在换相模式下使用σ - δ adc

V. Zhmud, L. Dimitrov, A. Taichenachev
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引用次数: 2

摘要

模数转换器(ADC)在开关模式下用于转换来自多个源的信号的ADC手段。这被认为是适当的,因为人们认为这大大简化了硬件。如今,与由于使用开关模式而造成的测量精度损失相比,节省硬件的优势是可以忽略不计的,这是不合理的高。ADC开发人员仍然提供开关模式,将其纳入电路性能的实现中,并在用户隐藏中推荐它。本文对开关模式和无开关模式下的ADC进行了比较研究。本研究采用VisSim程序仿真完成。为了模拟工作原理,我们采用了sigma-delta-ADC,因为这种ADC由于成本低、精度高、速度快而变得越来越普遍,足以满足许多实际情况。仿真结果证实了不切换状态的原因。然而,如果切换是不可避免的,本文提供了减少切换产生的误差的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of sigma-delta-ADC in the commutation mode
Analog-to-digital converters (ADC) in switching mode are used to convert the signals from multiple sources of the ADC means. It was considered appropriate, since it was believed that this provides a significant simplification of the hardware. Today, the advantage of hardware saving is negligible in compare with the loss of measurement accuracy because of the use of switching mode, which is unreasonably high. ADC developers still offer switching mode, include it in the realization of the circuit performance and recommends it in the user hides. This paper describes carried out comparative study of the ADC in switching mode and this without switching. This study is done with VisSim program simulation. To simulate the operating principle sigma-delta-ADC were used because such ADC are becoming more widespread due to their low cost, high accuracy and speed, sufficient for many practical cases. The simulation results substantiate the reason of non-switched regime. If, however, switching is inevitable, the paper provides recommendations to reduce the error generated by the switching.
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