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    • 1. 发明授权
    • Diagnostic whole body counter
    • 诊断全身柜台
    • US4760260A
    • 1988-07-26
    • US897022
    • 1986-08-15
    • Patrick A. WalshJohn P. AndrewsRobin R. Shult
    • Patrick A. WalshJohn P. AndrewsRobin R. Shult
    • G01T1/163G01J1/42G01T1/18
    • G01T1/163
    • A diagnostic whole body counter includes both a detector for external or beta radiation and a detector for internal or gamma radiation. A subject stands on a platform and external radiation detectors inset in a back wall of the radiation detector are employed to quickly check for any external radiation on the subject. After it is determined that no external radiation is present, the subject is scanned using an internal radiation detector which is transported vertically along the length of the subject. An intrinsic germanium detector is employed as the internal radiation detector to provide a highly accurate determination of radiation dosage. Variable diameter lead collimators are positioned in front of the internal radiation detector to vary the size of the area scanned by the internal radiation detector.
    • 诊断全身计数器包括用于外部或β辐射的检测器和用于内部或γ辐射的检测器。 受试者站立在平台上,并且使用在辐射探测器的后壁中插入的外部辐射探测器来快速检查对象上的任何外部辐射。 在确定没有外部辐射存在之后,使用沿着被摄体的长度垂直传送的内部辐射检测器扫描被摄体。 内部锗检测器被用作内部辐射检测器,以提供高度准确的辐射剂量测定。 可变直径导线准直器位于内部辐射检测器的前面,以改变由内部辐射探测器扫描的区域的大小。
    • 2. 发明申请
    • COOLING DEVICE
    • 冷却装置
    • US20110141693A1
    • 2011-06-16
    • US12737690
    • 2009-08-10
    • Patrick A. WalshRonan GrimesJeff Punch
    • Patrick A. WalshRonan GrimesJeff Punch
    • H05K7/20F28F13/00F28D15/04
    • F04D29/4226F04D29/5853F04D29/626F28D15/0275G06F1/20H01L23/467H01L2924/0002H01L2924/00
    • A cooling device has a finless heat sink (1) which is rectangular in plan, having two spaced-apart plates (5, 6). A fan impeller (2) and motor (3) are supported between the plates (5, 6) for axial air flow in (7) and radial flow out. The device is placed on an electronic component (4) to be cooled. The component (4) may be an electronic package, for example. The heat sink (1) is manufactured from a single piece of conducting material. There is a rotor support (8) on the top plate (5), supporting a fan rotor (3). The rotor support (8) is in a device inlet for axial flow into the fan impeller (2). There are two opposed side walls (9) interconnecting the plates 5 and 6. The device outlet is the gap between the plates (5, 6) along the open sides. The cooling device is very efficient, compact, and inexpensive to manufacture.
    • 冷却装置具有平板状矩形的无鳍散热器(1),具有两个间隔开的板(5,6)。 风扇叶轮(2)和马达(3)被支撑在板(5,6)之间,用于(7)中的轴向空气流动并且径向流出。 将该装置放置在要冷却的电子部件(4)上。 组件(4)可以是例如电子封装。 散热器(1)由单片导电材料制成。 在顶板(5)上有转子支架(8),支撑风扇转子(3)。 转子支撑件(8)位于用于轴向流入风扇叶轮(2)的装置入口中。 连接板5和6有两个相对的侧壁(9)。装置出口是沿开放侧的板(5,6)之间的间隙。 冷却装置非常高效,紧凑,制造成本低廉。