Display device
09843018 · 2017-12-12
Assignee
Inventors
Cpc classification
H10K59/38
ELECTRICITY
H10K50/865
ELECTRICITY
Y02E10/549
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A display device includes a substrate including a peripheral region folded back to face a rear surface of the substrate, and a counter region facing the peripheral region; and a filling member held between the peripheral region and the counter region. The substrate is folded such that the display device includes a first overlapping portion where a part of the peripheral region is bonded with the counter region with an adhesive material being provided therebetween; a second overlapping portion where a part of the peripheral region is in direct contact with the filling member; and a third overlapping portion where a part of the peripheral region is bonded with the filling member with an adhesive material being provided therebetween.
Claims
1. A display device, comprising: a substrate having a front surface at which pixels are provided and a rear surface opposite to the front surface, the substrate including a peripheral region located along a first side of the substrate and folded back to face the rear surface, and a counter region facing the peripheral region; and a filling member held between the peripheral region and the counter region; a first overlapping portion where a part of the peripheral region is bonded with the counter region with an adhesive material being provided therebetween; a second overlapping portion where a part of the peripheral region is in direct contact with the filling member; and a third overlapping portion where a part of the peripheral region is bonded with the filling member with an adhesive material being provided therebetween.
2. The display device according to claim 1, wherein: the peripheral region includes a curved portion; and the curved portion is contacting with the filling member.
3. The display device according to claim 2, wherein the peripheral region includes a non-curved portion between the curved portion and the first side.
4. The display device according to claim 3, wherein the non-curved portion has a driving circuit provided therein.
5. The display device according to claim 1, wherein: the peripheral region includes a curved portion; and A space is not provided between the curved portion and the filling member.
6. The display device according to claim 1, wherein: the first overlapping portion, the second overlapping portion and the third overlapping portion are located in this order from the first side; and the filling member is made gradually thinner from the second overlapping portion toward the first overlapping portion.
7. The display device according to claim 1, further comprising a protective film provided on the rear surface of the substrate; wherein the adhesive material is provided on the protective film.
8. The display device according to claim 7, wherein: the peripheral region includes a curved portion; and the protective film includes a portion in contact with the rear surface of the curved portion.
9. The display device according to claim 8, wherein: the peripheral region includes a non-curved portion between the curved portion and the first side; and the protective film includes a portion in contact with the non-curved portion.
10. The display device according to claim 7, wherein an end of the protective film is located on the counter region.
11. The display device according to claim 1, wherein: the adhesive material is formed of a pressure-sensitive adhesive tape; and the pressure-sensitive adhesive tape is located along the entirety of the first side.
12. The display device according to claim 1, wherein: the adhesive material is formed of a pressure-sensitive adhesive tape; and the pressure-sensitive adhesive tape is located along a part of the first side.
13. The display device according to claim 1, wherein the filling member is formed of a resin.
14. The display device according to claim 1, wherein the substrate is formed of a resin.
15. The display device according to claim 1, further comprising a counter substrate facing the substrate, wherein: the counter substrate covers a part of the front surface of the substrate; and the front surface of the peripheral region is not covered with the counter substrate.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(9) Hereinafter, embodiments of the present invention will be described with reference to the drawings and the like. The present invention may be carried out in various many embodiments, and should not be construed as being limited to any of the following embodiments. In the drawings, components may be shown schematically regarding the width, thickness, shape and the like, instead of being shown in accordance with the actual sizes, for the sake of clear illustration. The drawings are merely exemplary and do not limit the interpretations of the present invention in any way. In the specification and the drawings, components that are substantially the same as those shown in a previous drawing(s) bear the identical reference signs thereto, and detailed descriptions thereof may be omitted.
(10) In this specification, an expression that a component or area is “on” another component or area encompasses a case where such a component or area is in contact with the another component or area and also a case where such a component or area is above or below the another component or area, namely, a case where still another component or area is provided between such a component or area and the another component or area, unless otherwise specified.
(11) It is now assumed that an end portion of a PI resin substrate along which terminals are provided is folded, and a rear surface of the PI resin substrate and the folded end portion are made close to each other and bonded together with a pressure-sensitive adhesive member or an adhesive member such as, for example, a two-sided tape or the like. In this case, in a part in the vicinity of an inner surface of the curved portion of the PI resin substrate, the rear surface and the folded end portion are not made close to each other sufficiently, and as a result, the distance therebetween the rear surface and the folded end portion is larger than the thickness of the pressure-sensitive adhesive member or the adhesive member. Therefore, a gap (space) where the rear surface and the folded end portion are not in contact with each other is formed in a part inner to the curved portion of the PI resin substrate. In the case where a force is applied in a direction of compressing the gap, lines in the folded end portion may undesirably be broken. The present invention made in light of this problem has an object of providing a flexible display device in which a gap is not easily formed inner to the folded end portion and thus the lines are prevented to be broken.
(12) A structure of a display device 100 in an embodiment according to the present invention will be described with reference to
(13) The display device 100 includes a first substrate 102 having a display region 106 provided thereon. The display region 106 includes an array of a plurality of pixels 108. On a top surface of the display region 106, a second substrate 104 is provided so as to face the first substrate 102. The second substrate 104 may be secured to the first substrate 102 by a sealing member enclosing the display region 106. A space between the first substrate 102 and the second substrate 104, and a space inside the sealing member, may be filled with a filler. Such a structure seals a light emitting layer such that light emitting elements provided in the pixels 108 are not exposed to the air. Thus, the light emitting elements are suppressed from being deteriorated.
(14) A terminal region 114 is provided on a rear surface of the display device 100. The first substrate 102 has a front surface, at which display is provided, and a rear surface opposite to the front surface. The terminal region 114 is provided along an end (or one side among sides) of the front surface. As shown in
(15) The display device 100 in this embodiment includes a TFT-side substrate 118 including thin film transistor circuit elements, light emitting elements and the 195 connection terminals 116, and a CF-side substrate 120 including color filters (CFs). As shown in
(16) First, the TFT-side substrate 118 will be described. The TFT-side substrate 118 includes the first substrate 102 formed of, for example, polyimide, and also includes a TFT layer, the light emitting layer, a sealing layer and the like provided on the first substrate 102 (As described in
(17) The first substrate 102 includes a first region and a second region. The plurality of pixels 108 are located on the first region, and the connection terminals 116 are located on the second region. Namely, the first region corresponds to the display region 106 displaying an image. By contrast, the second region corresponds to the terminal region 114. The second region may be expressed as a region of the first substrate 102 excluding the first region. According to the present invention, the second region of the first substrate 102 is located on the rear surface of the display device 100.
(18) In the following description, the first region will be also referred to as the “display region”, and the second region will be also referred to as a “peripheral 215 region”. According to the present invention, the second region is folded along one side of the display device 100 and is folded back to be located on the rear surface of the display device 100.
(19) The light emitting elements are located in the display region 106 displaying an image. The light emitting elements each have a structure in which a pixel electrode located in each pixel 108 and a common electrode provided in correspondence with the plurality of the pixels 108 hold the light emitting layer therebetween.
(20) In the case where the light emitting element includes a light emitting layer formed of an organic EL material, the organic EL material may be a low molecular weight type organic material or a high molecular weight type organic material. In the case where a low molecular weight type organic material is used, the light emitting element includes the light emitting layer formed of such a light emitting organic material, and also includes a hole injection layer and an electron injection layer, and further a hole transfer layer and an electron transfer layer, provided to sandwich the light emitting layer. In this embodiment, the light emitting layer emits white light, and full-color light emission is realized by the color filters.
(21) The sealing layer is located on the light emitting elements and compensates for the ruggedness caused by the light emitting elements to provide a flat surface. The sealing layer is preferably an insulating layer that blocks entrance of moisture to the light emitting elements. Such an insulating layer may be an inorganic insulating layer or an organic insulating layer. Alternatively, the sealing layer may have a stack structure including an inorganic insulating layer and an organic insulating layer.
(22) Now, the CF-side substrate 120 will be described. The CF-side substrate 120 includes the second substrate 104 formed of, for example, polyimide, and also includes a color filter (CF) layer, a sealing member, and a filler provided on the second substrate 104.
(23) The CF layer is located on a region of the second substrate 104 that corresponds to the display region 106. The CF layer includes R (red), G (green) and B (blue) color filters located side by side and a light-blocking layer demarcating the color filters of the three colors (such a light-blocking layer is also referred to as a “black matrix”). The light-blocking layer is provided to prevent light leak between the pixels and thus to prevent a display fault such as color mixing or the like.
(24) The sealing member is located to enclose the region corresponding to the display region 106. The filler is located to fill the region enclosed by the sealing member.
(25) The sealing member bonds the first substrate 102 and the second substrate 104 to each other. The light emitting elements provided in the display region 106 are sealed by the sealing member and the filler so as not to be exposed to the air. Such a sealing structure suppresses the light emitting elements from being deteriorated. The filler may be formed of, for example, a material containing an epoxy resin, which is transparent.
Embodiment 1
(26) In the display device 100 according to the present invention, the peripheral region of the substrate (terminal region 114) is folded back to the rear surface, so that the area size ratio of the display region 106 with respect to the area size of the display device 100 is increased. As shown in
(27) In this embodiment, as shown in
(28) In
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(30) A portion of the filling member 146 between point D and point E does not need to be curved. In this portion, the filling member 146 and the TFT-side substrate 118 are in contact with each other without the adhesive material 148. Therefore, this portion is preferably inclined (tapered) with a straight outer contour, so that the filling member 146 and the TFT-side substrate 118 are in closer contact with each other. A portion of the TFT-side substrate 118 that faces the portion of the filling member 146 between point A and point B is curved. Therefore, as described above, this portion of the TFT-side substrate 118 (or the first substrate 102) is referred to as the “curved portion 130”, which is represented by the dashed line in
(31) The first overlapping portion 154, the second overlapping portion 156 and the third overlapping portion 158 are located in this order from the side of the display region 106. The portion of the filling member 146 between point D and point E is tapered as described above, such that the filling member 146 is made gradually thinner from the second overlapping portion toward the first overlapping portion. The shape of the filling member 146 may be changed, so that the shape of the overlapping portions is changed.
Production Method in Embodiment 1
(32) From the state shown in
(33) From the state shown in
Embodiment 2
(34) In embodiment 2, as shown in
(35) As shown in FIG, 3 and
Production Method in Embodiment 2
(36) From the state shown in
(37) From the state shown in
(38) The structure of the display device 100 is described above. With the above-described structure, a flexible display device in an embodiment according to the present invention is provided in which no gap is formed in the part inner to the folded-back portion and thus the lines are not easily broken.
(39) The above-described embodiments and examples are merely examples, and the technological scope of the present invention is not limited to any of the above-described embodiments or examples. A person of ordinary skill in the art would make various alterations without departing from the gist of the present invention. Therefore, such alterations are to be construed to be encompassed in the technological scope of the present invention.