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An On-Chip Power Supply Regulator to Reduce the Switching Noise

机译:片上电源稳压器,可降低开关噪声

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In a synchronous clock-distribution network of typical automotive chips, digital circuits switch simultaneously on the clock edge; therefore, they generate high-switching (or $di$ /$dt$) noise on the power supply lines due to sharp peaks of the supply current, which is the source for electromagnetic emissions (EME). In this paper, we demonstrate an effective combination of two design techniques for $di$/ $dt$ noise reduction based on the supply current-shaping technique: 1) introducing an EME-suppressing regulator (EME-SR) with a digital feedback loop and 2) FM of the discrete-time EME-SR’s clock. The former technique reduces the time-domain peaks as well as the spectral power of the supply current by a discrete-time EME-SR and a tank capacitor. The latter technique reduces the peak spectral power of the supply current by spreading this power into the sidelobes.
机译:在典型的汽车芯片的同步时钟分配网络中,数字电路在时钟边沿同时切换。因此,由于电源电流的尖峰(这是电磁辐射(EME)的来源),它们在电源线上产生高开关噪声(或$ di $ / $ dt $)。在本文中,我们演示了基于电源电流整形技术的两种设计技术的有效组合,用于降低$ di $ / $ dt $噪声:1)引入具有数字反馈环路的EME抑制调节器(EME-SR) 2)离散时间EME-SR时钟的FM。前一种技术通过离散时间EME-SR和储能电容器来降低时域峰值以及电源电流的频谱功率。后一种技术通过将功率扩散到旁瓣来降低电源电流的峰值频谱功率。

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