Challenge on compact size DC-DC buck converters with high-speed current sensor and on-chip inductors

Shi Chen, C. Hsieh, Ke-Horng Chen
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引用次数: 1

Abstract

This paper proposes a compact size DC-DC buck converter toward on-chip inductors and minimized external components. Multi-phase, high switching frequency and pseudo continuous conduction mode (PCCM) techniques achieve the possibility to implement on-chip inductors. The effective inductance is about 20nH. Due to high switching frequency above 20MHz, it is a challenge to have a highly accurate current sense for high performance of converters. Simulation results demonstrate that the accuracy of high-speed current sensor is about 95%. Besides, mode switch between pulse width modulation (PWM) and pulse frequency modulation (PFM) alleviates the limitation of high-speed current sensor in case of light load condition. Compact size design of converter is an advanced technique as a power module for system-on-chip (SOC) designs.
具有高速电流传感器和片上电感的小型化DC-DC降压变换器面临的挑战
本文提出了一种紧凑的DC-DC降压变换器,采用片上电感和最小化外部元件。多相、高开关频率和伪连续导通模式(PCCM)技术实现了片上电感的实现。有效电感约为20nH。由于20MHz以上的高开关频率,对高性能转换器具有高精度的电流检测是一项挑战。仿真结果表明,高速电流传感器的测量精度可达95%左右。此外,脉冲宽度调制(PWM)和脉冲频率调制(PFM)之间的模式切换,缓解了高速电流传感器在轻负载情况下的局限性。转换器的小型化设计是片上系统(SOC)电源模块设计的一项先进技术。
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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