采用无源脉冲调制器的数字校正ADC

Eric Gutierrez, L. Hernández, Ulrich Gaier, S. Walter, Liang Zou
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引用次数: 0

摘要

脉冲频率调制器最近被提出作为环形振荡器的替代方案,用于实现压控振荡器模拟数字转换器(VCO-ADC)。在本文中,我们在集成过程中提出了一种被动脉冲调制器,该调制器仅使用数字逆变器,并提供类似于环形振荡器的多相输出。振荡依赖于无源RC电路作为振荡器时间常数。该振荡器的电压-频率特性与输入电压呈非线性关系,与经典环形振荡器类似。然而,在所提出的电路中,非线性主要取决于RC产品的可预测方式,而不是电源电压(Vdd),温度或失配。我们在本文中展示了如何通过一种简单的算法在信号后处理中纠正非线性,该算法仅依赖于对抽取数据和已知电路参数进行操作的RC时间常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A digitally corrected ADC using a passive pulse frequency modulator
Pulse Frequency Modulators have been proposed recently as an alternative to ring oscillators in the implementation of Voltage-Controlled-Oscillators Analog to Digital Converters (VCO-ADC). In this paper, we propose a passive pulse frequency modulator in terms of the integration process that uses digital inverters only and provides a polyphase output similar to a ring oscillator. Oscillation depends on a passive RC circuit acting as oscillator time constant. The voltage-to-frequency characteristic of this oscillator shows a nonlinear relationship respect to the input voltage in a similar way as classical ring oscillators. However, in the proposed circuit the nonlinearity depends mainly in a predictable way from the RC product instead of supply voltage (Vdd), temperature or mismatch. We show in this paper how the nonlinearity can be corrected in the signal post-processing by a simple algorithm depending only on the RC time constant operating on the decimated data and circuit parameters that could be known.
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