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Ultra-High Input Impedance, Low Noise Integrated Amplifier for Noncontact Biopotential Sensing

机译:用于非接触式生物电势感测的超高输入阻抗,低噪声集成放大器

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摘要

Noncontact electrocardiogram/electroencephalogram/electromyogram electrodes, which operate primarily through capacitive coupling, have been extensively studied for unobtrusive physiological monitoring. Previous implementations using discrete off-the-shelf amplifiers have been encumbered by the need for manually tuned input capacitance neutralization networks and complex dc-biasing schemes. We have designed and fabricated a custom integrated noncontact sensor front-end amplifier that fully bootstraps internal and external parasitic impedances. DC stability without the need for external large valued resistances is ensured by an ac bootstrapped, low-leakage, on-chip biasing network. The amplifier achieves, without neutralization, input impedance of 60 fF$Vert$50 T$Omega$, input referred noise of 0.05 fA/$sqrt{rm Hz}$ and 200 nV/$sqrt{rm Hz}$ at 1 Hz, and power consumption of 1.5 $mu$A per channel at 3.3 V supply voltage. Stable frequency response is demonstrated below 0.05 Hz with electrode coupling capacitances as low as 0.5 pF.
机译:主要通过电容耦合工作的非接触心电图/脑电图/肌电图电极已被广泛研究用于不干扰生理的监测。由于需要手动调谐输入电容中和网络和复杂的直流偏置方案,因此妨碍了使用离散式现成放大器的先前实现。我们已经设计和制造了一个定制的集成非接触式传感器前端放大器,该放大器可以完全自举内部和外部寄生阻抗。交流自举,低泄漏,片上偏置网络可确保直流稳定性,而无需外部大电阻。该放大器在不进行中和的情况下实现了60 fF $ Vert $ 50 T $ Omega $的输入阻抗,0.05 Hz的输入参考噪声(在1 Hz时为0.05 fA / $ sqrt {rm Hz} $和200 nV / $ sqrt {rm Hz} $),以及在3.3 V电源电压下,每个通道的功耗为1.5μA。在低于0.05 Hz的条件下,电极耦合电容低至0.5 pF,显示出稳定的频率响应。

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