STRAHLUNGSDETEKTOR
    1.
    发明公开
    STRAHLUNGSDETEKTOR 审中-公开

    公开(公告)号:EP1730787A1

    公开(公告)日:2006-12-13

    申请号:EP05738727.6

    申请日:2005-03-10

    IPC分类号: H01L31/0216 H01L31/068

    摘要: A radiation detector is disclosed, for the detection of radiation (8), with a given spectral sensitivity distribution (9), which has a maximum at a given wavelength λo, comprising a semiconductor body (1) with an active region (5), provided for detector signal generation and for the incident radiation. In one embodiment, the active region (5) comprises a number of functional layers (4a, 4b, 4c, 4d), with differing band gaps and/or thicknesses and embodied such that said layers (4a, 4b, 4c, 4d) at least partly absorb radiation at a wavelength greater than λo. In a further embodiment, a filter layer structure (70) is arranged after the active region, comprising at least one filter layer (7, 7a, 7b, 7c). The filter layer structure determines the short wave side (101) of the detector sensitivity (10), according to the given spectral sensitivity distribution (9), by means of absorption of wavelengths less than λo. A radiation detector for the detection of radiation (8), according to the spectral sensitivity distribution (9) of the human eye is also disclosed. The semiconductor body can be monolithically integrated.

    摘要翻译: 公开了一种用于检测辐射(8)的辐射检测器,其具有在给定波长λ0处具有最大值的给定的光谱灵敏度分布(9),该辐射检测器包括具有有源区域(5)的半导体主体(1) 提供用于检测器信号生成和入射辐射。 在一个实施例中,有源区(5)包括多个具有不同带隙和/或厚度的功能层(4a,4b,4c,4d),并且体现为使得所述层(4a,4b,4c,4d) 至少部分吸收波长大于λ0的辐射。 在另一实施例中,滤波器层结构(70)被布置在有源区之后,包括至少一个滤波器层(7,7a,7b,7c)。 根据给定的光谱灵敏度分布(9),通过吸收小于λ0的波长,滤波器层结构确定检测器灵敏度(10)的短波侧(101)。 还公开了根据人眼的光谱灵敏度分布(9)来检测辐射(8)的辐射检测器。 半导体本体可以单片集成。

    STRAHLUNGSDETEKTOR MIT EINSTELLBARER SPEKTRALER EMPFINDLICHKEIT
    2.
    发明公开
    STRAHLUNGSDETEKTOR MIT EINSTELLBARER SPEKTRALER EMPFINDLICHKEIT 审中-公开
    具有可调光谱灵敏度辐射检测器

    公开(公告)号:EP2054705A1

    公开(公告)日:2009-05-06

    申请号:EP07847523.3

    申请日:2007-11-29

    IPC分类号: G01J1/42 G01J3/36

    摘要: The invention specifies a radiation detector (1) having a detector arrangement (2), which has a plurality of detector elements (4, 5, 6) which are used to obtain a detector signal (DS) during operation of the radiation detector, and having a control apparatus (3), wherein the detector elements each have a spectral sensitivity distribution (400, 500, 600) and are suitable for generating signals (S4, S5, S6), at least one detector element contains a compound semiconductor material and this detector element is designed to detect radiation in the visible spectral range, the radiation detector is designed in such a manner that the sensitivity distributions of the detector elements are used to form different spectral sensitivity channels (420, 520, 620) of the radiation detector, a channel signal (K4, K5, K6) which is assigned to the respective sensitivity channel can be generated in the sensitivity channels using the detector elements, and the control apparatus is designed in such a manner that the contributions of different channel signals to the detector signal of the radiation detector are controlled differently.

    STRAHLUNGSEMITTIERENDE ANORDNUNG
    5.
    发明公开
    STRAHLUNGSEMITTIERENDE ANORDNUNG 审中-公开
    辐射安排

    公开(公告)号:EP2252989A1

    公开(公告)日:2010-11-24

    申请号:EP09714753.2

    申请日:2009-02-25

    IPC分类号: G09F9/33

    摘要: A radiation-emitting arrangement comprises especially a support element (1) having an at least partially non-transparent main surface (10) and an organic light-emitting component (2) arranged on the support element (1), said component having an organic layer sequence (23) with an active zone between an at least partially transparent first electrode (21) and an at least partially transparent second electrode (22). The radiation-emitting arrangement is characterized in that the active zone (29) is suitable to produce electromagnetic radiation (91, 93) when in a switched-on operating state; the radiation-emitting arrangement comprises a radiation output surface (3) for outputting the electromagnetic radiation (92, 93) on a side of the organic radiation-emitting component (2) facing away from the support element (1); the at least partially non-transparent main surface (10) of the support element (1) can be perceived through the radiation output surface (3) by an external observer in a switched-off operating state of the organic radiation-emitting component (2).