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    • 8. 发明申请
    • METHOD OF MEASURING ULTRAVIOLET LIGHT, DEVICE FOR APPLYING SAID METHOD AND A PHOTO-CONVERTER
    • 测量超紫外光的方法,用于应用该方法和光转换器的装置
    • WO1997018447A1
    • 1997-05-22
    • PCT/RU1995000245
    • 1995-11-14
    • TOMSKY, Konstantin Abramovich
    • RAKHOVSKY, Gleb BorisovichMIKHAILOV, Oleg MikhailovichAFANASIEV, Valentin PetrovichSAZANOV, Alexandr Petrovich
    • G01J01/42
    • G01J1/429
    • The method of measuring ultraviolet light involves the following steps: the light is received, converted in a non-spectrally dependent manner and subsequently photo-converted to produce an electrial signal; the parameters of the electrical signal are measured and the results indicated. Before photo-conversion, a spectrally-dependent correction is carried out in the 280-440 nm range in accordance with a target standard of measurement and a defined relative spectral ultraviolet efficiency curve. The measurement itself is carried out in effective units set by the same standard. The device for applying the method comprises an input optical unit (1) with inlet pupil (2), a photo-converter (4), a correction parameter input unit (6), a measurement unit (5), an indicating unit (7) and a correction filter (3) mounted on the same axis as the inlet pupil (2) and photoreceptor region (23) of the photo-converter (4) along the path of the ultraviolet light at a set distance between the inlet optical unit (1) and the photo-converter (4). The output of the photo-converter (4) is connected to the first input of the measurement unit (5) and first outlet of the correction parameter input unit (6) whose second output is connected to the second input of the measurement unit (5). The outputs of the measurement unit (5) are connected to the corresponding inputs of the indicator unit (7). The inlet pupil (2) is the optical input of the device, while the inputs of the correction parameter input unit (6) are its key inputs. The photo-converter (4) contains a correction filter (3) placed immediately in front of and physically connected to the photoreceptor region (23), a substrate (20) made from monocrystalline n-type silicon with on one side a silicon dioxide layer (21) with a window (22) corresponding to the area of the photoreceptor region (23). A layer (24) of amorphous hydrogenated silicon is deposited on the layer (21) with the window and then overlaid with a barrier-forming film (25) on which outside the confines of the window is located an electrode (26). On the other side of the substrate (20) is formed a multilayer electrode.
    • 测量紫外光的方法包括以下步骤:接收光,以非光谱依赖的方式转换,随后光转换以产生电子信号; 测量电信号的参数,并显示结果。 在光转换之前,根据目标测量标准和定义的相对光谱紫外线效率曲线,在280-440nm范围内进行光谱依赖性校正。 测量本身以相同标准设定的有效单位进行。 用于应用该方法的装置包括具有入口光瞳(2)的输入光学单元(1),光电转换器(4),校正参数输入单元(6),测量单元(5),指示单元 )和校正滤光器(3),其安装在与所述光转换器(4)的入射光瞳(2)和感光体区域(23)相同的轴上,沿着所述紫外线的路径在所述入射光学单元 (1)和光转换器(4)。 光转换器(4)的输出连接到测量单元(5)的第一输入端和校正参数输入单元(6)的第一输出端,​​第二输出端连接到测量单元(5)的第二输入端 )。 测量单元(5)的输出端连接到指示器单元(7)的相应输入端。 入口光瞳(2)是设备的光输入,而校正参数输入单元(6)的输入是其关键输入。 光转换器(4)包含立即放置在感光体区域(23)的前方并物理连接的校正滤光器(3),由单晶n型硅制成的衬底(20),一侧具有二氧化硅层 (21)具有对应于感光体区域(23)的区域的窗口(22)。 非晶氢化硅层(24)用窗口沉积在层(21)上,然后用形成屏障的膜(25)覆盖,其上的窗口的外界面位于电极(26)上。 在基板(20)的另一侧形成多层电极。
    • 9. 发明申请
    • DEVICE FOR DETERMINING THE STRENGTH AND DOSE OF ULTRAVIOLET RADIATION USING SENSORS SENSITIVE TO ULTRAVIOLET RADIATION
    • 一种用于确定紫外线辐射强度和手段剂量紫外线敏感的传感器
    • WO1996025650A1
    • 1996-08-22
    • PCT/EP1996000644
    • 1996-02-14
    • GTA INGENIEURBÜRO FÜR GEOINFORMATIK DR. PETER LIECKFELDTLIECKFELDT, PeterHENNING, DetlevPERK, Rainer
    • GTA INGENIEURBÜRO FÜR GEOINFORMATIK DR. PETER LIECKFELDT
    • G01J01/42
    • G01J1/429
    • The invention pertains to a device for determining the strength and dose of ultraviolet radiation using ultraviolet-sensitive sensors. It has a station-like, essentially fixed structure with a sensor head, a large-screen display (11) and an essentially oblong standard (10) as support for the large-screen display and the sensor head, the standard being advantageously equipped with means for interactive communication (3) and for additional data output as well as means for electronic evaluation of sensor signals and for outputting data to operate the large-screen display. The sensor head is situated above and at a distance from the large-screen display to ensure a clear, undisturbed incidence of radiation. The large-screen display advantageously has a solar cell surface (12) at or on its top and/or lateral faces. With the aid of this solar cell surface (12) energy is supplied to the device, that is the accumulators arranged in the standard (10) are recharged, thus ensuring a substantially self-sufficient mode of operation of the device shown.
    • 本发明涉及一种装置,用于确定由UV敏感传感器来的UV辐照度和剂量,并且具有一个传感器头,一个大的显示器(11)一台状基本上静止的结构和基本上细长的支架(10),大显示器的载体和 在台座用于交互式通信装置(3)和用于额外的数据输出方便地被提供传感器头上,以及装置,用于电子地接收速率的传感器信号和数据的用于操作大型显示器的输出。 传感器头的上方和从大显示间隔开,以确保自由不受干扰辐射侵入地布置。 便利地,在或在其顶部和/或侧面的大显示壳体(11),太阳能电池板(12)。 与该太阳能电池的表面(12)的装置的能量供给或在现有脚(10)的装载配置蓄能器,以便确保所示的装置的一个主要的自立运行。