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A High Input Impedance Low Noise Integrated Front-End Amplifier for Neural Monitoring

机译:用于神经监测的高输入阻抗低噪声集成前端放大器

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Within neural monitoring systems, the front-end amplifier forms the critical element for signal detection and preprocessing, which determines not only the fidelity of the biosignal, but also impacts power consumption and detector size. In this paper, a novel combined feedback loop-controlled approach is proposed to compensate for input leakage currents generated by low noise amplifiers when in integrated circuit form alongside signal leakage into the input bias network. This loop topology ensures the Front-End Amplifier (FEA) maintains a high input impedance across all manufacturing and operational variations. Measured results from a prototype manufactured on the AMS 0.35 μm CMOS technology is provided. This FEA consumes 3.1 μW in 0.042 mm2, √ achieves input impedance of 42 GΩ, and 18.2 nv/ Hz inputreferred noise.
机译:在神经监控系统中,前端放大器构成了信号检测和预处理的关键元素,不仅决定了生物信号的保真度,而且还影响功耗和检测器尺寸。在本文中,提出了一种新颖的组合反馈环路控制方法,以补偿低噪声放大器在集成电路形式以及信号泄漏到输入偏置网络中时产生的输入泄漏电流。这种环路拓扑结构可确保前端放大器(FEA)在所有制造和操作变化中均保持较高的输入阻抗。提供了使用AMS 0.35μmCMOS技术制造的原型的测量结果。该FEA在0.042 mm2中消耗3.1μW,√达到42GΩ的输入阻抗,以及18.2 nv / Hz的输入等效噪声。

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