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Photocurrent and electroluminescence mapping system for optoelectronic device characterization using a PC sound card for data acquisition

机译:使用PC声卡进行光电器件表征的光电流和电致发光映射系统,用于数据采集

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A compact photocurrent and electroluminescence imaging system has been developed using high precision linear translation stages and an electronic signal detection based on a low-cost PC sound card and a simple front-end electronics including a voltage controlled oscillator. The system has been used for the characterization of the photoresponse and of the light emission properties ofcrystalline silicon and GaAs solar cells. A direct comparison of the photocurrent and electroluminescence maps, as obtained by the developed system, with a conventional data acquisition using a IEEE 488 controlled Picoamperemeter, showed basically no differences in the measurement results. In this way we could demonstrate, that PC sound card based acquisition systems can also be used for highly sensitive measurement applications. In the case of the electroluminescence mapping of solar cells, with interesting applications for example for defect imaging, we could easily detect optical powers in the nW range with the sound card based system. Good linearity and temporal stability of the frequency detection based data acquisition has been demonstrated. This opens the way to low-cost portable photovoltaic characterization equipment without the need to transport bulky and costly measurement instruments.
机译:使用高精度线性平移台和基于低成本PC声卡以及包括压控振荡器的简单前端电子设备的电子信号检测器,开发了一种紧凑的光电流和电致发光成像系统。该系统已用于表征光响应以及晶体硅和GaAs太阳能电池的发光特性。通过开发的系统获得的光电流图和电致发光图的直接比较,与使用IEEE 488控制的皮安计的常规数据采集相比,测量结果基本没有差异。通过这种方式,我们可以证明基于PC声卡的采集系统也可以用于高度敏感的测量应用。在太阳能电池的电致发光映射的情况下,例如在缺陷成像等有趣的应用中,我们可以使用基于声卡的系统轻松检测nW范围内的光功率。已经证明了基于频率检测的数据采集具有良好的线性和时间稳定性。这为低成本便携式光伏表征设备开辟了道路,而无需运输笨重且昂贵的测量仪器。

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