1. Field of the Invention
The present invention relates generally to a light-emitting diode and a method for fabricating the same, and more particularly, the present invention relates to a method for easy fabrication and cost saving.
2. Description of the Prior Art
Nowadays light-emitting diodes are broadly applied to various products such as key systems, back-light modules of mobile phones, lighting systems of vehicles, light bulbs for decorations, and remote controls, etc. Please refer to
As illustrated in
Subsequently, as illustrated in
After that, as illustrated in
Accordingly, an aspect of the present invention is to provide a method for fabricating a light-emitting diode. According to an embodiment of the invention, the fabricating method comprises the following steps.
Firstly, a substrate is prepared. Secondly, an epitaxial layer is formed on the substrate. The epitaxial layer has an upper surface, and the upper surface comprises a first region and a second region distinct from the first region. Subsequently, a mask layer is formed on the first region. Then a semiconductor multi-layer structure is formed on the second region, wherein the semiconductor multi-layer structure has a lighting layer. Afterwards the mask layer formed on the first region is removed. Then an electrode is formed on the first region of the upper surface of the epitaxial layer.
According to another embodiment of the invention, the fabricating method comprises the following steps.
Firstly, a substrate is prepared. Secondly, an epitaxial layer is formed on the substrate. The epitaxial layer has an upper surface, and the upper surface comprises a first region and a second region distinct from the first region. Subsequently, a mask layer is formed on the first region. Then a semiconductor multi-layer structure is formed on the second region, wherein the semiconductor multi-layer structure has a lighting layer. Afterwards, a part of the mask layer is selectively etched to make a part of the first region uncovered. Then an electrode is formed on the uncovered region of the first region.
Another aspect of the present invention is to provide a light-emitting diode. According to an embodiment of the invention, the light-emitting diode comprises a substrate, an epitaxial layer, a mask layer, a semiconductor multi-layer structure, a first electrode, and a second electrode.
The epitaxial layer is formed on the substrate and has an upper surface, and the upper surface comprises a first region and a second region distinct from the first region. The mask layer is formed on a part of the first region to make a part of the first region uncovered. The semiconductor multi-layer structure is formed on the second region and comprises a lighting layer. The first electrode is formed on the uncovered region of the first region, and the second electrode is formed on the semiconductor multi-layer structure.
The objective of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment, which is illustrated in the various figures and drawings.
Please refer to
Firstly, as illustrated in
The epitaxial layer 21 has an upper surface 210, and the upper surface 210 comprises a first region and a second region distinct from the first region. Subsequently, a mask layer is formed on the first region. Practically, the mask layer could be made of a thermo-tolerant material such as silicon dioxide or other similar oxides. As illustrated in
Then, as illustrated in
Owing to the gallium nitride is not easily grown on the silicon dioxide mask layer 22, which is well-know to those of ordinary skill in the art, and the thickness of the silicon dioxide mask layer 22 is considerable, the gallium nitride semiconductor multi-layer structure 23 could be restrictedly grown on the second region 2102 by means of the silicon dioxide mask layer 22.
Furthermore, the extension of internal defects (e.g. dislocations) generated from the growth of a gallium nitride material could be eliminated by the silicon dioxide mask layer 22. Thereby, the quality of the epitxial light-emitting diode could be increased. The internal quantum efficiency of the light-emitting diode and the light extraction efficiency are thus improved.
After the semiconductor multi-layer structure 23 is formed, the mask layer 22 formed on the first region 2100 is removed in the method as illustrated in
Subsequently, as illustrated in
More particularly, in a conventional fabricating method, an ICP etching process should be performed before forming an N-type electrode on a light-emitting diode. But in the method of the present invention, it is not necessary to perform the ICP etching process before forming an N-type electrode 24, so that the cost could be saved. Moreover, the ICP etching process for semiconductor multi-layer structure 23 is excluded in the method of this invention and the semiconductor multi-layer structure 23 could be restrictedly grown on the second region 2102 by means of the mask layer 22, so that the side wall of the semiconductor multi-layer structure 23 could avoid being damaged and the complete outline could be conserved.
In another embodiment, after forming the semiconductor multi-layer structure 23 on the second region 2102 (as illustrated in
Subsequently, as illustrated in
In an embodiment, the height of the N-type electrode 24′ is substantially the same as that of the P-type electrode 25. Thereby while packaging the light emitting diode 2′, the wire bonding process of the electrode could be excluded.
Please refer to
As illustrated in
Afterwards, as illustrated in
Subsequently, as illustrated in
Then, as illustrated in
Afterwards, the mask layer 32 formed on the first region 3102 is removed in the method as illustrated in
Subsequently, as illustrated in
To summarize, the method for fabricating a light-emitting diode in the invention has easy fabrication and cost saving advantages. Particularly, the extension of dislocations generated from the growth of a light-emitting diode could be eliminated by the silicon dioxide mask layer. Accordingly, the internal quantum efficiency of the light-emitting diode and the light extraction efficiency are thus improved.
Although the present invention has been illustrated and described with reference to the preferred embodiment thereof, it should be understood that it is in no way limited to the details of such embodiment but is capable of numerous modifications within the scope of the appended claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 97147142 A | Dec 2008 | TW | national |
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| Number | Date | Country | |
|---|---|---|---|
| 20100140629 A1 | Jun 2010 | US |