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    • 4. 发明授权
    • Radiation detector with steering electrodes
    • 带转向电极的辐射探测器
    • US09535171B2
    • 2017-01-03
    • US13821570
    • 2011-09-07
    • Christoph HerrmannKlaus Jurgen EngelRoger Steadman Booker
    • Christoph HerrmannKlaus Jurgen EngelRoger Steadman Booker
    • G01T1/20G01T1/24H01L31/0352H01L31/0224G01T1/29
    • G01T1/24G01T1/241G01T1/2928H01L31/022408H01L31/035272
    • The invention relates to a radiation detector (100) and an associated method for the detection of (e.g. X or γ-) radiation. The detector (100) comprises a converter element (110) in which incident photons (X) are converted into electrical signals, and an array of anodes (130) for generating an electrical field (E) in the converter element (110). At least two anodes are associated with two steering electrodes (140) to which different potentials can be applied by a control unit (150). Preferably, each single anode or small group of anodes is surrounded by one steering electrode. The potentials of the steering electrodes (140) may be set as a function of the potentials that are induced in these electrodes when an operating voltage is applied between the anodes and a cathode (120). Moreover, a grid electrode (160) may be provided that at least partially encircles anodes (130) and their steering electrodes (140).
    • 本发明涉及一种用于检测(例如X或γ-)辐射的辐射检测器(100)和相关联的方法。 检测器(100)包括转换器元件(110),入射光子(X)转换成电信号,以及用于在转换器元件(110)中产生电场(E)的阳极阵列(130)。 至少两个阳极与两个转向电极(140)相关联,由控制单元(150)向其施加不同的电位。 优选地,每个单个阳极或小组阳极被一个转向电极包围。 当在阳极和阴极(120)之间施加工作电压时,可以将转向电极(140)的电位设置为在这些电极中感应的电位的函数。 此外,可以提供栅极(160),其至少部分地环绕阳极(130)及其转向电极(140)。
    • 5. 发明申请
    • RADIATION DETECTOR WITH STEERING ELECTRODES
    • 带有转向电极的辐射探测器
    • US20130168557A1
    • 2013-07-04
    • US13821570
    • 2011-09-07
    • Christoph HerrmannKlaus Jurgen EngelRoger Steadman Booker
    • Christoph HerrmannKlaus Jurgen EngelRoger Steadman Booker
    • G01T1/24
    • G01T1/24G01T1/241G01T1/2928H01L31/022408H01L31/035272
    • The invention relates to a radiation detector (100) and an associated method for the detection of (e.g. X or γ-) radiation. The detector (100) comprises a converter element (110) in which incident photons (X) are converted into electrical signals, and an array of anodes (130) for generating an electrical field (E) in the converter element (110). At least two anodes are associated with two steering electrodes (140) to which different potentials can be applied by a control unit (150). Preferably, each single anode or small group of anodes is surrounded by one steering electrode. The potentials of the steering electrodes (140) may be set as a function of the potentials that are induced in these electrodes when an operating voltage is applied between the anodes and a cathode (120). Moreover, a grid electrode (160) may be provided that at least partially encircles anodes (130) and their steering electrodes (140).
    • 本发明涉及一种用于检测(例如X或γ)辐射的辐射检测器(100)和相关联的方法。 检测器(100)包括转换器元件(110),入射光子(X)转换成电信号,以及用于在转换器元件(110)中产生电场(E)的阳极阵列(130)。 至少两个阳极与两个转向电极(140)相关联,由控制单元(150)向其施加不同的电位。 优选地,每个单个阳极或小组阳极被一个转向电极包围。 当在阳极和阴极(120)之间施加工作电压时,可以将转向电极(140)的电位设定为在这些电极中感应的电位的函数。 此外,可以提供栅极(160),其至少部分地环绕阳极(130)及其转向电极(140)。
    • 9. 发明申请
    • DIRECT CONVERSION X-RAY DETECTOR
    • 直接转换X射线探测器
    • US20130256541A1
    • 2013-10-03
    • US13991462
    • 2011-12-02
    • Klaus Jurgen EngelChristoph Herrmann
    • Klaus Jurgen EngelChristoph Herrmann
    • H01L31/0224H01L31/18G01T1/24
    • H01L31/0224G01T1/24G01T1/247H01L27/14676H01L31/18
    • The invention relates to a radiation detector (100) comprising a converter element (102) for converting incident high-energy radiation (X) into charge signals. A cathode (101) and an array(104) of anodes (103) are disposed on different sides of the converter element(102) for generating an electrical field (E0, Ed) within it The strength of said electrical field (E0, Ed) is increased in a first region(Rd) near the anode array(104) with respect to a second region(R0) remote from it. Such an increase may be achieved by doping the first region(Rd) with an electron acceptor. The increased field strength in the first region (Rd) favorably affects the sharpness of charge pulses generated by incident radiation.
    • 本发明涉及一种辐射检测器(100),其包括用于将入射的高能辐射(X)转换为电荷信号的转换器元件(102)。 阳极(103)的阴极(101)和阵列(104)设置在转换器元件(102)的不同侧上,用于在其内产生电场(E0,Ed)。所述电场(E0,Ed )相对于远离其的第二区域(R0)在阳极阵列(104)附近的第一区域(Rd)中增加。 可以通过用电子受体掺杂第一区域(Rd)来实现这种增加。 第一区域(Rd)中增加的场强有利地影响入射辐射产生的电荷脉冲的清晰度。
    • 10. 发明授权
    • Direct conversion X-ray detector
    • 直接转换X射线探测器
    • US09018589B2
    • 2015-04-28
    • US13991462
    • 2011-12-02
    • Klaus Jurgen EngelChristoph Herrmann
    • Klaus Jurgen EngelChristoph Herrmann
    • G01T1/24H01L31/0224H01L31/18H01L27/146
    • H01L31/0224G01T1/24G01T1/247H01L27/14676H01L31/18
    • The invention relates to a radiation detector (100) comprising a converter element (102) for converting incident high-energy radiation (X) into charge signals. A cathode (101) and an array (104) of anodes (103) are disposed on different sides of the converter element (102) for generating an electrical field (E0, Ed) within it. The strength of said electrical field (E0, Ed) is increased in a first region (Rd) near the anode array (104) with respect to a second region (R0) remote from it. Such an increase may be achieved by doping the first region (Rd) with an electron acceptor. The increased field strength in the first region (Rd) favorably affects the sharpness of charge pulses generated by incident radiation.
    • 本发明涉及一种辐射检测器(100),其包括用于将入射的高能辐射(X)转换为电荷信号的转换器元件(102)。 阳极(103)的阴极(101)和阵列(104)设置在转换器元件(102)的不同侧上,用于在其内产生电场(E0,Ed)。 所述电场(E0,Ed)的强度相对于远离其的第二区域(R0)在阳极阵列(104)附近的第一区域(Rd)中增加。 可以通过用电子受体掺杂第一区域(Rd)来实现这种增加。 第一区域(Rd)中增加的场强有利地影响入射辐射产生的电荷脉冲的清晰度。