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A Straightforward Approach for Synthesizing Electromechanical Sigma-Delta MEMS Accelerometers

机译:一种合成机电SIGMA-DELTA MEMS加速度计的直接方法

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摘要

The EM- Σ Δ (electromechanical sigma-delta) approach is a concise and efficient way to realize the digital interface for micro-electromechanical systems (MEMS) accelerometers. However, including a fixed MEMS element makes the synthesizing of the EM- Σ Δ loop an intricate problem. The loop parameters of EM- Σ Δ can not be directly mapped from existing electrical Σ Δ modulator, and the synthesizing problem relies an experience-dependent trail-and-error procedure. In this paper, we provide a new point of view to consider the EM- Σ Δ loop. The EM- Σ Δ loop is analyzed in detail from aspects of the signal loop, displacement modulation path and digital quantization loop. By taking a separate consideration of the signal loop and quantization noise loop, the design strategy is made clear and straightforward. On this basis, a discrete-time PID (proportional integral differential) loop compensator is introduced which enhances the in-band loop gain and suppresses the displacement modulation path, and hence, achieves better performance in system linearity and stability. A fifth-order EM- Σ Δ accelerometer system was designed and fabricated using 0.35 μ m CMOS-BCD technology. Based on proposed architecture and synthesizing procedure, the design effort was saved, and the in-band performance, linearity and stability were improved. A noise floor of 1 μ g / Hz , with a bandwidth 1 kHz and a dynamic range of 140 dB was achieved.
机译:EM-ΣΔ(机电SIGMA-DERTA)方法是实现微机电系统(MEMS)加速度计的数字界面的简洁有效的方法。然而,包括固定的MEMS元件使得em-ΣΔ循环的合成是复杂的问题。 EM-ΣΔ的循环参数不能直接从现有电ΣΔ调制器映射,并且合成问题依赖于经验依赖性的路径和错误过程。在本文中,我们提供了一种新的观点来考虑EM-ΣΔ循环。详细地,从信号循环,位移调制路径和数字量化循环的各方面详细分析EM-ΣΔLep。通过单独考虑信号回路和量化噪声回路,设计策略清晰直接。在此基础上,引入了离散时间PID(比例积分差分)环路补偿器,其增强了带内环增益并抑制了位移调制路径,因此,在系统线性度和稳定性方面实现了更好的性能。使用0.35μMCMOS-BCD技术设计和制造第五阶EM-ΣΔ加速度计系统。基于所提出的架构和合成程序,节省了设计努力,提高了带内的性能,线性度和稳定性。实现了1μg/ hz的噪声底板,带宽1 kHz和140dB的动态范围。

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