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NEW DARK CURRENT SUPPRESSION CMOS READOUT CIRCUIT WITH NOVEL CDS STRUCTURE FOR LARGE FORMAT QWIP FPA

机译:具有新型CDS结构,用于大格式QWIP FPA的新型暗电流抑制CMOS读出电路

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摘要

A new Dark Current Suppression (DCS) CMOS readout circuits for large format Quantum-Well-Infrared Photo-detector (QWIP) Focal-Plane-Array (FPA) with novel CorrelatedDouble-Sampling (CDS) structure based on dynamic source-follower are proposed, which can overcome the drawbacks of the present techniques, such as sensitive to the non-uniformity of the QWIP materials, poor readout noise features, low frame frequency, limited injection efficiency and dynamic range, etc. The dummy is adopted to realize dark current suppression, while the integration time. Through the novel CDS structure, the output waveform is boxcar, and the frame frequency is increased. Simulation results demonstrate that, in high background sense, the proposed DCS circuit can suppress the dark current, achieve good readout performance, such as low power consumption, high charge sensitivity, high resolution, large dynamic range, and insensitive to the non-uniformity of the QWIP materials.
机译:提出了一种新型的暗电流抑制(DCS)CMOS读出电路,该电路用于大尺寸量子阱红外光电探测器(QWIP)焦平面阵列(FPA),具有基于动态源跟随器的新型相关双采样(CDS)结构。可以克服现有技术的缺点,例如对QWIP材料的不均匀性敏感,读出噪声特性差,帧频低,注入效率和动态范围有限等。采用哑元来实现暗电流压制,同时整合时间。通过新颖的CDS结构,输出波形为棚车,并提高了帧频。仿真结果表明,在高背景下,提出的DCS电路可以抑制暗电流,实现良好的读出性能,如低功耗,高充电灵敏度,高分辨率,大动态范围,对不均匀性不敏感。 QWIP资料。

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