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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II, Express Briefs >A fractional- N frequency synthesizer architecture utilizing a mismatch compensated PFD/DAC structure for reduced quantization-induced phase noise
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A fractional- N frequency synthesizer architecture utilizing a mismatch compensated PFD/DAC structure for reduced quantization-induced phase noise

机译:利用失配补偿PFD / DAC结构的分数N频率合成器架构,可减少量化引起的相位噪声

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摘要

Techniques are proposed to dramatically reduce the impact of quantization noise in ΣΔ fractional-N synthesizers, thereby improving the existing tradeoff between phase noise and bandwidth that exists in these systems. The key innovation is the introduction of new techniques to overcome nonidealities in a phase-frequency detector (PFD)/digital-to-analog converter (DAC) structure, which combines the functionality of both phase detector and cancellation DAC into a single element. The proposed architecture achieves better gain matching between the phase-error signal and cancellation DAC than offered by previous approaches. Dynamic element matching techniques are introduced to mitigate the effects of PFD/DAC unit element and timing mismatch on synthesizer phase noise performance. We present behavioral simulations of an example application of this technique that demonstrates 36 dB reduction in broad-band quantization-induced phase noise with the use of a 7-b PFD/DAC. Simulations further demonstrate that fractional spurs are rejected to levels <-90 dBc when a low-cost, low-overhead digital gain correction technique is employed.
机译:提出了一些技术来显着降低ΣΔ小数N分频合成器中量化噪声的影响,从而改善这些系统中存在的相位噪声与带宽之间的折衷。关键的创新是引入了新技术,以克服相频检测器(PFD)/数模转换器(DAC)结构中的非理想性,该结构将相位检测器和抵消DAC的功能组合到一个元件中。与先前方法相比,所提出的架构在相位误差信号和抵消DAC之间实现了更好的增益匹配。引入动态元件匹配技术以减轻PFD / DAC单元元件和时序失配对合成器相位噪声性能的影响。我们提供了此技术示例应用的行为仿真,该仿真演示了使用7-b PFD / DAC可使宽带量化引起的相位噪声降低36 dB。仿真进一步表明,当采用低成本,低开销的数字增益校正技术时,小杂散会被抑制到<-90 dBc的水平。

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