Light emitting device and method of manufacturing the same
A method for manufacturing a light emitting device including forming a plurality of first light emitting cells and a plurality of second light emitting cells on one surface of a first substrate, providing a second substrate to face the first and second light emitting cells, selectively bonding the first light emitting cells onto the second substrate, and cutting the second substrate to a mounting unit including at least two first light emitting cells.
1. A light emitting device comprising:
a substrate;
at least two light emitting cells disposed on the substrate;
a light shielding layer comprising an insulative material, disposed between the at least two light emitting cells, and having openings each exposing one surface of each of the light emitting cells; and
a plurality of pad parts disposed between the substrate and one of the light emitting cells, and including a first part and a second part between the substrate and one of the light emitting cells,
wherein a side surface of the light shielding layer is substantially flush with a side surface of the one of the light emitting cells,
wherein the plurality of pad parts extend outwardly away from the one of the light emitting cells, such that a portion of each of the pad parts does not overlap the one of the light emitting cells in a plan view,
wherein the light shieling layer covers the portion of each of the pad parts, and
wherein the second part extends from the first part and has a width different from the first part, and at least a portion of each the first part and the second part overlaps the light shielding layer.
2. The light emitting device according to claim 1 , wherein the light shielding layer contacts side surfaces of the at least two light emitting cells.
3. The light emitting device according to claim 1 , further comprising bonding parts filling the openings, and disposed between the light emitting cells and the substrate,
wherein the light shielding layer contacts the substrate and is disposed between the bonding parts and the substrate.
4. The light emitting device according to claim 1 , wherein a separation distance between two neighboring light emitting cells is about 8 to about 15 times a critical dimension of each of the light emitting cells.
5. The light emitting device according to claim 1 , wherein each of the light emitting cells comprises a first light emitting part, a second light emitting part, and a third light emitting part vertically stacked one over another, and a plurality of pads electrically coupled with the first, second, and third light emitting parts.
6. The light emitting device according to claim 5 , further comprising:
bonding parts filling the openings, and disposed between the light emitting cells and the substrate; and
through electrodes passing through the bonding parts and electrically coupled with the pads.
7. The light emitting device according to claim 6 , wherein each of the through electrodes comprises:
a first portion disposed within each of the bonding parts; and
a second portion extending from the first portion onto a top surface of each of the bonding parts while being insulated from the bonding parts, at least a part of the second portion contacting the light shielding layer, and
wherein the plurality of the pad parts includes the second portion of the through electrode.
8. The light emitting device according to claim 7 , wherein the second portion extends to one surface of the light shielding layer facing the substrate.
9. The light emitting device according to claim 7 , wherein the second portion extends into the light shielding layer.
10. The light emitting device according to claim 7 , wherein the substrate comprises a plurality of substrate pads disposed at positions corresponding to the second portions of the through electrodes,
wherein the plurality of the pad parts further includes the substrate pad.
11. The light emitting device according to claim 1 , wherein the light shielding layer comprises at least one of a photoresist and a black matrix.
12. The light emitting device according to claim 1 , wherein one surface of each of the at least two light emitting cells facing away from the substrate is coplanar with one surface of the light shielding layer facing away from the substrate.