首页> 外文会议>2019 10th International Conference on Power Electronics and ECCE Asia >Evaluation of Extra High Voltage (XHV) Power Module for Gen3 10 kV SiC MOSFETs in a Mobile Utility Support Equipment based Solid State Transformer (MUSE-SST)
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Evaluation of Extra High Voltage (XHV) Power Module for Gen3 10 kV SiC MOSFETs in a Mobile Utility Support Equipment based Solid State Transformer (MUSE-SST)

机译:在基于移动设备支持设备的固态变压器(MUSE-SST)中用于Gen3 10 kV SiC MOSFET的超高压(XHV)电源模块的评估

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摘要

MV solid state transformers enabled by SiC semiconductor devices is a promising replacement to conventional low frequency transformers. However, when MV SiC devices are used in converter applications, they are exposed to a high peak stress (5 kV to 10 kV) and a very high dv / dt (10 kV/µS to 100 kV/µS). Operating these semiconductor devices at these high peak stresses require careful designing from the packaging point of view, as well as designing the auxiliary systems such as the gate drivers and busbars, to handle the peak stress conditions. Recently, an extra high voltage (XHV) power module has been developed by Wolfspeed to package the 10 kV SiC MOSFETs for continuous and reliable operation. This paper aims at testing these modules in continuous operation for qualifying their operation in a MV solid state transformer. Reliable operation of these modules require the development of reliable auxiliary parts including gate drivers, bus bars and inductors. Design and development of the auxiliary system is also carried out. Successful tests demonstrating operation at MV levels are also shown. These tests serve as a qualification method for using these devices in a MV solid state transformer. It is envisaged that successful operation of these devices would accelerate the growth and deployment of MV SiC devices for field operation.
机译:由SiC半导体器件实现的MV固态变压器是对传统低频变压器的有希望的替代。但是,当将MV SiC器件用于转换器应用时,它们将承受较高的峰值应力(5 kV至10 kV)和非常高的dv / dt(10 kV / µS至100 kV / µS)。从封装的角度来看,要使这些半导体器件在如此高的峰值应力下工作,就需要进行仔细的设计,并需要设计诸如栅极驱动器和母线之类的辅助系统来应对峰值应力条件。最近,Wolfspeed开发了一种超高压(XHV)电源模块,用于封装10 kV SiC MOSFET,以实现连续和可靠的运行。本文旨在测试这些模块在连续运行中的状况,以验证它们在MV固态变压器中的运行状况。这些模块的可靠运行需要开发可靠的辅助部件,包括栅极驱动器,母线和电感器。还进行了辅助系统的设计和开发。还显示了证明在MV级别上运行的成功测试。这些测试是在MV固态变压器中使用这些设备的鉴定方法。可以设想,这些器件的成功运行将加速用于现场操作的MV SiC器件的增长和部署。

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