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Design and Characterization of a Sampling System Based on $Sigma$–$Delta$ Analog-to-Digital Converters for Electrical Metrology

机译:基于$ Sigma $ – $ Delta $模数转换器的电子计量采样系统的设计与表征

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This paper describes a sampling system designed using a commercial sigma–delta analog-to-digital converter ($Sigma$–$ Delta$ ADC). In addition to characterization measurements using a conventional high-quality signal generator, a Josephson waveform synthesizer that provides ultimately noise- and drift-free voltages was used. To evaluate the suitability of this sampling system as part of a transfer power standard, additional comparisons of the root-mean-square (RMS) values measured were performed against a thermal converter and the primary power sampling standard at the Physikalisch-Technische Bundesanstalt, Braunschweig, Germany. Initial analysis of the measurement data shows an effective resolution in the range of 18–19 bits at an equivalent sampling rate of 64 kHz. The integral nonlinearity error of the system was measured to be within $pm 7 mu hbox{V/V}$ or one least significant bit at this resolution.
机译:本文介绍了使用商用sigma-delta模数转换器($ Sigma $-$ Delta $ ADC)设计的采样系统。除了使用常规的高质量信号发生器进行特性测量外,还使用了可提供最终无噪声和无漂移电压的Josephson波形合成器。为了评估此采样系统是否适合作为传输功率标准的一部分,在不伦瑞克的物理技术联合会上对热转换器和主要功率采样标准进行了测量均方根(RMS)值的其他比较,德国。对测量数据的初步分析显示,等效采样率为64 kHz时,有效分辨率在18-19位范围内。经测量,系统的积分非线性误差在$ pm 7 mu hbox {V / V} $以内或该分辨率下的最低有效位。

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