INTEGRATED LIQUID COOLING SYSTEM FOR ELECTRONIC COMPONENTS
    41.
    发明申请
    INTEGRATED LIQUID COOLING SYSTEM FOR ELECTRONIC COMPONENTS 失效
    电子元件集成液体冷却系统

    公开(公告)号:US20070034353A1

    公开(公告)日:2007-02-15

    申请号:US11308278

    申请日:2006-03-15

    IPC分类号: H05K7/20

    摘要: An integrated liquid cooling system (100) includes a heat absorbing member (10), a heat dissipating member (20) and a pump (15). The heat absorbing member defines therein a fluid flow channel (115) for passage of a coolant. The heat dissipating member is mounted to and maintained in fluid communication with the heat absorbing member. The pump is received in the heat dissipating member and is maintained in fluid communication with the heat absorbing member and the heat dissipating member. The pump is configured for driving the coolant to circulate through the heat absorbing member and the heat dissipating member. The components (i.e., the heat absorbing member, the heat dissipating member and the pump) of the liquid cooling system are combined together to form an integrated structure without utilizing any separate connecting pipes.

    摘要翻译: 集成液体冷却系统(100)包括吸热构件(10),散热构件(20)和泵(15)。 吸热构件中限定有用于冷却剂通过的流体流动通道(115)。 散热构件安装在该吸热构件上并保持与吸热构件的流体连通。 泵被容纳在散热构件中并且与吸热构件和散热构件保持流体连通。 泵构造成用于驱动冷却剂循环通过吸热构件和散热构件。 液体冷却系统的部件(即,吸热部件,散热部件和泵)组合在一起形成一体的结构,而不用任何单独的连接管。

    INTEGRATED LIQUID COOLING SYSTEM FOR ELECTRONIC COMPONENTS
    42.
    发明申请
    INTEGRATED LIQUID COOLING SYSTEM FOR ELECTRONIC COMPONENTS 失效
    电子元件集成液体冷却系统

    公开(公告)号:US20070023167A1

    公开(公告)日:2007-02-01

    申请号:US11308275

    申请日:2006-03-15

    IPC分类号: H05K7/20

    摘要: An integrated liquid cooling system (100) includes a pump (10), a mounting base (15), a heat dissipating member (20). The mounting base defines therein a through hole (151). The heat dissipating member is mounted to and maintained in fluid communication with the mounting base. The pump is received in the through hole of the mounting base. The pump has a bottom plate for thermally contacting a heat generating component and is configured for driving a coolant to circulate through the mounting base and the heat dissipating member. The pump, the mounting base and the heat dissipating member of the liquid cooling system are combined together to form an integrated and compact structure without utilizing any connecting pipes or fittings.

    摘要翻译: 集成液体冷却系统(100)包括泵(10),安装基座(15),散热构件(20)。 安装基座在其中限定有通孔(151)。 散热构件被安装并保持与安装基座的流体连通。 泵被容纳在安装基座的通孔中。 泵具有用于热接触发热部件的底板,并且构造成用于驱动冷却剂循环通过安装基座和散热构件。 液体冷却系统的泵,安装基座和散热构件组合在一起,形成一体化且紧凑的结构,而不用任何连接管或配件。

    LOOP-TYPE HEAT EXCHANGE DEVICE
    43.
    发明申请
    LOOP-TYPE HEAT EXCHANGE DEVICE 失效
    环型热交换器

    公开(公告)号:US20060272798A1

    公开(公告)日:2006-12-07

    申请号:US11308072

    申请日:2006-03-05

    IPC分类号: H05K7/20

    摘要: A loop-type heat exchange device (10) includes an evaporator (20), a vapor conduit (30), a condenser (50) and a liquid conduit (70). The evaporator contains therein a working fluid. The working fluid turns into vapor in the evaporator upon receiving heat from a heat-generating component. The condenser includes a housing member (52), a plurality of tube members (53) being in fluid communication with the housing member, and a fin member (54) maintained in thermal contact with the tube members. The vapor conduit and the liquid conduit are each connected between the evaporator and the condenser. The vapor conduit conveys the vapor generated in the evaporator to the tube members of the condenser. The vapor turns into condensate in the tube members upon releasing the heat to the fin member. The condensate is conveyed back to the evaporator by the liquid conduit.

    摘要翻译: 环型热交换装置(10)包括蒸发器(20),蒸汽导管(30),冷凝器(50)和液体导管(70)。 蒸发器包含工作流体。 当从发热部件接收热量时,工作流体在蒸发器中变成蒸气。 冷凝器包括壳体构件(52),与壳体构件流体连通的多个管构件(53)和与管构件保持热接触的翼片构件(54)。 蒸气导管和液体导管各自连接在蒸发器和冷凝器之间。 蒸汽导管将蒸发器中产生的蒸气传送到冷凝器的管件。 在将热量释放到翅片构件上时,蒸汽在管构件中变成冷凝物。 冷凝液被液体导管输送回蒸发器。

    Loop-type heat exchange device
    44.
    发明授权
    Loop-type heat exchange device 失效
    环型热交换装置

    公开(公告)号:US07775262B2

    公开(公告)日:2010-08-17

    申请号:US11308072

    申请日:2006-03-05

    IPC分类号: F28D15/00 H05K7/20

    摘要: A loop-type heat exchange device (10) includes an evaporator (20), a vapor conduit (30), a condenser (50) and a liquid conduit (70). The evaporator contains therein a working fluid. The working fluid turns into vapor in the evaporator upon receiving heat from a heat-generating component. The condenser includes a housing member (52), a plurality of tube members (53) being in fluid communication with the housing member, and a fin member (54) maintained in thermal contact with the tube members. The vapor conduit and the liquid conduit are each connected between the evaporator and the condenser. The vapor conduit conveys the vapor generated in the evaporator to the tube members of the condenser. The vapor turns into condensate in the tube members upon releasing the heat to the fin member. The condensate is conveyed back to the evaporator by the liquid conduit.

    摘要翻译: 环型热交换装置(10)包括蒸发器(20),蒸汽导管(30),冷凝器(50)和液体导管(70)。 蒸发器包含工作流体。 当从发热部件接收热量时,工作流体在蒸发器中变成蒸气。 冷凝器包括壳体构件(52),与壳体构件流体连通的多个管构件(53)和与管构件保持热接触的翅片构件(54)。 蒸气导管和液体导管各自连接在蒸发器和冷凝器之间。 蒸汽导管将蒸发器中产生的蒸气传送到冷凝器的管件。 在将热量释放到翅片构件上时,蒸汽在管构件中变成冷凝物。 冷凝液被液体导管输送回蒸发器。

    Heat pipe and method for producing the same
    45.
    发明授权
    Heat pipe and method for producing the same 失效
    热管及其制造方法

    公开(公告)号:US07743819B2

    公开(公告)日:2010-06-29

    申请号:US11309248

    申请日:2006-07-19

    IPC分类号: F28D15/04

    CPC分类号: F28D15/046

    摘要: A heat pipe and a method for producing the heat pipe are disclosed. The heat pipe includes a hollow metal casing and a honeycombed wick structure arranged at an inner surface of the hollow metal casing. The wick structure includes a plurality of slices stacked together. Each of the slices defines a plurality of pores therein to form a plurality of micro-channels in the wick structure, whereby porosity of the wick structure can be accurately controlled.

    摘要翻译: 公开了一种热管及其制造方法。 热管包括中空金属壳体和布置在中空金属壳体的内表面处的蜂窝芯芯结构。 芯结构包括堆叠在一起的多个切片。 每个切片在其中限定多个孔,以在芯结构中形成多个微通道,从而可以精确地控制芯结构的孔隙率。

    Loop-type heat exchange module
    49.
    发明授权
    Loop-type heat exchange module 失效
    环型热交换模块

    公开(公告)号:US07380585B2

    公开(公告)日:2008-06-03

    申请号:US11306358

    申请日:2005-12-25

    IPC分类号: F28D15/02

    摘要: A loop-type heat exchange module (10) is disclosed, which includes an evaporator (11), a vapor conduit (12), a condenser (13), a liquid conduit (14), a cooling fan (16), a fastening seat (151) and a fan cover (152). The evaporator contains therein a working fluid. The working fluid evaporates into vapor after absorbing heat in the evaporator, and the generated vapor flows, via the vapor conduit, to the condenser where the vapor releases the heat and is condensed into condensate. The condensate then returns back, via the liquid conduit, to the evaporator to thereby form a heat transfer loop. The cooling fan is applied to produce a forced airflow towards the condenser. The fastening seat is used for fastening the evaporator to have an intimate contact with a heat-generating electronic component. The fan cover extends from one side of the fastening seat and receives the cooling fan and the condenser therein.

    摘要翻译: 公开了一种环形热交换模块(10),其包括蒸发器(11),蒸汽导管(12),冷凝器(13),液体导管(14),冷却风扇(16) 座(151)和风扇罩(152)。 蒸发器包含工作流体。 在蒸发器中吸收热量之后,工作流体蒸发成蒸汽,并且所产生的蒸气经由蒸汽导管流到冷凝器,蒸气释放热量并冷凝成冷凝物。 冷凝液然后通过液体导管返回到蒸发器,从而形成传热回路。 施加冷却风扇以产生朝向冷凝器的强制气流。 紧固座用于紧固蒸发器以与发热电子部件紧密接触。 风扇盖从紧固座的一侧延伸,并接收冷却风扇和冷凝器。

    Heat pipe with sintered powder wick
    50.
    发明申请
    Heat pipe with sintered powder wick 审中-公开
    热管带烧结粉末灯芯

    公开(公告)号:US20070089860A1

    公开(公告)日:2007-04-26

    申请号:US11478392

    申请日:2006-06-28

    IPC分类号: F28D15/04

    摘要: A heat pipe includes a casing and a sintered powder wick arranged at an inner surface of the casing. The sintered powder wick is made of spherical metal powder (300), the spherical metal powder having an apparent density ranging from 3.3 g/cm3 to 4.8 g/cm3 to reduce micro pores of the sintered powder wick and improve ability of heat transfer of the heat pipe.

    摘要翻译: 热管包括壳体和布置在壳体的内表面处的烧结的粉末芯。 烧结的粉末芯由球形金属粉末(300)制成,该球形金属粉末的表观密度范围为3.3g / cm 3至4.8g / cm 3,至 减少烧结粉末芯的微孔,提高热管的传热能力。