M-2M数模转换器的设计及线性度分析

Israel Sperotto, H. Klimach, S. Bampi
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引用次数: 0

摘要

本文设计了一个6位M-2M梯形数模转换器(DAC),适合在200 mV或更低的电源电压下工作。由于MOS晶体管在如此低的电源下工作在亚阈值区域,因此使用全区域连续MOSFET模型进行失配分析。通过仿真对电路的性能进行了评价,并对线性度、电源电压和采样率之间的权衡进行了研究。提出了采用商用130纳米工艺和标准晶体管,工作频率为200 mV、采样率为5.1MS/s的6位M-2M DAC是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and linearity analysis of a M-2M DAC for very low supply voltage
This work presents the design of a 6 bits M-2M ladder Digital-to-Analog Converter (DAC) proper for operation under supply voltages of 200 mV or lower. Since the MOS transistors are operating in the subthreshold region under such low supply, the mismatch analysis was done using an all-region continuous MOSFET model. The performance of the circuit is evaluated through simulations and the trade-offs between linearity, supply voltage and sampling rate are investigated in the paper. It is proposed that a 6 bits M-2M DAC operating under 200 mV and with sampling rate of 5.1MS/s is feasible using a commercial 130 nm process and standard transistors.
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