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    • 1. 发明申请
    • NITRIDE SEMICONDUCTOR LIGHT EMITTING DEVICE AND METHOD OF MANUFACTURING THE SAME
    • 氮化物半导体发光器件及其制造方法
    • US20090159922A1
    • 2009-06-25
    • US12209644
    • 2008-09-12
    • Hyun Soo KIMJoon Seop KwakKi Man KangJin Hyun LeeYu Seung KimCheol Soo Sone
    • Hyun Soo KIMJoon Seop KwakKi Man KangJin Hyun LeeYu Seung KimCheol Soo Sone
    • H01L33/00H01L21/20
    • H01L33/641H01L33/14H01L33/32
    • There is provided a nitride semiconductor light emitting device including: a light emitting structure having n-type and p-type nitride semiconductor layers and an active layer formed therebetween; n-type and p-type electrodes electrically connected to the n-type and p-type nitride semiconductors, respectively; and an n-type ohmic contact layer formed between the n-type nitride semiconductor layer and the n-type electrode and having a first layer formed of a material containing In and a second layer formed on the first layer and formed of a material containing W.According to an aspect of the invention, there is provided a nitride semiconductor light emitting device that has an n-type electrode having thermal stability and excellent electrical characteristics without heat treatment.According to another aspect of the invention, there is provided a method of manufacturing a nitride semiconductor light emitting device optimized to obtain the excellent thermal and electrical characteristics.
    • 提供一种氮化物半导体发光器件,包括:具有n型和p型氮化物半导体层的发光结构和在其间形成的有源层; 分别与n型和p型氮化物半导体电连接的n型和p型电极; 以及形成在n型氮化物半导体层和n型电极之间的n型欧姆接触层,并且具有由含有In的材料形成的第一层和形成在第一层上的由包含W的材料形成的第二层 根据本发明的一个方面,提供一种氮化物半导体发光器件,其具有不具有热稳定性的热稳定性和优异的电特性的n型电极。 根据本发明的另一方面,提供了一种制造优化以获得优异的热和电特性的氮化物半导体发光器件的方法。
    • 3. 发明申请
    • WAVELENGTH DIVISION MULTIPLEXED-PASSIVE OPTICAL NETWORK APPARATUS
    • 波长部分多路无源光网络设备
    • US20100316383A1
    • 2010-12-16
    • US12582211
    • 2009-10-20
    • Hyun Soo KIMKisoo KimDong Churl KimByung-Seok ChoiO-Kyun KwonDae Kon Oh
    • Hyun Soo KIMKisoo KimDong Churl KimByung-Seok ChoiO-Kyun KwonDae Kon Oh
    • H04J14/02
    • H04J14/0282
    • Provided is a wavelength division multiplexed-passive optical network (WDM-PON) apparatus. The WDM-PON includes an optical source unit, an optical mux, and a chirped Bragg grating. The optical source unit generates an optical signal. The optical mux receives the optical signal from the optical source unit through one end of the optical mux, multiplexes the optical signal, and outputs the multiplexed optical signal. The chirped Bragg grating is connected to the other end of the optical mux. The chirped Bragg grating again reflects the optical signal having passed the optical mux to re-input a certain portion of the optical signal into the optical mux and the optical source unit. The optical mux performs a spectrum slicing on the re-inputted optical signal and operates the optical source unit using a channel wavelength of the optical mux as a main oscillation wavelength.
    • 提供了一种波分复用无源光网络(WDM-PON)装置。 WDM-PON包括光源单元,光复用器和啁啾布拉格光栅。 光源单元产生光信号。 光复用器通过光复用器的一端从光源单元接收光信号,复用光信号,并输出复用的光信号。 啁啾布拉格光栅连接到光复用器的另一端。 啁啾布拉格光栅再次反射已经通过光复用器的光信号,以将光信号的某一部分重新输入光复用器和光源单元。 光复用器对重新输入的光信号执行频谱分片,并使用光复用器的信道波长作为主振荡波长来操作光源单元。
    • 4. 发明申请
    • MEDIA DEPOSIT APPARATUS AND METHOD FOR CONTROLLING THE SAME
    • 介质沉积装置及其控制方法
    • US20090216365A1
    • 2009-08-27
    • US12392801
    • 2009-02-25
    • Jin Hwan CHAYoung Il CHOIDong Sik LEEHyun Soo KIMSung Jin MOON
    • Jin Hwan CHAYoung Il CHOIDong Sik LEEHyun Soo KIMSung Jin MOON
    • B65H5/26G06F17/00
    • B65H29/60B65H2701/1912G07D11/0081
    • Provided is a media deposit apparatus including: a deposit transfer portion providing a deposit circulation path of media deposited via a media deposit portion; a temporary transfer portion providing a temporary circulation path that contacts with the deposit circulation path to transfer the media to a temporary stack portion, and including a temporary stack gate, provided between the deposit circulation path and the temporary circulation path, to selectively convert a path of media to the temporary circulation path; and a media transfer portion providing a media transfer path that contacts with the temporary circulation path to transfer the media to a media storage portion, and including a media storage gate, provided between the temporary circulation path and the media transfer path, to selectively convert the path of media to the media transfer path. Accordingly, it is possible to simplify a media transfer structure and to enhance a media transfer efficiency.
    • 提供了一种介质沉积设备,包括:沉积物转移部分,其提供通过介质沉积部分沉积的介质的沉积物循环路径; 临时转移部分,提供临时循环路径,其与沉积物循环路径接触以将介质转移到临时堆叠部分,并且包括设置在沉积物循环路径和临时循环路径之间的临时堆叠门,以选择性地将路径 的媒体到临时流通路线; 以及介质传送部分,其提供与临时循环路径接触以将介质传送到介质存储部分的介质传送路径,并且包括设置在临时循环路径和介质传送路径之间的介质存储门,以选择性地将 媒体路径到媒体传输路径。 因此,可以简化介质传送结构并提高介质传送效率。