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Electromechanical ΔΣ modulation with high-Q micromechanical accelerometers and pulse density modulated force feedback

机译:带有高Q微机械加速度计的机电ΔΣ调制和脉冲密度调制的力反馈

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This paper presents a comprehensive analysis of force-balanced microelectromechanical ΔΣ modulators for inertial and force sensing applications, with the emphasis on the control of high-Q micromechanical accelerometers. High Q is desirable for reducing thermal-mechanical Brownian noise but makes the control more challenging. Linear multibit force feedback using nonlinear actuators based on pulse density modulation (PDM) is described. The characteristics of the modulators, including stability, quantization noise, dynamic range, and proof-mass position error, are studied by simulations. The effects of nonidealities such as proof-mass position offset, manufacturing variations and undesired vibration modes are investigated.
机译:本文对惯性和力感测应用中的力平衡式微机电ΔΣ调制器进行了全面分析,重点是对高Q微机械加速度计的控制。高Q对于降低热机械布朗噪声是合乎需要的,但会使控制更具挑战性。描述了使用基于脉冲密度调制(PDM)的非线性执行器的线性多位力反馈。通过仿真研究了调制器的特性,包括稳定性,量化噪声,动态范围和质量证明位置误差。研究了非理想因素的影响,例如质量质量位置偏移,制造偏差和不希望的振动模式。

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