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    • 3. 发明申请
    • METHOD AND APPARATUS FOR RECOGNIZING LOCATION OF MOVING OBJECT IN REAL TIME
    • 实时识别移动物体位置的方法和装置
    • US20140132500A1
    • 2014-05-15
    • US13913760
    • 2013-06-10
    • Sang Chul AHNIg Jae KIMGyu-Chull HANJaewon KIM
    • Sang Chul AHNIg Jae KIMGyu-Chull HANJaewon KIM
    • G06F3/03
    • G06F3/0325G06F3/011G06K9/2036
    • Provided is an apparatus for recognizing a location of a moving object in real time. The apparatus includes a lighting portion including a lighting unit for emitting a plurality of optical signals spatially separated in different patterns; an electronic tattoo portion that is attached on the moving object, wherein the electronic tattoo portion includes at least one electronic tattoo unit including a solar cell for detecting each of the plurality of optical signals emitted from the lighting portion, a wireless antenna for wirelessly transmitting the plurality of optical signals detected by the solar cell, and a controller for controlling the transmission of the plurality of optical signals; and a location recognition portion for recognizing the location of the moving object from the plurality of optical signals wirelessly transmitted from the electronic tattoo portion.
    • 提供了一种用于实时识别移动物体的位置的装置。 该装置包括:照明部,包括用于发射以不同图案空间分离的多个光信号的照明单元; 附着在移动物体上的电子纹身部分,其中电子纹身部分包括至少一个电子纹身单元,该电子纹身单元包括用于检测从照明部分发射的多个光信号中的每一个的太阳能电池,用于无线发送 由太阳能电池检测的多个光信号,以及用于控制多个光信号的发送的控制器; 以及位置识别部分,用于从电子纹身部分无线发送的多个光信号中识别移动物体的位置。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR RECOGNIZING OBJECT MATERIAL
    • 用于识别物体的方法和装置
    • US20130321620A1
    • 2013-12-05
    • US13800272
    • 2013-03-13
    • Jaewon KIMIg Jae KIMSeung Yeup HYUNSe Yun KIM
    • Jaewon KIMIg Jae KIMSeung Yeup HYUNSe Yun KIM
    • G06K9/32
    • G06K9/3241G01S7/411G01S13/867G01S13/88
    • Provided is an apparatus for recognizing object material. The apparatus includes: an imaging camera unit for capturing spatial image including various objects in a space; an exploring radar unit sending an incident wave to the objects and receiving spatial radar information including a surface reflected wave from a surface of each of the objects and an internal reflected wave from the inside of each of the objects; an information storage unit for storing reference physical property information corresponding to a material of each object; and a material recognition processor recognizing material information of each object by using the reference physical property information stored in the information storage unit, the spatial image provided by the imaging camera unit, and the spatial radar information provided by the exploring radar unit.
    • 提供了一种用于识别对象材料的装置。 该装置包括:成像摄像机单元,用于捕获包括空间中的各种物体的空间图像; 探测雷达单元向对象发送入射波并从每个物体的表面接收包括表面反射波的空间雷达信息和来自每个物体内部的内部反射波; 信息存储单元,用于存储与每个对象的材料相对应的参考物理属性信息; 以及材料识别处理器,通过使用存储在信息存储单元中的参考物理属性信息,由成像相机单元提供的空间图像和由探索雷达单元提供的空间雷达信息来识别每个对象的素材信息。
    • 9. 发明申请
    • BELL MOUTH FOR SCROLL CASE
    • 用于滚动案例的BELL MOUTH
    • US20120009057A1
    • 2012-01-12
    • US12845038
    • 2010-07-28
    • Jaewon KIM
    • Jaewon KIM
    • F04D29/42
    • F04D29/4226F04D29/162F04D29/441
    • A bell mouth for a scroll case according to an exemplary embodiment of the present invention is a bell mouth which is provided on the top plate of the scroll case to form an air inlet in order to allow air flow into the scroll case by a centrifugal blower installed inside the scroll case, and the volume of two parts of the bell mouth in respect to a rotation shaft of the centrifugal blower is different from each other. According to the present invention, it is possible to minimize generation of reverse flow of inflow air by increasing or decreasing a variation of the cross-section area of the bell mouth according to an increase in the pressure of the flow rate.
    • 根据本发明的示例性实施例的用于涡旋壳的喇叭口是设置在涡旋壳体的顶板上以形成空气入口的喇叭口,以便允许空气通过离心鼓风机流入涡旋壳体 安装在涡旋壳体内部,并且喇叭口相对于离心式鼓风机的旋转轴的两部分的体积彼此不同。 根据本发明,通过根据流量的压力的增加增加或减少喇叭口的横截面面积的变化,能够最小化流入空气的逆流的产生。
    • 10. 发明申请
    • COOLING APPARATUS FOR SEMICONDUCTOR COMPONENT
    • 用于半导体元件的冷却装置
    • US20110024091A1
    • 2011-02-03
    • US12835298
    • 2010-07-13
    • Jaewon KIM
    • Jaewon KIM
    • F28D15/00
    • F28F3/042F28D2021/0029H01L23/473H01L2924/0002H01L2924/00
    • Disclosed is a cooling apparatus for a semiconductor component having a coolant inlet flow path on a coolant flow path connecting a coolant inlet and a coolant outlet, the coolant inlet flow path having a diffuser shape, in which its cross-sectional area increases from a coolant inlet to a portion where cooling fins start to appear. In the cooling apparatus, the coolant inlet flow path meets the following equation: ω=D{3/2+sin(α(x−A))}. Here, ω is the radius of the diffuser, D is the diameter of the coolant inlet, x is a distance from the coolant inlet toward the cooling fins, α is an expansion slope coefficient of the diffuser in radians, and the sine of (α·A) is 1.In the cooling apparatus for a compact and integrated semiconductor component, since the diffuser-shaped coolant inlet flow path extending from the coolant inlet to the cooling fins is designed in an optimal shape, it is possible to improve cooling efficiency and to reduce flow resistance to coolant flow.
    • 公开了一种用于半导体部件的冷却装置,其具有连接冷却剂入口和冷却剂出口的冷却剂流动路径上的冷却剂入口流动路径,所述冷却剂入口流动路径具有扩散器形状,其中其横截面积从冷却剂 入口到冷却片开始出现的部分。 在冷却装置中,冷却剂入口流路满足以下等式:ω= D {3/2 + sin(α(x-A))}。 这里,ω是扩散器的半径,D是冷却剂入口的直径,x是从冷却剂入口到冷却片的距离,α是扩散器的扩展斜率系数,以弧度表示,而(α ·A)为1.在用于紧凑且集成的半导体部件的冷却装置中,由于从冷却剂入口延伸到散热片的扩散器状冷却剂入口流路被设计为最佳形状,因此可以提高冷却效率 并减少对冷却剂流动的流动阻力。