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    • 1. 发明授权
    • Surface-emitting laser device
    • 表面发射激光器件
    • US5883911A
    • 1999-03-16
    • US742160
    • 1996-11-01
    • Bun LeeJong-Hyeob BaekSung-Woo ChoiJin-Hong Lee
    • Bun LeeJong-Hyeob BaekSung-Woo ChoiJin-Hong Lee
    • H01S3/00H01S5/183H01S5/32H01S5/34H01S5/343H01S3/19
    • B82Y20/00H01S5/183H01S2301/173H01S5/1053H01S5/18319H01S5/3205H01S5/3215H01S5/3406H01S5/34313
    • An improved surface-emitting laser device by which the light emitting wave length can be easily varied since the electric potential grown using the thin film material having a desired lattice rate uses a very small portion of activation layers, and by which the continuous oscillation is made at room temperature by using the reflector having high reflective index. Thus, optical characteristics are increased, which includes a GaAs substrate; a lower reflector is formed of multiple layers of AlAs/GaAs heterogenous thin films having a reflective index of 1 on the GaAs substrate; a tooth-shaped grading layer is formed of a lower reflector on the lower reflector and an In.sub.x Ga.sub.1-x As thin film having a large lattice rate in a compositional grading method; a tooth-shaped InGaAs grading well is formed on the In.sub.x Ga.sub.1-x As grading layer as an In composition of which reduced rather than the grading layer; a buffer layer is formed on the In.sub.x Ga.sub.1-x As thin film and formed of a lattice-bonded InP; and an upper semiconductor reflector is formed on a multilayer of an InAlAs/InAlGaAs heterogenous thin film on the buffer layer, which has a reflective index of 1, in which a laser beam is emitted from the surface of the same.
    • 由于使用具有期望晶格率的薄膜材料生长的电位使用非常小部分的活化层,并且由此产生连续振荡,因此改进的表面发射激光器件可以容易地改变发光波长 通过使用具有高反射率的反射器在室温下进行。 因此,增加了包括GaAs衬底的光学特性; 在GaAs衬底上由反射率为1的多层AlAs / GaAs异质薄膜形成下反射体; 在下反射器上由下反射器形成的齿形分级层和在组成分级方法中具有大晶格率的In x Ga 1-x As薄膜; 在In x Ga 1-x As分级层上形成一个齿形的InGaAs分级阱,作为In组成减少而不是分级层; 在In x Ga 1-x As薄膜上形成缓冲层,由晶格键合的InP形成; 并且在缓冲层上的反射率为1的InAlAs / InAlGaAs异质薄膜的多层上形成上半导体反射器,其中从其表面发射激光束。
    • 4. 发明授权
    • Method for growing epitaxial layers of III-V compound semiconductors
    • 生长III-V族化合物半导体外延层的方法
    • US5900056A
    • 1999-05-04
    • US769242
    • 1996-12-18
    • Sung-Woo ChoiJong-Hyeob BaekBun Lee
    • Sung-Woo ChoiJong-Hyeob BaekBun Lee
    • H01L21/20C30B25/10C30B25/14
    • C30B25/105C30B29/40
    • The present invention relates to a method for growing new binary, ternary and quaternary epitaxial layers of III-V compound semiconductors which have the characteristics of low temperature growth, good stability and high-purity, using remote plasma, comprising the steps of converting H.sub.2 and He mixed gas into a plasma state; heating a high-purity of solid source to generate a vaporized source; reacting the vaporized source with H.sub.2 under the H.sub.2 and He plasma environment to produce V-hydrides in situ; introducing the V-hydrides directly into group III source without passing through the plasma; and reacting V-hydrides with group III source on a substrate to form an epitaxial thin layer of III-V compound semiconductors. According to the present invention, high-purity of epitaxial thin layer can be formed at a low temperature, an economical process that does not require an ultrahigh vacuum, a stabilized process that does not need to handle poisonous gas for the reaction with gropu V, and a simple process for manufacturing the various binary, ternary and quaternary compound semiconductor alloys can be provided. Thus, the method of the present invention can be applied to the future information and communication industry, for example, high speed, high frequency optical communication system with (Ga, In, Al)--(As, P, Sb) based on III-V compound semiconductor electronic and optical devices, and the circuitry thereof including heterojunction bipolar transistors, high electron mobility transistors, semiconductor lasers and optical switches.
    • 本发明涉及一种利用远程等离子体生长具有低温生长特性,稳定性好,高纯度等特点的III-V族化合物半导体二元,三元和四元外延层的方法,包括以下步骤:将H 2和 他将气体混合成等离子体状态; 加热高纯度固体源以产生蒸发源; 在H 2和He等离子体环境下使蒸发源与H 2反应,原位产生V-氢化物; 将V型氢化物直接引入III族源而不通过等离子体; 并将V型氢化物与III族源反应在衬底上以形成III-V族化合物半导体的外延薄层。 根据本发明,可以在低温下形成高纯度的外延薄层,不需要超高真空的经济工艺,不需要处理有毒气体用于与gropu V反应的稳定过程, 并且可以提供制造各种二元,三元和四元化合物半导体合金的简单方法。 因此,本发明的方法可以应用于将来信息通信行业,例如具有(Ga,In,Al) - (As,P,Sb)的高速,高频光通信系统, V化合物半导体电子和光学器件,其电路包括异质结双极晶体管,高电子迁移率晶体管,半导体激光器和光开关。
    • 5. 发明申请
    • Method for adjusting FFT window positioning in MB-OFDM UWB system
    • 在MB-OFDM UWB系统中调整FFT窗口定位的方法
    • US20070133392A1
    • 2007-06-14
    • US11635272
    • 2006-12-07
    • Cheol-Ho ShinSung-Woo ChoiSang-In ChoKyu-Min KangSang-Sung ChoiKwang-Roh Park
    • Cheol-Ho ShinSung-Woo ChoiSang-In ChoKyu-Min KangSang-Sung ChoiKwang-Roh Park
    • H04J11/00H04J1/00
    • H04B1/7183H04L27/2605H04L27/265H04L27/2665
    • Provided is a method for adjusting Fast Fourier Transform (FFT) window positioning in a Multi Band Orthogonal Frequency Division Multiplexing Ultra-Wideband (MB-OFDM UWB) system. The method includes the steps of acquiring an initial FFT window position and a frequency hopping position, demodulating a received signal by using the initial FFT window position and the frequency hopping position acquired in the acquiring step, transmitting received data information to a Media Access Control (MAC) layer with a reception frame (RX frame) structure and judging at the MAC layer whether or not a packet error is occurred based on Frame Check Sequences (FCSs), and if no packet error is occurred, returning to the demodulating step, and if the packet error is occurred, changing a register map by using a predetermined interface line in a MAC-physical layer (MAC-PHY) interface to thereby adjust the FFT window position and the frequency hopping position, and then returning to the demodulating step.
    • 提供了一种用于在多频带正交频分复用超宽带(MB-OFDM UWB)系统中调整快速傅里叶变换(FFT)窗口定位的方法。 该方法包括以下步骤:获取初始FFT窗口位置和跳频位置,通过使用在获取步骤中获取的初始FFT窗口位置和跳频位置解调接收信号,将接收的数据信息发送到介质访问控制( MAC)层,并且在MAC层判断基于帧检查序列(FCS)是否发生分组错误,并且如果没有发生分组错误,则返回到解调步骤,并且 如果发生分组错误,则通过使用MAC-物理层(MAC-PHY)接口中的预定接口线来改变寄存器映射,从而调整FFT窗口位置和跳频位置,然后返回到解调步骤。
    • 6. 发明授权
    • Method for adjusting FFT window positioning in MB-OFDM UWB system
    • 在MB-OFDM UWB系统中调整FFT窗口定位的方法
    • US07729238B2
    • 2010-06-01
    • US11635272
    • 2006-12-07
    • Cheol-Ho ShinSung-Woo ChoiSang-In ChoKyu-Min KangSang-Sung ChoiKwang-Roh Park
    • Cheol-Ho ShinSung-Woo ChoiSang-In ChoKyu-Min KangSang-Sung ChoiKwang-Roh Park
    • H04J11/00
    • H04B1/7183H04L27/2605H04L27/265H04L27/2665
    • Provided is a method for adjusting Fast Fourier Transform (FFT) window positioning in a Multi Band Orthogonal Frequency Division Multiplexing Ultra-Wideband (MB-OFDM UWB) system. The method includes the steps of acquiring an initial FFT window position and a frequency hopping position, demodulating a received signal by using the initial FFT window position and the frequency hopping position acquired in the acquiring step, transmitting received data information to a Media Access Control (MAC) layer with a reception frame (RX frame) structure and judging at the MAC layer whether or not a packet error is occurred based on Frame Check Sequences (FCSs), and if no packet error is occurred, returning to the demodulating step, and if the packet error is occurred, changing a register map by using a predetermined interface line in a MAC-physical layer (MAC-PHY) interface to thereby adjust the FFT window position and the frequency hopping position, and then returning to the demodulating step.
    • 提供了一种用于在多频带正交频分复用超宽带(MB-OFDM UWB)系统中调整快速傅里叶变换(FFT)窗口定位的方法。 该方法包括以下步骤:获取初始FFT窗口位置和跳频位置,通过使用在获取步骤中获取的初始FFT窗口位置和跳频位置解调接收信号,将接收的数据信息发送到介质访问控制( MAC)层,并且在MAC层判断基于帧检查序列(FCS)是否发生分组错误,并且如果没有发生分组错误,则返回到解调步骤,并且 如果发生分组错误,则通过使用MAC-物理层(MAC-PHY)接口中的预定接口线来改变寄存器映射,从而调整FFT窗口位置和跳频位置,然后返回到解调步骤。
    • 7. 发明申请
    • Parallel equalizer for DS-CDMA UWB system and method thereof
    • DS-CDMA UWB系统的并行均衡器及其方法
    • US20070133670A1
    • 2007-06-14
    • US11635937
    • 2006-12-08
    • Kyu-Min KangCheol-Ho ShinSung-Woo ChoiSang-In ChoSang-Sung ChoiKwang-Rob Park
    • Kyu-Min KangCheol-Ho ShinSung-Woo ChoiSang-In ChoSang-Sung ChoiKwang-Rob Park
    • H03H7/30
    • H04L25/03038H04L2025/03439
    • A parallel equalizer for a DS-CDMA UWB system and method thereof are provided. The parallel equalizer includes: a filter block for filtering a training input signal in a ‘training mode’, and filtering the plurality of input signals in parallel in a ‘symbol decision mode’; a symbol decision block for obtaining a symbol error based on a output from the filter block and a training symbol in the ‘training mode’, and estimating a transmission symbol for each of the input signals in the ‘symbol decision mode’, obtaining an error of one among the estimated transmission symbols for a symbol error calculating input signal; and an weight update block for updating a filter tap coefficients of the filter block based on the training input signal or the symbol error calculating input signal and the symbol error and transmitting the updated filter tap coefficients into the filter block.
    • 提供了一种用于DS-CDMA UWB系统的并行均衡器及其方法。 并行均衡器包括:滤波器块,用于以“训练模式”对训练输入信号进行滤波,并且以“符号判定模式”并行地对多个输入信号进行滤波; 用于基于来自滤波块的输出和“训练模式”中的训练符号获得符号误差的符号判定块,并且以“符号判定模式”为每个输入信号估计发送符号,获得误差 估计的传输符号中的一个用于符号误差计算输入信号; 以及权重更新块,用于基于训练输入信号或符号误差计算输入信号和符号误差来更新滤波器块的滤波器抽头系数,并将更新的滤波器抽头系数发送到滤波器块。
    • 8. 发明申请
    • Rake receiver for DS-CDMA UWB system and DS-CDMA receiver having the same
    • 用于DS-CDMA UWB系统的Rake接收机和具有相同功能的DS-CDMA接收机
    • US20070133662A1
    • 2007-06-14
    • US11636049
    • 2006-12-08
    • Kyu-Min KangSang-Sung ChoiKwang-Roh ParkSang-In ChoSung-Woo ChoiChcol-Ho Shin
    • Kyu-Min KangSang-Sung ChoiKwang-Roh ParkSang-In ChoSung-Woo ChoiChcol-Ho Shin
    • H04B1/00
    • H04B1/709H04B1/707H04B1/7115H04B1/71637H04B1/7183
    • A rake receiver for DS-CDMA UWB system and a DS-CDMA receiver having the same are provided. The rake receiver includes: a channel estimator for estimating a channel having a predetermined chip duration by using a synchronization acquisition sequence; a tracking module for detecting a channel variation and adjusting a synchronization position value when the channel variation is detected; a first switch for selecting one of an output value of an analog-to-digital converter and an output value of a correlator and outputting the selected value; a second switch for selecting one of the output value of the analog-to-digital converter and the output value of the correlator; and a plurality of demodulators having a parallel processing structure to demodulate received signals by using the channel estimation value inputted from the channel estimator, the synchronization position value stored by the tracking module, and an output value of the second switch.
    • 提供了一种用于DS-CDMA UWB系统的瑞克接收机和具有该接收机的DS-CDMA接收机。 耙式接收机包括:信道估计器,用于通过使用同步获取序列来估计具有预定码片持续时间的信道; 跟踪模块,用于在检测到信道变化时检测信道变化并调整同步位置值; 用于选择模数转换器的输出值之一和相关器的输出值并输出所选值的第一开关; 用于选择模数转换器的输出值之一和相关器的输出值的第二开关; 以及具有并行处理结构的多个解调器,通过使用从信道估计器输入的信道估计值,由跟踪模块存储的同步位置值和第二开关的输出值来解调接收信号。
    • 9. 发明授权
    • Parallel equalizer for DS-CDMA UWB system and method thereof
    • DS-CDMA UWB系统的并行均衡器及其方法
    • US08009728B2
    • 2011-08-30
    • US11635937
    • 2006-12-08
    • Kyu-Min KangCheol-Ho ShinSung-Woo ChoiSang-In ChoSang-Sung ChoiKwang-Roh Park
    • Kyu-Min KangCheol-Ho ShinSung-Woo ChoiSang-In ChoSang-Sung ChoiKwang-Roh Park
    • H03H7/30
    • H04L25/03038H04L2025/03439
    • A parallel equalizer for a DS-CDMA UWB system and method thereof are provided. The parallel equalizer includes: a filter block for filtering a training input signal in a ‘training mode’, and filtering the plurality of input signals in parallel in a ‘symbol decision mode’; a symbol decision block for obtaining a symbol error based on a output from the filter block and a training symbol in the ‘training mode’, and estimating a transmission symbol for each of the input signals in the ‘symbol decision mode’, obtaining an error of one among the estimated transmission symbols for a symbol error calculating input signal; and an weight update block for updating a filter tap coefficients of the filter block based on the training input signal or the symbol error calculating input signal and the symbol error and transmitting the updated filter tap coefficients into the filter block.
    • 提供了一种用于DS-CDMA UWB系统的并行均衡器及其方法。 并行均衡器包括:滤波器块,用于以“训练模式”对训练输入信号进行滤波,并且以“符号判定模式”并行地对多个输入信号进行滤波; 用于基于来自滤波块的输出和“训练模式”中的训练符号获得符号误差的符号判定块,并且以“符号判定模式”为每个输入信号估计发送符号,获得误差 估计的传输符号中的一个用于符号误差计算输入信号; 以及权重更新块,用于基于训练输入信号或符号误差计算输入信号和符号错误来更新滤波器块的滤波器抽头系数,并将更新的滤波器抽头系数发送到滤波器块中。
    • 10. 发明授权
    • Apparatus and method for detecting time-frequency code in MB-OFDM UWB system
    • 在MB-OFDM UWB系统中检测时频码的装置和方法
    • US07924953B2
    • 2011-04-12
    • US11948179
    • 2007-11-30
    • Sung-Woo ChoiCheol-Ho ShinKyu-Min KangSang-Sung Choi
    • Sung-Woo ChoiCheol-Ho ShinKyu-Min KangSang-Sung Choi
    • H04L27/06H04L7/00H04B1/69
    • H04B1/713H04B1/709H04L5/0007H04L5/0037H04L27/2655H04L27/2675
    • Provided is an apparatus and method for detecting a time-frequency code in an MB-OFDM UWB system. The apparatus includes a controller for providing a band selection signal to the RF receiver and outputting a preamble selection signal at regular symbol periods to calculate a cross correlation value for a predetermined time period more than a beacon frame interval when a time-frequency code search start signal is received; and a cross correlator for storing information on preamble patterns, selecting a preamble stored depending on the preamble selection signal, and calculating a cross correlation value for a digital signal transferred through the RF receiver, wherein the controller determines a time-frequency code using a preamble where a peak occurs as a time-frequency code that is currently in use when a peak signal is inputted based on the calculated cross correlation value, and transmits the determined time-frequency code to the MAC receiver.
    • 提供了一种用于检测MB-OFDM UWB系统中的时间 - 频率代码的装置和方法。 该装置包括控制器,用于向RF接收机提供频带选择信号,并以规则符号周期输出前导码选择信号,以便在时间频率代码搜索开始时比信标帧间隔多一个预定时间段内的互相关值 信号被接收; 以及交叉相关器,用于存储关于前导码模式的信息,选择根据前导选择信号存储的前导码,以及计算通过RF接收机传送的数字信号的互相关值,其中控制器使用前导码确定时间频率码 其中当基于所计算的互相关值输入峰值信号时作为当前正在使用的时间频率代码发生峰值,并将所确定的时间频率代码发送到MAC接收机。