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A tight signal-band power bound on mismatch noise in a mismatch-shaping digital-to-analog converter

机译:失配整形数模转换器中的失配噪声限制了一个严格的信号带功率

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摘要

Many applications employ digital-to-analog converters (DACs) to obtain the advantages of digital processing (e.g., low power and physical size, resilience to noise, etc.) to generate signals, such as voltages, that are analog in nature. Given the appropriate numerical representation of its input, the DAC ideally behaves as a linear gain element. However, as a result of inevitable component mismatches, the output of a multibit DAC (i.e., a DAC designed to output more than two analog levels) is a nonlinear function of its input. The resulting distortion, called DAC noise , limits the overall signal-to-noise ratio (SNR) and hence the obtainable accuracy of the DAC. Mismatch-shaping DACs exploit built-in redundancy to suppress the DAC noise in the input signal's frequency band. Although mismatch-shaping DACs are widely used in commercial products, little theory regarding the structure of their DAC noise has been published to date. Consequently, designers have been forced to rely upon simulations to estimate DAC noise power and behavior, which can be misleading because the DAC noise depends on the DAC input. This paper addresses this problem. It presents an analysis of the DAC noise power spectral density (PSD) in a commonly used mismatch-shaping DAC: the dithered first-order low-pass tree-structured DAC. This design ensures that its DAC noise has a spectral null at dc (i.e., zero frequency) by generating digital, dc-free sequences using the same techniques that have been developed for line codes. An expression is derived for the DAC noise PSD that depends on the statistics of these sequences and is used to show various properties of the DAC noise. Specifically, an attainable bound is derived for the signal-band DAC noise power that can be used to predict worst case performance in practical circuits.
机译:许多应用采用数模转换器(DAC)以获得数字处理的优点(例如,低功率和物理尺寸,对噪声的适应性等)来生成本质上是模拟的信号,例如电压。给定其输入的适当数值表示形式,DAC理想地充当线性增益元件。但是,由于不可避免的组件失配,多位DAC(即设计为输出两个以上模拟电平的DAC)的输出是其输入的非线性函数。产生的失真(称为DAC噪声)限制了整体信噪比(SNR),从而限制了DAC的可获得精度。形状不匹配的DAC利用内置的冗余来抑制输入信号频带中的DAC噪声。尽管失配整形DAC已广泛用于商业产品中,但迄今为止,有关其DAC噪声结构的理论还很少。因此,设计人员不得不依靠仿真来估计DAC噪声功率和性能,这可能会产生误导,因为DAC噪声取决于DAC输入。本文解决了这个问题。它分析了一种常用的失配整形DAC:抖动的一阶低通树状DAC中的DAC噪声功率谱密度(PSD)。该设计通过使用针对线路代码开发的相同技术生成数字无直流序列,从而确保其DAC噪声在直流(即零频率)处具有频谱零点。导出了DAC噪声PSD的表达式,该表达式取决于这些序列的统计数据,并用于显示DAC噪声的各种特性。具体来说,得出信号带DAC噪声功率的可达到范围,该范围可用于预测实际电路中的最坏情况。

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