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    • 3. 发明授权
    • Method and apparatus for voice activity detection
    • 语音活动检测方法和装置
    • US08762144B2
    • 2014-06-24
    • US13099891
    • 2011-05-03
    • Nam-gook ChoEun-kyoung Kim
    • Nam-gook ChoEun-kyoung Kim
    • G10L15/20
    • G10L15/14G10L15/10G10L25/03G10L25/84
    • A method and apparatus for detecting voice activity are disclosed. The method of detecting voice activity includes: extracting a feature parameter from a frame signal; determining whether the frame signal is a voice signal or a noise signal by comparing the feature parameter with model parameters of a plurality of comparison signals, respectively; and outputting the frame signal when the frame signal is determined to be a voice signal. The apparatus includes a classifier module which extracts a feature parameter from a frame signal, and generating labeling information with respect to the frame signal by comparing the feature parameter with model parameters of a plurality of comparison signals; and a voice detection unit which determines whether the frame signal is a noise signal or a voice signal with reference to the labeling information, and outputting the frame signal when the frame signal is determined to be a voice signal.
    • 公开了一种用于检测语音活动的方法和装置。 检测语音活动的方法包括:从帧信号中提取特征参数; 通过将特征参数分别与多个比较信号的模型参数进行比较来确定帧信号是语音信号还是噪声信号; 并且当所述帧信号被确定为语音信号时,输出所述帧信号。 该装置包括:分类器模块,其从帧信号中提取特征参数,并通过将特征参数与多个比较信号的模型参数进行比较来产生关于帧信号的标注信息; 以及语音检测单元,其参考标号信息来确定帧信号是噪声信号还是语音信号,并且当帧信号被确定为语音信号时,输出帧信号。
    • 6. 发明授权
    • Optical fiber illuminator, method of fabricating optical fiber illuminator, and optical recording head and optical recording and reading apparatus having the optical fiber illuminator
    • 光纤照明器,光纤照明器的制造方法以及具有光纤照明器的光记录头和光记录读取装置
    • US07720332B2
    • 2010-05-18
    • US12316875
    • 2008-12-17
    • Kang Ho ParkEun Kyoung KimSung Q Lee
    • Kang Ho ParkEun Kyoung KimSung Q Lee
    • G02B6/32C03B37/00
    • G11B7/1387G02B6/241G02B6/262G02B6/32
    • Provided is an optical fiber illuminator used for recording and reading high density optical information according to a near field recording (NFR) scheme, a method of fabricating the optical fiber illuminator, and an optical recording head and recording apparatus having the optical fiber illuminator. The optical fiber illuminator includes: an optical fiber having a core upon which light is incident and a clad that surrounds the core, one end of the optical fiber having a mirror formed in an inclined manner; and a lens formed on an outer surface of the optical fiber for focusing light reflected by the mirror. The optical fiber illuminator has an improved optical arrangement for optical illumination and detection, it is easy to manufacture, its optical input is easy to control, and it can be readily provided in an array form. When an array type optical recording and reading apparatus having an optical recording head and multiple aperture probes adopts the optical fiber illuminator, the resulting simple arrangement and compact size enables size reduction of the overall apparatus, a signal to noise ratio is high, and high density optical information can be recorded and reproduced at an extremely high rate.
    • 提供了一种用于根据近场记录(NFR)方案记录和读取高密度光学信息的光纤照明器,制造光纤照明器的方法,以及具有光纤照明器的光学记录头和记录装置。 光纤照明器包括:具有光入射的芯和围绕芯的包层的光纤,光纤的一端具有以倾斜方式形成的反射镜; 以及形成在光纤的外表面上的用于聚焦由反射镜反射的光的透镜。 光纤照明器具有用于光学照明和检测的改进的光学布置,其易于制造,其光学输入易于控制,并且可以容易地以阵列形式提供。 当具有光学记录头和多个孔径探针的阵列型光学记录和读取装置采用光纤照明器时,所得到的简单布置和紧凑的尺寸使得整个装置的尺寸减小,信噪比高,并且高密度 可以以非常高的速率记录和再现光学信息。
    • 7. 发明申请
    • Optical microscope system for detecting nanowires using polarizer and fast fourier transform
    • 用于使用偏振器和快速傅里叶变换检测纳米线的光学显微镜系统
    • US20090195869A1
    • 2009-08-06
    • US11940379
    • 2007-11-15
    • Eun Kyoung KimSeung Eon MoonHong Yeol LeeJong Hyurk ParkKang Ho ParkJong Dae KimGyu Tae KimDo Young JangEung Seok ParkHyun Jin Ji
    • Eun Kyoung KimSeung Eon MoonHong Yeol LeeJong Hyurk ParkKang Ho ParkJong Dae KimGyu Tae KimDo Young JangEung Seok ParkHyun Jin Ji
    • G02B21/06G06K9/00
    • G02B21/06G01N21/21G02B21/365G02B27/286Y10S977/881
    • Provided is an optical microscope system for detecting nanowires that is designed with a rotational polarizer and Fast Fourier Transform (FFT) to allow for use of an existing optical microscope in fabricating an electronic device having the nanowires. The optical microscope system includes: a light source for emitting light to provide the light to a nanowire sample; a rotational polarizer provided on a path of the light emitted from the light source for polarizing the light; an optical microscope for detecting a nanowire image using light that is polarized by the rotational polarizer and incident on the nanowire sample; a CCD camera provided in a region of the optical microscope for photographing and storing the nanowire image detected by the optical microscope; and a data processor for performing Fast Fourier Transform (FFT) on the nanowire image stored in the CCD camera. Intensity of reflected light varies, due to optical anisotropy of the nanowires, along a polarizing orientation of light incident on the nanowires. It is possible to obtain a distinct image of the nanowires having a nanometer line width by performing FFT on each pixel of reflected light images obtained at predetermined time intervals after light passing through the polarizer rotating in a predetermined period is incident on the nanowires.
    • 提供了一种用于检测纳米线的光学显微镜系统,其被设计为具有旋转偏振器和快速傅里叶变换(FFT),以允许使用现有的光学显微镜来制造具有纳米线的电子器件。 光学显微镜系统包括:用于发射光以向纳米线样品提供光的光源; 设置在从光源发射的光的路径上以使光偏振的旋转偏振器; 光学显微镜,用于使用被旋转偏振器偏振并入射在纳米线样品上的光检测纳米线图像; 设置在光学显微镜的区域中的CCD照相机,用于拍摄和存储由光学显微镜检测的纳米线图像; 以及用于在存储在CCD照相机中的纳米线图像上执行快速傅里叶变换(FFT)的数据处理器。 反射光的强度由于纳米线的光学各向异性而沿着入射在纳米线上的光的偏振方向而变化。 通过在经过预定时间内旋转的偏振片的光入射到纳米线上之后,以预定时间间隔获得的反射光图像的每个像素执行FFT,可以获得具有纳米线宽度的纳米线的不同图像。
    • 8. 发明授权
    • Form factor disk
    • 外形尺寸盘
    • US07562374B2
    • 2009-07-14
    • US11149098
    • 2005-06-09
    • Woo Seok CheongYong Goo YooSung Q LeeHo Jun RyuMun Cheol PaekEun Kyoung Kim
    • Woo Seok CheongYong Goo YooSung Q LeeHo Jun RyuMun Cheol PaekEun Kyoung Kim
    • G11B25/04
    • G11B23/0035
    • Provided is a form factor disk such as an optical or magnetic disk used in electronic appliances and information appliances. The form factor disk includes: a circular plate having a first hole for inserting a rotational shaft, a plurality of second holes formed adjacent to the first hole, and an information storage region formed at a surface thereof; an upper metal hub located on the circular plate, and having a hole aligned with the first hole of the circular plate and column-shaped joints formed at portions corresponding to the second holes of the circular plate; and a lower metal hub located under the circular plate, and having a hole aligned with the first hole of the circular plate and column-shaped joints formed at portions corresponding to the second holes of the circular plate, wherein the joints of the upper and lower metal hubs are jointed through the second holes.
    • 提供了诸如用于电子设备和信息设备中的光学或磁盘的形状因子盘。 形状因素盘包括:圆板,具有用于插入旋转轴的第一孔,与第一孔相邻形成的多个第二孔以及形成在其表面的信息存储区; 位于圆板上的上金属毂,具有与圆板的第一孔对准的孔和形成在对应于圆板的第二孔的部分处的柱形接头; 以及位于圆板下方的下金属毂,并且具有与圆板的第一孔对准的孔和形成在与圆板的第二孔对应的部分处形成的柱状接头,其中上下的接头 金属轮毂通过第二个孔接合。
    • 10. 发明申请
    • METHOD OF FABRICATING NANO-WIRE ARRAY
    • 制作纳米线阵列的方法
    • US20080233675A1
    • 2008-09-25
    • US11927881
    • 2007-10-30
    • Hong Yeol LeeSeung Eon MoonEun Kyoung KimJong Hyurk ParkKang Ho ParkJong Dae KimGyu Tae KimJae Woo LeeHye Yeon RyuJung Hwan Huh
    • Hong Yeol LeeSeung Eon MoonEun Kyoung KimJong Hyurk ParkKang Ho ParkJong Dae KimGyu Tae KimJae Woo LeeHye Yeon RyuJung Hwan Huh
    • H01L21/00
    • H01L29/0673H01L21/76289H01L27/1225H01L29/0665H01L29/24H01L29/66969H01L29/7869Y10S977/762
    • Provided is a method of fabricating a nano-wire array, including the steps of: depositing a nano-wire solution, which contains nano-wires, on a substrate; forming a first etch region in a stripe shape on the substrate and then patterning the nano-wires; forming drain and source electrode lines parallel to each other with the patterned nano-wires interposed therebetween; forming a plurality of drain electrodes which have one end connected to the drain electrode line and contact at least one of the nano-wires, and forming a plurality of source electrodes, which have one end connected to the source electrode line and contact the nano-wires that contact the drain electrodes; forming a second etch region between pairs of the drain and source electrodes so as to prevent electrical contacts between the pairs of the drain and source electrodes; forming an insulating layer on the substrate; and forming a gate electrode between the drain and source electrodes contacting the nano-wires on the insulating layer. Accordingly, even in an unparallel structure of nano-wires to electrode lines, a large scale nano-wire array is practicable and applicable to an integrated circuit or display unit with nano-wire alignment difficulty, as well as to device applications using flexible substrates.
    • 提供一种制造纳米线阵列的方法,包括以下步骤:在衬底上沉积包含纳米线的纳米线溶液; 在衬底上形成带状的第一蚀刻区域,然后对纳米线进行构图; 形成彼此平行的漏极和源极电极线,其间插入图案化的纳米线; 形成多个漏电极,所述多个漏电极的一端连接到所述漏电极线并接触所述纳米线中的至少一个,并且形成多个源电极,所述多个源电极的一端连接到所述源电极线并接触所述纳米线, 接触漏电极的电线; 在所述漏极和源极电极之间形成第二蚀刻区域,以防止所述漏极和源极电极之间的电接触; 在所述基板上形成绝缘层; 以及在与绝缘层上的纳米线接触的漏极和源电极之间形成栅电极。 因此,即使在纳米线与电极线的不平行结构中,大规模的纳米线阵列也是可行的并且适用于具有纳米线对准困难的集成电路或显示单元以及使用柔性基板的器件应用。