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    • 14. 发明申请
    • Electric Power Converter
    • 电力转换器
    • US20140078803A1
    • 2014-03-20
    • US14122713
    • 2012-05-25
    • Atsuo NishiharaKen MaedaKinya NakatsuYukio Hattori
    • Atsuo NishiharaKen MaedaKinya NakatsuYukio Hattori
    • H02M7/00
    • H02M7/003H02M7/797H05K7/1432H05K7/20927
    • An electric power converter is provided with: a power semiconductor module, which has a power semiconductor element that converts a direct current into an alternating current; a capacitor module, which has a capacitor element that smooths the direct current; and a cooling body, which cools the power semiconductor module and the capacitor module. The capacitor module has a case, which has an approximately rectangular shape, has an opening formed in one surface, and has a space for housing the capacitor element; and a DC conductor for electrically connecting the power semiconductor element and the capacitor element to each other. The cooling body is formed to face the bottom surface on the inner wall of the case, and both the side surfaces of the case, the side surfaces facing each other. Between the capacitor element and the inner wall surfaces of the case, the direct current conductor is formed along the bottom surface and both the side surfaces of the case.
    • 电力转换器具有:功率半导体模块,具有将直流电转换为交流电的功率半导体元件; 电容器模块,其具有使直流平滑的电容器元件; 以及冷却功率半导体模块和电容器模块的冷却体。 电容器模块具有大致矩形形状的壳体,具有形成在一个表面上的开口,并且具有用于容纳电容器元件的空间; 以及用于将功率半导体元件和电容器元件彼此电连接的DC导体。 冷却体形成为面对壳体的内壁上的底面,并且壳体的两侧表面彼此面对。 在电容器元件和壳体的内壁表面之间,直流导体沿壳体的底表面和两个侧表面形成。
    • 17. 发明授权
    • Cooling jacket
    • 冷却套
    • US07516777B2
    • 2009-04-14
    • US11393783
    • 2006-03-31
    • Shuichi TerakadoAtsuo NishiharaShigeo OhashiRintaro MinamitaniTakashi Naganawa
    • Shuichi TerakadoAtsuo NishiharaShigeo OhashiRintaro MinamitaniTakashi Naganawa
    • H05K7/20
    • G06F1/203F28F3/12F28F13/06G06F2200/201
    • In an electronic apparatus having a heat-generating element therein, a cooling jacket 100 for transmitting heat generated from the heat-generating element 200 into to a liquid coolant flowing therein, comprises: a cover 130 building up a heat transfer surface to be in contact with a surface of the heat-generating element; a passage 110 for the liquid coolant, which is formed neighboring with the heat transfer surface and wound round in a “S”-like manner within an inside of a main body 120 of the cooling jacket; and an inlet 111 and an outlet 112 attached at both ends of the flow passage of the liquid coolant, and further a dispersion member 150 is disposed in the flow passage, being built up by gathering a plural number of members, each of which has a “U”-like cross-section of an aspect ratio from 10 to 20, thereby diffusing the liquid coolant therein, so as to transfer the heat from the heat-generating element thereto with high efficiency, and thereby enabling to cool down the heat-generating element, fully, even with a relatively small amount or volume of the liquid coolant.
    • 在其中具有发热元件的电子设备中,用于将从发热元件200产生的热量传递到其中流动的液体冷却剂的冷却套100包括:盖130,其构成接触的传热表面 具有发热元件的表面; 用于液体冷却剂的通道110,其与传热表面相邻形成并以“S”形的方式在冷却套的主体120的内部内缠绕; 以及安装在液体冷却剂的流路的两端的入口111和出口112,并且在流路中设置分散构件150,该分散构件150通过聚集多个构件而构成,每个构件具有 “U”型横截面的纵横比为10至20,从而使液体冷却剂在其中扩散,从而高效率地将来自发热元件的热​​量转移到其中,从而能够冷却热源, 甚至具有相对少量或体积的液体冷却剂。