5 January 2017 A real-time spectrum acquisition system design based on quantum dots-quantum well detector
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Proceedings Volume 10244, International Conference on Optoelectronics and Microelectronics Technology and Application; 1024414 (2017) https://doi.org/10.1117/12.2264551
Event: International Conference on Optoelectronics and Microelectronics Technology and Application, 2016, Shanghai, China
Abstract
In this paper, we studied the structure characteristics of quantum dots-quantum well photodetector with response wavelength range from 400 nm to 1000 nm. It has the characteristics of high sensitivity, low dark current and the high conductance gain. According to the properties of the quantum dots-quantum well photodetectors, we designed a new type of capacitive transimpedence amplifier (CTIA) readout circuit structure with the advantages of adjustable gain, wide bandwidth and high driving ability. We have implemented the chip packaging between CTIA-CDS structure readout circuit and quantum dots detector and tested the readout response characteristics. According to the timing signals requirements of our readout circuit, we designed a real-time spectral data acquisition system based on FPGA and ARM. Parallel processing mode of programmable devices makes the system has high sensitivity and high transmission rate. In addition, we realized blind pixel compensation and smoothing filter algorithm processing to the real time spectrum data by using C++. Through the fluorescence spectrum measurement of carbon quantum dots and the signal acquisition system and computer software system to realize the collection of the spectrum signal processing and analysis, we verified the excellent characteristics of detector. It meets the design requirements of quantum dot spectrum acquisition system with the characteristics of short integration time, real-time and portability.
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S. H. Zhang, S. H. Zhang, F. M. Guo, F. M. Guo, } "A real-time spectrum acquisition system design based on quantum dots-quantum well detector", Proc. SPIE 10244, International Conference on Optoelectronics and Microelectronics Technology and Application, 1024414 (5 January 2017); doi: 10.1117/12.2264551; https://doi.org/10.1117/12.2264551
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