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首页> 外文期刊>IEEE sensors journal >A New Spatiotemporal CMOS Imager With Analog Accumulation Capability for Nanosecond Low-Power Pulse Detections
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A New Spatiotemporal CMOS Imager With Analog Accumulation Capability for Nanosecond Low-Power Pulse Detections

机译:新型时空CMOS成像器,具有模拟累加功能,可进行纳秒级低功耗脉冲检测

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摘要

High-speed cameras use the interesting performances of CMOS imagers that offer advantages in on-chip functionalities, system power reduction, cost, and miniaturization. The FAst MOS Imager (FAMOSI) project consists in reproducing the streak camera functionality with a CMOS imager. In this paper, a new imager called FAMOSI 2, which implements an electronic shutter and analog accumulation capabilities inside the pixel, is presented. With this kind of pixel and the new architecture for controlling the integration, FAMOSI 2 can work in repetitive mode for low light power and in single shot mode for higher light power. This repetitive mode utilizes an analog accumulation to improve the sensitivity of the system with a standard n-well/$ p_ sub$photodiode. The characterization has been realized in single shot mode to optimize the accumulation mode. The prototype has been fabricated in the Austriamicrosystems 0.35-$muhboxm$CMOS process. The chip is composed of 64 columns$times$64 rows of pixels. The pixels have a size of 20$muhboxm$$times$20$muhboxm$and a fill factor of 47%.
机译:高速相机使用了有趣的CMOS成像器性能,这些性能在片上功能,系统功耗降低,成本和小型化方面具有优势。 FAst MOS成像器(FAMOSI)项目包括使用CMOS成像器重现条纹相机的功能。在本文中,提出了一种称为FAMOSI 2的新型成像仪,该成像仪在像素内部实现了电子快门和模拟累积功能。借助这种像素和用于控制集成的新架构,FAMOSI 2可以在重复模式下工作以实现低光功率,并在单次拍摄模式下工作以提高光功率。此重复模式利用模拟累加来改善具有标准n阱/ p_sub $光电二极管的系统的灵敏度。表征已在单次模式下实现,以优化累积模式。该原型是在Austriamicrosystems 0.35- $ muhboxm $ CMOS工艺中制造的。该芯片由64列x 64像素行组成。像素的大小为20 $ muhboxm $ x乘以20 $ muhboxm $,填充因子为47%。

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