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A Nonuniform Sampling ADC Architecture With Reconfigurable Digital Anti-Aliasing Filter

机译:具有可重配置数字抗混叠滤波器的非均匀采样ADC体系结构

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This work proposes a nonuniform sampling analog-to-digital converter (ADC) architecture that incorporates a reconfigurable digital anti-aliasing (AA) filter in the asynchronous digital domain. Considering applications where the signal frequency, bandwidth, or activity may significantly vary over time and operating conditions, it provides high flexibility, relaxes analog AA filter requirements, adapts its sampling rate according to the incoming signal, and interfaces seamlessly with synchronous digital processers. In addition, the proposed ADC architecture relaxes voltage quantization by introducing time quantization, which favors future technology scaling. Furthermore, approximated analytical noise models are derived to study the underlying quantization effects on the proposed digital AA filter. It explores the theoretical bounds of achievable signal-to-noise ratio (SNR) given different ADC and filter design parameters. Finally, some hardware design considerations and limitations are discussed.
机译:这项工作提出了一种非均匀采样模数转换器(ADC)架构,该架构在异步数字域中结合了可重新配置的数字抗混叠(AA)滤波器。考虑到信号频率,带宽或活动可能随时间和工作条件而显着变化的应用,它提供了高度的灵活性,放宽了模拟AA滤波器的要求,根据输入信号调整其采样率,并与同步数字处理器无缝连接。此外,拟议的ADC体系结构通过引入时间量化来放松电压量化,这有利于未来的技术扩展。此外,推导了近似的分析噪声模型,以研究对拟议的数字AA滤波器的潜在量化影响。它探讨了在给定不同ADC和滤波器设计参数的情况下可达到的信噪比(SNR)的理论界限。最后,讨论了一些硬件设计注意事项和限制。

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