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    • 1. 发明申请
    • MEMBRANE PUMP
    • 膜泵
    • US20080260552A1
    • 2008-10-23
    • US11736142
    • 2007-04-17
    • Hsiao-Kang MAChang-Hung PengBo-Ren HouHong-Yun WuMing-Chien Kuo
    • Hsiao-Kang MAChang-Hung PengBo-Ren HouHong-Yun WuMing-Chien Kuo
    • F04B45/00
    • F04B43/046F04B43/04
    • A membrane pump powered by an activating element includes a chamber body. The interior of the chamber body is provided with a first chamber and a second chamber that are in fluid communication with each other. One side or both sides of the chamber body are provided with an inlet pipeline and an outlet pipeline that are in fluid communication with the first chamber and second chamber, respectively. Valves are provided on the inner wall face of same side of the first chamber and the second chamber, thereby preventing the working fluid from generating a backflow phenomenon. Furthermore, the top surface of the chamber body is provided with a membrane. An activating element abuts on the membrane for driving the membrane to swing up and down, thereby pressing the working fluid within the first chamber to circulatively flow in one direction. Via this arrangement, in addition to miniaturize the pump structure to a further extent, the working performance of the pump and the flowing amount of the working fluid are also increased.
    • 由活化元件供电的膜泵包括室体。 室主体的内部设置有彼此流体连通的第一室和第二室。 腔室主体的一侧或两侧设置有分别与第一腔室和第二腔室流体连通的入口管线和出口管道。 阀设置在第一室和第二室的同侧的内壁面上,从而防止工作流体产生回流现象。 此外,室主体的顶表面设置有膜。 激活元件邻接在膜上以驱动膜上下摆动,从而按压第一室内的工作流体循环地沿一个方向流动。 通过这种布置,除了进一步使泵结构小型化之外,泵的工作性能和工作流体的流动量也增加。
    • 2. 发明申请
    • MEMBRANE PUMP DEVICE
    • 膜泵装置
    • US20080260553A1
    • 2008-10-23
    • US11736166
    • 2007-04-17
    • Hsiao-Kang MaChang-Hung PengBo-Ren HouHong-Yun WuMing-Chien Kuo
    • Hsiao-Kang MaChang-Hung PengBo-Ren HouHong-Yun WuMing-Chien Kuo
    • F04B43/06
    • F04B43/046F04B43/04
    • A membrane pump device powered by an activating element includes a chamber body and a second chamber body. The interior of the chamber body is provided with a chamber. Both sides of the chamber body are provided with an inlet pipeline and an outlet pipeline that are in fluid communication with the aforementioned chamber, respectively. A valve is provided on the inner wall face of the chamber, thereby preventing the working fluid from generating a backflow phenomenon. Furthermore, the top surface of the chamber body is provided with a membrane. An activating element abuts on the membrane for driving the membrane to swing up and down, thereby pressing the working fluid within the chamber to circulatively flow in one direction. Finally, the second chamber body is in fluid communication with the chamber body. The interior of the second chamber body is provided with another valve. Via this arrangement, in addition to miniaturize the pump structure to a further extent, the working performance of the pump and the flowing amount of the working fluid are also increased.
    • 由激活元件供电的膜泵装置包括室主体和第二室主体。 腔室内部设有腔室。 室主体的两侧分别设置有与上述腔室流体连通的入口管道和出口管道。 在室的内壁面上设置有阀,从而防止工作流体产生回流现象。 此外,室主体的顶表面设置有膜。 激活元件邻接在膜上以驱动膜上下摆动,从而按压室内的工作流体循环地沿一个方向流动。 最后,第二室主体与室体流体连通。 第二室主体的内部设有另一个阀。 通过这种布置,除了进一步使泵结构小型化之外,泵的工作性能和工作流体的流动量也增加。
    • 7. 发明申请
    • Monitor heat dissipator
    • 监控散热器
    • US20060215365A1
    • 2006-09-28
    • US11372109
    • 2006-03-10
    • Ming-Chien Kuo
    • Ming-Chien Kuo
    • H05K7/20G06F1/20
    • G02F1/133385
    • A monitor heat dissipator includes a heat conductive plate having a first path defined in a top portion of the heat conductive plate and a second path defined in a bottom portion of the heat conductive plate to be in communication with the first path. A fluid is received in the second path to flow to the first path from the second path. A heat exchange assembly has a connecting tube in communication with the first path and the second path so that excessive heat carried by the fluid which flows from the second path to the first path is dissipated by the heat exchange assembly.
    • 显示器散热器包括导热板,该导热板具有限定在导热板的顶部的第一路径和限定在导热板的底部中的与第一路径连通的第二路径。 在第二路径中接收流体以从第二路径流到第一路径。 热交换组件具有与第一路径和第二路径连通的连接管,使得由第二路径流动到第一路径的流体承载的过多热量被热交换组件消散。
    • 9. 发明申请
    • HEAT-DISSIPATION STRUCTURE AND METHOD THEREOF
    • 散热结构及其方法
    • US20070034355A1
    • 2007-02-15
    • US11462461
    • 2006-08-04
    • Ming-Chien Kuo
    • Ming-Chien Kuo
    • H05K7/20
    • H01L23/427F28D15/02F28D15/0275H01L23/473H01L2924/0002H01L2924/00
    • A heat-dissipation structure mainly including a heat-absorbing head, a heat pipe, and a tube jacket is provided. The heat pipe includes a heated end and a cooling end, wherein the heated end of the heat pipe is connected to the heat-absorbing head, and a flange is projected form the surface of the heat pipe adjacent to the cooling end. A joint is disposed on the cooling end of the heat pipe, and is connected to the tube jacket through the opening, such that the cooling end is sealed inside the tube jacket, and the flange of the heat pipe is tightly fastened between the joint and the opening. The heat-dissipation structure is used to rapidly conduct the waste heat generated by a processing chip to the tube jacket via the heat pipe.
    • 提供了主要包括吸热头,热管和管套的散热结构。 热管包括加热端和冷却端,其中热管的加热端连接到吸热头,凸缘从热管的与冷却端相邻的表面突出。 接头设置在热管的冷却端上,并且通过开口连接到管夹,使得冷却端密封在管套内,并且热管的凸缘紧密地紧固在接头和 开幕。 散热结构用于通过热管快速地将处理芯片产生的废热传导到管夹。