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Negative Resistance in Cascode Transistors

机译:Cascode晶体管中的负电阻

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Cascode topology which includes a high-voltage GaN and a low-voltage Si transistor is an attractive device concept, as it takes advantage of the low ON-resistance of GaN while still being compatible with Si gate drivers. It demonstrates the highest threshold voltage among normally-OFF GaN devices, which is a favorable feature in power electronics. However, the observation of instability in power circuits using cascode devices highlights the need for a careful analysis to reveal the origins of this phenomenon, to fulfill the unique features of these devices in high efficiency and reliable power converters. In this letter, we demonstrate the presence of negative resistance in cascode devices, which explains the previously reported large-signal instabilities. We describe a theory to characterize this negative resistance behavior based on the subthreshold-voltage operation of the high-voltage GaN transistors, and propose guidelines to resolve this issue in cascode devices. Negative resistance behavior, although not favorable for a power transistor, is of great importance in high-frequency electronics, with applications in reflection-type power amplifiers. These results, together with the presented analysis, could guide the development of high-stability, low-loss devices for future efficient power converters.
机译:包括高压GaN和低电压Si晶体管的Cascode拓扑是一种吸引力的设备概念,因为它利用GaN的低导通电阻,同时仍然与SI栅极驱动器兼容。它展示了常关GAN设备之间的最高阈值电压,这是电力电子设备的有利功能。然而,使用Cascode器件的电源电路中不稳定性的观察突出了仔细分析来揭示这种现象的起源,以满足高效率和可靠的功率转换器中这些器件的独特特征。在这封信中,我们展示了Cascode器件中的负阻的存在,这解释了先前报告的大信号不稳定。我们描述了一种基于高压GaN晶体管的子划分电压操作来表征这种负电阻行为的理论,并提出了在CAScode设备中解决此问题的指导。负电阻行为虽然不利于电源晶体管,但在高频电子设备方面具有很大的重要性,在反射型功率放大器中的应用。这些结果与所提出的分析一起,可以指导开发高稳定性,低损耗装置,用于未来的高效功率转换器。

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