A light-emitting device of an embodiment of the present application comprises light-emitting units; a transparent structure having cavities configured to accommodate at least one of the light-emitting units; and a conductive element connecting at least two of the light-emitting units.
1. A light bulb, comprising:
a first optoelectronic unit and a second optoelectronic unit, each optoelectronic unit comprising:
a light-emitting structure comprising a side surface, a first semiconductor layer, a second semiconductor layer, and a light-emitting layer formed between the first semiconductor layer and the second semiconductor layer; and
a first bonding pad and a second bonding pad formed on the first semiconductor layer;
a conductive element connecting the first bonding pad of the first optoelectronic unit and the second bonding pad of the second optoelectronic unit, without covering the side surfaces of the first optoelectronic unit and the second optoelectronic unit;
a transparent structure, pervious to light from the light-emitting structure, and continuously covering the light-emitting structures and the conductive element, and having a curved surface;
a first terminal and a second terminal electrically connecting the first optoelectronic unit and the second optoelectronic unit, and formed on a same side of the transparent structure; and
a cover covering the first optoelectronic unit, the second optoelectronic unit, the conductive element, and the transparent structure.
2. The light bulb of claim 1 , wherein the transparent structure can be bent into a curved shape.
3. The light bulb of claim 1 , further comprising a wavelength converting material in the transparent structure.
4. The light bulb of claim 1 , wherein the transparent structure has a plurality of the cavities accommodating the first optoelectronic unit and the second optoelectronic unit, and a portion of the conductive element is located on the transparent structure and between two of the plurality of the cavities.
5. The light bulb of claim 1 , wherein the first terminal is arranged on an end of the transparent structure.
6. The light bulb of claim 1 , wherein the first optoelectronic unit and the second optoelectronic unit are arranged in a dispersive type.
7. The light bulb of claim 1 , wherein long sides of the first optoelectronic unit and the second optoelectronic unit are not arranged in a line.
8. The light bulb of claim 7 , wherein short sides of the first optoelectronic unit and the second optoelectronic unit are not arranged in a line.
9. The light bulb of claim 1 , wherein the transparent structure has a melting point higher than an operation temperature of the first optoelectronic unit.
10. The light bulb of claim 1 , wherein the transparent structure can be bent into a 3-dimention shape.
11. The light bulb of claim 1 , wherein the transparent structure directly contacts the side surface.
12. The light bulb of claim 1 , further comprising a socket couples to the cover.
13. The light bulb of claim 12 , wherein the first terminal and the second terminal plug into the socket.
14. The light bulb of claim 12 , wherein the transparent structure plugs into the socket.
15. The light bulb of claim 1 , wherein the transparent structure has a first portion extending along a first direction, a second portion extending along a second portion, and a third portion extending along a third direction.
16. The light bulb of claim 15 , wherein the second direction and the third direction differ from the first direction.
17. The light bulb of claim 1 , further comprising a reflective layer formed on the first semiconductor layer.
18. The light bulb of claim 1 , wherein the first optoelectronic unit and the second optoelectronic unit are embedded in the transparent structure.
19. The light bulb of claim 1 , wherein the first optoelectronic unit and the second optoelectronic unit are connected in series.
20. The light bulb of claim 1 , wherein the first optoelectronic unit and the second optoelectronic unit are connected in parallel.