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    • 1. 发明申请
    • HEAT EXCHANGE MODULE
    • 热交换模块
    • US20070012427A1
    • 2007-01-18
    • US11308070
    • 2006-03-05
    • Tay-Jian LiuChih-Feng FanChih-Peng LeeChao-Nien Tung
    • Tay-Jian LiuChih-Feng FanChih-Peng LeeChao-Nien Tung
    • H05K7/20
    • H01L23/427H01L2924/0002H01L2924/00
    • A heat exchange module (1) includes a fan duct, an evaporator (22), a condenser (26) and an electric fan (50). The fan duct includes a lower portion (10) and an upper portion (30). The lower portion cooperates with the upper portion to define therebetween an air passage (90). The evaporator contains therein a working fluid. The condenser is in fluid communication with the evaporator. The evaporator and the condenser are received in the air passage defined by the fan duct. The working fluid turns into vapor in the evaporator upon receiving heat from a heat-generating component (70) and the vapor turns into condensate upon releasing the heat to the condenser. The electric fan is attached to the fan duct. The electric fan produces an airflow flowing through the air passage for removing the heat away from the condenser.
    • 热交换模块(1)包括风扇管道,蒸发器(22),冷凝器(26)和电风扇(50)。 风扇导管包括下部(10)和上部(30)。 下部与上部配合以在其间限定空气通道(90)。 蒸发器包含工作流体。 冷凝器与蒸发器流体连通。 蒸发器和冷凝器容纳在由风扇管道限定的空气通道中。 当从发热部件(70)接收热量时,工作流体在蒸发器中变成蒸气,并且在将热量释放到冷凝器时,蒸汽变成冷凝物。 电风扇安装在风扇导管上。 电风扇产生流过空气通道的气流,用于从冷凝器中除去热量。
    • 2. 发明授权
    • Heat exchange module
    • 热交换模块
    • US07743818B2
    • 2010-06-29
    • US11308070
    • 2006-03-05
    • Tay-Jian LiuChih-Feng FanChih-Peng LeeChao-Nien Tung
    • Tay-Jian LiuChih-Feng FanChih-Peng LeeChao-Nien Tung
    • F28D15/00
    • H01L23/427H01L2924/0002H01L2924/00
    • A heat exchange module (1) includes a fan duct, an evaporator (22), a condenser (26) and an electric fan (50). The fan duct includes a lower portion (10) and an upper portion (30). The lower portion cooperates with the upper portion to define therebetween an air passage (90). The evaporator contains therein a working fluid. The condenser is in fluid communication with the evaporator. The evaporator and the condenser are received in the air passage defined by the fan duct. The working fluid turns into vapor in the evaporator upon receiving heat from a heat-generating component (70) and the vapor turns into condensate upon releasing the heat to the condenser. The electric fan is attached to the fan duct. The electric fan produces an airflow flowing through the air passage for removing the heat away from the condenser.
    • 热交换模块(1)包括风扇管道,蒸发器(22),冷凝器(26)和电风扇(50)。 风扇导管包括下部(10)和上部(30)。 下部与上部配合以在其间限定空气通道(90)。 蒸发器包含工作流体。 冷凝器与蒸发器流体连通。 蒸发器和冷凝器容纳在由风扇管道限定的空气通道中。 当从发热部件(70)接收热量时,工作流体在蒸发器中变成蒸气,并且在将热量释放到冷凝器时,蒸汽变成冷凝物。 电风扇安装在风扇导管上。 电风扇产生流过空气通道的气流,用于从冷凝器中除去热量。
    • 4. 发明申请
    • LOOP-TYPE HEAT EXCHANGE DEVICE
    • 环型热交换器
    • US20060272798A1
    • 2006-12-07
    • US11308072
    • 2006-03-05
    • Tay-Jian LiuChao-Nien TungChuen-Shu HouChih-Peng Lee
    • Tay-Jian LiuChao-Nien TungChuen-Shu HouChih-Peng Lee
    • H05K7/20
    • H01L23/427F28D15/0266F28D15/046F28F9/026H01L2924/0002H01L2924/00
    • 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.
    • 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。
    • 7. 发明授权
    • Loop-type heat exchange device
    • 环型热交换装置
    • US07775262B2
    • 2010-08-17
    • US11308072
    • 2006-03-05
    • Tay-Jian LiuChao-Nien TungChuen-Shu HouChih-Peng Lee
    • Tay-Jian LiuChao-Nien TungChuen-Shu HouChih-Peng Lee
    • F28D15/00H05K7/20
    • H01L23/427F28D15/0266F28D15/046F28F9/026H01L2924/0002H01L2924/00
    • 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.
    • 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。
    • 9. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07686504B2
    • 2010-03-30
    • US11309561
    • 2006-08-23
    • Tay-Jian LiuChuen-Shu HouXiao-Long LiChao-Nien Tung
    • Tay-Jian LiuChuen-Shu HouXiao-Long LiChao-Nien Tung
    • G01K1/16G01K25/00
    • F28D15/02F28F2200/005
    • A performance testing apparatus for a heat pipe includes an immovable portion having a heating member located therein for heating an evaporating section of a heat pipe requiring testing. A movable portion is capable of moving relative to the immovable portion and has a heating member therein for heating the evaporating section of the heat pipe. A receiving structure is defined between the immovable portion and the movable portion for receiving the evaporating section of the heat pipe therein. A positioning structure extends from the immovable portion to ensure the receiving structure being capable of precisely receiving the heat pipe. Temperature sensors are attached to the immovable portion and the movable portion for detecting temperature of the heat pipe.
    • 一种用于热管的性能测试装置包括具有位于其中的加热构件的不可移动部分,用于加热需要测试的热管的蒸发部分。 可移动部分能够相对于不可移动部分移动并且在其中具有用于加热热管的蒸发部分的加热部件。 在不可移动部分和可移动部分之间限定接收结构,用于接收热管的蒸发部分。 定位结构从不可移动部分延伸,以确保接收结构能够精确地接收热管。 温度传感器连接到不动部分和可移动部分,用于检测热管的温度。
    • 10. 发明授权
    • Performance testing apparatus for heat pipes
    • 热管性能试验装置
    • US07632010B2
    • 2009-12-15
    • US11309567
    • 2006-08-24
    • Tay-Jian LiuChuen-Shu HouXiao-Long LiChao-Nien Tung
    • Tay-Jian LiuChuen-Shu HouXiao-Long LiChao-Nien Tung
    • G01K1/16G01K25/00
    • F28D15/02F28F2200/005
    • A performance testing apparatus for a heat pipe includes an immovable portion and a movable portion each having a heating member located therein for heating an evaporating section of the heat pipe. The movable portion is capable of moving relative to the immovable portion. A receiving structure is defined between the immovable portion and the movable portion for receiving the evaporating section therein. A positioning structure extends from the immovable portion toward the movable portion to ensure the receiving structure being capable of precisely receiving the heat pipe. Temperature sensors are attached to the immovable and movable portions for detecting temperature of the heat pipe. An enclosure encloses the immovable portion and the movable portions therein, and defines a space therein for movement of the movable portion relative to the immovable portion.
    • 一种用于热管的性能测试装置包括不可移动部分和可移动部分,每个都具有位于其中的加热部件,用于加热热管的蒸发部分。 可移动部分能够相对于不可移动部分移动。 接收结构被限定在不可移动部分和可移动部分之间,用于在其中接收蒸发部分。 定位结构从不动部朝向可动部延伸,以确保接收结构能够精确地接收热管。 温度传感器连接到不可移动和可移动部分,用于检测热管的温度。 外壳将不可移动部分和可移动部分包围在其中,并且在其中限定可移动部分相对于不可移动部分移动的空间。