Display apparatus
A display apparatus may enhance light extraction efficiency, prevent the damage of an emission layer, and prevent the delay of an image signal. The display apparatus may include a substrate having a plurality of subpixels defined thereon; a planarization layer on the substrate; a protrusion portion on the planarization layer, the protrusion portion including an upper surface and a lateral surface; and a reflection portion on the lateral surface of the protrusion portion.
1 . A display apparatus, comprising:
a substrate having a plurality of subpixels defined thereon;
a planarization layer on the substrate;
a protrusion portion on the planarization layer, the protrusion portion including an upper surface and a lateral surface;
a reflection portion on the lateral surface of the protrusion portion;
an anode electrode between the protrusion portion and the reflection portion;
an organic emission layer between the anode electrode and the reflection portion;
an insulation layer between the anode electrode and the organic emission layer;
a first line adjacent to one of the plurality of subpixels; and
a second line connected with the first line and arranged in a direction different from a direction of the first line,
wherein the planarization layer is made of an organic material,
wherein the protrusion portion is made of the same material as the planarization layer
wherein a width of the first line is less than or equal to a width of the insulation layer between the plurality of subpixels.
2 . The display apparatus of claim 1 , wherein each of the plurality of subpixels comprises an emission region and a circuit region adjacent to the emission region,
wherein the protrusion portion includes a plurality of protrusion portions with each protrusion portion in the emission region of a respective one of the subpixels, and
wherein the reflection portion is in the emission region and the circuit region of the plurality of subpixels.
3 . The display apparatus of claim 1 , wherein the reflection portion is on the upper surface of the protrusion portion, and is commonly disposed on the protrusion portion in each of the plurality of subpixels.
4 . The display apparatus of claim 1 ,
wherein the reflection portion contacts an upper surface of the organic emission layer on the upper surface of the protrusion portion, and
wherein the anode electrode contacts a lower surface of the organic emission layer on the upper surface of the protrusion portion.
5 . The display apparatus of claim 4 , wherein the insulation layer is between the anode electrode and the reflection portion on the lateral surface of the protrusion portion.
6 . The display apparatus of claim 5 , wherein the anode electrode is on the upper surface and the lateral surface of the protrusion portion,
the insulation layer covers the anode electrode on the lateral surface of the protrusion portion and extends up to the anode electrode on the upper surface of the protrusion portion, and
one end of the insulation layer is disposed on the upper surface of the protrusion portion.
7 . The display apparatus of claim 5 , wherein the insulation layer comprises an inorganic material.
8 . The display apparatus of claim 1 , further comprising a plurality of color filters between the substrate and the planarization layer,
wherein the plurality of color filters overlap partially at boundary portions between the plurality of subpixels.
9 . The display apparatus of claim 1 , wherein an angle between the lateral surface of the protrusion portion and an upper surface of the planarization layer contacting the protrusion portion is 30 degrees or more and less than 90 degrees.
10 . The display apparatus of claim 1 , further comprising a slit portion dividing the protrusion portion into two or more portions.
11 . The display apparatus of claim 10 ,
wherein the anode electrode and the reflection portion extend up to the upper surface of the protrusion portion and the slit portion.
12 . The display apparatus of claim 11 , wherein the insulation layer partially covers the anode electrode,
wherein the protrusion portion comprises an inner surface in the slit portion, and
wherein the insulation layer is between the anode electrode and the reflection portion on the inner surface of the protrusion portion.
13 . The display apparatus of claim 12 , wherein an angle between the inner surface of the protrusion portion and an upper surface of the planarization layer contacting the protrusion portion is 60 degrees or more and less than 90 degrees.
14 . The display apparatus of claim 12 , wherein the insulation layer is absent on the upper surface of the protrusion portion.
15 . The display apparatus of claim 11 , wherein the protrusion portion comprises a plurality of inner surfaces apart from one another in the slit portion,
wherein the anode electrode contacts the planarization layer between the plurality of inner surfaces.
16 . The display apparatus of claim 15 , wherein the organic emission layer contacts each of the reflection portion and the anode electrode contacting the planarization layer, in the slit portion.
17 . The display apparatus of claim 1 , further comprising:
a first layer covering the first line;
a second layer covering the second line on the first layer,
wherein the insulation layer covers an edge of the anode electrode, and
wherein the first layer is non-overlapping the anode electrode at a portion of the anode electrode that is uncovered by the insulation layer.
18 . The display apparatus of claim 1 , wherein an angle between the upper surface of the protrusion portion and the lateral surface of the protrusion portion is an obtuse angle.
19 . A display apparatus, comprising:
a substrate having a plurality of subpixels defined thereon;
a planarization layer on the substrate;
a protrusion portion on the planarization layer, the protrusion portion including an upper surface and a lateral surface;
an anode electrode on the upper surface and the lateral surface of the protrusion portion;
a reflection portion on the anode electrode;
an organic emission layer between the anode electrode and the reflection portion;
an insulation layer between the an organic emission layer and the anode electrode on the lateral surface of the protrusion portion;
a first line adjacent to one of the plurality of subpixels; and
a second line connected with the first line and arranged in a direction different from a direction of the first line,
wherein the planarization layer is made of an organic material,
wherein the protrusion portion is made of the same material as the planarization layer,
wherein a width of the first line is less than or equal to a width of the insulation layer between the plurality of subpixels.
20 . The display apparatus of claim 19 , wherein one end of the insulation layer is on the upper surface of the protrusion portion, and
wherein an angle between the lateral surface of the protrusion portion and an upper surface of the planarization layer contacting the protrusion portion is 30 degrees or more, and less than 90 degrees.
21 . The display apparatus of claim 19 , further comprising a slit portion dividing the protrusion portion into two or more portions,
wherein the protrusion portion comprises a plurality of inner surfaces apart from one another in the slit portion, and
wherein the insulation layer is disposed between the anode electrode and the reflection portion, on the inner surface of the protrusion portion.
22 . The display apparatus of claim 21 , wherein the insulation layer is absent on the upper surface of the protrusion portion, and
wherein an angle between the inner surface of the protrusion portion and an upper surface of the planarization layer contacting the protrusion portion is 60 degrees or more and less than 90 degrees.