Driving and sensing design of an enhancement-mode-GaN phaseleg as a building block

Lingxiao Xue, D. Boroyevich, P. Mattavelli
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引用次数: 8

Abstract

The approach of integrating a GaN phaseleg, current-boost drivers, and decoupling capacitors can significantly minimize the power loop inductance and the gate loop inductance. However, the driving scheme and sensing scheme are still critical and challenging in order to survive the highly noisy environment due to the GaN switching. A driving scheme of digital isolator plus isolated power supply is used for both switches of the phaseleg. To suppress the noise propagated to the PWM generating board, a common-mode choke and two Y-capacitors are used. A GaN boost converter proved the reduction of noise current through the PWM cables. For the sensing circuit design, filtering is necessary for all the sensors. Even with the filters, it turns out that only the DC current sensor can be placed with the phaseleg while the DC voltage sensor and AC current sensor have to stay away from the high dv/dt and di/dt nodes.
以增强型氮化镓相链为基础的驱动与传感设计
集成GaN相控器、电流升压驱动器和去耦电容的方法可以显著降低功率环路电感和门环路电感。然而,驱动方案和传感方案仍然是关键和具有挑战性的,以便在高噪声环境中生存,由于氮化镓开关。相位计的两个开关采用数字隔离器加隔离电源的驱动方案。为了抑制传播到PWM产生板的噪声,使用了一个共模扼流圈和两个y型电容。GaN升压变换器证明了通过PWM电缆可以降低噪声电流。在传感电路设计中,需要对所有传感器进行滤波。即使使用滤波器,事实证明只有直流电流传感器可以与相位传感器一起放置,而直流电压传感器和交流电流传感器必须远离高dv/dt和di/dt节点。
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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