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    • 2. 发明公开
    • ANORDNUNG ZUR FÖRDERUNG VON FLUIDEN
    • ANORDNUNG ZURFÖRDERUNGVON FLUIDEN
    • EP1794459A1
    • 2007-06-13
    • EP05770991.7
    • 2005-07-16
    • ebm-papst St. Georgen GmbH & Co. KG
    • LAUFER, WolfgangSEIDLER, Siegfried
    • F04D13/02F04D25/06F04D13/12
    • F04D25/0606F04D13/026
    • The inventive fluid transporting device is provided with a rotary fluid pump (91) comprising a pump wheel (90) connected to a fist constant magnet (92). In addition, said device is provided with an electronically switchable internal rotor motor (70) comprising a stator (68) containing the rotor (60) which is mounted therein and is connected to a second constant magnet (76, 140) interacting with the first constant magnet (92) in a magnetic coupling manner. The inventive device also comprises a space cup (52) which divides in a fluid sealed manner the first constant magnet (92) of the magnetic coupling (93) disposed inside said cup (52) from the second constant magnet (76, 140) disposed outside thereof, wherein the stator (68) of the internal rotor motor (70)is placed substantially on the same drive plane as the magnetic coupling (93) and radially outside thereof.
    • 本发明的流体输送装置设有旋转流体泵(91),其包括连接到第一恒定磁体(92)的泵轮(90)。 此外,所述装置设置有电子可切换内部转子马达(70),所述内部转子马达包括定子(68),所述定子包含安装在其中的转子(60)并且连接到第二恒定磁体(76,140),所述第二恒定磁体与第一恒定磁体 恒定磁体(92)以磁耦合方式。 本发明的装置还包括空间杯(52),该空间杯以流体密封的方式将设置在所述杯(52)内的磁性联接器(93)的第一恒定磁体(92)与设置的第二恒定磁体(76,140) 其中内转子电动机(70)的定子(68)基本上与磁耦合(93)处于同一个驱动平面上并且在其径向外侧。
    • 3. 发明授权
    • WÄRMETAUSCHER
    • EP1728278B1
    • 2011-10-19
    • EP05716026.9
    • 2005-03-14
    • ebm-papst St. Georgen GmbH & Co. KG
    • LAUFER, WolfgangANGELIS, Walter, GeorgSEIDLER, SiegfriedWEISSER, NorbertTHREN, Christian
    • H01L23/473H01L23/367H05K7/20
    • H01L23/4735F28F3/048F28F3/12F28F9/0246F28F9/0253F28F9/028H01L2924/0002H01L2924/00
    • The invention relates to a heat absorption device for absorbing heat from a component and for dissipating heat by means of a cooling fluid (36). Said heat absorption device comprises the following elements: a supply element (56') for supplying the heat absorbing device with a cooling fluid (36); a dissipation element (62') for dissipating the cooling fluid (36) from the heat absorption device; and a heat sink (68'), whose one side is adapted to absorb heat and whose other side contacts the cooling fluid (36) during operation and has a trough-shaped recess delimited by an edge. In said recess, a plurality of heat guiding elements (84') are arranged which are linked with their ends facing the trough-shaped recess with the bottom of said recess and whose free ends project away from the trough-shaped recess. The supply element (56') is adapted to supply, during operation, the trough-shaped recess with the cooling fluid in the area of the lowest point thereof. For this purpose, the supply element has at least one outlet (58') that is arranged at a predetermined minimum distance from the free ends of the heat guiding elements (84').
    • 本发明涉及一种用于从部件吸收热量并且借助于冷却流体(36)散发热量的吸热装置。 所述吸热装置包括以下元件:用于向吸热装置供应冷却流体(36)的供应元件(56'); 散热元件(62'),用于从所述吸热装置散发所述冷却流体(36); 以及散热器(68'),其一侧适于吸收热量并且其另一侧在运行期间接触冷却流体(36)并且具有由边缘界定的槽状凹部。 在所述凹部中布置有多个导热元件(84'),所述导热元件(84')的端部与所述凹槽的底部相连,并且所述导热元件的自由端从槽状凹部突出。 供应元件(56')适于在操作期间在其最低点的区域中供应冷却流体的槽形凹部。 为此,供给元件具有至少一个出口(58'),该出口布置在距热导元件(84')的自由端预定的最小距离处。
    • 5. 发明公开
    • WÄRMETAUSCHER
    • EP1848948A1
    • 2007-10-31
    • EP05822077.3
    • 2005-12-31
    • ebm-papst St. Georgen GmbH & Co. KG
    • SEIDLER, SiegfriedANGELIS, WalterLAUFER, WolfgangROJO LULIC, Francisco
    • F28F9/02F28D1/053
    • F28F9/0231F28D1/05375F28F19/01
    • The inventive heat exchanger is used for cooling an electronic component (76) coolant. Said heat exchanger is provided with an input opening (64) for introducing a warm coolant and an output opening (68) for discharging a coolant chilled in the heat exchanger which is connected to a compensation reservoir and forms therewith a structural unit. The compensation reservoir is used for compensating the coolant volume variations. Said compensation reservoir (30) is closed with a flexible membrane (54) for following the coolant volume variations and is embodied in the form of the coolant circuit component. A part of the compensation reservoir is constructed in the form of the input opening (64) component and the other part thereof is constructed in the form of the output opening (68) component, wherein said two parts are liquid-connected to each other through the double flow heat exchanger (20) channels.
    • 本发明的热交换器用于冷却电子部件(76)冷却剂。 所述热交换器设置有用于引入热冷却剂的输入开口(64)和用于排出在热交换器中冷却的冷却剂的输出开口(68),所述冷却剂连接到补偿容器并且与其一起形成结构单元。 补偿容器用于补偿冷却剂体积变化。 所述补偿容器(30)由柔性膜(54)封闭以跟随冷却剂体积变化并且以冷却剂回路部件的形式实施。 补偿容器的一部分构造成输入开口(64)部件的形式并且其另一部分构造成输出开口(68)部件的形式,其中所述两个部分通过输入开口 双流热交换器(20)通道。