A liquid crystal display device including a first substrate having a contact hole and second substrate substantially in parallel with the first substrate. Each substrate has electrodes on an inner side thereof with the electrodes of the first substrate being connected to the electrodes of the second substrate at a location which is close to an edge of the contact hole.
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0. 31. A display device, comprising:
a first substrate having a contact hole;
a second substrate spaced apart substantially in parallel from said first substrate;
first driving electrodes on an inner side of said first substrate;
second driving electrodes and connection electrodes on an inner side of said second substrate; and
said contact hole configured to enable external electrodes to be connected to said second driving electrodes and said connection electrodes through said contact hole,
wherein said connection electrodes are connected to said first driving electrodes at a location close to an outside edge of said contact hole.
0. 13. A display device, comprising:
a first substrate having a contact hole;
a second substrate spaced apart substantially in parallel from said first substrate to form a gap;
first driving electrodes on an inner side of said first substrate;
second driving electrodes and connection electrodes on an inner side of said second substrate; and
said contact hole configured to enable external electrodes to be connected to said second driving electrodes and said connection electrodes through said contact hole,
wherein said connection electrodes are connected to said first driving electrodes at a location close to an outside edge of said contact hole.
0. 25. A display device, comprising:
a first substrate having a contact hole and first driving electrodes on an inner surface thereof;
a second substrate spaced apart substantially in parallel from said first substrate to form a cell gap, said second substrate having second driving electrodes on an inner surface thereof;
said contact hole configured to allow external electrodes to be connected to said second driving electrodes through said contact hole; and
means for connecting said first driving electrodes to said second driving electrodes at a location approximate to an outside edge of said contact hole so as to maintain a predetermined cell gap thickness.
0. 19. A display device, comprising:
a first substrate having a contact hole;
a second substrate spaced apart substantially in parallel from said first substrate to form a gap;
first driving electrodes on an inner side of said first substrate;
second driving electrodes and connection electrodes on an inner side of said second substrate; and
said contact hole configured to enable external electrodes to be connected to said second driving electrodes and said connection electrodes through said contact hole,
wherein said connection electrodes are connected to said first driving electrodes at a location approximate to an outside edge of said contact hole to maintain a predetermined thickness of said gap between said first substrate and said second substrate.
9. A liquid crystal display device, comprising:
a first transparent substrate having a contact hole and first driving electrodes on an inner surface thereof;
a second transparent substrate spaced apart substantially in parallel from said first transparent substrate to form a cell gap, said second transparent substrate having second driving electrodes on an inner surface thereof;
a liquid crystal body filling the gap between said first transparent substrate and said second transparent substrate;
said contact hole configured to allow external electrodes to be connected to said second driving electrodes through said contact hole; and
means for connecting said first driving electrodes to said second driving electrodes at a location approximate to an outside edge of said contact hole so as to maintain a predetermined cell gap thickness.
1. A liquid crystal display device, comprising:
a first transparent substrate having a contact hole;
a second transparent substrate spaced apart substantially in parallel from said first transparent substrate to form a gap;
a liquid crystal body filling the gap between said first transparent substrate and said second transparent substrate;
first driving electrodes on an inner side of said first transparent substrate;
second driving electrodes and connection electrodes on an inner side of said second transparent substrate; and
said contact hole configured to enable external electrodes to be connected to said second driving electrodes and said connection electrodes through said contact hole,
wherein said connection electrodes are connected to said first driving electrodes at a location close to an outside edge of said contact hole.
5. A liquid crystal display device, comprising:
a first transparent substrate having a contact hole;
a second transparent substrate spaced apart substantially in parallel from said first transparent substrate to form a gap;
a liquid crystal body filling the gap between said first transparent substrate and said second transparent substrate;
first driving electrodes on an inner side of said first transparent substrate;
second driving electrodes and connection electrodes on an inner side of said second transparent substrate; and
said contact hole configured to enable external electrodes to be connected to said second driving electrodes and said connection electrodes through said contact hole,
wherein said connection electrodes are connected to said first driving electrodes at a location approximate to an outside edge of said contact hole to maintain a predetermined thickness of said gap between said first transparent substrate and said second transparent substrate.
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1. Field of the Invention
The present invention relates to a liquid crystal display device. More particularly, the present invention is related to a liquid crystal display device including electrodes on an upper substrate connected to electrodes on a lower substrate.
2. Discussion of the Background
A liquid crystal display cell includes two transparent substrates each having driving electrodes on the inner side of the substrate. The substrates are spaced apart substantially in parallel to each other forming a gap between the substrates. In addition, the gap between the two substrates contains a liquid crystal body.
A problem with a conventional liquid crystal display is that the cell gap of the liquid crystal display does not have a proper thickness because the connection of the electrodes by a sealing agent cause the liquid crystal cell to be weighted vertically. That is, the mask weight is distributed in a center of the substrates which causes uneven and undesired cell gap thicknesses, as shown, for example, in FIG. 4.
Accordingly, one object of this invention is to provide a novel liquid crystal display device in which the cell gap of the liquid crystal display maintains a predetermined thickness.
To achieve this object, the present invention provides a liquid crystal display device including a first transparent substrate having a contact hole, a second transparent substrate spaced apart substantially in parallel from the first transparent substrate to form a gap, and a liquid crystal body filling the gap between the first transparent substrate and the second transparent substrate. The first transparent substrate includes first driving electrodes and the second transparent substrate includes second driving electrodes and connection electrodes which pass through the contact hole of the first transparent substrate. In addition, the device includes external electrodes which connect to the second driving electrodes and connection electrodes through the contact hole of the first transparent substrate. The connection electrodes on the second transparent substrate are also connected to the first driving electrodes of the first transparent substrate at a location which is close to an edge of the contact hole.
A more complete appreciation of the present invention and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawing, wherein:
Referring now to the drawings, wherein like reference numerals designate identical or corresponding parts throughout the several views, and more particularly to
The lower substrate 10 and upper substrate 20 may be made of, for example, plastic film with a thickness of approximately 150 μm. In addition, the gap 4 between the lower substrate 10 and the upper substrate 20 can be, for example, approximately 8 μm.
As shown in
As discussed above, the upper substrate 10 and lower substrate 20 form a liquid crystal cell. Then, a sealing agent is formed at the locations 13 and 23 to connect the connection electrodes 12b of the lower substrate 10 to the driving electrodes 21a of the upper substrate 20 and a mask weight is increased on both sides of the cell.
According to the present invention, the points at which the connection electrodes 12b are connected to the driving electrodes 21a (i.e., locations 13 and 23) are close to the edge of the contact hole 22. Therefore, because the mask weight on the edge of the contact hole 22 is strongest, the mask weight, on the whole, can be decreased. Consequently, the cell gap of the liquid crystal cell maintains a predetermined thickness. The gap between the lower substrate 10 and the upper substrate 20 is also filled with a liquid crystal body.
For example,
The entire disclosure of Japanese Patent Application No. 09-001022 filed on Jan. 8, 1997 including the specification, claims, drawings and summary are incorporated herein by reference in its entirety.
Obviously, numerous modifications and variations of the present invention are possible in light of the above teachings. It is therefore to be understood that within the scope of the appended claims, the invention may be practiced otherwise than as specifically described herein.
Patent | Priority | Assignee | Title |
8264656, | Dec 02 2008 | SAMSUNG DISPLAY CO , LTD | Liquid crystal display and manufacturing method thereof |
Patent | Priority | Assignee | Title |
5625474, | Jun 02 1995 | Sharp Kabushiki Kaisha | Full-color liquid crystal display device and fabrication process therefor |
5861929, | Dec 31 1990 | Kopin Corporation | Active matrix color display with multiple cells and connection through substrate |
JP1302227, | |||
JP3167527, | |||
JP3264916, | |||
JP4365015, | |||
JP56014223, | |||
JP59074528, |
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