A Half-Bridge Gate-Driver for high-efficient Boost Converter Applications with single-sided ZVS and an adaptive Ringing Suppression Technique

Michael Hanhart, Jonas Zoche, Jan Grobe, L. Weihs, Leo Rolff, R. Wunderlich, S. Heinen
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Abstract

This paper proposes an integrated bootstrapped Half-Bridge (HB) gate driver, which is used in a synchronous boost converter for photovoltaic applications. The HB is operated with single-sided zero-voltage-switching (ZVS) at the low-side (LS) or high-side (HS), dependent on the inductor current sign, to minimize switching losses. The gate driver architecture is based on segmented and distributed output stages with split outputs for turn-on and turn-off. During turn-on, the gate current is limited to 360 mA initially and gets boosted to 1.2 A after the Miller-Plateau (MP) has been actively detected. This minimizes the di/dt in the reverse recovery phase and, secondly, reduces the turn-on time by 26 %. A non-overlap time between LS and HS stage is guaranteed by a supervisor circuit. The boost converter achieves 98.6 % peak efficiency.
一种用于单面ZVS和自适应振铃抑制技术的高效升压变换器的半桥栅驱动器
提出了一种集成自举半桥(HB)栅极驱动器,用于光伏应用的同步升压变换器。根据电感电流信号,HB在低侧(LS)或高侧(HS)使用单侧零电压开关(ZVS)工作,以最大限度地减少开关损耗。栅极驱动器架构基于分段和分布式输出级,具有用于开闭的分割输出。在导通期间,门电流最初被限制为360毫安,并在主动检测到米勒高原(MP)后被提升到1.2 A。这样可以最小化反向恢复阶段的di/dt,其次,可以将导通时间减少26%。LS级和HS级之间的不重叠时间由一个监督电路保证。升压变换器达到98.6%的峰值效率。
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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