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A stable multi-mode fractional-N frequency synthesizer using charge pump current calibration

机译:使用电荷泵电流校准的稳定多模分数N频率合成器

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摘要

To solve the problem of stability of the multi-mode fractional-N synthesizer during mode transitions, a method of calibrating the charge pump current according to divider ratio is proposed in this paper to stabilize the loop bandwidth. This method keeps the variation of loop bandwidth within a smaller range in different divider ratios. A multi-mode fractional-N synthesizer using this method can operate stably in seven modes of three positioning systems. Simulation results show that the variation of normalized ICP•KVCOVCO in seven modes is in the range of −2.8% and 4%. For each mode, the in-band and out-of-band phase noises are no lager than −93dBc and −119dBc, respectively. The setting time is less than 24μs. The total power consumption is 15.2mW under 1.8V power supply.
机译:为了解决多模小数N分频合成器在模式转换过程中的稳定性问题,提出了一种根据分频比校准电荷泵电流的方法,以稳定环路带宽。这种方法将环路带宽的变化保持在不同分频比的较小范围内。使用此方法的多模式小数N分频合成器可以在三种定位系统的七种模式下稳定运行。仿真结果表明,归一化的I CP •K VCO VCO 在七个模式下的变化范围为-2.8%和4 %。对于每种模式,带内和带外相位噪声分别不大于-93dBc和-119dBc。设定时间小于24μs。在1.8V电源下,总功耗为15.2mW。

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