A capacitor-based D/A converter with continuous time output for low-power applications

L. Lynn, P. Ferguson
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引用次数: 2

Abstract

A digital to analog converter has been developed using switched capacitors as the basic DAC elements. The use of switching capacitors provides excellent matching without sacrificing die area, and allows for very low-power operation. However, the architecture provides significant challenges when used in a continuous-time application requiring a "smooth" output. A realization of this architecture in a standard 0.6 /spl mu/m CMOS process achieved 10 bits of linearity while consuming less than 200 /spl mu/A of current.
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一种基于电容的D/A转换器,具有连续时间输出,适用于低功耗应用
采用开关电容作为DAC的基本元件,研制了一种数模转换器。开关电容的使用在不牺牲芯片面积的情况下提供了出色的匹配,并允许非常低的功耗操作。然而,当在需要“平滑”输出的连续时间应用程序中使用时,该体系结构带来了重大挑战。在标准的0.6 /spl mu/m CMOS工艺中实现该架构,实现了10位线性度,同时消耗的电流小于200 /spl mu/A。
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Enhanced prediction of energy losses during adiabatic charging [CMOS circuit] A capacitor-based D/A converter with continuous time output for low-power applications Issues and directions in low power design tools: an industrial perspective Energy delay measures of barrel switch architectures for pre-alignment of floating point operands for addition A sequential procedure for average power analysis of sequential circuits
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