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  5. An All-Digital Timing Mismatch Calibration Algorithm Based on Reference Channel for TIADC

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Article
English
2024

An All-Digital Timing Mismatch Calibration Algorithm Based on Reference Channel for TIADC

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English
2024
Electronics
Vol 13 (6)
DOI: 10.3390/electronics13061058

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Haijing Liu
Haijing Liu

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Wei Zhong
Yemin Dong
Lili Lang
+5 more

Abstract

This paper proposes an all-digital calibration algorithm that utilizes a reference channel to suppress the timing mismatch in the Time-Interleaved Analog-to-Digital Converter (TIADC). The output of the reference channel is aligned with each sub-channel in turn, therefore enabling the simultaneous sampling and conversion of the same input signal. First, the statistical characteristics across the channels are employed for estimating the timing mismatch; then, by comparing the output difference between the reference channel and the sub-channels that are sampled simultaneously, the deviation of the derivator can be calibrated. Finally, combining both calibration results yields an accurate final output. This proposed algorithm provides an effective solution to improve TIADC performance in high-speed data acquisition systems. The proposed architecture is applied to a 12-bit 2.4 GS/s four-channel TIADC model, and then its effectiveness is verified. The simulation results exhibit that the Effective Number Of Bits (ENOB) at an input signal frequency of 984 MHz shows a remarkable improvement from 6.88 bits to 11.92 bits. The effectiveness of this technique is also demonstrated through the off-chip calibration of a commercial 12-bit four-channel 2 GS/s TIADC using a 680 MHz input signal that is based on the actual chip results.

How to cite this publication

Wei Zhong, Yemin Dong, Lili Lang, Wei Xiong, Lin Sun, Yu Liu, Haijing Liu, Zhenwei Zhang (2024). An All-Digital Timing Mismatch Calibration Algorithm Based on Reference Channel for TIADC. Electronics, 13(6), pp. 1058-1058, DOI: 10.3390/electronics13061058.

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Publication Details

Type

Article

Year

2024

Authors

8

Datasets

0

Total Files

0

Language

English

Journal

Electronics

DOI

10.3390/electronics13061058

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