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    • 11. 发明申请
    • Method and apparatus for providing dual variable clocks for low-power wireless packet communication
    • 提供用于低功率无线分组通信的双可变时钟的方法和装置
    • US20060203741A1
    • 2006-09-14
    • US11299203
    • 2005-12-09
    • Jeen HurSun KimByung KimSeong ParkSang HanHoo Lee
    • Jeen HurSun KimByung KimSeong ParkSang HanHoo Lee
    • H04J1/16H04Q7/24
    • H04W52/0293Y02D70/142Y02D70/144Y02D70/146
    • Provided is a wireless packet communication method, and more particularly, a method and apparatus for enabling low-power communication by providing separate driving clocks optimized for a lower part for performing the function of a physical layer part and an upper part for performing the function of an upper layer above the physical layer in a wireless packet communication system. The method includes a first clock providing step of measuring actual data transmission and reception rates at a predetermined period, setting up a frequency (F1) of a first clock based on the measured rates, and providing the first clock to the upper part and a second clock providing step of determining a transfer mode of the wireless packet communication system, detecting a frequency (F2) of a second clock selected according to the determined transfer mode, and providing the second clock to the lower part.
    • 本发明提供一种无线分组通信方法,更具体地说,涉及一种能够实现低功率通信的方法和装置,该方法和装置通过提供针对下部优化的单独的驱动时钟,用于执行物理层部分和上部的功能,以执行功能 在无线分组通信系统中的物理层上方的上层。 该方法包括:第一时钟提供步骤,用于在预定时间段内测量实际数据发送和接收速率,基于测量的速率建立第一时钟的频率(F 1> 1),并且提供第一时钟 时钟到上半部分,以及第二时钟提供步骤,确定无线分组通信系统的传送模式,检测根据所确定的传送模式选择的第二时钟的频率(F 2> 2),以及 向下部提供第二个时钟。
    • 17. 发明申请
    • Optical receiver for reducing optical beat interference and optical network including the optical receiver
    • 用于减少光学差拍干扰的光接收机和包括光接收机的光网络
    • US20060098986A1
    • 2006-05-11
    • US11099180
    • 2005-03-30
    • Eui JungByoung KimYong WonSang HanHyun Jung
    • Eui JungByoung KimYong WonSang HanHyun Jung
    • H04B10/00
    • H04B10/66
    • An optical receiver for use in an Optical Network (ON) such as a WPON based on an SCMA scheme. The optical receiver apparatus for use in a Central Office contained in an ON includes: an optical power divider for dividing an input optical signal into first and second optical signals; a frequency generator for generating a oscillation frequency; a phase shifter for shifting a phase of the oscillation frequency; a first optical modulator for modulating the first optical signal with the oscillation frequency; a second optical modulator for modulating the second optical signal with the oscillation frequency phase-shifted; a first photodiode for converting the optical signal modulated by the first optical modulator into a first RF signal; a second photodiode for converting the optical signal modulated by the second optical modulator into a second RF signal; and a differential amplifier for differentially amplifying the first RF signal and the second RF signal.
    • 一种用于光网络(ON)的光接收机,例如基于SCMA方案的WPON。 用于包含在ON中的中心局的光接收装置包括:光功率分配器,用于将输入光信号分成第一和第二光信号; 用于产生振荡频率的频率发生器; 用于移动所述振荡频率的相位的移相器; 第一光调制器,用于以所述振荡频率调制所述第一光信号; 第二光调制器,用于调制具有相移的振荡频率的第二光信号; 第一光电二极管,用于将由第一光调制器调制的光信号转换成第一RF信号; 第二光电二极管,用于将由第二光调制器调制的光信号转换成第二RF信号; 以及用于差分放大第一RF信号和第二RF信号的差分放大器。
    • 18. 发明申请
    • Nanoheteroepitaxy of Ge on Si as a foundation for group III-V and II-VI integration
    • 锗在Si上的纳米管外延作为III-V族和II-VI族整合的基础
    • US20060073681A1
    • 2006-04-06
    • US11260231
    • 2005-10-28
    • Sang Han
    • Sang Han
    • H01L21/20H01L21/36
    • B82Y10/00H01L21/0237H01L21/02381H01L21/0245H01L21/02521H01L21/02532H01L21/02639H01L21/02642H01L21/02647H01L29/0665H01L29/0673
    • A method of forming a virtually defect free lattice mismatched nanoheteroepitaxial layer is disclosed. The method includes forming an interface layer on a portion of a substrate. The interface layer can be, for example, SiO2, Si3N4, Al2O3, or W. A template can then be made by forming a plurality of touchdown windows in the interface layer. A plurality of seed pads can then be formed in the touchdown windows by exposing the interface layer to a material comprising a semiconductor material. The plurality of seed pads, having an average width of about 1 nm to 10 nm, can be interspersed within the interface layer and contact the substrate. A first layer is formed by lateral growth of the seed pads over the interface layer. A second layer is then formed on the first layer. The second layer can be for example, one of a Group III-V and II-VI heteroepitaxial film.
    • 公开了形成几乎无缺陷的晶格失配的纳米外延层的方法。 该方法包括在衬底的一部分上形成界面层。 界面层可以是例如SiO 2,Si 3 N 4 N 2,N 2 O 2,N 2 > 3 或W.然后可以通过在界面层中形成多个触地窗来制作模板。 然后可以通过将界面层暴露于包含半导体材料的材料来在触地窗中形成多个种子垫。 具有约1nm至10nm的平均宽度的多个种子垫可以分散在界面层内并与基底接触。 通过界面层上的种子垫的横向生长形成第一层。 然后在第一层上形成第二层。 第二层可以是例如III-V族和II-VI族异质外延膜之一。
    • 20. 发明申请
    • Cushion pad for backpacks
    • 用于背包的垫垫
    • US20050205634A1
    • 2005-09-22
    • US11080323
    • 2005-03-15
    • Sang Han
    • Sang Han
    • A45F3/04A45F3/12A45F4/02
    • A45F3/12A45C2003/002A45F2003/127
    • Disclosed herein is a cushion pad for backpacks. In the cushion pad of the present invention, a net fabric is provided on a portion of each of the backpad and the shoulder straps which are in close contact with the back and shoulder of a user. Furthermore, the cushion pad includes a porous filter which is placed inside the net fabric to dissipate heat to the atmosphere, and a sheet which is made of a material such as polyurethane and layered on a surface of the porous filter. The sheet is inserted along with the porous filter into a space defined between the net fabric and the cloth of the backpack. As such, the cushion pad having the above-mentioned structure provides superior ventilation and elasticity to the backpad and the shoulder straps of the backpack. In addition, the cushion pad of the present invention is lighter than conventional pads and has superior ventilation, thus preventing the backpack from being soaked with sweat, thereby being pleasant to the user who carries the backpack on his/her back.
    • 本文公开了一种用于背包的缓冲垫。 在本发明的缓冲垫中,在与用户的背部和肩部紧密接触的背垫和肩带的每一个的一部分上设有网状织物。 此外,缓冲垫包括放置在网状织物内部以将热量散发到大气的多孔过滤器,以及由诸如聚氨酯的材料制成并且层叠在多孔过滤器的表面上的片材。 片材与多孔过滤器一起插入到网状织物和背包的布之间限定的空间中。 因此,具有上述结构的缓冲垫对背包的背垫和肩带提供了优异的通风和弹性。 此外,本发明的缓冲垫比传统的垫更轻,并且具有优良的通风性,因此防止了背包被汗水浸湿,从而对背背背带的使用者来说是愉快的。