Emissive display configured for through-display imaging
A display configuration to facilitate imaging through the display is disclosed. The imaging can be achieved by positioning a camera behind a through-transmissive area of a display. The through-transmissive area is configured to reduce the interaction between the light propagating through the display and circuit elements of the display. The configuration of the through-transmissive area can be characterized by reduced pixel density, rearranged circuit elements, and a light blocking layer to prevent light from diffracting from gaps formed by circuit elements.
1. A mobile computing device comprising:
a display having a high-resolution area and a through-transmissive area, the through-transmissive area including:
pixels that are spaced in a repeating pattern according to a first pixel density that is lower than a second pixel density of the high-resolution area;
signal lines configured to provide electrical signals to the pixels, the signal lines arranged such that they diffract visible light that passes through the through-transmissive area; and
a light-blocking layer having an opaque pattern that is positioned below, and aligned with, the signal lines to block light after the light propagates through gaps formed between the signal lines; and
a light sensor positioned behind the through-transmissive area, such that the signal lines and the light-blocking layer are between a surface of the display and the light sensor, wherein the opaque pattern of the light-blocking layer is aligned with the signal lines to block light transmitted through the through-transmissive region and diffracted by the signal lines from reaching the light sensor, and the light sensor is configured to receive light through the display that is not blocked by the light-blocking layer.
2. The mobile computing device according to claim 1 , wherein the display includes an active matrix organic light emitting diode (AMOLED) display.
3. The mobile computing device according to claim 1 , wherein, in a repeating pattern of pixels in the through-transmissive area, in a group of three or more parallel signal lines between adjacent pixels, adjacent signal lines are spaced apart from each other by less than 7 microns.
4. The mobile computing device according to claim 3 , wherein:
the high-resolution area includes signal lines that are configured to provide electrical signals to pixels in the high-resolution area; and
adjacent and parallel signal lines in the low-resolution area are spaced apart from each other by a distance that is less than a distance by which adjacent and parallel signal lines in the high-resolution area are spaced apart.
5. The mobile computing device according to claim 1 , wherein, in a repeating pattern of pixels in the through-transmissive area, in a group of three or more parallel signal lines between adjacent pixels, adjacent signal lines are spaced apart from each other by less than 5 microns.
6. The mobile computing device according to claim 1 , wherein the repeating pattern of pixels in the through-transmissive area is characterized by a unit cell having a first area, and wherein the unit cell includes a second area that is within the first area, that is free of subpixels and free of signal lines, and that is greater than 40% of the first area.
7. The mobile computing device according to claim 1 , wherein the opaque pattern absorbs visible and infrared light.
8. The mobile computing device according to claim 1 , wherein the opaque pattern reflects visible and infrared light.
9. The mobile computing device according to claim 1 , wherein the light sensor includes a camera.
10. The mobile computing according to claim 1 , wherein the light-blocking layer includes a pattern of opaque portions and transparent portions.
11. The mobile computing device according to claim 1 , wherein a width of the signal lines is greater than 500 nm.
12. The mobile computing device according to claim 1 , wherein two or more of the signal lines are parallel to each other, with a gap between the parallel signal lines being less than one micron.