Gao Jian, Ye Peng, Zeng Hao, Song Jinpeng, Wei Wentao, Yang Kuojun
School of Automation Engineering, University of Science and Technology of China, Chengdu 611731, China.
Rev Sci Instrum. 2019 Feb;90(2):025102. doi: 10.1063/1.5063660.
Because of the exponential increase of sampling rate, time-interleaved analog-to-digital converter (TIADC) has a fast growth in the high-speed applications. However, the channel mismatch error is a serious challenge for the performance of TIADC. In this article, we address the timing skew mismatch error and propose a novel adaptive calibration method. The principle and operating process of the calibration algorithm are explained. To validate the proposed technique, we designed a four-channel TIADC-based digital oscilloscope with a sampling rate of 10 GS/s. Based on this instrumentation platform, (i) calibration algorithm was implemented by hardware; and (ii) a test platform consisting of advanced instruments and tools was setup to testify the effect and robustness of proposed algorithm. Moreover, the technical details of instrumentation are described for the first time. The experimental results show that the calibration algorithm significantly suppresses the distortions due to timing skew mismatch error. The TIADC-based instrumentation achieves spurious-free dynamic range of 52.48 dB and effective number of bits of 5.83 bit, respectively. Besides, the complexity of the proposed algorithm is compared and discussed.
由于采样率呈指数级增长,时间交织模数转换器(TIADC)在高速应用中发展迅速。然而,通道失配误差对TIADC的性能是一个严峻挑战。在本文中,我们解决了定时偏斜失配误差问题,并提出了一种新颖的自适应校准方法。阐述了校准算法的原理和操作过程。为验证所提出的技术,我们设计了一款基于四通道TIADC、采样率为10 GS/s的数字示波器。基于此仪器平台,(i)通过硬件实现校准算法;(ii)搭建了一个由先进仪器和工具组成的测试平台,以验证所提算法的效果和鲁棒性。此外,首次描述了仪器的技术细节。实验结果表明,该校准算法显著抑制了由定时偏斜失配误差引起的失真。基于TIADC的仪器分别实现了52.48 dB的无杂散动态范围和5.83位的有效位数。此外,还对所提算法的复杂度进行了比较和讨论。