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Mitigation of Oscillator Pulling in SoCs

机译:减少振荡器引入SoC

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This paper presents a novel method to mitigate undesirable oscillator pulling effects in wireless transmitter architectures. In practice, coupling of the power amplifier (PA) signal caused by inductive or electromagnetic crosstalk, inevitably leads to injection pulling. Particularly, for nonconstant envelope modulation schemes such as Bluetooth enhanced data rate (EDR), GSM-EDGE, or WiFi, the pulling is extremely troublesome due to the amplitude-to-frequency (AM–FM) conversion effect. The difficulty to cope with this undesirable effect stems from the fact that the pulling is largely dependent on process spread and environmental factors like temperature and antenna load mismatch. This paper proposes a novel method based on stochastic-gradient algorithms to resolve the pulling effect. It can be realized inexpensively in digital design and does not rely on knowledge of the unpredictable crosstalk path which makes it extremely efficient to mitigate the pulling effect. To verify the novel idea, a prototype IC has been fabricated in 65 nm CMOS technology.
机译:本文提出了一种新颖的方法来减轻无线发射机架构中不希望有的振荡器拉动效应。实际上,由于电感或电磁串扰引起的功率放大器(PA)信号耦合不可避免地导致注入拉动。特别是对于非恒定包络调制方案,例如蓝牙增强数据速率(EDR),GSM-EDGE或WiFi,由于幅度到频率(AM-FM)转换效应,牵拉非常麻烦。应对这种不良影响的困难源于以下事实,即牵拉在很大程度上取决于过程的扩展以及温度和天线负载失配等环境因素。提出了一种基于随机梯度算法的拉动效应求解方法。它可以在数字设计中廉价地实现,并且不依赖于不可预测的串扰路径的知识,这使得减轻拉动效应极为有效。为了验证这一新想法,已采用65 nm CMOS技术制造了原型IC。

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