Micro LED mixing cup
A light emitting structure including mixing cups are described. In an embodiment, a light emitting structure includes a light emitting diode (LED) bonded to a substrate, a diffuser layer adjacent the LED, an angular filter directly over the diffuser layer and the LED, and an overcoat layer directly over the angular filter and the LED.
1. A light emitting structure comprising:
a light emitting diode (LED) bonded to a substrate;
a diffuser layer adjacent the LED, the diffuser layer comprising scattering particles dispersed in a matrix;
a well structure, wherein the LED is bonded to the substrate within a well opening of the well structure that completely laterally surrounds the LED, the diffuser layer laterally surrounds the LED within the well opening, and the well structure that completely laterally surrounds the LED is thicker than a portion of the diffuser layer and the LED within the well opening;
a transparent electrode layer on a top side of the LED, and spanning over the diffuser layer within the well opening and over a top surface of the well structure outside of the well opening;
an angular filter directly over the diffuser layer and the LED; and
an overcoat layer directly over the angular filter, the LED, and the transparent electrode layer spanning over the top surface of the well structure outside of the well opening.
2. The light emitting structure of claim 1 , wherein the angular filter is selected from the group consisting of a low index volume characterized by an index of refraction less than 1.1 and a distributed Bragg reflector (DBR) layer.
3. The light emitting structure of claim 2 , wherein the diffuser layer is formed on a top surface of the well structure and within the well opening.
4. The light emitting structure of claim 3 , wherein the transparent electrode layer spans over the diffuser layer over a top surface of the well structure outside of the well opening.
5. The light emitting structure of claim 4 , wherein the angular filter is at least partially located within the well opening.
6. The light emitting structure of claim 1 , wherein the diffuser layer is characterized by an index of refraction that is greater than an index of refraction of the overcoat layer.
7. The light emitting structure of claim 3 , wherein the diffuser layer is characterized by an index of refraction that is less than an index of refraction of the overcoat layer.
8. The light emitting structure of claim 1 , further comprising a mirror layer spanning sidewalls of the well opening.
9. The light emitting structure of claim 3 , wherein the angular filter is a DBR layer.
10. The light emitting structure of claim 1 , wherein the angular filter is a low index volume comprised of a void at least 0.5 μm thick.
11. The light emitting structure of claim 1 , wherein the diffuser layer comprises a dispersion of scattering particles with an average particle size between 100 nm and 500 nm.
12. The light emitting structure of claim 1 , wherein the diffuser layer is completely contained within the well opening.
13. The light emitting structure of claim 1 , wherein the angular filter is at least partially located within the well opening.
14. The light emitting structure of claim 13 , wherein the diffuser layer is characterized by an index of refraction that is greater than an index of refraction of the overcoat layer.
15. The light emitting structure of claim 13 , wherein the diffuser layer is characterized by an index of refraction that is less than an index of refraction of the overcoat layer.
16. The light emitting structure of claim 13 , wherein the angular filter is a low index volume comprised of a void at least 0.5 μm thick.
17. The light emitting structure of claim 13 , wherein the angular filter is a distributed Bragg reflector (DBR) layer.
18. The light emitting structure of claim 13 , wherein the diffuser layer comprises a dispersion of scattering particles with an average particle size between 100 nm and 500 nm.