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Design of high-performance fourth-order single-loop sigma-delta modulator for inertial sensor

机译:惯性传感器的高性能四阶单环Σ-Δ调制器的设计

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In this paper, a design of high-performance fourth-order single-loop modulator applied in inertial sensor is described. This design employs the structure of feed-forward summation to reduce the output of the integrators and make the system more stable. Meanwhile, the modulator uses local feedback for zero optimization to improve the shaping capacity of the modulator noise within the signal bandwidth. In this sigma delta modulator, over-sampling rate is 256 and the signal bandwidth is 500 Hz, while sampling clock frequency is 250 KHz. By the Simulink simulation of MATLAB, the SNR is 145.6 dB and the Effective Number of Bits is 23.89. Transistorlevel circuit can be realized by single-end switched-capacitor circuits. A operational amplifier in the modulator, a dynamic comparator and a clock generation circuit are designed. The modulator has been implemented in CMOS 0.6 um process and simulated in Cadence. Transistor-level circuit simulation result shows that SNR is 126.6 dB, the Effective Number of Bits is 20.7, and nonlinearity of the single-end circuit generates circuit harmonic.
机译:本文介绍了一种应用于惯性传感器的高性能四阶单环调制器的设计。该设计采用前馈求和的结构来减少积分器的输出并使系统更稳定。同时,调制器将本地反馈用于零优化,以提高信号带宽内调制器噪声的整形能力。在此sigma delta调制器中,过采样率为256,信号带宽为500 Hz,而采样时钟频率为250 KHz。通过MATLAB的Simulink仿真,SNR为145.6 dB,有效位数为23.89。晶体管级电路可以通过单端开关电容器电路来实现。设计了调制器中的运算放大器,动态比较器和时钟生成电路。该调制器已通过CMOS 0.6 um工艺实现,并在Cadence中进行了仿真。晶体管级电路仿真结果表明,SNR为126.6 dB,有效位数为20.7,单端电路的非线性会产生电路谐波。

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