PHOTOMASK AND METHOD FOR MANUFACTURING DISPLAY DEVICE
20190319222 ยท 2019-10-17
Inventors
- Ryosuke GUNJI (Sakai City, JP)
- Tohru OKABE (Sakai City, JP)
- Hiroki TANIYAMA (Sakai City, JP)
- Shinji ICHIKAWA (Sakai City, JP)
- Shinsuke SAIDA (Sakai City, JP)
- Hiroharu JINMURA (Sakai City, JP)
- Yoshihiro NAKADA (Sakai City, JP)
- Akira INOUE (Sakai City, JP)
Cpc classification
H05B33/22
ELECTRICITY
H10K71/00
ELECTRICITY
G03F1/50
PHYSICS
H05B33/10
ELECTRICITY
G03F1/38
PHYSICS
G03F1/32
PHYSICS
International classification
G03F1/32
PHYSICS
Abstract
The photomask includes: transmissive portions configured to form the opening portion, a semi-transmitted light portion configured to form the planar portion, and a light blocking portion configured to form each of the plurality of photo spacer portions. The light blocking portion is formed in an island shape between the transmissive portions arranged in a lattice shape, and an end portion of the light blocking portion is formed to extend, between two of the transmissive portions, along outer edges of the two of the transmissive portions.
Claims
1. A photomask configured to collectively form an edge cover, out of photomasks configured to form a display device, the display device comprising: a plurality of first electrodes; the edge cover configured to cover end portions of the plurality of first electrodes; a light-emitting layer in an island shape, the light-emitting layer being configured to cover each of the plurality of first electrodes and a part of the edge cover; and a second electrode, wherein the edge cover includes an opening portion configured to expose the plurality of first electrodes, a planar portion, and a plurality of photo spacer portions higher than the planar portion, the photomask includes transmissive portions configured to form the opening portion, a semi-transmitted light portion configured to form the planar portion, and a light blocking portion configured to form each of the plurality of photo spacer portions, the light blocking portion is formed in an island shape between the transmissive portions arranged in a lattice shape, and an end portion of the light blocking portion is formed to extend, between two of the transmissive portions, along outer edges of the two of the transmissive portions.
2. The photomask according to claim 1, wherein each of the transmissive portions is formed in a quadrilateral shape.
3. The photomask according to claim 1, wherein the semi-transmitted light portion includes a pattern in which a plurality of belt-shaped patterns are formed in parallel with each other.
4. The photomask according to claim 1, wherein a peripheral edge of the light blocking portion is in contact with the semi-transmitted light portion.
5. The photomask according to claim 1, wherein a peripheral edge of the light blocking portion is partly in contact with the transmissive portions.
6. The photomask according to claim 1, wherein the semi-transmitted light portion is formed by a halftone mask.
7. The photomask according to claim 1, wherein the semi-transmitted light portion is formed by a gray-tone mask provided with a fine pattern.
8. (canceled)
9. A method for manufacturing a display device by using a photomask, the display device comprising an edge cover configured to cover end portions of a plurality of first electrodes, wherein the edge cover includes at least one opening portion configured to expose each of the first electrodes, a planar portion, and a plurality of photo spacer portions higher than the planar portion, the display device further includes a light-emitting layer in an island shape, the light-emitting layer being configured to cover each of the plurality of first electrodes and a part of the edge cover, and a second electrode in an upper layer than the light-emitting layer, the second electrode being a common electrode to each of the plurality of first electrodes, the at least one opening portion comprises a plurality of opening portions, each of the plurality of photo spacer portions is formed in an island shape between the plurality of opening portions arranged in a lattice shape, and an end portion of each of the plurality of photo spacer portions is formed to extend, between two of the plurality of opening portions, along outer edges of the two of the plurality of opening portions, the method comprising: forming the edge cover on a substrate; mounting the photomask on the edge cover; and irradiating the edge cover with light through the photomask to form each of the plurality of photo spacer portions along an outer edge of the opening portion.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DESCRIPTION OF EMBODIMENTS
[0031] In the following, embodiments of the disclosure will be described.
[0032]
[0033] The photomask 1 is used to collectively form a photosensitive organic layer 10 (edge cover) including a plurality of openings 9 (opening portion) for vapor-depositing the luminescent material of the organic light emitting diode, a plurality of photo spacers 6 (photo spacer portion) for supporting a fine metal mask (not illustrated) for vapor-depositing the luminescent material, and a planar portion 7 for connecting the photo spacer 6 and the opening 9.
[0034] The photosensitive organic layer 10 is formed of polyimide resin, acrylic resin, epoxy resin, and the like. Then, a photo spacer 6, a planar portion 7 and an opening 9 are formed in the photosensitive organic layer 10. The opening 9 exposes the anode electrode 8 (first electrode), and an end portion of the anode electrode 8 is covered with the planar portion 7.
[0035] Then, a light-emitting layer in an island shape (not illustrated) covering the anode electrode 8 and a part of the photosensitive organic layer 10 is formed by using vapor deposition method by which the luminescent material is vapor-deposited on the anode electrode 8 and the photosensitive organic layer 10. A cathode electrode (second electrode) is formed on the light-emitting layer.
[0036] The photomask 1 includes a gray-tone region 2 (semi-transmitted light portion, gray-tone mask) in which a plurality of belt-shaped patterns 3 (fine patterns) are formed in parallel with each other, a plurality of opening patterns 4 (transmissive portions) formed in the gray-tone region 2 across the plurality of belt-shaped patterns 3 to form a plurality of openings 9, and a plurality of light blocking patterns 5 (light blocking portions) formed in the gray-tone region 2 across the plurality of belt-shaped patterns 3 to form a plurality of photo spacers 6. In the example illustrated in
[0037] Each light blocking pattern 5 is formed in a cross shape to extend along outer edges of each of the four opening patterns arranged in two rows and two columns. The light blocking patterns 5 is formed in an island shape between the plurality of opening patterns 4 arranged in a lattice pattern. An end portion of the light blocking pattern 5 sandwiched between two opening patterns 4 is formed to extend along the outer edges of the two opening patterns 4. The light blocking pattern 5 is formed so that its peripheral edge is in contact with the belt-shaped pattern 3.
[0038] An opening 9 is formed by the opening pattern 4 of the photomask 1, a photo spacer 6 is formed by the light blocking pattern 5, and a planar portion 7 is formed by the belt-shaped pattern 3.
[0039]
[0040] Thus, in a case of forming a small light blocking pattern 95 in a circular shape, there is a phenomenon in which the photo spacer is deformed due to heat sagging generated in the photo spacer in baking the photo spacer formed by the light blocking pattern 95, and the height of the photo spacer becomes lower. This phenomenon is particularly problematic in high resolution OLED panels.
[0041] On the other hand, in the present embodiment, as illustrated in
[0042] It should be noted that an example in which the light blocking pattern 95 corresponding to the photo spacer is circular is illustrated, but the disclosure is not limited thereto. The light blocking pattern 95 may have other shapes, such as a rectangle, rhombus, and ellipse, that do not extend along the opening pattern 4.
[0043] In addition, an example is illustrated in which the light blocking pattern is arranged at a position surrounded by four opening patterns arranged in two rows and two columns, but the disclosure is not limited thereto. For example, the light blocking pattern may be arranged at a position surrounded by two or three opening patterns.
[0044]
[0045] By using the photomask 91 illustrated in
[0046] On the other hand, in the present embodiment, since the volume of the photo spacer 6 formed by the light blocking pattern 5 increases compared to the volume of the photo spacer 96 in
[0047]
[0048] Photomasks 1A and 1B each include a gray-tone region 2 in which a plurality of belt-shaped patterns 3 are formed in parallel with each other. In the above example, an example is described in which the belt-shaped pattern 3 extends in the horizontal direction, but the disclosure is not limited thereto. The belt-shaped pattern 3 may extend in any direction, and for example, may extend in a vertical direction as illustrated in
[0049]
[0050] As illustrated in
[0051] As illustrated in
[0052]
[0053] In the above example, an example of the rectangular opening pattern 4 is described, but the disclosure is not limited thereto. Instead of the rectangular opening pattern 4, a circular opening pattern 4E may be formed as illustrated in
[0054] In addition, the shape of each opening pattern may be different depending on the color (red (R), green (G), blue (B)) of the luminescent material of the organic light emitting diode formed in a corresponding opening 9, and for example, as illustrated in
[0055]
[0056] In the above example, a configuration in which the planar portion 7 is provided between the opening 9 and the photo spacer 6 is described, but the disclosure is not limited thereto. The planar portion 7 may not be provided. In this case, the light blocking pattern SG is formed such that the end portions of the light blocking pattern SG each are in close contact with a part of the peripheral edge of each opening pattern 4 as illustrated in
[0057] A positive-working photosensitive organic layer 10 is used in the above description. In a case that the positive-working photosensitive organic layer 10 is exposed to light, the solubility in a developing solution increases and the exposed portion is removed. A negative-working photosensitive organic layer may also be used in the description. In a case that the negative-working photosensitive organic layer is exposed to light, the solubility in a developing solution decreases and the exposed portion remains after development. In the case of the negative-working, the transmissive portion forms a photo spacer portion, the semi-transmitted light portion forms a planar portion, and the light blocking portion forms an opening. In addition, in the above description, an example of forming the edge cover with the photosensitive organic layer is described, but the organic layer may be patterned by using a resist separately without using a photosensitive organic layer.
SUPPLEMENT
[0058] A photomask of the first aspect is a photomask configured to collectively form an edge cover, out of photomasks configured to form a display device, the display device including:
[0059] a plurality of first electrodes;
[0060] the edge cover configured to cover end portions of the plurality of first electrodes;
[0061] a light-emitting layer in an island shape, the light-emitting layer being configured to cover each of the plurality of first electrodes and a part of the edge cover; and
[0062] a second electrode,
[0063] wherein the edge cover includes
[0064] an opening portion configured to expose the plurality of first electrodes,
[0065] a planar portion, and
[0066] a plurality of photo spacer portions higher than the planar portion,
[0067] the photomask includes
[0068] transmissive portions configured to form the opening portion,
[0069] a semi-transmitted light portion configured to form the planar portion, and
[0070] a light blocking portion configured to form each of the plurality of photo spacer portions,
[0071] the light blocking portion is formed in an island shape between the transmissive portions arranged in a lattice shape, and
[0072] an end portion of the light blocking portion is formed to extend, between two of the transmissive portions, along outer edges of the two of the transmissive portions.
[0073] In the second aspect, each of the transmissive portions is formed in a quadrilateral shape.
[0074] In the third aspect, the semi-transmitted light portion includes a pattern in which a plurality of belt-shaped patterns are formed in parallel with each other.
[0075] In the fourth aspect, a peripheral edge of the light blocking portion is in contact with the semi-transmitted light portion.
[0076] In the fifth aspect, a peripheral edge of the light blocking portion is partly in contact with the transmissive portions.
[0077] In the sixth aspect, the semi-transmitted light portion is formed by a halftone mask.
[0078] In the seventh aspect, the semi-transmitted light portion is formed by a gray-tone mask provided with a fine pattern.
[0079] The display device of the eighth aspect is a display device including an edge cover configured to cover end portions of a plurality of first electrodes,
[0080] wherein the edge cover includes
[0081] at least one opening portion configured to expose each of the plurality of first electrodes,
[0082] a planar portion, and
[0083] a plurality of photo spacer portions higher than the planar portion,
[0084] the display device further includes
[0085] a light-emitting layer in an island shape, the light-emitting layer being configured to cover each of the plurality of first electrodes and a part of the edge cover, and
[0086] a second electrode in an upper layer than the light-emitting layer, the second electrode being a common electrode to each of the plurality of first electrodes,
[0087] the at least one opening portion includes a plurality of opening portions,
[0088] each of the plurality of photo spacer portions is formed in an island shape between the plurality of opening portions arranged in a lattice shape, and
[0089] an end portion of each of the plurality of photo spacer portions is formed to extend, between two of the plurality of opening portions, along outer edges of the two of the plurality of opening portions.
[0090] The method for manufacturing a display device of the ninth aspect is a method for manufacturing a display device by using the photomask according to the first aspect, the method including:
[0091] forming the edge cover on a substrate;
[0092] mounting the photomask on the edge cover; and
[0093] irradiating the edge cover with light through the photomask to form each of the plurality of photo spacer portions along an outer edge of the opening portion.
[0094] The disclosure is not limited to each of the above embodiments, and various modifications are possible within the scope indicated in the claims, and embodiments obtained by appropriately combining technical means disclosed in each of different embodiments are also included in the technical scope of the disclosure. Furthermore, combining technical means disclosed in each embodiment allows new technical characteristics to be formed.
[0095] The display according to the present embodiment is not particularly limited as long as it is a display panel including a display element. The display element is a display element whose luminance and transmittance are controlled by the current, and the display element under the current control includes an organic electro luminescence (EL) display including an organic light emitting diode (OLED), or a quantum dot light emitting diode (QLED) display including an EL display QLED such as an inorganic EL display including an inorganic light emitting diode.
REFERENCE SIGNS LIST
[0096] 1 Photomask [0097] 2 Gray-tone region (semi-transmitted light portion, gray-tone mask) [0098] 3 Belt-shaped pattern (fine pattern) [0099] 4 Opening pattern (transmissive portion) [0100] 5 Light blocking pattern (light blocking portion) [0101] 6 Photo spacer (photo spacer portion) [0102] 7 Planar portion [0103] 8 Anode electrode (first electrode) [0104] 9 Opening (opening portion) [0105] 10 Photosensitive organic layer (edge cover)