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    • 4. 发明授权
    • Radiation detector module
    • 辐射检测器模块
    • US08859975B2
    • 2014-10-14
    • US13640406
    • 2011-01-27
    • Fumiyuki TokuraMitsutoshi SugiyaShigeru SuzukiTakashi Tonbe
    • Fumiyuki TokuraMitsutoshi SugiyaShigeru SuzukiTakashi Tonbe
    • G01T1/20H01L27/146
    • G01T1/2018H01L27/14634H01L27/14661H01L27/14663
    • A radiation detector module 10A includes a scintillator for converting radiation made incident from a predetermined direction to light, a two-dimensional PD array 12 for receiving light from the scintillator, a connection substrate 13 formed by stacking dielectric layers 130a to 130f, and mounted with the two-dimensional PD array 12 on one substrate surface thereof, and an integrated circuit device 14 mounted on the other substrate surface of the connection substrate 13, and for reading out electrical signals output from the two-dimensional PD array 12. The integrated circuit device 14 has a plurality of unit circuit regions 14b separated from each other. The connection substrate 13 has a plurality of through conductors 20 and a plurality of radiation shielding films 21a to 23a formed integrally with each of the plurality of through conductors 20 and separated from each other. Accordingly, the readout circuits of the integrated circuit device can be protected from radiation with a simple configuration.
    • 辐射检测器模块10A包括用于将从预定方向入射的辐射的光转换成用于从闪烁体接收光的二维PD阵列12,通过堆叠电介质层130a至130f形成的连接基板13,并安装有 其一个基板表面上的二维PD阵列12,以及安装在连接基板13的另一个基板表面上并用于读出从二维PD阵列12输出的电信号的集成电路装置14。 装置14具有彼此分离的多个单位电路区域14b。 连接基板13具有多个贯通导体20和与多个贯通导体20中的每一个一体地形成并彼此分离的多个辐射屏蔽膜21a至23a。 因此,能够以简单的结构保护集成电路器件的读出电路免受辐射。
    • 8. 发明授权
    • Variable displacement gear pump
    • 可变排量齿轮泵
    • US08348635B2
    • 2013-01-08
    • US12370083
    • 2009-02-12
    • Katsumi YamashitaShigeru SuzukiHironao YokoiToshiro Fujii
    • Katsumi YamashitaShigeru SuzukiHironao YokoiToshiro Fujii
    • F01C1/14
    • F04C2/18F04C14/065
    • The variable displacement gear pump for a loading system in an industrial vehicle has main and sub gear pump portions, suction, discharge and bypass passages, and check and opening valves. The main gear pump portion has main drive and driven gears, and has suction and discharge side spaces. The sub gear pump portion has sub drive and driven gears, and has suction and discharge side spaces. The bypass passage returns hydraulic fluid in the discharge-side space of the sub gear pump portion to the suction passage. The check valve prevents hydraulic fluid in the discharge-side space of the main gear pump portion from flowing to that of the sub gear pump portion. The opening valve is used for opening and closing the bypass passage, and closes the bypass passage due to a pressure in a discharge conduit of the loading system increased by the load applied to the loading system.
    • 用于工业车辆中的装载系统的可变排量齿轮泵具有主副齿轮泵部分,抽吸,排放和旁通通道以及检查和打开阀。 主齿轮泵部分具有主驱动齿轮和从动齿轮,并且具有抽吸和排出侧空间。 副齿轮泵部分具有副驱动齿轮和从动齿轮,并且具有吸入和排出侧空间。 旁路通路将副齿轮泵部的排出侧空间的液压流体返回到吸入通路。 止回阀防止主齿轮泵部分的排出侧空间中的液压流体流向副齿轮泵部分的液压流体。 打开阀用于打开和关闭旁路通道,并且由于加载系统的排放管道中的压力增加到施加到装载系统的负载而使旁通通道关闭。
    • 9. 发明申请
    • METHOD FOR PRODUCING GLYCOLIDE
    • 生产甘油的方法
    • US20120289713A1
    • 2012-11-15
    • US13522435
    • 2010-12-16
    • Shigeru SuzukiKazuyuki YamaneMasaru KagoshimaMichio Kikuchi
    • Shigeru SuzukiKazuyuki YamaneMasaru KagoshimaMichio Kikuchi
    • C07D319/12
    • C07D319/12B01J23/14B01J27/135
    • A method for producing glycolide, including the steps of: heating a mixture containing a glycolic acid oligomer, a high-boiling point polar organic solvent having a boiling point of 230 to 450° C., and a tin compound under normal pressure or reduced pressure until a temperature at which the glycolic acid oligomer is depolymerized, to thereby dissolve the glycolic acid oligomer in the high-boiling point polar organic solvent; heating a solution, in which the glycolic acid oligomer is dissolved, under normal pressure or reduced pressure until a temperature at which the glycolic acid oligomer is depolymerized, to thereby form glycolide by depolymerization of the glycolic acid oligomer in the solution; and co-distilling off the high-boiling point polar organic solvent and the formed glycolide from a depolymerization reaction system.
    • 一种生产乙交酯的方法,包括以下步骤:加热含有乙醇酸低聚物,沸点为230-450℃的高沸点极性有机溶剂和常压或减压下的锡化合物的混合物 直到乙醇酸低聚物解聚的温度,从而将乙醇酸低聚物溶解在高沸点极性有机溶剂中; 在常压或减压下加热其中乙醇酸低聚物溶解的溶液直到乙醇酸低聚物解聚的温度,由此通过乙醇酸低聚物在溶液中解聚形成乙交酯; 并从解聚反应体系共沸蒸馏出高沸点极性有机溶剂和形成的乙交酯。