高速低失真自启动开关的分析与设计

Jing Ma, Yuanqi Hu
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引用次数: 0

摘要

自举开关广泛应用于各种需要高速和高线性采样的应用中。然而,开关的寄生效应引起的畸变在以前没有被彻底地分析过。本文探讨了源漏交换、寄生电容分割和电荷再分配三个基本的非理想因素,并分别从数学上推导了它们的影响。发现导通电阻和自举电容对采样信号的三次谐波失真都有二次(40 dB/dec)的影响。随后,提出了设计准则,并通过2-MSPS- 90db - thd设计案例进行了验证。各种设计参数的综合仿真表明,我们的设计流程可以在不牺牲性能的情况下优化设计成本,因此对自举开关的设计人员具有建设性意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Design of High-Speed and Low-Distortion Bootstrapped Switches
Bootstrapped switches are widely applied in a variety of applications requiring high-speed and high-linearity sampling. However, the parasitic effects of switches causing distortions have not been thoroughly analysed before. In this paper three fundamental non-ideal factors have been explored, which are source-drain exchange, parasitic capacitive division and charge redistribution, and their impact has been mathematically derived respectively. It is found that both on-resistance and the bootstrapped capacitor have a quadratic (40 dB/dec) impact on the third harmonic distortion of sampled signals. Afterward, a design guideline is proposed and verified by a 2-MSPS-&-90dB-THD design case. Comprehensive simulation with various design parameters shows that our design flow could feasibly optimise the design cost without sacrificing performance and hence being constructive for designers of bootstrapped switches.
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