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A Distortion Cancelation Technique With the Recursive DFT Method for Successive Approximation Analog-to-Digital Converters

机译:递归DFT方法的失真消除技术,用于逐次逼近模数转换器

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摘要

This paper proposes a recursive discrete Fourier transform (RDFT) foreground digital calibration method for successive approximation (SAR) analog-to-digital converters (ADCs). This calibration method can lower the harmonic distortion caused by capacitor mismatch and dc offset of comparators to improve the resolution and performance of ADCs. Capacitor mismatch results in a digital-to-analog converter (DAC) capacitor array that is unequal to . RDFT can be adopted to evaluate the real radixes of a DAC capacitor array with a new digital output to compensate for the error caused by capacitor mismatch. Furthermore, the calibration technique can eliminate the dc offset error of a comparator circuit. The proposed novel digital calibration method that utilizes RDFT instead of the traditional fast Fourier transform has the advantages of variable transform length, lower complexity, faster computation, and less hardware cost. The analog block of SAR ADC with RDFT is implemented in the TSMC 0.18- standard CMOS process with a 200-kS/s sampling rate to validate the proposed method. Simulation results show that the total harmonic distortion (THD) is 64.97 dB before calibration, whereas a THD of 73.05 dB can be achieved after calibration. In addition, the effective bit numbers are 9.98 and 11.26 b before and after calibration, respectively.
机译:本文提出了一种用于逐次逼近(SAR)模数转换器(ADC)的递归离散傅里叶变换(RDFT)前景数字校准方法。这种校准方法可以降低由电容器不匹配和比较器的直流失调引起的谐波失真,从而提高ADC的分辨率和性能。电容器失配会导致数模转换器(DAC)电容器阵列不等于。可以采用RDFT来评估具有新数字输出的DAC电容器阵列的实际基数,以补偿由电容器失配引起的误差。此外,校准技术可以消除比较器电路的直流偏移误差。所提出的利用RDFT代替传统的快速傅立叶变换的新型数字校准方法具有可变的变换长度,较低的复杂度,较快的计算以及较少的硬件成本的优点。带有RDFT的SAR ADC的模拟模块在TSMC 0.18标准CMOS工艺中以200 kS / s的采样速率实现,以验证所提出的方法。仿真结果表明,校准前总谐波失真(THD)为64.97 dB,而校准后THD为73.05 dB。另外,在校准之前和之后,有效位数分别为9.98和11.26 b。

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