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A 1200-V, 60-A SiC MOSFET Multichip Phase-Leg Module for High-Temperature, High-Frequency Applications

机译:适用于高温,高频应用的1200V,60A SiC MOSFET多芯片相腿模块

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摘要

In this paper, a high-temperature, high-frequency, wire-bond-based multichip phase-leg module was designed, fabricated, and fully tested. Using paralleled Silicon Carbide (SiC) MOSFETs, the module was rated at 1200 V and 60 A, and was designed for a 25-kW three-phase inverter operating at a switching frequency of 70 kHz, and in a harsh environment up to 200 °C, for aircraft applications. To this end, the temperature-dependent characteristics of the SiC MOSFET were first evaluated. The results demonstrated the superiority of the SiC MOSFET in both static and switching performances compared to Si devices, but meanwhile did reveal the design tradeoff in terms of the device's gate oxide stability. Various high-temperature packaging materials were then extensively surveyed and carefully selected for the module to sustain the harsh environment. The electrical layout of the module was also optimized using a modeling and simulation approach, in order to minimize the device parasitic ringing during high-speed switching. Finally, the static and switching performances of the fabricated module were tested, and the 200 °C continuous operation of the SiC MOSFETs was verified.
机译:本文设计,制造并充分测试了一种基于高温,高频,引线键合的多芯片相脚模块。使用并联的碳化硅(SiC)MOSFET,该模块的额定电压为1200 V和60 A,并且是为25 kW三相逆变器设计的,该逆变器在70 kHz的开关频率下以及高达200°C的恶劣环境中运行C,用于飞机应用。为此,首先评估了SiC MOSFET的温度相关特性。结果表明,与SiC器件相比,SiC MOSFET在静态和开关性能​​上均具有优势,但同时也揭示了器件在栅极氧化层稳定性方面的设计折衷。然后,对各种高温包装材料进行了广泛的调查,并仔细选择了用于模块的模块,以维持恶劣的环境。还使用建模和仿真方法优化了模块的电气布局,以最大程度地减少高速开关期间的器件寄生振铃。最后,测试了所制造模块的静态和开关性能​​,并验证了SiC MOSFET在200°C下的连续操作。

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