Experimental Characterization of the Energy Consumption of ADC Embedded into Microcontrollers Operating in Low Power

F. Reverter, M. Gasulla
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引用次数: 5

Abstract

This work aims to experimentally characterize the energy consumption of analog-to-digital converters (ADC) embedded into microcontroller units (MCU) operating in low power for autonomous sensor applications. The study is carried out at low and high operating frequencies, and for different numbers of conversion bits. In addition, this work not only takes into account the energy to do the conversion, but also the wake-up energy, which is implicit to any conversion performed by an embedded ADC. The contribution of this wake-up energy can be quite significant, especially when the conversion is performed at high frequency. Experimental tests have been done using a commercial low-power MCU (MSP430FR5969 from Texas Instruments) that includes a 12-bit ADC.
低功耗下嵌入微控制器的ADC能耗的实验表征
这项工作旨在通过实验表征嵌入微控制器单元(MCU)中的模数转换器(ADC)在低功耗下运行的能量消耗,用于自主传感器应用。该研究在低、高工作频率和不同的转换比特数下进行。此外,这项工作不仅考虑了进行转换的能量,还考虑了唤醒能量,这对嵌入式ADC执行的任何转换都是隐含的。这种唤醒能量的贡献可以是相当显著的,特别是当转换在高频率下进行时。实验测试使用商用低功耗MCU(德州仪器的MSP430FR5969),其中包括一个12位ADC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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