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Shaping Switching Waveforms in a 650 V GaN FET Bridge-Leg Using 6.7 GHz Active Gate Drivers

机译:使用6.7 GHz有源栅极驱动器整形650 V GaN FET桥腿中的开关波形

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摘要

The application of active gate driving to 40 V GaN FETs has previously been shown to reduce ringing and EMI generating spectral content in the switch-node voltage waveforms. This paper, for the first time, shows active gate driving applied to 650 V GaN FETs, and the shaping of device voltages and currents during switching transients. A custom integrated active gate driver is used, which can dynamically vary its output resistance from 0.12 to 64 Ω, with a 150 ps timing resolution.At 200 V DC link and 10 A load current, a significant degree of control over the active-switch drain current and switch-node voltage is demonstrated, for both buck and boost mode operation. The current overshoot and ringing in the power waveforms due to circuit parasitics are actively reduced and the voltage oscillations in the DC link are damped. The timing of resistance sequences is shown to be critical to the success of active shaping methods, thus justifying the unparalleled 150 ps resolution of the driver.Under continuous operation and at reduced ratings of 100 V and 2 A load current the significant control of the switch node voltage and voltage spectra is also demonstrated. The switching delay is reduced, and parts of the spectrum are reduced by up to 9 dB, equivalent to the effect of tripling the gate resistance but without any reduction in the overall switching speed.
机译:先前已经证明,将有源栅极驱动应用于40 V GaN FET可以减少开关节点电压波形中的振铃和EMI产生频谱含量。本文首次展示了应用于650 V GaN FET的有源栅极驱动,以及在开关瞬态过程中器件电压和电流的整形。使用定制的集成有源栅极驱动器,该驱动器可以动态地将其输出电阻从0.12改变为64Ω,时序分辨率为150 ps。在200 V DC链路和10 A负载电流下,对有源开关的控制程度很高演示了降压和升压模式下的漏极电流和开关节点电压。由于电路寄生效应,电流波形中的电流过冲和振铃被有效地减少,并且直流母线中的电压振荡得到抑制。电阻顺序的时序对于有源整形方法的成功至关重要,因此证明了驱动器无与伦比的150 ps分辨率是合理的。在连续运行以及降低额定电压100 V和2 A负载电流的情况下,开关的有效控制还演示了节点电压和电压谱。减少了开关延迟,频谱的一部分最多减少了9 dB,这相当于使栅极电阻增加三倍的效果,但总体开关速度没有任何降低。

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