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High-dv/dt-Immune Parameter-Adaptive Synchronous Rectifier (SR) Driving Scheme in High-Frequency High-Power-Density Applications

机译:高频高功率密度应用中的高DV / DT-免疫参数 - 自适应同步整流器(SR)驱动方案

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The synchronous rectifier (SR) is usually utilized to reduce the conduction loss and reverse recovery loss compared with the conventional diode bridge rectifier. However, the precise detection of the SR current zero-crossing is very challenging in high-frequency and high-power-density applications. The commercial SR drivers suffer from poor zero-crossing detection accuracy due to the device package inductance. Meanwhile, the conventional diode/FET blocking approach has over-voltage and oscillation issues during the high dv/dt transients. In this paper, a novel self-driven drain-to-source voltage sensing circuit is proposed. The circuit provides a paralleled low-impedance path to bypass the displacement current during the high dv/dt transients, which addresses the over-voltage and oscillation issues. Moreover, the adaptive SR on-time tuning algorithm is implemented, which eliminates the zero-crossing detection errors caused by the package and loop stray inductance. A 3.3 kW, 500 kHz CLLC resonant converter prototype is built to validate the proposed SR driving scheme. The prototype demonstrates the peak efficiency of 97.6% and the power density of 130 W/inch3.
机译:与传统二极管桥式整流器相比,同步整流器(SR)通常用于降低导通损耗和反向恢复损耗。然而,SR电流零交叉的精确检测在高频和高功率密度应用中非常具有挑战性。由于器件封装电感,商业SR驱动器由于设备封装电感而遭受差的零交叉检测精度。同时,传统的二极管/ FET阻挡方法在高DV / DT瞬变期间具有过电压和振荡问题。在本文中,提出了一种新型自驱动漏极 - 源极电压感测电路。该电路提供了一个平行的低阻抗路径,以在高压/ DT瞬变期间绕过位移电流,该瞬变解决过电压和振荡问题。此外,实现了自适应SR随时调谐算法,其消除了由包装和环路杂散电感引起的过零检测误差。建立3.3千瓦,500 kHz CLLC谐振转换器原型以验证所提出的SR驾驶方案。原型表现出97.6%的峰值效率,功率密度为130英/英寸 3

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