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Comparison of a feed-forward phase domain model and a time domain behavioral model for predicting mismatch-related noise floor and spurs in fractional-N frequency synthesizers

机译:前馈相位域模型的比较和用于预测不匹配相关的噪声底板的时域行为模型及分数N频率合成器中的刺激

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Static mismatch between the charge pump up and down currents in a fractional-N frequency synthesizer is known to elevate the in-band noise floor and to produce spurs. Offset current can be used to reduce nonlinear effects by moving the operating point of the charge-pump to a more linear region of its transfer characteristic. While both positive and negative offset current will work, one direction requires a smaller offset current and therefore adds less noise to the system. In this paper, a simplified feed-forward phase domain model is compared with a full time-domain behavioral model. We show that the feedforward model accurately predicts both the mismatch-related noise floor and the spurs. We also note a limitation of the feedforward model, namely that it fails to predict the 20 dB/decade slope due to non-uniform sampling.
机译:已知分数N频率合成器中的电荷泵上下电流之间的静态不匹配,用于提升带内噪声底板并产生马刺。偏移电流可用于通过将电荷泵的操作点移动到其传递特性的更线性区域来减少非线性效果。虽然正负偏移电流都是工作的,但一个方向需要较小的偏移电流,因此对系统增加了较少的噪声。本文将简化的前馈相位域模型与全时域行为模型进行比较。我们表明前馈模型准确地预测与不匹配相关的噪声底板和马刺。我们还注意到前馈模型的限制,即它未能预测由于不均匀的采样引起的20dB /十个斜率。

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