A ramp-based background calibration technique for timing mismatch in time-interleaved ADCs

IF 3 3区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Yahan Yu , Peng Miao , Fei Li, Di Wang, Haotian Zhang, Ankang Ding
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引用次数: 0

Abstract

This paper presents a ramp-based background calibration technique for timing skew detection and correction in time-interleaved analog-to-digital converters (TI ADCs). The method achieves input independence through an internally generated ramp calibration signal. To enable the calibration to operate in the background without interrupting the ADC’s conversion process, a replica switch is integrated into each sub-ADC to sample the designated ramp signal. The comparator determines the sign of the timing skew by comparing the sampled values of the replica and reference switches. This technique is more efficient than traditional statistical-based algorithms and demonstrates more rapid convergence speed. Furthermore, contrary to algorithms utilizing FIR filters or reference ADCs, the simplified timing skew detection and correction circuit provides lower power consumption and hardware overhead. To validate the proposed technique, it was applied to a 12-bit, 2 GS/s, 4-channel TI ADC. Simulation results demonstrate the feasibility and accuracy of this calibration technique.
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来源期刊
CiteScore
6.90
自引率
18.80%
发文量
292
审稿时长
4.9 months
期刊介绍: AEÜ is an international scientific journal which publishes both original works and invited tutorials. The journal''s scope covers all aspects of theory and design of circuits, systems and devices for electronics, signal processing, and communication, including: signal and system theory, digital signal processing network theory and circuit design information theory, communication theory and techniques, modulation, source and channel coding switching theory and techniques, communication protocols optical communications microwave theory and techniques, radar, sonar antennas, wave propagation AEÜ publishes full papers and letters with very short turn around time but a high standard review process. Review cycles are typically finished within twelve weeks by application of modern electronic communication facilities.
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