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Current-Mode Self-Amplified CMOS Sensor Intended for 2D Temperature Microgradients Measurement and Imaging

机译:用于2D温度微耕地的电流模式自增大CMOS传感器测量和成像

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摘要

This paper presents the design of a current-mode CMOS self-amplified imager operating in dark conditions, for thermal imaging, which provides an innovative solution for precision thermal contact mapping. Possible applications of this imager range from 3D CMOS integrated circuits to the study of in-vivo biological samples. It can provide a thermal map, static or dynamic, for the measurement of temperature microgradients. Some adaptations are required for the optimization of this self-amplified image sensor since it responds exclusively to the dark currents of the photodiodes throughout the array. The sensor is designed in a standard CMOS process and requires no post-processing steps. The optimized image sensor operates with integration times as low as one μs and can achieve both SNR and dynamic range compatible to those of sensors available on the market, estimated as 87dB and 75dB, respectively; noise equivalent temperature difference can be as low as 10mK; and detection errors as low as ±1%. Furthermore, under optimal conditions the self-amplification process enables a simple form of CDS, enhancing the overall sensor noise performance.
机译:本文介绍了在暗条件下运行的电流模式CMOS自放大仪的设计,用于热成像,为精密热接触映射提供了一种创新的解决方案。该成像器的可能应用范围从3D CMOS集成电路到体内生物样品的研究。它可以提供热图,静态或动态,用于测量温度微耕观。由于它专门响应于整个阵列的光电二极管的暗电流,因此需要一些适应性所需的一些改编。传感器采用标准CMOS工艺设计,不需要后处理步骤。优化的图像传感器以低至一μs的集成时间运行,并且可以分别达到市场上可用的传感器的SNR和动态范围,分别估计为87dB和75dB;噪声等效温差可以低至10mk;检测误差低至±1%。此外,在最佳条件下,自放大过程使得能够简单的CD形式,增强整体传感器噪声性能。

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