DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF
20200301191 ยท 2020-09-24
Inventors
Cpc classification
G02F1/13394
PHYSICS
G02F1/13306
PHYSICS
G02F1/1337
PHYSICS
G02F1/133351
PHYSICS
International classification
G02F1/1337
PHYSICS
G02F1/133
PHYSICS
Abstract
In a display device having high reliability, even if being a narrow framing type, and a method for manufacturing thereof, having a display panel, being made up with a first substrate 101 and a second substrate 201, which are adhered with using a seal 301, a main SOC 302 is disposed like a wall, on a peripheral end portion of the first substrate 101 and the second substrate 201, and the seal 301 is disposed inwardly of the main SOC 302. Also, in a method for manufacturing thereof, the main SOC 302 is formed in a region including a cutting plane between the display panel regions neighboring with, and on the cutting plane is made the cutting thereof.
Claims
1. A method for manufacturing a display device, comprising steps of: a first step for preparing a first substrate having plural display panel regions, the plural display panel regions arranged in a matrix in a first direction and in a second direction intersecting the first direction, and each of the display panel regions having a display region, a second step for forming a first alignment film covering the plural display regions in common on the first substrate, a third step for applying plural seals, each of the seals surrounds each of the display regions, and a fourth step for cutting the first substrate and the first alignment film formed on the first substrate into each of the display panel regions.
2. The method for manufacturing a display device according to claim 1, wherein the first step further includes: forming an organic passivation film above a glass substrate, and forming grooves in the organic passivation film, wherein the second step further includes: making the first alignment film overlapping the grooves, and wherein the third step further includes: making at least one of seals overlapping the grooves.
3. The method for manufacturing a display device according to claim 2, wherein each of the display panel regions has a driver circuit region, which is located outside of the display region, wherein in the second step, the alignment film is not formed in the driver circuit region.
4. The method for manufacturing the display device according to claim 3, further comprising a fifth step for preparing a second substrate, which has plural spacers, wherein the third step further includes attaching the second substrate to the first substrate by the plural seals, and the fourth step further includes cutting at least one of the spacers between adjacent display panel regions in the first direction.
5. The method for manufacturing a display device according to claim 4, wherein the spacer is in contacts with the first alignment film.
6. The method for manufacturing a display device according to claim 3, wherein the first step further includes, forming a first inorganic passivation film between the organic passivation film and the glass substrate, forming a second inorganic passivation film between the first inorganic passivation film and the organic passivation film, forming plural first metal wirings between the glass substrate and the first inorganic passivation film, and forming plural second metal wirings between the first inorganic passivation film and the second inorganic passivation film.
7. The method for manufacturing a display device according to claim 6, wherein the first metal wirings and the second metal wirings overlap one of the seals.
8. The method for manufacturing a display device according to claim 7, wherein the first metal wirings and the second metal wirings do not overlap the grooves.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Those and other objects, features and advantages of the present invention will become more readily apparent from the following detailed description when taken in conjunction with the accompanying drawings wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0036] The inventors studied the reason of generating the black spots. As a result thereof, the followings come to be apparent on the cross-sectional view of the liquid crystal display panel shown in
[0037] Hereinafter, explanation will be given by referring to the embodiments. Although the explanation will be given on an example of liquid crystal display device; the present invention is also applicable to a display device, being construed by adhering 2 pieces of substrates with using a seal, and a method for manufacturing the same.
First Embodiment
[0038] A first embodiment of the present invention will be explained by referring to
[0039]
[0040] Also, in the present embodiment, plural numbers of sub SOCs 303 for use of interruption or stop are disposed within an inside of the main SOC 302. With this, even if the moisture passes through the main SOC 302, since the sub SOC 303 can elongate a route of intrusion of the moisture, then it is possible to increase the reliability thereof, further. Lowering the height of the sub SOCs 303 than that of the main SOC 302 enables the seal 301, which is applied in the vicinity of the cutting plane of the liquid crystal display panel, to flow inside, if it is pushed out by the main SOC 302 when the TFT side substrate and the CF side substrate are piled up (i.e., enabling the seal to escape from). For the seal between the main SOC 302 and the alignment film 310 on the substrate facing to TFT, it is preferable to be pushed out, entirely, into inside. Even if remaining a little bit thereof, it does not matter, from a practical viewpoint. Also, those sub SOCs 303 are formed in the same step and of the same material to that of the main SOC 302.
[0041] Also, in the present embodiment, plural numbers of grooves are formed on the upper layer passivation film (UPS) 104 or the organic passivation film (FPS) 104 of the TFT side substrate, to be the interruption or stop. Thickness of the FPS, etc., is determined to 2 m. With this, even in case where the moisture passes through the main SOC 302 by any change, since the route of intrusion of the moisture can be elongated by the grooves formed on the UPS 104 or the FPS 104, therefore it is possible to increase the reliability, further. Moreover, with such an arrangement thereof that those sub SOCs 303 and the grooves formed on the UPS 104 or the FPS 104 are piled up on each other, when seeing them from the above, vertically, since the alignment film, being pushed by the sub SOC, tries to enter into the groove portion, then it is possible to increase the adhesiveness between a groundwork film thereof.
[0042] Also, for the drain wiring (DCR) 111 and the gate wiring (GAL) 110, it is preferable to be disposed within inside (i.e., in a side of the effective display region) than the sub SOC 303. Also, it is preferable that the drain wiring (DCR) 111 and the gate wiring (GAL) 110 are disposed, not to be piled up on the sub SOC 303, when seeing them from the above, vertically. The drain wiring (DCR) 111 and the gate wiring (GAL) 110 are disposed, inside, separating by about 0.2 mm from the cutting plane.
[0043] Also, the SOC is formed on the color filter substrate (the CF substrate) side in
[0044] Next, an explanation will be given on a method for manufacturing the present liquid crystal display device, by referring to
[0045] In relation with the disposition or arrangement before cutting out the liquid crystal display panels, as is shown in
[0046] With such arrangement of the liquid crystal display panels as shown in
[0047] As was mentioned above, according to the present embodiment, with provision of the main SOC in the region including the liquid crystal display panel, it is possible to provide a display device having high reliability and a method for manufacturing the same, even if it is the narrow framing type. Also, with such arrangement of the plural numbers of the sub SOCs inside the main SOC, it is possible to increase the reliability thereof, further. Also, with forming the plural numbers of grooves on the UPS or the FPS inside the main SOC through the alignment film, it is possible to increase the reliability thereof, much more. Also, with printing the alignment film covering over the plural numbers of liquid crystal display panels, there is no necessity of the management of printing size of the alignment film.
Second Embodiment
[0048] An explanation will be given on a second embodiment of the present invention, by referring to
[0049] In the present embodiment, plural numbers of grooves are formed on the inorganic passivation film (PAS), to be the interruption or stop. With this, even in the case where the moisture passes through the main SOC 302, since the grooves formed on the PAS 103 is able to elongate the route of intrusion of the moisture, it is possible to increase the reliability thereof, further. Moreover, with such an arrangement thereof that the sub SOCs 303 and the grooves formed on the PAS 103 are piled up on each other, when seeing them from the above, vertically, since the alignment film, being pushed by the sub SOC, tries to enter into the groove portion, therefore it is possible to increase the adhesiveness between a groundwork film thereof.
[0050] Next, an explanation will be given on a method for manufacturing the present liquid crystal display device, by referring to
[0051] With such arrangement of the liquid crystal display panels as shown in
[0052] As was mentioned above, according to the present embodiment, with provision of the main SOC in the region including the liquid crystal display panel, it is possible to provide a display device having high reliability and a method for manufacturing the same, even if it is the narrow framing type. Also, with the arrangement of the plural numbers of the sub SOCs inside the main SOC, it is possible to increase the reliability thereof, further. Also, with forming the plural numbers of grooves on the PAS inside the main SOC through the alignment film, it is possible to increase the reliability therefore, much more. Also, with printing the alignment film covering over the plural numbers of liquid crystal display panels, there is no necessity of the management of printing size of the alignment film.
[0053] The present invention should not be limited to those embodiments mentioned above, but may includes various modifications thereof. For example, the embodiments mentioned above are explained in the details thereof, for the purpose of easy understanding of the present invention, and the present invention should not be necessarily restricted to that comprising all of the constituent elements mentioned above. Also, a part of constituent element(s) of a certain embodiment can be replaced by the constituent element(s) of the other embodiment, or the constituent element(s) of the other embodiment can be added to the constituent element(s) of the certain embodiment. Also, a part of the constituent element(s) of each embodiment can be added/deleted/replaced by other constituent element(s).