A digital implementation for PWM phase-frequency synchronization in SMPS systems

Luca Bizjak, E. Bodano, A. Gotovac, Sergii Tkachov
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Abstract

This paper describes a novel concept of PWM phase and frequency synchronization. This approach applies for digitally controlled switched mode power supplies (SMPS) which need to regulate the switching frequency externally. One of the well-known advantages of having a system with a controllable switching behavior is the mitigation of the Electromagnetic Interference (EMI), which leads to the system cost reduction as a smaller input filter is required. The proposed solution overcomes analog and digital state of the art drawbacks such as limitation of the synchronization frequency range, susceptibility to noise and glitches, undesired overshoots/undershoots on the output voltage and the tuning of the IC digital clock which leads to an over-constrained design. In order to confirm the synchronization performance the proposed solution is implemented as part of an SMPS controller integrated in a 130nm BCD (Bipolar-CMOS-DMOS) technology. The output voltage over/under-shoot caused by an abrupt frequency synchronization change has been analyzed and measured. The frequency and phase settling time have been characterized with respect to various configurations. The robustness against synchronization frequency and phase noise has been measured for different noise levels.
SMPS系统中PWM相频同步的数字实现
本文提出了一种新的PWM相位和频率同步的概念。该方法适用于需要外部调节开关频率的数字控制开关电源。具有可控开关行为的系统的一个众所周知的优点是减轻电磁干扰(EMI),这导致系统成本降低,因为需要更小的输入滤波器。提出的解决方案克服了模拟和数字技术的缺陷,如同步频率范围的限制,对噪声和故障的敏感性,输出电压的不期望过调/欠调以及IC数字时钟的调谐导致过度约束的设计。为了确认同步性能,提出的解决方案作为集成在130纳米BCD(双极cmos - dmos)技术中的SMPS控制器的一部分实现。对频率同步突变引起的输出电压过/欠冲进行了分析和测量。频率和相位稳定时间已被表征相对于不同的结构。对不同噪声水平下的同步频率和相位噪声进行了鲁棒性测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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