A Harmonic-Canceling Synthesizer using Skew-Circulant-Matrix-Based Coefficient Generator

ISCAS(2020)

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摘要
In this work, a harmonic-canceling synthesizer for Built-In Self-Test (BIST) applications is presented. The main contribution is the implementation of the required irrational tap coefficients by using integer numbers in a recursive approach without any calibration scheme. A coefficient generator that exploits properties of skew-circulant matrices and relaxes the trade-off between output linearity and coefficients mismatch is proposed. The cascade of Harmonic-Canceling Filters (HCFs) allows to filter out up to the 47th harmonic of the input square-wave. Also, a band-pass HCF that enables the selection of its input's 1st or 5th harmonic is presented. The system is fabricated in 180nm CMOS technology. Measurement results show a maximum 66 dBc Spurious-Free Dynamic Range (SFDR) and output frequencies ranging from 0.8 MHz to 100 MHz.
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关键词
SFDR,band-pass HCF,recursive approach,spurious-free dynamic range,input square-wave,CMOS technology,irrational tap coefficients,built-in self-test applications,skew-circulant-matrix-based coefficient generator,harmonic-canceling synthesizer,Harmonic-Canceling Filters,output linearity,skew-circulant matrices,size 180.0 nm,frequency 0.8 MHz to 100.0 MHz
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