Distortion Analysis for Programmable Analog Signals Generated Using FPGA

A. Hariton, C. Zet, C. Fosalau
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Abstract

Abstract Practical applications in electrical engineering often deal with analog signals, but there are employed also digital circuits and microcontrollers. Sometimes it is easier or cheaper to improvise DA and AD converters instead of using dedicated ones. This paper is a comparative analysis of how accurate the analog signals can be generated from digital systems, like Field Programmable Gate Arrays (FPGAs) using only additional passive circuits. For this analysis, different FPGAs families were tested. Two alternatives of generating analog signals were considered in this study: PWM and R2R network. The analysis has been performed for a common frequency band, from 100 Hz to 30 kHz, using a virtual instrument for building an automated test system. At 10 kHz the PWM module obtains better THD values, reaching even 0.013% and at 30 kHz the R2R module obtains better THD values, reaching even 0.222%.
基于FPGA的可编程模拟信号失真分析
电子工程中的实际应用通常处理模拟信号,但也有数字电路和微控制器。有时,即兴制作数模和模数转换器比使用专用转换器更容易或更便宜。本文对比分析了数字系统(如现场可编程门阵列(fpga))仅使用额外的无源电路就能产生的模拟信号的精度。为了进行分析,测试了不同的fpga系列。本研究考虑了两种产生模拟信号的方法:PWM和R2R网络。利用虚拟仪器构建自动化测试系统,对100 Hz至30 kHz的普通频段进行了分析。在10 kHz时,PWM模块获得更好的THD值,达到均匀的0.013%,在30 kHz时,R2R模块获得更好的THD值,达到均匀的0.222%。
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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