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A BIST Scheme for SNDR Testing of ΣΔ ADCs Using Sine-Wave Fitting

机译:使用正弦波拟合对ΣΔADC进行SNDR测试的BIST方案

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Sigma-Delta (ΣΔ) modulators have made possible the design of high-resolution Analogue-to-Digital Converters (ADCs) with relaxed analogue circuitry precision by moving most of the design complexity to the digital domain. However, testing these ΣΔ ADCs is becoming a costly task due to trends towards high-resolution implementations and associated increase in samples required to extract key specifications. In this paper, we propose a Built-in Self-Test (BIST) technique for high-resolution ΣΔ ADCs. The technique, mostly digital, moves most of the test complexity to the digital domain, that is in-line with the philosophy of ΣΔ modulation. Both the test signal generation and the output response analysis are performed on-chip. The stimulus, a sinusoid encoded in a binary bit stream, is chosen to have very high quality in the bandwidth of the converter with the quantization error laying outside of the analogue modulator's bandwidth. For the output response analysis, a sine-wave fitting algorithm is implemented on chip. For this, a digital sinusoidal stimulus of a very high precision is needed as a reference signal. In this paper, we generate this reference signal from the same input stimulus, by passing it through the digital filter already existing in the converter. Simulations results show the capability of this technique to obtain measurements of the SNDR (Signal-to-Noise-plus-Distortion Ratio) for a 16-bit audio ΣΔ ADC.
机译:Sigma-Delta(ΣΔ)调制器通过将大多数设计复杂性转移到数字领域,使设计具有宽松的模拟电路精度的高分辨率模数转换器(ADC)成为可能。但是,由于高分辨率实现的趋势以及提取关键指标所需的样本数量的增加,测试这些ΣΔADC已成为一项昂贵的工作。在本文中,我们提出了一种针对高分辨率ΣΔADC的内置自测(BIST)技术。该技术(主要是数字技术)将大多数测试复杂性移至了数字域,这符合ΣΔ调制的原理。测试信号生成和输出响应分析均在芯片上执行。选择刺激(以二进制比特流编码的正弦波),以使转换器的带宽具有非常高的质量,并且量化误差位于模拟调制器的带宽之外。为了进行输出响应分析,在芯片上实现了正弦波拟合算法。为此,需要非常高精度的数字正弦激励作为参考信号。在本文中,我们将参考信号通过相同的输入激励,使其通过转换器中已经存在的数字滤波器,从而产生参考信号。仿真结果表明,该技术具有获得16位音频ΣΔADC的SNDR(信噪比与失真比)的能力。

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