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    • 2. 发明申请
    • X-ray detector provided with integrated cooling
    • X射线检测器配有集成冷却
    • US20020071523A1
    • 2002-06-13
    • US09994361
    • 2001-11-26
    • Falko BusseHeinz Van Der Broeck
    • H01J035/10H01J035/12
    • A61B6/035A61B6/4488
    • The invention relates to an X-ray examination apparatus in which the X-ray detector 1 and the X-ray source 2 are subject to keeping the temperature constant and to cooling by way of a common cooling circuit. To this end, a cooling medium of constant temperature is applied to the X-ray detector 1 in order to make the X-ray detector 1 operate at uniform ambient temperatures. The temperature of the cooling medium, thus increased a first time, still suffices to perform cooling of the X-ray source 2. Consequently, the heated cooling medium, after application to the X-ray detector 1, is applied to the X-ray source 2 where a second exchange of heat takes place, so that at the same time the X-ray source 2 is cooled without utilizing an additional cooling circuit. This offers the advantage that relevant X-ray examination apparatus may have a simple construction, that the electronic components used in the construction have a correspondingly prolonged service life due to the constant low temperature, and that the apparatus can operate with a higher mean power as a result of the cooling.
    • 本发明涉及一种X射线检查装置,其中X射线检测器1和X射线源2保持恒定温度并通过公共冷却回路进行冷却。 为此,为了使X射线检测器1在均匀的环境温度下工作,将恒温的冷却介质施加到X射线检测器1。 冷却介质的温度因此第一次增加,仍然足以进行X射线源2的冷却。因此,加热的冷却介质在施加到X射线检测器1之后被施加到X射线 源2,其中发生第二次热交换,使得在不使用额外的冷却回路的同时,X射线源2被冷却。 这提供了相关X射线检查装置可以具有简单结构的优点,即由于恒定的低温使用在结构中使用的电子部件具有相应的延长的使用寿命,并且该装置可以以更高的平均功率运行 冷却的结果。
    • 5. 发明申请
    • X-ray diagnosis apparatus
    • X光诊断仪
    • US20040234040A1
    • 2004-11-25
    • US10479998
    • 2004-06-09
    • Hidefumi OkamuraMotomichi Doi
    • H01J035/10H01J035/12
    • A61B6/40A61B6/4233A61B6/4441A61B6/4488
    • An X-ray diagnosis apparatus comprising: an X-ray generator 1 for irradiating X-rays to an object; a planer type X-ray detector 14 for detecting the X-rays irradiated from the X-ray generator and passed through the object; a heat transfer medium 5 for absorbing the heat generated in the X-ray generator and the heat generated in the planer type X-ray detector; cooling means 13 for cooling the heat transfer medium heated by absorbing the heat; and means for moving the heat transfer medium between the X-ray generator, the planer type X-ray detector, and the cooling means.
    • 一种X射线诊断装置,包括:X射线发生器1,用于向对象照射X射线; 用于检测从X射线发生器照射并穿过物体的X射线的刨床型X射线检测器14; 用于吸收在X射线发生器中产生的热量和在平面型X射线检测器中产生的热量的传热介质5; 用于冷却通过吸收热而加热的传热介质的冷却装置13; 以及用于在X射线发生器,平面型X射线检测器和冷却装置之间移动传热介质的装置。
    • 7. 发明申请
    • Method and system for cooling heat-generating component in a closed-loop system
    • 闭环系统中用于冷却发热部件的方法和系统
    • US20020118794A1
    • 2002-08-29
    • US09745588
    • 2000-12-21
    • Joseph H. McCarthy JR.
    • F25B001/00H01J035/10H01J035/12
    • F25B1/06F25B2500/01
    • A system and method for improving cooling of a heat-generating component in a closed-loop cooling system is shown. The system comprises a venturi having a throat which is coupled to an expansion tank that is exposed to atmospheric pressure in the embodiment being described. The venturi, when used with a pressure switch, can operate to determine a flow rate which can be used to generate a signal which in turn is used to activate or deactivate one or more of the components, such as the heat-generating component, in the system. Advantageously, the design of the embodiment described has a convenient system which utilizes a pressure switch, thereby eliminating the need for a differential pressure switch of the type used in the past.
    • 示出了用于改善闭环冷却系统中的发热部件的冷却的系统和方法。 该系统包括在所描述的实施例中连接到暴露于大气压的膨胀箱的喉部的文丘里管。 当与压力开关一起使用时,文氏管可以操作以确定可用于产生信号的流量,该信号又用于激活或去激活一个或多个组件,例如发热组件, 系统。 有利地,所描述的实施例的设计具有利用压力开关的方便的系统,从而消除了对过去使用的类型的差压开关的需要。