用于模数转换的高速节能环形振荡器

Leidy Mabel Alvero-Gonzalez, Luis Hernandez Corporales, Eric Gutierrez
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引用次数: 0

摘要

功耗与电压供应的高度依赖使得当前精细的CMOS技术的供电电压低于- 1v。采用环形振荡器实现的基于压控振荡器的模数转换器可以满足这一要求。然而,传统的环形振荡器的实现限制了振荡频率,因为缺乏可用的电压来馈送大电流。在本文中,我们提出了一种新的环形振荡器电路,克服了这个问题。只有两个设备之间的供应节点是建立一个延迟单元。这使我们能够减少某些振荡要求的电压供应。此外,连接到输出节点的器件数量越少,寄生电容就越低,可实现的最小时间延迟也会减少,从而提高了潜在的分辨率。对该电路进行了理论描述,并在65纳米CMOS工艺中进行了仿真验证。与传统实现进行了比较,显示了在分辨率、功耗和面积方面的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-Speed and Energy-Efficient Ring-Oscillator for Analog-to-Digital Conversion
Highly dependence of the power consumption with respect to the voltage supply makes current finer CMOS technologies become supplied with lower-than-1 V. Voltage-controlled-oscillator based analog-to-digital converters implemented with ring-oscillators scales properly with that requirement. However, conventional implementations of ring-oscillators limit the oscillation frequency due to the lack of available voltage to feed high currents. In this manuscript, we propose a novel circuit for a ring-oscillator that overcomes this issue. With only two devices between the supply nodes a delay cell is built. This allows us to reduce the voltage supply for certain oscillation requirements. In addition, the lower number of devices connected to the output nodes supposes lower parasitic capacitance and a reduction in the minimum achievable time delay, which increases the potential resolution. The proposed circuit is theoretically described and validated by simulation in a 65-nm CMOS process. Comparisons to the conventional implementations are made, showing improvements in terms of resolution, power, and area.
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