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21.2 A 3nW signal-acquisition IC integrating an amplifier with 2.1 NEF and a 1.5fJ/conv-step ADC

机译:21.2 3nW信号采集IC,集成了具有2.1 NEF和1.5fJ / conv步进ADC的放大器

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Signal acquisition systems for emerging applications, such as impiantatile or unobtrusively wearable autonomous sensors, large sensor arrays, or wireless self-powered sensors, require a minuscule form factor and very low power consumption. For example, the power available from a state-of-the-art 1mm solid-state thin-film battery is limited to 4nWfora 10yr lifetime [1], and a 1mm energy harvester attached to a running person delivers only 7.4nW [2]. While several low-power signal acquisition systems have been proposed [3-5], their consumption is still in the 20-to-1000nW range. Circuits aiming at low absolute power often result in low power-efficiency (due to overhead), high PVT sensitivity and poor reliability (due to the use of simplistic circuitry). This work presents a fully-integrated signal acquisition IC with six-fold lower power consumption than prior art, which provides state-of-the-art power-efficiency and ensures enough circuit reliability, precision and bandwidth to enable practical applications.
机译:用于新兴应用的信号采集系统,例如可穿戴式或不显眼的自主传感器,大型传感器阵列或无线自供电传感器,都需要极小的外形尺寸和非常低的功耗。例如,最先进的1mm固态薄膜电池可提供的功率限制为4nW,使用寿命为10年[1],而连接到跑步者的1mm能量采集器只能提供7.4nW [2]。 。虽然已经提出了几种低功率信号采集系统[3-5],但它们的功耗仍在20至1000nW的范围内。瞄准低绝对功率的电路通常会导致低功率效率(由于开销),高PVT灵敏度和较差的可靠性(由于使用简化的电路)。这项工作提出了一种全集成的信号采集IC,其功耗比现有技术低六倍,从而提供了最新的电源效率,并确保了足够的电路可靠性,精度和带宽,可实现实际应用。

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