2014 IEEE 40th Photovoltaic Specialist Conference (PVSC) 2014
DOI: 10.1109/pvsc.2014.6925292
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Digital noise spectroscopy system and its application to solar cells

Abstract: A creative combination of hardware and software has produced a new digital noise spectroscopy system. It provides a low cost, user-friendly, rapid, non-destructive and non-invasive capability to acquire noise spectra. Thorough testing showed that the system has a very low noise floor (3xl0-17 V 2 /Hz), as well as a broad frequency range (1 to 10 5 Hz). The system has been applied to survey solar cells with a variety of materials and geometries. In particular, we acquired noise spectra from (a) single junction … Show more

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“…While the Kleinpenning p-n junction noise model has been successful in describing classical systems such as silicon solar cells, it has not yet been attempted for OPVs. [100][101][102] We first extract τ from impedance spectroscopy to more accurately fit the LFN data to the Kleinpenning model. Impedance spectroscopy measurements were conducted in the dark to obtain the charge carrier lifetimes.…”
Section: Correlated Low-frequency Noise and Impedance Spectroscopy In...mentioning
confidence: 99%
“…While the Kleinpenning p-n junction noise model has been successful in describing classical systems such as silicon solar cells, it has not yet been attempted for OPVs. [100][101][102] We first extract τ from impedance spectroscopy to more accurately fit the LFN data to the Kleinpenning model. Impedance spectroscopy measurements were conducted in the dark to obtain the charge carrier lifetimes.…”
Section: Correlated Low-frequency Noise and Impedance Spectroscopy In...mentioning
confidence: 99%