DISPLAY, METHOD OF MANUFACTURING DISPLAY, METHOD OF DRIVING DISPLAY, AND ELECTRONIC APPARATUS
A display includes: a light-emitting section provided in a display region; and a light-receiving section provided in the display region, and configured to receive light from the light-emitting section.
1 . A display comprising:
a light-emitting section provided in a display region; and
a light-receiving section provided in the display region, and configured to receive light from the light-emitting section.
2 . The display according to claim 1 , further comprising:
a pixel drive circuit configured to drive the light-emitting section; and
a correction circuit configured to send a correction signal to the pixel drive circuit in accordance with an amount of the light received by the light-receiving section.
3 . The display according to claim 2 , wherein the light-emitting section and the light-receiving section are provided on a surface of a substrate.
4 . The display according to claim 3 , wherein the light-receiving section includes a photoelectric conversion film between a pair of electrodes.
5 . The display according to claim 2 , wherein the light-emitting section is provided on a surface of a substrate, and the light-receiving section is provided in an interior of the substrate.
6 . The display according to claim 5 , wherein the light-receiving section includes a photodiode.
7 . The display according to claim 5 , wherein the substrate includes a silicon layer.
8 . The display according to claim 7 , wherein the light-receiving section is provided in the vicinity of a rear surface of the silicon layer.
9 . The display according to claim 5 , wherein the pixel drive circuit includes a transistor, and the transistor is provided at a location that is overlapped in planar view with the light-emitting section.
10 . The display according to claim 9 , wherein the transistor and the light-receiving section are provided for each pixel, and the transistor and the light-receiving section are provided at locations that are adjacent to each other.
11 . The display according to claim 10 , further comprising a shield section provided between the transistor and the light-receiving section.
12 . The display according to claim 11 , wherein the shield section comprises an insulating film embedded in a groove of the substrate.
13 . The display according to claim 11 , wherein the shield section comprises a metal film embedded in a groove of the substrate.
14 . The display according to claim 11 , wherein the shield section comprises copper embedded in a groove of the substrate.
15 . The display according to claim 11 , wherein the shield section is provided surrounding the light-receiving section.
16 . The display according to claim 5 , further comprising a reflecting section that opposes the substrate,
wherein the light from the light-emitting section is reflected by the reflecting section, and the light reflected by the reflecting section enters the light-receiving section.
17 . The display according to claim 16 , wherein a surface, which opposes the substrate, of the reflecting section comprises a parabolic curved surface.
18 . An electronic apparatus provided with a display, the display comprising:
a light-emitting section provided in a display region; and
a light-receiving section provided in the display region, and configured to receive light from the light-emitting section.
19 . A method of driving a display, the method comprising:
driving, using a pixel drive circuit, a light-emitting section that is provided in a display region;
receiving, using a light-receiving section that is provided in the display region, light from the light-emitting section; and
sending a correction signal to the pixel drive circuit from a correction circuit in accordance with an amount of the light received by the light-receiving section.
20 . A method of manufacturing a display, the method comprising:
forming a light-emitting section in a display region; and
forming a light-receiving section in the display region, the light-receiving section being configured to receive light from the light-emitting section.