IP Library › Granted Patent US 11,539,034
Granted Patent B2
US 11,539,034 · App. 16/869,637 · Granted Dec 27, 2022

Display device and electronic apparatus having lenses disposed correspondingly to respective pixel electrodes

Inventor: Takeshi Koshihara (Matsumoto, JP)
Assignee: SEIKO EPSON CORPORATION
H01L51/5275H01L27/322H01L27/3218
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Quick Facts
Patent No.
US 11,539,034
App. No.
16/869,637
Granted
Dec 27, 2022
Kind
B2
Abstract

A display device includes a substrate, a lens layer including a plurality of lenses, and a plurality of pixel electrodes disposed between the substrate and the lens layer. The plurality of pixel electrodes include a first pixel electrode and a second pixel electrode. The plurality of lenses include a first lens disposed correspondingly to the first pixel electrode and a second lens disposed correspondingly to the second pixel electrode. An area of the first pixel electrode in plan view is greater than an area of the second pixel electrode in the plan view. An area of the first lens in the plan view is greater than an area of the second lens.

Claims (109)

1. A display device, comprising:

a common electrode;

a first pixel electrode;

a second pixel electrode;

a third pixel electrode;

a light-emitting layer that is disposed between the common electrode and the first pixel electrode and that is disposed between the common electrode and the second pixel electrode;

a first lens disposed so as to correspond to the first pixel electrode;

a second lens disposed so as to correspond to the second pixel electrode;

a third lens disposed so as to correspond to the third pixel electrode;

a light-transmitting layer disposed so as to be in contact with a lens surface of the first lens and a lens surface of the second lens;

a first colored portion disposed between the common electrode and the first lens;

a second colored portion disposed between the common electrode and the second lens; and

a flattening layer that is disposed between the first colored portion and the first lens and that is disposed between the second colored portion and the second lens, wherein

in plan view, an area of the first pixel electrode is greater than an area of the second pixel electrode, and the area of the first pixel electrode is equal to an area of the third pixel electrode in the plan view,

in plan view, a width in a predetermined direction of the first lens is wider than a width in the predetermined direction of the second lens,

the lens surface of the first lens has an approximately flat portion,

the lens surface of the second lens has an approximately flat portion,

in plan view, a width in a predetermined direction of the first colored portion is wider than a width in the predetermined direction of the second colored portion,

the flattening layer includes a first surface and a second surface,

the first surface of the flattening layer is in contact with the first colored portion and the second colored portion,

the second surface of the flattening layer is in contact with the first lens and the second lens, and

the second surface of the flattening layer is approximately flat.

2. The display device according to claim 1 , further comprising:

a substrate; and

a transmissive substrate, wherein

the lens surface of the first lens and the lens surface of the second lens are a convex surface protruding toward the transmissive substrate, and

a refractive index of the first lens and the second lens is lower than a refractive index of the light-transmitting layer.

3. The display device according to claim 2 , wherein:

a refractive index of the transmissive substrate is lower than the refractive index of the light-transmitting layer.

4. The display device according to claim 1 , wherein

a volume of the first lens is greater than a volume of the second lens.

5. The display device according to claim 1 , wherein

a first distance between the first pixel electrode and the first lens is longer than a second distance between the second pixel electrode and the second lens in the plan view.

6. The display device according to claim 1 , wherein

the first lens overlaps the first pixel electrode in the plan view, and

the second lens overlaps the second pixel electrode in the plan view.

7. An electronic apparatus, comprising:

the display device according to claim 1 ; and

a condensing lens that incidents light emitted from the display device.

8. A display device, comprising:

a common electrode;

a first pixel electrode;

a second pixel electrode;

a third pixel electrode;

a light-emitting layer that is disposed between the common electrode and the first pixel electrode and that is disposed between the common electrode and the second pixel electrode;

a first lens disposed so as to correspond to the first pixel electrode;

a second lens disposed so as to correspond to the second pixel electrode;

a third lens disposed so as to correspond to the third pixel electrode; and

a light-transmitting layer disposed so as to be in contact with a lens surface of the first lens and a lens surface of the second lens;

a substrate;

a transmissive substrate;

a first colored portion disposed between the common electrode and the first lens;

a second colored portion disposed between the common electrode and the second lens; and

a flattening layer that is disposed between the first colored portion and the first lens and that is disposed between the second colored portion and the second lens, wherein

in plan view, an area of the first pixel electrode is greater than an area of the second pixel electrode, and the area of the first pixel electrode is equal to an area of the third pixel electrode in the plan view,

in plan view, a width in a predetermined direction of the first lens is wider than a width in the predetermined direction of the second lens,

the lens surface of the first lens has an approximately flat portion,

the lens surface of the second lens has an approximately flat portion,

the lens surface of the first lens and the lens surface of the second lens are a convex surface protruding toward the transmissive substrate,

a refractive index of the first lens and the second lens is lower than a refractive index of the light-transmitting layer,

in plan view, a width in a predetermined direction of the first colored portion is wider than a width in the predetermined direction of the second colored portion,

the flattening layer includes a first surface and a second surface,

the first surface of the flattening layer is in contact with the first colored portion and the second colored portion,

the second surface of the flattening layer is in contact with the first lens and the second lens, and

the second surface of the flattening layer is approximately flat.

9. A display device, comprising:

a common electrode;

a first pixel electrode;

a second pixel electrode;

a light-emitting layer that is disposed between the common electrode and the first pixel electrode and that is disposed between the common electrode and the second pixel electrode;

a first lens disposed so as to correspond to the first pixel electrode;

a second lens disposed so as to correspond to the second pixel electrode;

a light-transmitting layer disposed so as to be in contact with a lens surface of the first lens and a lens surface of the second lens, wherein

in plan view, an area of the first pixel electrode is greater than an area of the second pixel electrode,

in plan view, a width in a predetermined direction of the first lens is wider than a width in the predetermined direction of the second lens,

the lens surface of the first lens has an approximately flat portion, and

the lens surface of the second lens has an approximately flat portion;

a first colored portion disposed between the common electrode and the first lens;

a second colored portion disposed between the common electrode and the second lens, wherein

in plan view, a width in a predetermined direction of the first colored portion is wider than a width in the predetermined direction of the second colored portion; and

a flattening layer that is disposed between the first colored portion and the first lens and that is disposed between the second colored portion and the second lens, wherein

the flattening layer includes a first surface and a second surface,

the first surface of the flattening layer is in contact with the first colored portion and the second colored portion,

the second surface of the flattening layer is in contact with the first lens and the second lens, and

the second surface of the flattening layer is approximately flat.

10. A display device, comprising:

a common electrode;

a first pixel electrode;

a second pixel electrode;

a light-emitting layer that is disposed between the common electrode and the first pixel electrode and that is disposed between the common electrode and the second pixel electrode;

a first lens disposed so as to correspond to the first pixel electrode;

a second lens disposed so as to correspond to the second pixel electrode;

a light-transmitting layer disposed so as to be in contact with a lens surface of the first lens and a lens surface of the second lens, wherein

in plan view, an area of the first pixel electrode is greater than an area of the second pixel electrode,

in plan view, a width in a predetermined direction of the first lens is wider than a width in the predetermined direction of the second lens,

the lens surface of the first lens has an approximately flat portion, and

the lens surface of the second lens has an approximately flat portion;

a substrate;

a transmissive substrate, wherein

the lens surface of the first lens and the lens surface of the second lens are a convex surface protruding toward the transmissive substrate, and

a refractive index of the first lens and the second lens is lower than a refractive index of the light-transmitting layer;

a first colored portion disposed between the common electrode and the first lens;

a second colored portion disposed between the common electrode and the second lens, wherein

in plan view, a width in a predetermined direction of the first colored portion is wider than a width in the predetermined direction of the second colored portion; and

a flattening layer that is disposed between the first colored portion and the first lens and that is disposed between the second colored portion and the second lens, wherein

the flattening layer includes a first surface and a second surface,

the first surface of the flattening layer is in contact with the first colored portion and the second colored portion,

the second surface of the flattening layer is in contact with the first lens and the second lens, and

the second surface of the flattening layer is approximately flat.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2020
From: KOSHIHARA, TAKESHI
To: SEIKO EPSON CORPORATION
Reel/Frame 052606/0441 →
Priority Claims (1)
JP JP2019-088860 · May 9, 2019 · national
Continuity (1)
Related Publication 20200358034A1 · Nov 12, 2020
Cited By (1)
US 12,720,958