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    • 1. 发明申请
    • Radiation Sensor and Dosimeter
    • 辐射传感器和剂量计
    • US20100164534A1
    • 2010-07-01
    • US12602195
    • 2008-06-02
    • Anatoly Rozenfeld
    • Anatoly Rozenfeld
    • G01R31/26H01L31/08H01L31/18
    • G01T1/026
    • A semiconductor radiation sensor (100), comprising a substrate (102), a carrier material (104) mounted to the substrate (102), and a semiconductor detector (106) mounted to the carrier material (104). A radiation sensitive portion of the semiconductor detector (106) is oriented towards the carrier material (104) and generally away from the substrate (102), and the carrier material is adapted to transmit radiation to the radiation sensitive portion of the semiconductor detector (106). A dosimeter comprising the radiation sensor (100) and a method of manufacturing the radiation sensor (100) are also provided.
    • 一种半导体辐射传感器(100),包括衬底(102),安装到衬底(102)的载体材料(104)和安装到载体材料(104)上的半导体检测器(106)。 半导体检测器(106)的辐射敏感部分朝着载体材料(104)定向并且通常远离衬底(102),并且载体材料适于将辐射传输到半导体检测器(106)的辐射敏感部分 )。 还提供了包括辐射传感器(100)的剂量计和制造辐射传感器(100)的方法。
    • 2. 发明授权
    • Radiation sensor and dosimeter
    • 辐射传感器和剂量计
    • US08742357B2
    • 2014-06-03
    • US12602195
    • 2008-06-02
    • Anatoly Rozenfeld
    • Anatoly Rozenfeld
    • G01T1/02
    • G01T1/026
    • A semiconductor radiation sensor (100), comprising a substrate (102), a carrier material (104) mounted to the substrate (102), and a semiconductor detector (106) mounted to the carrier material (104). A radiation sensitive portion of the semiconductor detector (106) is oriented towards the carrier material (104) and generally away from the substrate (102), and the carrier material is adapted to transmit radiation to the radiation sensitive portion of the semiconductor detector (106). A dosimeter comprising the radiation sensor (100) and a method of manufacturing the radiation sensor (100) are also provided.
    • 一种半导体辐射传感器(100),包括衬底(102),安装到衬底(102)的载体材料(104)和安装到载体材料(104)上的半导体检测器(106)。 半导体检测器(106)的辐射敏感部分朝着载体材料(104)定向并且通常远离衬底(102),并且载体材料适于将辐射传输到半导体检测器(106)的辐射敏感部分 )。 还提供了包括辐射传感器(100)的剂量计和制造辐射传感器(100)的方法。
    • 4. 发明授权
    • Dual radiation detector
    • 双辐射探测器
    • US08212220B2
    • 2012-07-03
    • US12526100
    • 2008-02-08
    • Michael Lloyd Franz LerchAnatoly RozenfeldOlexander Gektin
    • Michael Lloyd Franz LerchAnatoly RozenfeldOlexander Gektin
    • G01T1/20
    • G01T1/20A61B6/4258G01T1/161
    • A radiation detection apparatus and method, the apparatus (100) comprising a first scintillator (112) for interacting with radiation and outputting light in response thereto, a first photodetector (102) adjacent to the first scintillator (112) for receiving and detecting light from the first scintillator (112) and outputting (108) a first output signal in response thereto, a second scintillator (114) located around the first scintillator (112), for interacting with radiation and outputting light in response thereto, and a second photodetector (104) adjacent to the second scintillator (114) for receiving and detecting light from the second scintillator (114) and outputting (110) a second output signal in response thereto.
    • 一种放射线检测装置和方法,所述装置(100)包括用于与辐射相互作用并响应于其输出光的第一闪烁体(112),与所述第一闪烁体(112)相邻的第一光电检测器(102),用于接收和检测来自 第一闪烁体(112)并且响应于此输出(108)第一输出信号;位于第一闪烁体(112)周围的第二闪烁体(114),用于与辐射相互作用并响应于其输出光;以及第二光电检测器 104),用于接收和检测来自第二闪烁体(114)的光,并响应于该第二闪烁体输出(110)第二输出信号。
    • 6. 发明申请
    • DUAL RADIATION DETECTOR
    • 双辐射探测器
    • US20100090115A1
    • 2010-04-15
    • US12526100
    • 2008-02-08
    • Michael Lloyd Franz LerchAnatoly RozenfeldOlexander Gektin
    • Michael Lloyd Franz LerchAnatoly RozenfeldOlexander Gektin
    • G01T1/20
    • G01T1/20A61B6/4258G01T1/161
    • A radiation detection apparatus and method, the apparatus (100) comprising a first scintillator (112) for interacting with radiation and outputting light in response thereto, a first photodetector (102) adjacent to the first scintillator (112) for receiving and detecting light from the first scintillator (112) and outputting (108) a first output signal in response thereto, a second scintillator (114) located around the first scintillator (112), for interacting with radiation and outputting light in response thereto, and a second photodetector (104) adjacent to the second scintillator (114) for receiving and detecting light from the second scintillator (114) and outputting (110) a second output signal in response thereto.
    • 一种放射线检测装置和方法,所述装置(100)包括用于与辐射相互作用并响应于其输出光的第一闪烁体(112),与所述第一闪烁体(112)相邻的第一光电检测器(102),用于接收和检测来自 第一闪烁体(112)并且响应于此输出(108)第一输出信号;位于第一闪烁体(112)周围的第二闪烁体(114),用于与辐射相互作用并响应于其输出光;以及第二光电检测器 104),用于接收和检测来自第二闪烁体(114)的光,并响应于该第二闪烁体输出(110)第二输出信号。
    • 7. 发明授权
    • Method and apparatus for real time dosimetry
    • 用于实时剂量测定的方法和装置
    • US07361134B2
    • 2008-04-22
    • US10350357
    • 2003-01-24
    • Anatoly RozenfeldMarc Zaider
    • Anatoly RozenfeldMarc Zaider
    • A61N5/00
    • A61N5/1048A61N5/1007A61N5/1027A61N5/1071A61N2005/1072
    • The present invention provides a method of determining the dose rate of a radiation source including locating three or more detectors in the vicinity of said source, each for providing an output indicative of the amount of radiation received from said source and determining the location of said source from at least some of said detector outputs, wherein as many of said detector outputs is required to provide an acceptably accurate result are used in determining said location whereby the dose of radiation from said source can be determined from said determined location of said source and either a known activity of said source or a measure of the activity of said source determined by said detectors.
    • 本发明提供了一种确定辐射源的剂量率的方法,包括在所述源附近定位三个或更多个检测器,每个检测器用于提供指示从所述源接收的辐射量并确定所述源的位置的输出 从所述检测器输出中的至少一些检测器输出,其中要求提供可接受的精确结果的所述检测器输出中的许多被用于确定所述位置,由此可以从所述源的所述确定的位置确定来自所述源的辐射的剂量, 所述源的已知活动或由所述检测器确定的所述源的活动的度量。