Display device
A display device includes a display module and a window disposed on the display module. The display module includes a base layer, a light emitting element disposed on the base layer, an optical sensing element disposed on the base layer, a thin film encapsulation layer that covers the light emitting element and the optical sensing element, an insulating layer disposed on the thin film encapsulation layer, a light blocking pattern disposed on the insulating layer, and a color filter disposed on the insulating layer. The insulating layer includes a first area that overlaps the light emitting element and a second area that overlaps the optical sensing element, and the second area has a thickness greater than a thickness in the first area. The light blocking pattern includes a first opening that corresponds to the light emitting element and a second opening that corresponds to the optical sensing element.
1 . An electronic device, comprising:
a display module; and
a window disposed on the display module,
wherein the display module comprises:
a base layer;
a light emitting element disposed on the base layer;
an optical sensing element disposed on the base layer;
a thin film encapsulation layer that covers the light emitting element and the optical sensing element;
an insulating layer disposed on the thin film encapsulation layer and that includes a first area that overlaps the light emitting element and a second area that overlaps the optical sensing element, wherein the insulating layer has a thickness in the second area that is greater than a thickness in the first area;
a light blocking pattern disposed on the insulating layer and that includes a first opening that corresponds to the light emitting element and a second opening that corresponds to the optical sensing element; and
a color filter disposed on the insulating layer and the light blocking pattern, and that overlaps the second opening,
wherein a color filter that overlaps the second area protrudes further in a direction opposite to the insulating layer and the light blocking pattern than a color filter that overlaps the first area with respect to the color filter.
2 . The electronic device of claim 1 , wherein a length (S 1 ) of an effective fingerprint area is determined by the following Equation 1 of
S
1
=
P
+
L
1
L
2
(
P
+
S
2
)
in a reference direction, wherein
P denotes a length in the reference direction of the second opening,
S 2 denotes a length in the reference direction of a sensing area of the optical sensing element,
L 1 denotes a distance in a thickness direction of the display device between an upper surface of the second area and an upper surface of the window, and
L 2 denotes a distance in the thickness direction of the display device between the upper surface of the second area and the optical sensing element.
3 . The electronic device of claim 2 , wherein the length (S 1 ) of the effective fingerprint area is equal to or less than about 500 micrometers.
4 . The electronic device of claim 2 , wherein the length (P) of the second opening in the reference direction is within a range from about 6 micrometers to about 10 micrometers.
5 . The electronic device of claim 2 , wherein the optical sensing element comprises:
a first electrode of which at least a portion is exposed without being covered by a pixel definition layer;
a photoelectric conversion layer disposed on the first electrode; and
a second electrode disposed on the photoelectric conversion layer, wherein a length in the reference direction of a sensing area of the optical sensing element is a length in the reference direction of the portion of the first electrode exposed without being covered by the pixel definition layer.
6 . The electronic device of claim 1 , wherein the second area comprises:
a slanted surface that extends upward from an upper surface of the first area; and
an upper surface that extends from the slanted surface and that corresponds to an upper surface of the optical sensing element.
7 . The electronic device of claim 1 ,
wherein the light emitting element comprises first color light emitting elements, second color light emitting elements, and third color light emitting elements,
wherein one first color light emitting element, two second color light emitting elements, and one third color light emitting element form a unit light emitting element, and two optical sensing elements are disposed in the unit light emitting element.
8 . The electronic device of claim 7 , wherein the two optical sensing elements are electrically connected to each other.
9 . The electronic device of claim 1 , wherein
the light emitting element comprises first color light emitting elements, second color light emitting elements, and third color light emitting elements, and
the optical sensing element is disposed at a center between the first color light emitting element and the third color light emitting element in a second direction and a center between two second color light emitting elements in a first direction that crosses the second direction.
10 . The electronic device of claim 1 , wherein the display module further comprises
a pixel definition layer that includes a first opening formed therethrough that exposes a first electrode of the light emitting element and a second opening formed therethrough that exposes a first electrode of the optical sensing element, wherein
the first opening of the pixel definition layer is disposed inside the first opening of the light blocking pattern when viewed in a plan view, and
the second opening of the light blocking pattern is disposed inside the second opening of the pixel definition layer when viewed in a plan view.
11 . The electronic device of claim 1 , wherein the display module further comprises an overcoat layer disposed on the insulating layer and that covers the light blocking pattern and the color filter, wherein the overcoat layer provides an upper surface that is flatter than an upper surface of the insulating layer.
12 . The electronic device of claim 1 , wherein the display module further comprises:
at least one inorganic layer disposed between the thin film encapsulation layer and the insulating layer; and
a touch sensing electrode disposed between the thin film encapsulation layer and the insulating layer.
13 . A display device, comprising:
a display module; and
a window disposed on the display module,
wherein the display module comprises:
a base layer;
a light emitting element disposed on the base layer;
an optical sensing element disposed on the base layer;
a thin film encapsulation layer that covers the light emitting element and the optical sensing element;
an insulating layer disposed on the thin film encapsulation layer;
an insulating pattern disposed on the insulating layer and that overlaps the optical sensing element;
a light blocking pattern disposed on the insulating layer and the insulating pattern, wherein the light blocking pattern includes a first opening formed therethrough that corresponds to the light emitting element and a second opening formed therethrough that corresponds to the optical sensing element; and
a color filter disposed on the insulating layer, the insulating pattern, and the light blocking pattern, and that overlaps the second opening,
wherein the color filter that overlaps the insulating pattern protrudes further in a direction opposite to the insulating layer and the light blocking pattern than a color filter that does not overlap the insulating pattern with respect to the color filter.
14 . The display device of claim 13 , wherein a length (S 1 ) of an effective fingerprint area is determined by the following Equation 1 of
S
1
=
P
+
L
1
L
2
(
P
+
S
2
)
in a reference direction, wherein
P denotes a length of the second opening in the reference direction,
S 2 denotes a length of a sensing area of the optical sensing element in the reference direction,
L 1 denotes a distance between an upper surface of the insulating pattern and an upper surface of the window in a thickness direction of the display device, and
L 2 denotes a distance between the upper surface of the insulating pattern and the optical sensing element in the thickness direction of the display device.
15 . The display device of claim 14 , wherein the length (S 1 ) of the effective fingerprint area is equal to or less than about 500 micrometers.
16 . The display device of claim 13 , wherein the insulating pattern has a thickness greater than a thickness of the insulating layer.
17 . The display device of claim 13 , wherein the light emitting element is disposed inside the first opening when viewed in a plan view, and the second opening is disposed inside the optical sensing element.
18 . The display device of claim 13 , further comprising:
at least one inorganic layer disposed between the thin film encapsulation layer and the insulating layer; and
an input sensing electrode disposed between the thin film encapsulation layer and the insulating layer.