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    • 1. 发明申请
    • Radiation Measurement Apparatus and Method of Measuring Radiation
    • 辐射测量装置和辐射测量方法
    • US20120298875A1
    • 2012-11-29
    • US13456629
    • 2012-04-26
    • Katsunori UENOTakahiro TadokoroHiroshi KitaguchiMizuho TsuyukiNobuyuki OtaMakoto Nagase
    • Katsunori UENOTakahiro TadokoroHiroshi KitaguchiMizuho TsuyukiNobuyuki OtaMakoto Nagase
    • G01T1/36
    • G01T1/17
    • In a radiation measurement apparatus, an analog pulse signal output from a semiconductor radiation detector is converted to a plurality of digital signals by an analog-to-digital converter for each analog pulse signal. A threshold circuit for inputting these digital signals discriminates digital signals exceeding a threshold value. A digital signal integration circuit integrates the plurality of discriminated digital signals for each analog pulse signal and obtains an integrated value for each analog pulse signal. A spectrum generation circuit for inputting the respective integrated values generates a radiation energy spectrum using the integrated values and accurately performs the quantitative analysis and energy analysis of a radioactive nuclide using the radiation energy spectrum. A quantitative analysis and an energy analysis of a radioactive nuclide can be accurately performed while a time resolution of a radiation detector can be maintained.
    • 在辐射测量装置中,从半导体辐射检测器输出的模拟脉冲信号通过用于每个模拟脉冲信号的模拟 - 数字转换器转换成多个数字信号。 用于输入这些数字信号的阈值电路鉴别超过阈值的数字信号。 数字信号积分电路对每个模拟脉冲信号集成多个鉴别数字信号,并获得每个模拟脉冲信号的积分值。 用于输入各个积分值的光谱产生电路使用积分值产生辐射能谱,并使用辐射能谱精确地执行放射性核素的定量分析和能量分析。 可以准确地进行放射性核素的定量分析和能量分析,同时可以维持放射线检测器的时间分辨率。
    • 2. 发明申请
    • INK JET PRINTING APPARATUS AND METHOD OF MANUFACTURING PRINTED GOODS USING INK JET PRINTING APPARATUS
    • 喷墨打印设备和使用喷墨打印设备制造印刷品的方法
    • US20120127223A1
    • 2012-05-24
    • US13301064
    • 2011-11-21
    • Makoto NAGASE
    • Makoto NAGASE
    • B41J29/38B41J2/015
    • B41J11/0015B41J2/0057B41J3/4078B41J29/17
    • An ink jet printing apparatus includes a printing unit having a printing head that discharges an ink onto a surface of a material to be subjected to printing being transported by a transport device to thereby print a predetermined pattern, and an ink fixing unit that solidifies and fixes the ink applied to the material, the fixing unit being located downstream of the printing unit in a transport direction of the material, and an ink removal unit that removes, in the case where the material has a nap on a surface thereof and a pigment ink is employed for printing, an unsolidified ink stuck to the nap. The ink removal unit is located between the printing unit and the ink fixing unit, and includes an ink removing element that contacts the nap on the surface so as to remove the ink stuck to the nap.
    • 一种喷墨打印设备,包括具有打印头的打印单元,该打印头将油墨排出到要经过打印的材料的表面上,由输送装置输送,从而印刷预定图案;以及油墨定影单元,其固化和固定 施加到材料上的油墨,固定单元沿着材料的输送方向位于印刷单元的下游,以及在其表面上具有绒毛的材料和颜料墨水中去除的墨水去除单元 用于印刷,未固化的油墨粘在绒毛上。 墨水去除单元位于打印单元和墨水定影单元之间,并且包括与表面上的绒毛接触的去墨元件,以便去除粘在绒毛上的墨。
    • 7. 发明申请
    • Encapsulated matter and production process thereof
    • 封装物及其生产工艺
    • US20060222851A1
    • 2006-10-05
    • US11238831
    • 2005-09-29
    • Toshiyuki MiyabayashiMakoto Nagase
    • Toshiyuki MiyabayashiMakoto Nagase
    • B32B1/00B05D7/00
    • B01J13/22B01J13/14C01P2004/62C01P2004/64C08F2/44C09B67/0013C09C3/10C09D11/30Y10T428/2998Y10T428/30
    • The present invention relates to encapsulated matter comprising a core material having a charge on a surface thereof and a plurality of coating layers each mainly comprising a polymer with which the core material is coated, the layers comprising at least a first coating layer and a second coating layer, wherein the polymer constituting the first coating layer which contacts the core material comprises at least: (1) a repeating structural unit derived from an ionic polymerizable surfactant A and/or an ionic monomer, each having a charge opposite to the surface charge of the core material; and (2) a repeating structural unit derived from an ionic polymerizable surfactant B having a charge of the same kind as or opposite to the surface charge of the core material, and the polymer constituting the second coating layer which contacts the outside of the first coating layer comprises at least: (3) a repeating structural unit derived from an ionic polymerizable surfactant C and/or an ionic monomer, each having a charge opposite to the surface charge of the first coating layer; and (4) a repeating structural unit derived from an ionic polymerizable surfactant D having a charge of the same kind as or opposite to the surface charge of the first coating layer.
    • 本发明涉及包含在其表面具有电荷的核心材料的包封材料和多个涂层,每个涂层主要包含涂覆有芯材料的聚合物,该层包括至少第一涂层和第二涂层 其中构成与芯材料接触的第一涂层的聚合物至少包括:(1)衍生自离子可聚合表面活性剂A和/或离子单体的重复结构单元,其各自具有与表面电荷相反的电荷 核心材料; 和(2)衍生自具有与芯材的表面电荷相同或相反的电荷的离子可聚合表面活性剂B的重复结构单元,以及构成第二涂层的聚合物,其与第一涂层的外部接触 至少包括:(3)衍生自离子可聚合表面活性剂C和/或离子单体的重复结构单元,每个具有与第一涂层的表面电荷相反的电荷; 和(4)衍生自具有与第一涂层的表面电荷相同或相反的电荷的离子可聚合表面活性剂D的重复结构单元。