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An Ultra-Low Power CMOS Image Sensor with On-Chip Energy Harvesting and Power Management Capability

机译:具有片上能量采集和电源管理功能的超低功耗CMOS图像传感器

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摘要

An ultra-low power CMOS image sensor with on-chip energy harvesting and power management capability is introduced in this paper. The photodiode pixel array can not only capture images but also harvest solar energy. As such, the CMOS image sensor chip is able to switch between imaging and harvesting modes towards self-power operation. Moreover, an on-chip maximum power point tracking (MPPT)-based power management system (PMS) is designed for the dual-mode image sensor to further improve the energy efficiency. A new isolated P-well energy harvesting and imaging (EHI) pixel with very high fill factor is introduced. Several ultra-low power design techniques such as reset and select boosting techniques have been utilized to maintain a wide pixel dynamic range. The chip was designed and fabricated in a 1.8 V, 1P6M 0.18 µm CMOS process. Total power consumption of the imager is 6.53 µW for a 96 × 96 pixel array with 1 V supply and 5 fps frame rate. Up to 30 μW of power could be generated by the new EHI pixels. The PMS is capable of providing 3× the power required during imaging mode with 50% efficiency allowing energy autonomous operation with a 72.5% duty cycle.
机译:本文介绍了一种具有片上能量采集和电源管理功能的超低功耗CMOS图像传感器。光电二极管像素阵列不仅可以捕获图像,而且可以收集太阳能。这样,CMOS图像传感器芯片能够在成像和采集模式之间切换以实现自供电操作。此外,为双模图像传感器设计了基于片上最大功率点跟踪(MPPT)的功率管理系统(PMS),以进一步提高能效。介绍了一种具有很高填充因子的新型隔离式P阱能量采集和成像(EHI)像素。几种超低功耗设计技术(例如,复位和选择升压技术)已用于维持较宽的像素动态范围。该芯片采用1.8 V,1P6M 0.18 µm CMOS工艺进行设计和制造。对于具有1 V电源和5 fps帧频的96×96像素阵列,成像器的总功耗为6.53 µW。新的EHI像素可产生高达30μW的功率。 PMS能够以50%的效率提供成像模式期间所需功率的3倍,从而允许以72.5%的占空比实现能量自主运行。

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