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    • 1. 发明授权
    • Apparatus for analyzing sample
    • 用于分析样品的仪器
    • US08932538B2
    • 2015-01-13
    • US13007192
    • 2011-01-14
    • Hyun Min KimDo Gyoon KimJong Myeon Park
    • Hyun Min KimDo Gyoon KimJong Myeon Park
    • G01N33/00B01L3/00
    • B01L3/502746B01L3/502738B01L2200/0642B01L2200/141B01L2300/021B01L2300/022B01L2300/0803B01L2400/0409B01L2400/086
    • A apparatus for analyzing sample to prevent a sample from being stuck to a surface of the apparatus for analyzing sample in the course of being injected into the apparatus for analyzing sample. The apparatus for analyzing sample includes a platform having a disk shape. The platform includes chambers and channels, a sample inlet hole which is formed in an outer surface the platform and through which a sample is injected into the platform; an opening which is formed in the outer surface of the platform and through which a residual of the sample, present on the outer surface of the platform around the sample inlet hole, is introduced into a receiving space isolated from the chambers and channels; and a barrier which is formed on the outer surface of the platform around a portion of the opening to prevent the residual of the sample from moving past the opening in a radial outward direction of the platform.
    • 一种用于分析样品以防止样品被粘附到用于分析样品的装置的表面以在被注入到用于分析样品的装置中的过程中的装置。 用于分析样品的装置包括具有盘形状的平台。 平台包括室和通道,样品入口孔,其形成在平台的外表面中,样品通过该入口孔注入平台; 形成在平台的外表面中的开口,其中存在于围绕样品入口孔的平台的外表面上的样品的残留物被引入到与腔室和通道隔离的接收空间中; 以及围绕所述开口的一部分形成在所述平台的外表面上以防止所述样品的残留物沿所述平台的径向向外方向移动经过所述开口的障碍物。
    • 3. 发明授权
    • Overvoltage repetition prevention circuit, method thereof, and power factor compensation circuit using the same
    • 过电压重复防止电路及其方法以及使用该电路的功率因数补偿电路
    • US08937462B2
    • 2015-01-20
    • US13440787
    • 2012-04-05
    • Young Bae ParkHyun Min KimHo Jae Lee
    • Young Bae ParkHyun Min KimHo Jae Lee
    • G06F5/00G06F1/10G05B13/02H02M1/42
    • G06F1/10G05B13/02G05F1/70H02M1/42H02M1/4225Y02B70/126Y02P80/112
    • The present invention relates to an overvoltage repetition prevention circuit, a method thereof, and a power factor correction circuit including the same. The power factor correction circuit includes: an inductor receiving an input voltage and supplying an output voltage; a power switch connected to the inductor and controlling an inductor current to the inductor; and a power factor correction controller differently controlling a control structure generating a control voltage controlling a switching operation of the power switch during a predetermined overvoltage stabilization period generated in synchronization with a time that an output voltage is an overvoltage and the control structure generating the control voltage in a normal state in which the output voltage is not the overvoltage, wherein the control structure is determined according to a difference between the output voltage and a predetermined output target voltage during the overvoltage stabilization period.
    • 本发明涉及一种过电压重复防止电路,其方法和包括该过电压重复防止电路的功率因数校正电路。 功率因数校正电路包括:接收输入电压并提供输出电压的电感器; 连接到电感器并控制电感器电感的电源开关; 以及功率因数校正控制器,其不同地控制在与输出电压为过电压的时间同步地产生的预定过电压稳定时段期间产生控制电源开关的开关操作的控制电压的控制结构,以及产生控制电压的控制结构 在其中输出电压不是过电压的正常状态下,其中根据输出电压和过电压稳定期间的预定输出目标电压之间的差来确定控制结构。
    • 6. 发明申请
    • LIGHT EMITTING DEVICE PACKAGE AND LIGHTING SYSTEM
    • 发光装置包装和照明系统
    • US20130049023A1
    • 2013-02-28
    • US13324423
    • 2011-12-13
    • Hyun Min Kim
    • Hyun Min Kim
    • H01L33/60H01L25/075
    • H01L33/60H01L33/52H01L2224/48091H01L2924/00014
    • Disclosed are a light emitting device package and a lighting system. The light emitting device package includes a body including a cavity, at least one light emitting device in the cavity, a resin member filled in the cavity while covering the light emitting device, and a reflective layer on a lateral side of the cavity. The reflective layer is formed while opening the upper region of the cavity. The reflective layer is selectively formed only in a lower region of the lateral side of the cavity in the body, and the resin member, which is filled in the upper portion of the cavity, directly adheres to the body. The air-tightness between the resin member and the body is improved.
    • 公开了一种发光器件封装和照明系统。 发光器件封装包括一个主体,该主体包括空腔,空腔中的至少一个发光器件,填充在空腔中的树脂部件,同时覆盖发光器件,以及在该空腔的侧面上的反射层。 在打开空腔的上部区域的同时形成反射层。 反射层仅在体内的空腔的侧面的下部区域中选择性地形成,并且填充在空腔的上部的树脂构件直接粘附到身体。 提高了树脂构件与主体之间的气密性。
    • 7. 发明授权
    • White LED device capable of adjusting correlated color temperature
    • 白色LED装置能够调节相关色温
    • US08174189B2
    • 2012-05-08
    • US12600131
    • 2008-03-05
    • Han Do KimHyun Min KimJung Hyun Yoon
    • Han Do KimHyun Min KimJung Hyun Yoon
    • H01L29/06H05B37/02
    • H01L25/0753H01L33/50H01L2224/48091H01L2924/3025H01L2924/00H01L2924/00014
    • A white Light Emitting Diode (LED) device that enables the adjustment of a Correlated Color temperature to realize emotional illumination is provided. The white LED device includes a package body for accommodating a plurality of light source units; a first light source unit accommodated in the package body, configured to have one or more first LED chips and a first phosphor, and configured to emit white light having a first Correlated Color Temperature (CCT); a second light source unit accommodated in the package body, configured to have one or more second LED chips and a second phosphor, and configured to emit white light having a second CCT; and a current control unit for varying current, to be supplied to at least one of the first and second LED chips, so as to adjust the first and second CCTs.
    • 提供了能够调整相关色温以实现情感照明的白色发光二极管(LED)装置。 白色LED装置包括用于容纳多个光源单元的封装体; 容纳在所述封装主体中的第一光源单元,被配置为具有一个或多个第一LED芯片和第一荧光体,并且被配置为发射具有第一相关色温(CCT)的白光; 容纳在所述封装主体中的第二光源单元,被配置为具有一个或多个第二LED芯片和第二荧光体,并且被配置为发射具有第二CCT的白光; 以及用于改变电流的电流控制单元,被提供给第一和第二LED芯片中的至少一个,以便调整第一和第二CCT。
    • 8. 发明申请
    • LED LIGHTING DEVICE
    • LED照明设备
    • US20110156584A1
    • 2011-06-30
    • US13060747
    • 2009-08-26
    • Hyun Min Kim
    • Hyun Min Kim
    • H01K1/62F21V29/00
    • F21V29/83F21K9/00F21K9/232F21S2/005F21S4/28F21S8/033F21S8/04F21V5/008F21V5/04F21V7/005F21V13/04F21V23/00F21V23/0442F21V29/507F21Y2103/10F21Y2107/30F21Y2115/10
    • The present invention relates to a lighting device using an LED. One embodiment of the invention provides a lamp-shaped LED lighting device that can replace a known lighting device. The lamp-shaped LED lighting device promptly emits the heat generated by an LED element, which influences the optical output and the lifespan of the LED lighting device, through a lamp-shaped frame with a heat-ventilation structure that facilitates air circulation. In addition, the lamp-shaped LED lighting device prevents glare from an LED light source by using a lateral reflecting member, a diffusion lens and a diffusion cover and diffuses the light from the light source widely without optical attenuation. Another embodiment of the invention provides a tube and panel-shaped LED lighting devices that can be replaced with a previous tube-shaped fluorescent light and a panel-shaped lighting device. The tube and panel-shaped LED lighting devices rapidly emit the heat generated by an LED element, which influences the optical output and the life span of the LED lighting device, through a tube and panel-shaped frame with a heat-sink structure. In addition, the tube and panel-shaped LED lighting devices prevent glare from the LED light source by optically arranging a curved reflecting plate, a diffusion plate and a diffusion window which include a diffusion lens at the upper portion of the LED element. Furthermore the tube and panel-shaped LED lighting devices diffuse the light from the LED light source widely without optical attenuation.
    • 本发明涉及使用LED的照明装置。 本发明的一个实施例提供一种可以代替已知照明装置的灯状LED照明装置。 灯形LED照明装置通过具有便于空气循环的热通风结构的灯状框架,迅速地发出影响LED照明装置的光输出和寿命的LED元件产生的热量。 此外,灯形LED照明装置通过使用横向反射构件,漫射透镜和漫射罩来防止来自LED光源的眩光,并且广泛地漫射来自光源的光,而没有光衰减。 本发明的另一实施例提供一种管和面板形的LED照明装置,其可以用先前的管状荧光灯和面板形照明装置代替。 管和面板形LED照明装置通过具有散热器结构的管和面板形框架快速地发射由LED元件产生的热量,该元件影响LED照明装置的光输出和寿命。 此外,管和面板形LED照明装置通过在LED元件的上部光学地布置包括漫射透镜的弯曲反射板,扩散板和扩散窗来防止来自LED光源的眩光。 此外,管和面板形LED照明装置广泛地扩散来自LED光源的光,而没有光衰减。
    • 10. 发明授权
    • High-sensitivity magnetic resonance imaging nano-contrast agent based on an anionic polymer and cationic polymer ion complex, and a production method therefor
    • 基于阴离子聚合物和阳离子聚合物离子络合物的高灵敏度磁共振成像纳米造影剂及其制备方法
    • US09138491B2
    • 2015-09-22
    • US14110138
    • 2011-04-07
    • Moon-Hee SungYong Taik LimYoung-Woock NohIl Han LeeHyun Min Kim
    • Moon-Hee SungYong Taik LimYoung-Woock NohIl Han LeeHyun Min Kim
    • A61K49/12A61B5/055A61K49/18
    • A61K49/126A61K49/1863A61K49/1872
    • The present invention relates to a nano-composite containing anionic and cationic polymers and a method for preparing thereof, and more particularly to a poly-gamma-glutamic acid (γ-PGA)/chitosan/manganese iron oxide nanoparticle composite prepared by encapsulating iron oxide-based nanoparticles in a γ-PGA/chitosan polymer composite using the ionic self-assembly properties of poly-gamma-glutamic acid (γ-PGA) and chitosan, which are biocompatible polymer materials, and to a method for preparing thereof.The present invention provides a magnetic resonance imaging nano-contrast agent based on a nanoparticle composite including iron oxide-based nanoparticles encapsulated in a self-assembled composite of anionic poly-gamma-glutamic acid (γPGA) and cationic chitosan. The iron oxide-based nanoparticles encapsulated in the composite interact with each other to produce a synergistic effect on the amplification of magnetic resonance signals, and thus have an relatively excellent contrast effect compared to when they exist as single particles.
    • 本发明涉及含有阴离子和阳离子聚合物的纳米复合物及其制备方法,更具体地涉及通过包封氧化铁制备的聚-γ-谷氨酸(γ-PGA)/壳聚糖/锰铁氧体纳米颗粒复合材料 基于聚-γ-谷氨酸(γ-PGA)和壳聚糖的离子自组装性质的γ-PGA /壳聚糖复合材料的生物相容性聚合物材料的制备方法。 本发明提供一种基于纳米颗粒复合材料的磁共振成像纳米造影剂,其包括封装在阴离子聚-γ-谷氨酸(γPGA)和阳离子壳聚糖的自组装复合物中的基于氧化铁的纳米颗粒。 封装在复合材料中的基于氧化铁的纳米颗粒彼此相互作用以对磁共振信号的扩增产生协同效应,因此与作为单个颗粒存在时相比具有相对优异的对比效果。