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    • 1. 发明申请
    • Laminated evaporator with optimally configured plates to align incident flow
    • 具有最佳配置板的层压蒸发器以对准入射流
    • US20060278382A1
    • 2006-12-14
    • US11149701
    • 2005-06-10
    • Mohinder BhattiMingyu WangLin-Jie HuangGary Vreeland
    • Mohinder BhattiMingyu WangLin-Jie HuangGary Vreeland
    • F28D1/02
    • F28D1/0333F28D2001/0266F28F3/044
    • The invention provides a heat exchanger having a plurality of plates stacked in alternating mirrored relation with one another. Each of the plurality of plates has a plate length extending along a plate longitudinal axis between first and second ends. Each of the plurality of plates also has a plate width extending transverse to the plate longitudinal axis. The plurality of plates cooperate to define a fluid receiving cavity extending along a receiving axis substantially perpendicular to the plate longitudinal axis. The plurality of plates also cooperate to define a fluid exiting cavity extending along an exiting axis substantially perpendicular to the plate longitudinal axis and spaced from the receiving axis. A plurality of plate cavities are defined between alternating pairs of adjacent plates and extend along the plate length. The plurality of plate cavities fluidly communicate with both of the receiving and exiting cavities. The plate width is disposed at an angle less than ninety degrees relative to both of the receiving and exiting axis.
    • 本发明提供一种热交换器,其具有彼此以交替的镜像关系堆叠的多个板。 多个板中的每一个具有沿第一和第二端之间的板纵向轴线延伸的板长度。 多个板中的每一个还具有横向于板纵向轴线延伸的板宽度。 多个板协作以限定沿着基本上垂直于板纵向轴线的接收轴延伸的流体接收腔。 多个板还协作以限定沿着基本上垂直于板纵向轴线并与接收轴线间隔开的出口轴延伸的出口空腔。 在相邻板的交替对之间限定多个板腔,并沿板长度延伸。 所述多个板腔与所述接收腔和所述出口腔都流体连通。 板宽以相对于接收轴和离开轴的两个角度小于九十度的角度设置。
    • 2. 发明申请
    • High efficiency beverage vending machine
    • 高效饮料自动售货机
    • US20060231565A1
    • 2006-10-19
    • US11104897
    • 2005-04-13
    • Mohinder BhattiMingyu WangDavid Rusch
    • Mohinder BhattiMingyu WangDavid Rusch
    • G07F9/10
    • G07F17/0071F25B5/02F25B2700/21175G07F9/105
    • The invention provides a vending machine for cooling food products. The vending machine includes a housing defining an interior. The vending machine also includes a plurality of holding members substantially thermally isolated from one another and disposed in the interior. Each of the plurality of holding members includes inner and outer hollow members telescopically engaged with one another to define an inner cavity with an opening operable to communicate an individual food product and an outer cavity with an inlet and an outlet spaced from the inlet. The vending machine also includes a refrigeration system disposed outside of the interior and fluidly communicating individually with each of the outer cavities to cool each of the inner cavities.
    • 本发明提供一种用于冷却食品的自动售货机。 自动售货机包括限定内部的壳体。 自动售货机还包括彼此大体热绝缘并设置在内部的多个保持构件。 多个保持构件中的每一个包括彼此可伸缩地接合的内部和外部中空构件,以限定具有可操作以使单个食品和外部空腔与入口隔开的入口和出口连通的开口的内部空腔。 自动售货机还包括设置在内部外部并与每个外部空腔流体连通以冷却每个内部空腔的制冷系统。
    • 3. 发明申请
    • Low profile thermosiphon
    • 低调热虹吸
    • US20070246197A1
    • 2007-10-25
    • US11407452
    • 2006-04-20
    • Ilya ReyzinMohinder BhattiShrikant Joshi
    • Ilya ReyzinMohinder BhattiShrikant Joshi
    • H05K7/20
    • H01L23/427H01L2924/0002H01L2924/00
    • A thermosiphon cooling assembly for dissipating heat generated by an electronic device includes a housing having a housing top, housing bottom and opposing sides. The opposing sides extend between the housing top and the housing bottom to define a low profile entrance and a low profile exit. A refrigerant is disposed within one or more boiling chambers. Heat generated by the electronic device is transferred to the refrigerant by the boiling chambers for liquid-to-vapor transformation. Condenser tubes having a bottom end and a top end extend from the boiling chambers at a diagonally upward angle across the sides between the housing bottom and housing top. The condenser tubes receive and condense vapor boiled off from the refrigerant. Air moving devices axially move air through the housing. Air is flowed across the condenser tubes to facilitate condensation.
    • 用于耗散由电子设备产生的热量的热虹吸管冷却组件包括具有壳体顶部,壳体底部和相对侧面的壳体。 相对的侧面在壳体顶部和壳体底部之间延伸以限定低轮廓入口和低轮廓出口。 制冷剂设置在一个或多个沸腾室内。 由电子装置产生的热量通过沸腾室转移至制冷剂进行液 - 气转化。 具有底端和顶端的冷凝器管从沸腾室以对角线向上的角度延伸穿过壳体底部和壳体顶部之间的侧面。 冷凝器管接收并冷凝从制冷剂中蒸发的蒸气。 空气移动装置将空气轴向移动通过壳体。 空气流过冷凝器管,以便冷凝。
    • 4. 发明申请
    • Evaporatively cooled thermosiphon
    • 蒸发冷却热虹吸管
    • US20070227703A1
    • 2007-10-04
    • US11395696
    • 2006-03-31
    • Mohinder BhattiIlya Reyzin
    • Mohinder BhattiIlya Reyzin
    • F28D15/04
    • F28D15/0266F28D15/02F28F3/048F28F2215/00H01L23/427H01L2924/0002H01L2924/00
    • A thermosiphon cooling assembly cools an electronic device with a first refrigerant disposed in the lower boiling chamber of a housing for liquid-to-vapor transformation and a second refrigerant disposed in an upper evaporating chamber of a housing for liquid-to-vapor transformation. The partition separating the lower boiling chamber of the housing from the upper evaporating chamber of the housing creates a series of vapor chambers within the lower boiling portion for condensing vapor boiled off the first refrigerant. The upper evaporating chamber contains a series of refrigerant pockets interleaved vertically with the vapor chambers to increase the surface area for heat transfer between the refrigerant vapor and the second refrigerant for absorbing heat by the second refrigerant for liquid-to-vapor transformation.
    • 热虹吸冷却组件用设置在壳体的低沸点室中的第一制冷剂冷却电子设备以进行液体 - 蒸汽转化,并且将第二制冷剂设置在用于液体 - 蒸汽转化的壳体的上部蒸发室中。 将壳体的下部沸腾室与壳体的上部蒸发室分开的隔板在低沸点部分内产生一系列蒸气室,用于冷凝从第一制冷剂沸腾的蒸汽。 上部蒸发室含有与蒸气室垂直交错的一系列制冷剂槽,以增加制冷剂蒸气和第二制冷剂之间的热传递的表面积,用于吸收由第二制冷剂进行液 - 气转化的热量。
    • 6. 发明申请
    • Microchannel heat sink
    • 微通道散热器
    • US20070163750A1
    • 2007-07-19
    • US11333655
    • 2006-01-17
    • Mohinder BhattiMark ParisiAndrew Hayes
    • Mohinder BhattiMark ParisiAndrew Hayes
    • H05K7/20
    • H01L23/473F28F3/12F28F9/026F28F13/06H01L2924/0002H01L2924/00
    • The invention provides a heat sink for flowing coolant into inlet manifold channels extending into a inlet edge of a manifold where the flow is forced downward into parallel and spaced micro-channels extending across the manifold channels and re-directing the coolant up into and out of outlet manifold channels extending into an outlet edge of the manifold and interleaved with the inlet manifold channels, and by maintaining a base-width of the micro-channels in the range of forty microns to one hundred microns, maintaining a base-height of the micro-channels in the range of two hundred microns to four hundred microns, maintaining a manifold-height through of the manifold channels in the range of one thousand microns to three thousand microns, and maintaining a manifold-width of the manifold channels in the range of three hundred and fifty microns to one thousand microns.
    • 本发明提供了一种用于将冷却剂流入入歧管通道的散热器,入口歧管通道延伸到歧管的入口边缘,其中流动被迫向下并入平行且间隔开的微通道,跨过歧管通道延伸并重新引导冷却剂进入和离开 出口歧管通道延伸到歧管的出口边缘并与入口歧管通道交错,并且通过将微通道的基底宽度保持在40微米至100微米的范围内,保持微型的基底高度 - 通道范围在二百微米到四百微米之间,保持歧管通道的歧管高度在千微米至三千微米的范围内,并将歧管通道的歧管宽度保持在 三百五十微米至千微米。
    • 8. 发明申请
    • Capillary-assisted compact thermosiphon
    • 毛细管辅助紧凑型热虹吸管
    • US20070251674A1
    • 2007-11-01
    • US11412287
    • 2006-04-27
    • Mohinder BhattiIlya ReyzinDebashis Ghosh
    • Mohinder BhattiIlya ReyzinDebashis Ghosh
    • F28D15/04
    • F28D15/0233F28D15/0266F28D15/04H01L23/427H01L2924/0002H01L2924/00
    • A thermosiphon cooling assembly cools an electronic device with a conical condensing tube disposed about a curved central axis curving upwardly from a top of the evaporating unit to an upper distal end and a shroud disposed outward of an exterior surface of the condensing tube at the upper distal end extending axially along the central axis from the upper distal end to a lower edge spaced from the top defining an air opening. An air moving device moves air about the central axis within the shroud to the air opening. A plurality of condensing fins are disposed in the condensing tube and each condensing fin forms a pair of corners with an interior surface of the condensing tube and a wick material is disposed in each of the corners to return condensed vapor to the evaporating unit.
    • 热虹吸冷却组件用电子装置冷却电子装置,该锥形冷凝管围绕弯曲的中心轴线设置,该中心轴线从蒸发单元的顶部向上弯曲到上部远端,并且在上部远端处设置在冷凝管外表面外侧的护罩 所述端部沿所述中心轴线从所述上远端轴向延伸到与限定空气开口的顶部间隔开的下边缘。 空气移动装置将围绕护罩的中心轴线的空气移动到空气开口。 多个冷凝翅片设置在冷凝管中,并且每个冷凝翅片与冷凝管的内表面形成一对角部,并且每个角部设置芯材以将冷凝的蒸气返回到蒸发单元。