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Noise shaping techniques for analog and time to digital converters using voltage controlled oscillators

机译:使用压控振荡器的模拟和时间数字转换器的噪声整形技术

摘要

Advanced CMOS processes offer very fast switching speed and high transistor density that can be utilized to implement analog signal processing functions in interesting and unconventional ways, for example by leveraging time as a signal domain. In this context, voltage controlled ring oscillators are circuit elements that are not only very attractive due to their highly digital implementation which takes advantage of scaling, but also due to their ability to amplify or integrate conventional voltage signals into the time domain. In this work, we take advantage of voltage controlled oscillators to implement analog- and time-to-digital converters with first-order quantization and mismatch noise-shaping. To implement a time-to-digital converter (TDC) with noise-shaping, we present a oscillator that is enabled during the measurement of an input, and then disabled in between measurements. By holding the state of the oscillator in between samples, the quantization error is saved and transferred to the following sample, which can be seen as first-order noise-shaping in the frequency domain. In order to achieve good noise shaping performance, we also present key details of a multi-path oscillator topology that is able to reduce the effective delay per stage by a factor of 5 and accurately preserve the quantization error from measurement to measurement. An 11-bit, 50Msps prototype time-to-digital converter (TDC) using a multi-path gated ring oscillator with 6ps of delay per stage demonstrates over 20dB of ist-order noise shaping. At frequencies below 1MHz, the TDC error integrates to 80fsrms for a dynamic range of 95dB with no calibration of differential non-linearity required. The 157x258pm TDC is realized in 0.13ipm CMOS and operates from a 1.5V supply.
机译:先进的CMOS工艺提供了非常快的开关速度和很高的晶体管密度,可用于以有趣且非常规的方式来实现模拟信号处理功能,例如通过将时间用作信号域。在这种情况下,压控环形振荡器是电路元件,不仅由于其利用比例缩放的高度数字实现而非常吸引人,而且还由于其将常规电压信号放大或整合到时域的能力而非常吸引人。在这项工作中,我们利用压控振荡器来实现具有一阶量化和失配噪声整形的模数转换器和时间数字转换器。为了实现具有噪声整形的时间数字转换器(TDC),我们提供了一个振荡器,该振荡器在输入测量期间启用,然后在两次测量之间禁用。通过在两个采样之间保持振荡器的状态,可以保存量化误差并将其转移到以下采样,这可以看作是频域中的一阶噪声整形。为了获得良好的噪声整形性能,我们还介绍了多路径振荡器拓扑的关键细节,该拓扑能够将每级的有效延迟降低5倍,并精确地保留每次测量之间的量化误差。一个使用多路径门控环形振荡器的11位,50Msps原型时间数字转换器(TDC),每级延迟6ps,展示了20dB以上的阶阶噪声整形。在低于1MHz的频率下,对于95dB的动态范围,TDC误差积分到80fsrms,而无需校准差分非线性。 157x258pm TDC由0.13ipm CMOS实现,并采用1.5V电源供电。

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