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    • 3. 发明授权
    • Heat sink and a method for manufacturing the same
    • 散热器及其制造方法
    • US07746642B2
    • 2010-06-29
    • US12202393
    • 2008-09-01
    • Chi-Yuan LaiZhi-Yong ZhouCheng-Tien Lai
    • Chi-Yuan LaiZhi-Yong ZhouCheng-Tien Lai
    • H05K7/20
    • H01L23/427F28D15/0233F28D15/0275F28F3/02H01L23/467H01L2924/0002Y10T29/49353H01L2924/00
    • A heat sink for cooling an electronic component includes a lower plate, an upper plate, an upper fin set and a lower fin set respectively fixed on the upper plate and the lower plate, and a plurality of heat pipes sandwiched between the upper plate and the lower plate. The lower plate forms a protrusion projecting downwardly therefrom. A bottom surface of the protrusion is milled to be flat and smooth, whereby the bottom surface can intimately contact the electronic component. A method for manufacturing the heat sink comprising milling a bottom surface of a protrusion punched downwardly from a lower plate, whereby the bottom surface can be flat and smooth sufficiently to have an intimate contact with an electronic component, and sequentially welding an upper plate on the lower plate and a plurality of fins on the lower plate and the upper plate, respectively.
    • 用于冷却电子部件的散热器包括分别固定在上板和下板上的下板,上板,上翅片组和下翅片组,以及夹在上板和下板之间的多个热管 下板 下板形成从其向下突出的突起。 突起的底面被研磨成平坦和平滑的,由此底部表面可以紧密接触电子部件。 一种用于制造散热器的方法,包括:铣削从下板向下冲压的突起的底面,由此底表面可以平坦和平滑,足以与电子元件紧密接触,并且将上板依次焊接在 下板和分别在下板和上板上的多个翅片。
    • 5. 发明授权
    • Miniature liquid cooling device having an integral pump
    • 具有整体泵的微型液体冷却装置
    • US07694721B2
    • 2010-04-13
    • US11309612
    • 2006-08-31
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • F28F7/00H05K7/20
    • H01L23/473H01L23/4006H01L2924/0002H01L2924/00
    • A miniature liquid cooling device includes a casing (10) having a base (16) attached on a heat-generating electronic component for absorbing heat generated by the electronic component. The casing includes an outer wall (12) mounted on the base and a top cover (15) mounted on the outer wall. A receiving space is enclosed by the casing. A heat-absorbing member (40) is attached on the base and received in the receiving space for exchanging heat with liquid in the casing. An impeller (21) is rotatably mounted in the receiving space and above the heat-absorbing member. When the impeller rotates the liquid is driven to flow into the liquid cooling device via a liquid inlet (122) and then flow through the heat-absorbing member and finally flow out of the liquid cooling device via a liquid outlet (124).
    • 微型液体冷却装置包括壳体(10),其具有附接在发热电子部件上的基部(16),用于吸收由电子部件产生的热量。 壳体包括安装在基座上的外壁(12)和安装在外壁上的顶盖(15)。 收容空间由外壳封闭。 吸热构件(40)安装在基座上并被容纳在容纳空间中以与壳体内的液体进行热交换。 叶轮(21)可旋转地安装在容纳空间中并且在吸热构件上方。 当叶轮旋转时,驱动液体经由液体入口(122)流入液体冷却装置,然后流过吸热构件,并最终经由液体出口(124)从液体冷却装置流出。
    • 6. 发明授权
    • Liquid-cooling device
    • 液冷装置
    • US07584781B2
    • 2009-09-08
    • US11309491
    • 2006-08-11
    • Cheng-Tien LaiZhi-Yong Zhou
    • Cheng-Tien LaiZhi-Yong Zhou
    • F28F7/00F28F3/12H05K7/20
    • F28F3/086F28F3/12H01L23/473H01L2924/0002H01L2924/00
    • A liquid cooling device includes a base, a housing and a heat exchanger. The base and the housing enclose a chamber which receives the heat exchanger therein. Inlet and outlet for liquid are provided at the housing. The heat exchanger includes stacked flakes. Each flake includes parallel and alternately arranged first and second strips each having a void defined therein. The flakes are stacked in a manner such that each first strip overlays and abuts against a corresponding second strip of an adjacent flake and that the void in each first strip and the void in the corresponding second strip of the adjacent flake are in fluid communication with each other to thereby form a channel between the inlet and the outlet.
    • 液体冷却装置包括基座,壳体和热交换器。 基座和壳体包围容纳热交换器的腔室。 在壳体处设有用于液体的入口和出口。 热交换器包括堆积的薄片。 每个薄片包括平行且交替布置的第一和第二条带,每个带有限定在其中的空隙。 薄片以这样的方式堆叠,使得每个第一条覆盖并邻接相邻片状物的对应的第二条带,并且每个第一条带中的空隙和相邻片状物的相应第二条带中的空隙与每个 从而在入口和出口之间形成通道。
    • 8. 发明申请
    • MINIATURE LIQUID COOLING DEVICE HAVING AN INTEGRAL PUMP
    • 具有整体泵的微型液体冷却装置
    • US20080053641A1
    • 2008-03-06
    • US11309612
    • 2006-08-31
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • B29C47/88F24H3/02
    • H01L23/473H01L23/4006H01L2924/0002H01L2924/00
    • A miniature liquid cooling device includes a casing (10) having a base (16) attached on a heat-generating electronic component for absorbing heat generated by the electronic component. The casing includes an outer wall (12) mounted on the base and a top cover (15) mounted on the outer wall. A receiving space is enclosed by the casing. A heat-absorbing member (40) is attached on the base and received in the receiving space for exchanging heat with liquid in the casing. An impeller (21) is rotatably mounted in the receiving space and above the heat-absorbing member. When the impeller rotates the liquid is driven to flow into the liquid cooling device via a liquid inlet (122) and then flow through the heat-absorbing member and finally flow out of the liquid cooling device via a liquid outlet (124).
    • 微型液体冷却装置包括壳体(10),其具有附接在发热电子部件上的基部(16),用于吸收由电子部件产生的热量。 壳体包括安装在基座上的外壁(12)和安装在外壁上的顶盖(15)。 收容空间由外壳封闭。 吸热构件(40)安装在基座上并被容纳在容纳空间中以与壳体内的液体进行热交换。 叶轮(21)可旋转地安装在容纳空间中并且在吸热构件上方。 当叶轮旋转时,驱动液体经由液体入口(122)流入液体冷却装置,然后流过吸热构件,并最终经由液体出口(124)从液体冷却装置流出。
    • 10. 发明申请
    • LIQUID-COOLING DEVICE
    • 液体冷却装置
    • US20070246204A1
    • 2007-10-25
    • US11309491
    • 2006-08-11
    • CHENG-TIEN LAIZhi-Yong Zhou
    • CHENG-TIEN LAIZhi-Yong Zhou
    • F28F3/00
    • F28F3/086F28F3/12H01L23/473H01L2924/0002H01L2924/00
    • A liquid cooling device includes a base, a housing and a heat exchanger. The base and the housing enclose a chamber which receives the heat exchanger therein. Inlet and outlet for liquid are provided at the housing. The heat exchanger includes stacked flakes. Each flake includes parallel and alternately arranged first and second strips each having a void defined therein. The flakes are stacked in a manner such that each first strip overlays and abuts against a corresponding second strip of an adjacent flake and that the void in each first strip and the void in the corresponding second strip of the adjacent flake are in fluid communication with each other to thereby form a channel between the inlet and the outlet.
    • 液体冷却装置包括基座,壳体和热交换器。 基座和壳体包围容纳热交换器的腔室。 在壳体处设有用于液体的入口和出口。 热交换器包括堆积的薄片。 每个薄片包括平行且交替布置的第一和第二条带,每个带有限定在其中的空隙。 薄片以这样的方式堆叠,使得每个第一条覆盖并邻接相邻片状物的对应的第二条带,并且每个第一条带中的空隙和相邻片状物的相应第二条带中的空隙与每个 从而在入口和出口之间形成通道。