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首页> 外文期刊>Electron Devices, IEEE Transactions on >Detailed Study on Dynamic Characteristics of a High-Performance SGT-MOSFET With Under-the-Trench Floating P-Pillar
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Detailed Study on Dynamic Characteristics of a High-Performance SGT-MOSFET With Under-the-Trench Floating P-Pillar

机译:沟道下浮动P柱高性能SGT-MOSFET的动态特性的详细研究

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We proposed a 150 V shielded-gate trench (SGT) power MOSFET with floating P-pillars under the trench and studied its static and dynamic characteristics, especially the transient capacitance and dynamic Rds(on) at high switching frequency. TCAD simulation demonstrated over 33% Rds(on) reduction compared with regular SGT-MOSFET. Up to MHz switching frequency, simulation indicates almost no Rds(on) increase in this device, meaning negligible dynamic Rds(on) penalty. On the other hand, elevated Coss is observed within a particular Vds range (40–90 V) as switching frequency increases, which translates to Qoss penalty. We investigated the underlying physical process for this Qoss change, and attributed it to the hole pilings in the undepleted region of the P-pillar. The overall parameters of this device, including Rds(on) and Rds(on)∗Qoss , are superior to regular SGT-MOSFET and are close to superjunction MOSFET, which is more expensive and challenging in manufacturing. Although a 150 V MOSFET is used as our study vehicle, the analyses and conclusions apply to any power devices that employ the proposed device architecture.
机译:我们提出了一个150 V的屏蔽栅沟槽(SGT)功率MOSFET,该沟槽下具有浮动P柱,并研究了其静态和动态特性,尤其是高开关频率下的瞬态电容和动态Rds(on)。 TCAD仿真显示,与常规SGT-MOSFET相比,Rds(on)降低了33%以上。在高达MHz的开关频率下,仿真表明该器件几乎没有Rds(on)增加,这意味着动态Rds(on)损失可忽略不计。另一方面,随着开关频率的增加,在特定的Vds范围(40–90 V)内观察到Coss升高,这转化为Qoss损失。我们研究了此Qoss变化的潜在物理过程,并将其归因于P柱未耗尽区域中的孔打桩。该器件的整体参数(包括Rds(on)和Rds(on)* Qoss)优于常规SGT-MOSFET,并且接近于超结MOSFET,这在制造上更昂贵且更具挑战性。尽管将150 V MOSFET用作我们的研究工具,但分析和结论适用于采用建议的器件架构的任何功率器件。

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