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    • 41. 发明申请
    • LOOP HEAT PIPE AND STARTUP METHOD FOR THE SAME
    • 循环热管及其启动方法
    • US20120132402A1
    • 2012-05-31
    • US13323973
    • 2011-12-13
    • Shigenori AokiTakeshi ShiogaHiroki Uchida
    • Shigenori AokiTakeshi ShiogaHiroki Uchida
    • F28D15/02
    • H01L23/427F28D15/0266F28D15/06F28F2250/06H01L2924/0002H05K7/20809H01L2924/00
    • A loop heat pipe includes: a first evaporator and a second evaporator each of which vaporizes a liquid-phase working fluid and converts the liquid-phase working fluid to a vapor-phase working fluid; a first condenser and a second condenser each of which condenses the vapor-phase working fluid and converts the vapor-phase working fluid back to the liquid-phase working fluid; a first vapor line through which the working fluid converted to the vapor phase is transported to the first condenser; a first liquid line through which the working fluid converted to the liquid phase is transported to the second evaporator; a second vapor line through which the working fluid converted to the vapor phase is transported to the second condenser; and a second liquid line through which the working fluid converted to the liquid phase is transported to the first evaporator.
    • 环路热管包括:第一蒸发器和第二蒸发器,其中每个蒸发器将液相工作流体蒸发并将液相工作流体转化为气相工作流体; 第一冷凝器和第二冷凝器,每个冷凝器和第二冷凝器冷凝气相工作流体并将气相工作流体转换回液相工作流体; 将工作流体转化成气相的第一蒸气管线被输送到第一冷凝器; 将工作流体转化为液相的第一液体管线被输送到第二蒸发器; 将工作流体转化成气相的第二蒸气管线被输送到第二冷凝器; 以及第二液体管线,通过所述第二液体管线将转化为液相的工作流体输送到第一蒸发器。
    • 45. 发明授权
    • Cooling structure for electronic equipment
    • 电子设备冷却结构
    • US07155914B2
    • 2007-01-02
    • US11222793
    • 2005-09-12
    • Minoru IshinabeHiroki UchidaHideshi TokuhiraHiroaki DateWataru Tanaka
    • Minoru IshinabeHiroki UchidaHideshi TokuhiraHiroaki DateWataru Tanaka
    • F25D23/12
    • F25B21/02F25B2321/0212F28D15/00F28D15/0266F28F3/12F28F2210/02G06F1/1607G06F1/20G06F1/203G06F2200/1612G06F2200/1631G06F2200/201G06F2200/203H01L23/467H01L2924/0002H01L2924/00
    • A cooling structure for electronic equipment is designed for cooling a heat-generating body (2a) disposed inside a case (20) by recovering heat generated by the heat-generating body (2a) and dissipating the heat to the outside of the case (20). The cooling structure includes a heat-receiving section (4) for recovering heat generated in the heat-generating body (2a), a thermally insulated space (6) provided with an air inflow orifice (42a) and an air outflow orifice (42b) and thermally insulated from the heat-generating body (2a) and heat-receiving section (4) by a thermally insulating member (40), a heat-dissipating section (7) provided inside the thermally insulated space (6), a heat transfer member (5) for transferring the heat recovered in the heat-receiving section (4) to the heat-dissipating section (7), and a fan (22) for generating forcibly an air flow in the thermally insulated space (6). The heat generated by the heat-generating body (2a) is transferred to the heat-dissipating section (7) via the heat-receiving section (4) and heat transfer member (5) and dissipated in a concentrated fashion by using the fan (22) inside the thermally insulated space (6).
    • 电子设备的冷却结构被设计用于通过回收由发热体(2a)产生的热并将热量散发到壳体的外部来冷却设置在壳体(20)内部的发热体(2a) (20)。 冷却结构包括用于回收在发热体(2a)中产生的热的热接收部分(4),设置有空气流入孔(42a)和空气流出孔 42b),并且通过隔热构件(40)与发热体(2a)和热接收部分(4)热绝缘,设置在隔热空间(6)内部的散热部分(7) ,用于将在所述受热部(4)中回收的热量传递到所述散热部(7)的传热部件(5),以及用于在所述绝热空间(12)中强制产生空气流的风扇(22) 6)。 由发热体(2a)产生的热量经由受热部(4)和传热部件(5)传递到散热部(7),并且通过使用风扇 (22)在隔热空间(6)内。
    • 49. 发明授权
    • Medical imaging apparatus
    • 医疗成像装置
    • US08292431B2
    • 2012-10-23
    • US12490316
    • 2009-06-24
    • Hiroki Uchida
    • Hiroki Uchida
    • A61B3/14A61B3/00
    • A61B3/12
    • A medical imaging apparatus capable of concurrently performing a plurality of imaging operations including an imaging sequence setting unit configured to set a sequence for each of the plurality of imaging operations, an overlapping determination unit configured to determine temporal overlapping between an imaging sequence of an imaging operation that is currently performed and an imaging sequence for an imaging operation that is to be started, and an imaging sequence adjustment unit configured to adjust, based on a result of determination made by the overlapping determination unit, the imaging sequence for the imaging operation that is to be started.
    • 一种能够同时进行多个成像操作的医疗成像设备,包括:成像序列设置单元,被配置为为多个成像操作中的每一个设置序列;重叠确定单元,被配置为确定成像操作的成像序列之间的时间重叠 以及成像顺序调整单元,其被配置为基于由重叠确定单元进行的确定的结果来调整用于成像操作的成像序列,该成像序列是 要开始