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低噪声APD偏置电路 被引量:2
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作者 Mehmet Nalbant 徐继红 《国外电子元器件》 2002年第9期74-75,共2页
关键词 APD 偏置电路 雪崩光电检测器 光通信
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Highly Sensitive Filter-Less Fluorescence Detection Method Using an Avalanche Photodiode
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作者 Masahiro Akiyama Kazuya Miyazawa Kazuaki Sawada 《Journal of Energy and Power Engineering》 2016年第4期268-273,共6页
Herein we report a highly sensitive filter-less fluorescence detection method using an APD (avalanche photodiode). Experimental measurements using the proposed APD-based highly sensitive fluorescence detection metho... Herein we report a highly sensitive filter-less fluorescence detection method using an APD (avalanche photodiode). Experimental measurements using the proposed APD-based highly sensitive fluorescence detection method exhibits the sensing capability to detect an excitation light and a fluorescence light without band pass filter or grating. The principle of this APD-based highly fluorescence detection method is used the varying multiplication ratio that is decided by wavelength. The wavelength controls running distance of photo-excited carrier by absorption coefficients, and this element decide multiplication ratio on fixed high electrical field. In fluorescence detection, they use two types of light: excitation light and fluorescence light. These lights have different wavelengths and make different multiplication ratio as well. Thus this method can separate two types of light easily by using multiplication ratios of APD without band pass filters/gratings. In this experiment, the excitation light is LED (light emitting diode) and fluorescence light occurs from FITC (fluorescein isothiocyanate) with ethanol. The FITC concentration changes from 0.1 μmol/L to 10 mmol/L. In this measurement circuit, we employ APD (S2385), power supply voltage, and pico ampere current meter. As a result, these lights are correctly separated by using multiplication ratio with calculation at every concentration FITCs. 展开更多
关键词 Avalanche photodiode filter-less fluorescence.
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