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    • 1. 发明授权
    • Interleaved power factor compensation circuit controller
    • 交错功率因数补偿电路控制器
    • US08564982B2
    • 2013-10-22
    • US13137602
    • 2011-08-29
    • Ho Gul SongKyoung Hoe KimJong Hun HaDae Hee HanYong Wook Kim
    • Ho Gul SongKyoung Hoe KimJong Hun HaDae Hee HanYong Wook Kim
    • H02M1/12H02M1/14
    • H02M1/4225H02M1/32H02M3/1584H02M2003/1586Y02B70/126
    • A power supply circuit to detect whether or not abnormal current is generated in a power factor compensation circuit and forcibly stop an operation of an interleaved power factor compensation circuit controller if abnormal current is generated. The power supply circuit includes a rectifier, a power factor compensation circuit including a plurality of reactors, a plurality of switches and a plurality of current detectors, a power factor compensation circuit controller to control switching of the switches and to control a power factor compensation operation, and a power factor compensation circuit protection circuit to receive the voltages output from the plurality of current detectors and to stop the operation of the power factor compensation circuit controller if at least one of the voltages output from the plurality of current detectors is abnormal. Thus, it is possible to prevent failure of the switches and the current detectors due to abnormal current.
    • 一种电源电路,用于检测在功率因数补偿电路中是否产生异常电流,并且如果产生异常电流则强制停止交错功率因数补偿电路控制器的操作。 电源电路包括整流器,包括多个电抗器的功率因数补偿电路,多个开关和多个电流检测器,功率因数补偿电路控制器,用于控制开关的开关和控制功率因数补偿操作 以及功率因数补偿电路保护电路,用于接收从多个电流检测器输出的电压,并且如果从多个电流检测器输出的电压中的至少一个异常,则停止功率因数补偿电路控制器的操作。 因此,可以防止由于异常电流引起的开关和电流检测器的故障。
    • 2. 发明申请
    • SYSTEM FOR ENERGY STORAGE AND METHOD FOR CONTROLLING THE SAME
    • 能量储存系统及其控制方法
    • US20120295139A1
    • 2012-11-22
    • US13456177
    • 2012-04-25
    • Young Hak JeongYong Wook KimHyun Chul JungBae Kyun Kim
    • Young Hak JeongYong Wook KimHyun Chul JungBae Kyun Kim
    • H01M10/48
    • H01M10/48H01M10/0525
    • Disclosed herein are a system for energy storage may include: a unit cell package in which the plurality of unit cells are connected in series and/or in parallel; an input/output terminal connected with the unit cell package to supply energy to the unit cell package or output energy stored in the unit cell package; an interruption switch connected between the unit cell package and the input/output terminal to connect or interrupt the unit cell package and the input/output terminal with and from each other; a slave connected with the plurality of unit cells and/or the unit cell package to monitor voltages of the plurality of unit cells and/or a voltage of the unit cell package; and a master connected with the slave to receive information monitored by the slave and generate a signal for controlling the slave and the interruption switch in accordance with the monitored information.
    • 这里公开的一种用于能量存储的系统可以包括:其中多个单元电池串联和/或并联连接的单元电池组件; 与单位电池组件连接的输入/输出端子,以向单元电池组件提供能量或输出存储在单位电池组件中的能量; 连接在单元电池组件和输入/输出端子之间的中断开关,用于将单元电池组件和输入/输出端子彼此连接或中断; 与所述多个单元电池和/或所述单元电池组件连接的从属单元,用于监视所述多个单元电池的电压和/或所述单元电池组件的电压; 以及与从设备连接以接收从站监视的信息的主设备,并且根据所监视的信息产生用于控制从设备和中断交换机的信号。
    • 9. 发明授权
    • Optical interconnection module and method of manufacturing the same
    • 光互连模块及其制造方法
    • US07248768B2
    • 2007-07-24
    • US11285624
    • 2005-11-22
    • Keum Soo JeonMin Su LeeSung Ho KangYong Wook KimIn Su Park
    • Keum Soo JeonMin Su LeeSung Ho KangYong Wook KimIn Su Park
    • G02B6/26G02B6/42G02B6/36
    • G02B6/4214G02B6/10H01L2224/48091H01L2224/73265H01L2924/3011H01L2924/00014H01L2924/00
    • The present invention relates generally to an optical interconnection module for vertical optical coupling and a method of manufacturing the optical interconnection module. The optical interconnection module includes an optical waveguide. The optical waveguide includes substrate on which electrode pads and a predetermined circuit pattern are formed; a light source unit provided on the substrate and configured to generate an optical signal and emit the signal to an outside; an optical detection unit for receiving the optical signal from the light source unit and converting the optical signal into an electric signal; drive units provided on the substrate and configured to drive the light source unit and the light detection unit in response to electric signals supplied through the electrode pads; and a cladding layer, a core layer layered on the cladding layer, and an elliptical reflecting mirror surface placed on an end of the core layer facing the light source unit.
    • 本发明一般涉及用于垂直光耦合的光互连模块以及制造光互连模块的方法。 光互连模块包括光波导。 光波导包括其上形成有电极焊盘和预定电路图案的衬底; 光源单元,设置在所述基板上,并且被配置为产生光信号并将信号发射到外部; 光学检测单元,用于从光源单元接收光信号并将光信号转换成电信号; 驱动单元,其设置在所述基板上,并且被配置为响应于通过所述电极焊盘供给的电信号而驱动所述光源单元和所述光检测单元; 以及层叠在包覆层上的包层,芯层以及配置在与芯光层单元相对的芯层的端部的椭圆反射镜面。
    • 10. 发明授权
    • High voltage transistor and method of manufacturing the same
    • 高压晶体管及其制造方法
    • US07034360B2
    • 2006-04-25
    • US10878273
    • 2004-06-28
    • Yong Wook KimDong Kee LeeHee Hyun Chang
    • Yong Wook KimDong Kee LeeHee Hyun Chang
    • H01L29/76H01L21/336
    • H01L29/7833H01L27/105
    • Provided is a high voltage transistor in a flash memory device comprising: a source/drain junction of a DDD structure consisting of a high-concentration impurity region and a low-concentration impurity region surrounding the high-concentration impurity region, the high-concentration impurity region being formed in parallel with a gate electrode at a distance spaced by a location in which a contact hole is formed, and having a rectangular shape whose width is the same as or wider than that of the contact hole and whose length is the same as or narrower than that of an active region through which the gate electrode passes. Accordingly, a current density to pass the gate electrode neighboring the contact hole portion and a current density to pass the gate electrode at a portion where the contact hole cannot be formed become uniform. A uniform and constant saturation current can be obtained regardless of the number of the contact hole.
    • 提供一种闪速存储器件中的高压晶体管,包括:由高浓度杂质区域和围绕高浓度杂质区域的低浓度杂质区域构成的DDD结构的源极/漏极结,高浓度杂质 区域与栅电极平行地形成在与形成接触孔的位置隔开的距离处,并且具有与接触孔的宽度相同或更宽的矩形形状,并且其长度与 或比栅电极通过的有源区的窄。 因此,与接触孔部相邻的栅电极的电流密度以及在不能形成接触孔的部分通过栅电极的电流密度变得均匀。 无论接触孔的数量如何,都可以获得均匀和恒定的饱和电流。