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Resonant Noise-Canceling Current Front-End for High-Resolution Impedance Sensing

机译:用于高分辨率阻抗检测的共振噪声消除电流前端

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The ultimate resolution limit of the current front-end of wideband impedance detection circuits is set by the input total capacitance and input equivalent noise. We present a solution to reduce the noise of more than an order of magnitude when the capacitance cannot be further minimized. By introducing a properly-chosen inductor (and a proper and stable biasing network) it is possible to cancel the capacitive reactance at the resonance frequency (~10 MHz) which becomes the sensing frequency, thus significantly reducing the detection noise, while preserving the accuracy of the transfer function. A detailed analysis of the scheme, and its experimental validation with different inductors are presented. In all cases an improvement larger than 10 is achieved with an input-referred current spectral density of ~1 pA/√Hz at the operating frequency of ~20 MHz.
机译:宽带阻抗检测电路的当前前端的最终分辨率限制由输入的总电容和输入等效噪声设定。当电容不能进一步最小化时,我们提出了一种解决方案来减少多个峰值的噪声。 By introducing a properly-chosen inductor (and a proper and stable biasing network) it is possible to cancel the capacitive reactance at the resonance frequency (~10 MHz) which becomes the sensing frequency, thus significantly reducing the detection noise, while preserving the accuracy传递函数。提出了对该方案的详细分析及其与不同电感器的实验验证。在所有情况下,通过在〜20MHz的工作频率下,通过输入引用的电流光谱密度为〜1Pa /√Hz的输入引用电流频谱密度来实现大于10的改进。

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