liquid crystal display device according to claim 11 ,

wherein one of the pair of substrates includes a video line,

wherein the other of the pair of substrates includes a light blocking film formed corresponding to a boundary area between adjoining sub-pixels,

wherein at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit is arranged obliquely with respect to the video line, and

wherein the light blocking film of the reflective unit is arranged obliquely with respect to the video line, in concert with the at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit.

15. The transflective liquid crystal display device according to claim 11 ,

wherein one of the pair of substrates includes a scanning line,

wherein the other of the pair of substrates includes a light blocking film, and

wherein forming the light blocking film is omitted in a boundary area in the reflective unit between sub-pixels adjoining along the scanning line.

16. A transflective liquid crystal display device comprising:

a liquid crystal display panel,

wherein the liquid crystal display panel includes

a pair of substrates,

a liquid crystal layer interposed between the pair of substrates,

a plurality of sub-pixels,

a transmissive unit and a reflective unit, the transmissive unit and the reflective unit being possessed by each of the plurality of sub-pixels, and

a pixel electrode and an opposed electrode, the pixel electrode and the opposed electrode being formed on one of the pair of substrates and possessed by each of the plurality of sub-pixels,

wherein the other of the pair of substrates includes a step forming layer in a region facing the reflective unit,

wherein the pixel electrode is shared by the transmissive unit as a first pixel electrode and shared by the reflective unit as a second pixel electrode in each of the plurality of sub-pixels, and

wherein, assuming that a narrower angle of angles formed by an initial liquid crystal alignment direction of the liquid crystal layer and a projection direction of the first pixel electrode shared by the transmissive unit is θt and that a narrower angle of angles formed by the initial liquid crystal alignment direction of the liquid crystal layer and a projection direction of the second pixel electrode shared by the reflective unit is θr, a relation of θt >θr is satisfied when the liquid crystal layer is a positive-type liquid crystal and a relation of θr >θt is satisfied when the liquid crystal layer is a negative-type liquid crystal.

17. The transflective liquid crystal display device according to claim 16 ,

wherein the second pixel electrode shared by the reflective unit projects obliquely with respect to the first pixel electrode shared by the transmissive unit.

18. The transflective liquid crystal display device according to claim 16 ,

wherein one of the pair of substrates includes a video line, and

wherein at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit projects obliquely with respect to the video line.

19. The transflective liquid crystal display device according to claim 16 ,

wherein one of the pair of substrates includes a video line,

wherein the other of the pair of substrates includes a light blocking film formed corresponding to a boundary area between adjoining sub-pixels,

wherein at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit is arranged obliquely with respect to the video line, and

wherein the light blocking film of the reflective unit is arranged obliquely with respect to the video line, in concert with the at least one of the first pixel electrode shared by the transmissive unit and the second pixel electrode shared by the reflective unit.

20. The transflective liquid crystal display device according to claim 16 ,

wherein one of the pair of substrates includes a scanning line,

wherein the other of the pair of substrates includes a light blocking film, and

wherein forming the light blocking film is omitted in a boundary area in the reflective unit between sub-pixels adjoining along the scanning line.

Assignments (4)
COMPANY SPLIT PLAN TRANSFERRING FIFTY (50) PERCENT SHARE OF PATENTS Recorded Oct 14, 2011
From: HITACHI DISPLAYS, LTD.
To: IPS ALPHA SUPPORT CO., LTD.
Reel/Frame 027063/0019 →
MERGER Recorded Oct 14, 2011
From: IPS ALPHA SUPPORT CO., LTD.
To: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
Reel/Frame 027063/0139 →
TO CORRECT RECEIVING PARTY ON REEL 019660 FRAME 0210 Recorded Sep 17, 2007
From: IGETA, KOICHI; TANNO, JUNJI; IMAYAMA, HIROTAKA; NAGATA, TETSUYA
To: HITACHI DISPLAYS, LTD.
Reel/Frame 019862/0903 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2007
From: IGETA, KOICHI; TANNO, JUNJI; IMAYAMA, HIROTAKA; NAGATA, TETSUYA
To: HITACHI DISPLAYS, LTD.
Reel/Frame 019660/0210 →