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    • 23. 发明授权
    • Gas-liquid separation apparatus
    • 气液分离装置
    • US07655079B2
    • 2010-02-02
    • US11309903
    • 2006-10-26
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • B01D19/00
    • B01D19/0052B04C3/00B04C2003/006
    • A gas-liquid separation apparatus includes an inlet pipe for transferring liquid with gas dissolved therein and a separating pipe for separating the gas from the liquid. The separating pipe has a spiral-shaped guiding member therein. The separating pipe extends from the inlet pipe and is in alignment and communicating with the inlet pipe. An outlet pipe extends from a joint of the inlet pipe and the separating pipe and communicates with the separating pipe, for transferring therein the liquid after the liquid has been degassed by the spiral-shaped guiding member in the separating pipe. A gas storage device communicates with the separating pipe and outside for collecting the gas from the separating pipe and discharging the gas to the outside.
    • 气液分离装置包括用于将溶解有气体的液体输送的入口管和用于将气体与液体分离的分离管。 分离管在其中具有螺旋形引导构件。 分离管从入口管延伸并对准并与入口管连通。 出口管从入口管和分离管的接头延伸并与分离管连通,用于在液体已经被分离管中的螺旋状引导构件脱气之后转移到其中。 气体存储装置与分离管和外部连通,用于从分离管收集气体并将气体排出到外部。
    • 24. 发明授权
    • Gas-liquid separation apparatus
    • 气液分离装置
    • US07645330B2
    • 2010-01-12
    • US11309918
    • 2006-10-27
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • B01D19/00
    • B01D19/0057B01D19/0031B04C3/00B04C2003/006
    • A gas-liquid separation apparatus includes a container and a separating pipe located in the container. The container includes an annular wall and two lids covering two ends of the wall. The container has a cavity surrounded by the wall and the two lids. An inlet extends through one lid and an outlet extends through the other lid. The separating pipe is disposed in the cavity of the container and in communication with the inlet and the outlet of the container. A plurality of apertures is defined in a body of the separating pipe and in communication with a space inside the separating pipe and the cavity of the container. The liquid with gas dissolved therein enters into the separating pipe via the inlet of the container. The liquid is degassed by the separating pipe. The de-gassed liquid exits the separating pipe via the outlet of the container.
    • 气液分离装置包括容器和位于容器中的分离管。 容器包括一个环形壁和两个覆盖壁的两端的盖子。 容器具有由壁和两个盖子包围的空腔。 入口延伸穿过一个盖子,出口延伸穿过另一个盖子。 分离管设置在容器的空腔中并与容器的入口和出口连通。 多个孔限定在分离管的主体中并与分离管和容器的空腔内的空间连通。 溶解有气体的液体经由容器的入口进入分离管。 液体被分离管脱气。 脱气液体通过容器的出口离开分离管。
    • 25. 发明授权
    • Liquid-cooling heat sink
    • 液冷散热片
    • US07537047B2
    • 2009-05-26
    • US11308426
    • 2006-03-23
    • Cheng-Tien LaiZhi-Yong Zhou
    • Cheng-Tien LaiZhi-Yong Zhou
    • H05K7/20
    • H01L23/4735F28F3/12H01L2924/0002H01L2924/00
    • A liquid-cooling heat sink includes a base (10), a heat exchanger (30), a housing (20), an inlet (26) and an outlet (27). The heat exchanger (30) has a hollow (33) formed therein, and is thermally coupled to the base (10). The housing (20) has a chamber (24) formed therein, and is placed over the base (10). The chamber (24) is separated by the heat exchanger (30) into a first sub-chamber (241) and a second sub-chamber (242). The first sub-chamber (241) is in fluid communication with the second sub-chamber (242) through a plurality of microchannels (32) radially formed within the heat exchanger (30). The inlet (26) is fluidly connected to the first sub-chamber (241) so as to impinge liquid coolant to a top surface of the base (10).
    • 液体冷却散热器包括基座(10),热交换器(30),壳体(20),入口(26)和出口(27)。 热交换器(30)具有形成在其中的中空部(33),并且热耦合到基座(10)。 壳体(20)具有形成在其中的室(24),并且放置在基座(10)上。 室(24)由热交换器(30)分离成第一子室(241)和第二子室(242)。 第一子室241通过在热交换器30内径向形成的多个微通道32与第二子室242流体连通。 入口(26)流体地连接到第一子室(241),以便将液体冷却剂冲击到基座(10)的顶表面。
    • 26. 发明申请
    • Gas-liquid separation apparatus
    • 气液分离装置
    • US20080098897A1
    • 2008-05-01
    • US11309903
    • 2006-10-26
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • B01D19/00
    • B01D19/0052B04C3/00B04C2003/006
    • A gas-liquid separation apparatus includes an inlet pipe for transferring liquid with gas dissolved therein and a separating pipe for separating the gas from the liquid. The separating pipe has a spiral-shaped guiding member therein. The separating pipe extends from the inlet pipe and is in alignment and communicating with the inlet pipe. An outlet pipe extends from a joint of the inlet pipe and the separating pipe and communicates with the separating pipe, for transferring therein the liquid after the liquid has been degassed by the spiral-shaped guiding member in the separating pipe. A gas storage device communicates with the separating pipe and outside for collecting the gas from the separating pipe and discharging the gas to the outside.
    • 气液分离装置包括用于将溶解有气体的液体输送的入口管和用于将气体与液体分离的分离管。 分离管在其中具有螺旋形引导构件。 分离管从入口管延伸并对准并与入口管连通。 出口管从入口管和分离管的接头延伸并与分离管连通,用于在液体已经被分离管中的螺旋状引导构件脱气之后转移到其中。 气体存储装置与分离管和外部连通,用于从分离管收集气体并将气体排出到外部。
    • 27. 发明授权
    • Memory module assembly including a clip for mounting a heat sink thereon
    • 存储器模块组件,包括用于在其上安装散热器的夹子
    • US07349219B2
    • 2008-03-25
    • US11308848
    • 2006-05-15
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • H05K7/20
    • H01L23/4093H01L2924/0002H01L2924/00
    • A memory module assembly includes a printed circuit board (30) having a heat-generating electronic component (32) thereon, a heat sink (10) and a clip (20) for securing the heat sink onto the heat-generating electronic component. The heat sink includes a base (12) and a plurality of fins (14) arranged on the base. A plurality of recesses is defined in the heat sink. The clip includes a body (22) resting against a face of the printed circuit board and elastic hooks (24) extending from the body. The hooks are received in the recesses and resiliently press the base of the heat sink toward the heat-generating electronic component, whereby the clip clamps the heat sink and the printed circuit board together.
    • 存储器模块组件包括其上具有发热电子部件(32)的印刷电路板(30),散热器(10)和用于将散热器固定到发热电子部件上的夹子(20)。 散热器包括基座(12)和布置在基座上的多个翅片(14)。 在散热器中限定多个凹部。 夹子包括靠在印刷电路板的表面上的主体(22)和从主体延伸的弹性钩(24)。 钩子被容纳在凹部中并将散热器的基座弹性地压向发热电子部件,由此夹子将散热器和印刷电路板夹在一起。
    • 28. 发明申请
    • MINIATURE PUMP FOR LIQUID COOLING SYSTEM
    • 液体冷却系统微型泵
    • US20070224059A1
    • 2007-09-27
    • US11308425
    • 2006-03-23
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • Cheng-Tien LaiZhi-Yong ZhouQiao-Li Ding
    • F04B17/00
    • F04D29/048F04D13/0666
    • A miniature pump in accordance with the present invention comprises a pump casing (10) and a liquid circulating unit (20) received in the pump casing. The pump casing comprises a hollow main body (14) transversely forming a spacing plate (126) and a partition wall (144) spaced from the spacing plate. The liquid circulating unit comprises a shaft (25) mounted between the partition wall and the spacing plate, a bearing (27) rotatably mounted the shaft, an impeller (26) attached to the bearing, a first pair of spaced magnetic spacers (21,22) surrounding an upper portion of the shaft and positioned above the bearing, and a second pair of spaced magnetic spacers (23, 24) surrounding a lower portion of the shaft and positioned below the bearing. The two pairs of magnetic spacers properly suspend the impeller in a stable position in an axial direction of the pump when the impeller rotates.
    • 根据本发明的微型泵包括容纳在泵壳体中的泵壳体(10)和液体循环单元(20)。 泵壳体包括横向地形成间隔板(126)的中空主体(14)和与间隔板间隔开的分隔壁(144)。 液体循环单元包括安装在分隔壁和间隔板之间的轴(25),可旋转地安装轴的轴承(27),附接到轴承的叶轮(26),第一对间隔开的磁性间隔件 22)围绕轴的上部并且定位在轴承上方,以及第二对间隔开的磁性间隔件(23,24),其围绕轴的下部并且定位在轴承的下方。 当叶轮旋转时,两对磁性间隔件将叶轮在泵的轴向方向上适当地悬挂在稳定的位置。
    • 29. 发明申请
    • MEMORY MODULE ASSEMBLY INCLUDING A CLAMP FOR MOUNTING HEAT SINKS THEREON
    • 存储器模块组件,其中包括用于安装散热器的钳子
    • US20070223198A1
    • 2007-09-27
    • US11309226
    • 2006-07-13
    • CHENG-TIEN LAIZhi-Yong ZhouQiao-Li Ding
    • CHENG-TIEN LAIZhi-Yong ZhouQiao-Li Ding
    • H05K7/20
    • H01L23/3672H01L2924/0002H01L2924/00
    • A memory module assembly includes a pair of heat-dissipation plates (10), a printed circuit board (20) sandwiched between the heat-dissipation plates (10), and four clamps (30) for securing the heat-dissipation plates (10) onto opposite sides of the printed circuit board (20). Each clamp includes a connecting portion (32) and a pair of elastic pressing portions (34) extending from opposite free ends of the connecting portion. Each pressing portion has a pair of hooks (342) extending from opposite lateral sides thereof and an engaging portion extending (344) from a free end thereof and clamping on an end of the heat-dissipation plate. The hooks are inserted into openings (18) defined in the heat-dissipation plates and engage with inner surfaces of the heat-dissipation plates.
    • 存储模块组件包括一对散热板(10),夹在散热板(10)之间的印刷电路板(20)和用于固定散热板(10)的四个夹具(30) 在印刷电路板(20)的相对侧上。 每个夹具包括连接部分(32)和从连接部分的相对的自由端延伸的一对弹性按压部分(34)。 每个按压部分具有从其相对侧面延伸的一对钩(342)和从其自由端延伸(344)并且夹持在散热板的端部上的接合部。 将钩插入到限定在散热板中的开口(18)中,并与散热板的内表面接合。
    • 30. 发明申请
    • LIQUID-COOLING HEAT SINK
    • 液体冷却水
    • US20070221364A1
    • 2007-09-27
    • US11308426
    • 2006-03-23
    • Cheng-Tien LaiZhi-Yong Zhou
    • Cheng-Tien LaiZhi-Yong Zhou
    • H05K7/20
    • H01L23/4735F28F3/12H01L2924/0002H01L2924/00
    • A liquid-cooling heat sink includes a base (10), a heat exchanger (30), a housing (20), an inlet (26) and an outlet (27). The heat exchanger (30) has a hollow (33) formed therein, and is thermally coupled to the base (10). The housing (20) has a chamber (24) formed therein, and is placed over the base (10). The chamber (24) is separated by the heat exchanger (30) into a first sub-chamber (241) and a second sub-chamber (242). The first sub-chamber (241) is in fluid communication with the second sub-chamber (242) through a plurality of microchannels (32) radially formed within the heat exchanger (30). The inlet (26) is fluidly connected to the first sub-chamber (241) so as to impinge liquid coolant to a top surface of the base (10).
    • 液体冷却散热器包括基座(10),热交换器(30),壳体(20),入口(26)和出口(27)。 热交换器(30)具有形成在其中的中空部(33),并且热耦合到基座(10)。 壳体(20)具有形成在其中的室(24),并且放置在基座(10)上。 室(24)由热交换器(30)分离成第一子室(241)和第二子室(242)。 第一子室241通过在热交换器30内径向形成的多个微通道32与第二子室242流体连通。 入口(26)流体地连接到第一子室(241),以便将液体冷却剂冲击到基座(10)的顶表面。