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    • 1. 发明授权
    • Thermoelectric conversion device, and radiation detector and radiation detection method using the same
    • 热电转换装置,辐射检测器和辐射检测方法使用相同
    • US08129689B2
    • 2012-03-06
    • US13190129
    • 2011-07-25
    • Kohei TakahashiTsutomu Kanno
    • Kohei TakahashiTsutomu Kanno
    • G01T1/24
    • G01J5/12G01J5/046
    • A radiation detector including a substrate; a first inclined thin film disposed on a first main surface of the substrate, and having crystal planes serving as a factor in inducing anisotropy; a second inclined thin film disposed on a second main surface of the substrate opposite to the first main surface, and having crystal planes serving as a factor in inducing anisotropy; a first electrode pair of electrodes disposed on the first inclined thin film, the electrodes being opposed to each other in a direction in which the crystal planes of the first inclined thin film are aligned inclined to the first main surface; and a second electrode pair of electrodes disposed on the second inclined thin film, the electrodes being opposed to each other in a direction in which the crystal planes of the second inclined thin film are aligned inclined to the second main surface.
    • 一种辐射检测器,包括:基板; 第一倾斜薄膜,设置在基板的第一主表面上,并具有作为诱导各向异性的因素的晶面; 第二倾斜薄膜,设置在与第一主表面相对的第二主表面上,并具有作为诱导各向异性的因子的晶面; 设置在所述第一倾斜薄膜上的第一电极对电极,所述电极在所述第一倾斜薄膜的晶面相对于所述第一主表面倾斜的方向上彼此相对; 以及设置在所述第二倾斜薄膜上的第二电极对电极,所述电极在所述第二倾斜薄膜的晶面相对于所述第二主表面倾斜的方向上彼此相对。
    • 5. 发明申请
    • Thermoelectric conversion element and method of manufacturing the same, and thermoelectric conversion device using the element
    • 热电转换元件及其制造方法,以及使用该元件的热电转换元件
    • US20060107990A1
    • 2006-05-25
    • US11194698
    • 2005-08-02
    • Hideaki AdachiSatoshi YotsuhashiYasunari SugitaTsutomu Kanno
    • Hideaki AdachiSatoshi YotsuhashiYasunari SugitaTsutomu Kanno
    • H01L35/30H01L35/28
    • H01L35/32
    • The present invention provides a thermoelectric conversion element that has high efficiency even at reduced thickness. In this thermoelectric conversion element, striped p-type thermoelectric conversion parts are arranged on one surface of an insulating layer, and striped n-type thermoelectric conversion parts are arranged on the other surface. The two sets of stripes form overlapped portions. At one or more of the overlapped portions, a first p-type thermoelectric conversion part and a first n-type thermoelectric conversion part are electrically connected via a first conducting portion arranged within the insulating layer, a second p-type thermoelectric conversion part and a second n-type thermoelectric conversion part are electrically connected via a second conducting portion arranged within the insulating layer, and the first conducting portion and the second conducting portion are electrically isolated. The element of the present invention provides two junctions in a region where a conventional element would provide only one junction.
    • 本发明提供即使在减小的厚度下也具有高效率的热电转换元件。 在该热电转换元件中,在绝缘层的一个表面上配置有条纹p型热电转换部,在另一面上配置有条纹状的n型热电转换部。 两组条纹形成重叠部分。 在一个或多个重叠部分中,第一p型热电转换部分和第一n型热电转换部分经由布置在绝缘层内的第一导电部分,第二p型热电转换部分和 第二n型热电转换部分经由布置在绝缘层内的第二导电部分电连接,并且第一导电部分和第二导电部分电隔离。 本发明的元件在常规元件仅提供一个结的区域中提供两个结。
    • 6. 发明授权
    • Portable wireless optical scanner with user interface mounted on charger
    • 便携式无线光学扫描仪,带有用户界面安装在充电器上
    • US5929425A
    • 1999-07-27
    • US766403
    • 1996-12-12
    • Tsutomu Kanno
    • Tsutomu Kanno
    • G06K7/00G06K7/10G06K17/00H04B10/077H04B10/11H04B10/112H04B10/80
    • G06K7/10881G06K17/0022
    • A timer operates when a barcode reader is lifted from a charger and a charger terminal is isolated from the charger and a communication control means transmits an application acknowledgment signal to the fixed unit via a light receiving means when a barcode indicating the ID number of a user is read within the predetermined time after operation of the timer. A check means of the fixed unit watches detection of reception of the application acknowledgment signal by a communication control means and drives an alarm means when such signal is not received within the predetermined time after the timer has operated, while lights a communicating condition display lamp of the charger for each reception of the application acknowledgment signal and each subsequent communication. Accordingly, the fixed unit can be connected easily to a host computer and can easily select its installation area, while the charger can be set to the area near a user. Communication can be confirmed from both handy unit and the charger.
    • 当条形码读取器从充电器提起并且充电器端子与充电器隔离时,定时器操作,并且当指示用户的ID号的条形码时,通信控制装置经由光接收装置将应用确认信号发送到固定单元 在定时器操作之后的预定时间内被读取。 固定单元的检查装置通过通信控制装置监视对应用确认信号的接收的检测,并且当在定时器操作之后的预定时间内没有接收到这样的信号时驱动报警装置,同时点亮通信条件显示灯 用于每次接收应用确认信号的充电器和每个后续通信。 因此,固定单元可以容易地连接到主机,并且可以容易地选择其安装区域,同时可以将充电器设置到用户附近的区域。 可通过手提单元和充电器确认通讯。
    • 9. 发明申请
    • THERMOELECTRIC CONVERSION DEVICE, AND RADIATION DETECTOR AND RADIATION DETECTION METHOD USING THE SAME
    • 热电转换装置及放射线检测器及使用其的放射线检测方法
    • US20120161008A1
    • 2012-06-28
    • US13358293
    • 2012-01-25
    • Kohei TAKAHASHITsutomu Kanno
    • Kohei TAKAHASHITsutomu Kanno
    • G01J5/12G01J5/08
    • G01J5/12G01J5/046
    • A radiation detector including a substrate; a first inclined thin film disposed on a first main surface of the substrate, and having crystal planes serving as a factor in inducing anisotropy; a second inclined thin film disposed on a second main surface of the substrate opposite to the first main surface, and having crystal planes serving as a factor in inducing anisotropy; a first electrode pair of electrodes disposed on the first inclined thin film, the electrodes being opposed to each other in a direction in which the crystal planes of the first inclined thin film are aligned inclined to the first main surface; and a second electrode pair of electrodes disposed on the second inclined thin film, the electrodes being opposed to each other in a direction in which the crystal planes of the second inclined thin film are aligned inclined to the second main surface.
    • 一种辐射检测器,包括:基板; 第一倾斜薄膜,设置在基板的第一主表面上,并具有作为诱导各向异性的因素的晶面; 第二倾斜薄膜,设置在与第一主表面相对的第二主表面上,并具有作为诱导各向异性的因子的晶面; 设置在所述第一倾斜薄膜上的第一电极对电极,所述电极在所述第一倾斜薄膜的晶面相对于所述第一主表面倾斜的方向上彼此相对; 以及设置在所述第二倾斜薄膜上的第二电极对电极,所述电极在所述第二倾斜薄膜的晶面相对于所述第二主表面倾斜的方向上彼此相对。