Light emitting device, light emitting system having the same, and fabricating method of the light emitting device and the light emitting system
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H01L-033/00
H01L-029/18
출원번호
US-0563102
(2012-07-31)
등록번호
US-8502242
(2013-08-06)
우선권정보
KR-2008-0076549 (2008-08-05)
발명자
/ 주소
Kim, YuSik
출원인 / 주소
Samsung Electronics Co., Ltd.
대리인 / 주소
F. Chau & Associates, LLC
인용정보
피인용 횟수 :
271인용 특허 :
2
초록▼
A semiconductor device includes a first light emitting chip, the first light emitting chip having a first semiconductor layer, a second semiconductor layer, and a first active layer disposed therebetween, a second light emitting chip disposed on the first light emitting chip, the second light emitti
A semiconductor device includes a first light emitting chip, the first light emitting chip having a first semiconductor layer, a second semiconductor layer, and a first active layer disposed therebetween, a second light emitting chip disposed on the first light emitting chip, the second light emitting chip having a third semiconductor layer, a fourth semiconductor layer, and a second active layer disposed therebetween, and a conductive layer disposed between the first semiconductor layer and the fourth semiconductor layer, the first semiconductor layer and the fourth semiconductor layer having different conductivity types.
대표청구항▼
1. A light emitting device comprising: a first light emitting structure which includes a first semiconductor pattern of a first conductivity type, a second semiconductor pattern of a second conductive type, and a first active pattern, wherein the first light emitting structure is turned on or turned
1. A light emitting device comprising: a first light emitting structure which includes a first semiconductor pattern of a first conductivity type, a second semiconductor pattern of a second conductive type, and a first active pattern, wherein the first light emitting structure is turned on or turned off according to a bias applied to the first semiconductor pattern and the second semiconductor pattern;a second light emitting structure which includes a third semiconductor pattern of the first conductivity type, a fourth semiconductor pattern of the second conductive type, and a second active pattern, wherein the second light emitting structure is turned on or turned off according to a bias applied to the third semiconductor pattern and the fourth semiconductor pattern; anda first electrode having an inclined sidewall and a bottom, wherein an upper surface of the first electrode allows light generated from the first active pattern or the second active pattern to escape from the first light emitting structure;an insulating pattern formed between the first electrode and the first light emitting structure, wherein the insulating pattern includes an oxide film, a nitride film, an oxynitride film, Al2O3, or AlN;an intermediate material layer formed between the first electrode and a substrate, wherein the intermediate material layer includes Au, Ag, Pt, Ni, Cu, Sn, Al, Pb, Cr or Ti; anda barrier layer which is formed between the first electrode and the intermediate material layer, and includes a single layer, a laminate, or a combination thereof including Pt, Ni, Cu, Al, Cr, Ti or W,wherein at least one of the first to fourth semiconductor patterns and the first and second active patterns includes InxAlyGa(1-x-y)N, 0≦x≦1, 0≦y≦1, and the first electrode connected to the first semiconductor pattern of the first conductive type is formed of a material containing at least one of Al and Ag having high reflectivity, and has a bowl shape and an inclined sidewall. 2. The light emitting device of claim 1, wherein the first light emitting structure and the second light emitting structure are sequentially stacked. 3. The light emitting device of claim 1, wherein when an AC power is applied to the first light emitting structure and the second light emitting structure, one of the first and second light emitting structures is turned on and the other one of the first and second light emitting structures is turned off. 4. The light emitting device of claim 1, wherein at least one of the first and third semiconductor patterns includes n-type InxAlyGa(1-x-y)N, 0≦x≦1, 0≦y≦1. 5. The light emitting device of claim 1, wherein the substrate is an insulating substrate, which includes vias electrically connected to one of the patterns. 6. The light emitting device of claim 1, wherein the substrate is a conductive substrate including Si, strained Si, Si alloy, silicon-on-insulator (SOI), SiC, SiGe, SiGeC, Si—Al, Ge, Ge alloy, GaAs, InAs, III-V semiconductor or II-VI semiconductor. 7. The light emitting device of claim 1, further comprising a phosphor layer to produce white light including: a transparent resin which is one of epoxy resin, silicone resin, hardened silicone resin, denatured silicone resin, urethane resin, oxethane resin, acryl resin, polycarbonate resin and polyimide resin; anda phosphor which is at least one selected from the group consisting of M2Si5N8:Eu, MSi7N10:Eu, M1.8Si5O0.2N8:Eu, M0.9Si7O0.1N10:Eu, MSi2O2N2:Eu, M5(PO4)3X:R, M2B5O9X:R, SrAl2O4:R, Sr4Al14O25:R, CaAl2O4:R, BaMg2Al16O27:R, BaMg2Al16O12:R, BaMgAl10O17:R, La2O2S:Eu, Y2O2S:Eu, Gd2O2S:Eu, YAG-based phosphors represented by Y3Al5O12:Ce, (Y0.8Gd0.2)3Al5O12:Ce, Y3(Al0.8Ga0.2)5O12:Ce, and (Y, Gd)3 (Al, Ga)5O12, Tb3Al5O12:Ce, Lu3Al5O12:Ce, alkaline earth silicate phosphor, (SrBa)2SiO4:Eu, ZnS:Eu, and Zn2GeO4:Mn, MGa2S4:Eu, wherein M represents at least one element selected from among Sr, Ca, Ba, Mg and Zn,X represents at least one element selected from among F, Cl, Br, and I,R represents at least one element selected from among Eu and Mn, R, andportion or all of Y is substituted with Tb or Lu. 8. The light emitting device of claim 1, further comprising a phosphor layer to produce white light including: a transparent resin which is one of epoxy resin, silicone resin, hardened silicone resin, denatured silicone resin, urethane resin, oxethane resin, acryl resin, polycarbonate resin and polyimide resin; anda phosphor which is at least one selected from the group consisting of a nitride-based or oxynitride-based phosphor, mainly activated by lanthanides; an alkaline earth halogen apatite phosphor, mainly activated by lanthanides or by transition metal elements; an alkaline earth metal borate halogen phosphor; an alkaline earth metal aluminate phosphor; an alkaline earth sulfide phosphor; a rare earth aluminate phosphor, mainly activated by lanthanides; an alkaline earth silicate phosphor; an alkaline earth thiogallate phosphor; an alkaline earth silicon nitride phosphor; a germanate phosphor; a rare earth silicate phosphor; and inorganic and organic complexes, mainly activated by lanthanides. 9. The light emitting device of claim 1, further comprising a phosphor layer to produce white light including only a phosphor without a transparent resin. 10. The light emitting device of claim 7, further comprising a lens formed of a transparent resin on the phosphor layer. 11. The light emitting device of claim 8, further comprising a lens formed of a transparent resin on the phosphor layer. 12. The light emitting device of claim 9, further comprising a lens formed of a transparent resin on the phosphor layer. 13. The light emitting device of claim 7, wherein the phosphor layer includes a red phosphor to increase a color rendering index (CRI). 14. The light emitting device of claim 8, wherein the phosphor layer includes a red phosphor to increase a color rendering index (CRI). 15. The light emitting device of claim 9, wherein the phosphor layer includes a red phosphor to increase a color rendering index (CRI).
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