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A practical Δ-Σ modulator design method based on periodical behavior analysis

机译:基于周期性行为分析的实用Δ-Σ调制器设计方法

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A method for digital delta-sigma modulator design for fractional-N frequency synthesis is presented in this paper. The design method is based on the modulator periodical behavior analysis. The modulator is designed to maintain a constant output signal sequence length which can be controlled for all input dc levels. As a result, the quantization noise power is spread over a known, arbitrarily large number of tones within the Nyquist bandwidth. Therefore, the quantization noise power never concentrates into a few dominant spurious tones. The sequence length is controlled by applying predefined initial conditions and scaling modulator buses. Consequently, the spurious-free range can be controlled as a function of the bus width. Known modulator sequence length defines the time required for full modulator and synthesizer characterization.
机译:本文提出了一种用于分数N频率合成的数字delta-sigma调制器设计方法。该设计方法基于调制器周期性行为分析。调制器设计为保持恒定的输出信号序列长度,可以为所有输入直流电平控制该长度。结果,量化噪声功率分布在奈奎斯特带宽内的任意数量的已知音调上。因此,量化噪声功率永远不会集中到几个主要的寄生音调上。通过应用预定义的初始条件和缩放调制器总线来控制序列长度。因此,可以根据总线宽度来控制无杂散范围。已知的调制器序列长度定义了完整调制器和合成器特性描述所需的时间。

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