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Self-powered sensing and time-stamping of rare events using CMOS Fowler-Nordheim tunneling timers

机译:使用CMOS Fowler-Nordheim隧道定时器的自我驱动的传感和稀有事件的稀有活动

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This paper explores the use of continuous-time Fowler-Nordheim (FN) tunneling for implementing self-powered CMOS sensors that can be used to simultaneously measure and time-stamp occurrences of rare signal events. At the core of the proposed design is a floating-gate device where the FN based electron tunneling is induced through the thin gate-oxide and the control gate is used to couple the signal that is being measured and time-stamped. The signal then modulates the shape of the FN tunneling barrier which is captured by the tunneling rate of electrons being stored on the floating-gate. Thus the sensor continuously operates without the need for any external powering and the data from the sensor can be retrieved to reconstruct the occurrence of events offline. The proof-of-concept has been validated using prototypes fabricated in a standard 0.5-μm CMOS process and the measurement results show that less than 100 fJ of sensing energy is required for event recording and time-stamping.
机译:本文探讨了使用连续时间馈送 - NORDHEIM(FN)隧道实现自动CMOS传感器,该隧道可用于同时测量和时间戳发生的罕见信号事件。在所提出的设计的核心,是一种浮栅装置,其中通过薄栅极氧化物诱导FN基电子隧道,并且控制栅极用于将正在测量的信号耦合,并将其上冲压。然后,信号调制由存储在浮栅上的电子的隧道速率捕获的FN隧道屏障的形状。因此,传感器在不需要任何外部供电的情况下连续操作,并且可以检索来自传感器的数据以重建离线事件的发生。通过标准0.5μmCMOS工艺中制造的原型验证了概念证明,并且测量结果表明事件记录和时间戳所需的感测能量小于100 FJ。

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