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Design considerations for a self-powered gate driver for normally-ON SiC junction field-effect transistors

机译:用于常开晶闸管效应晶体管的自动栅极驱动器的设计考虑因素

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The very low on-state resistance, the voltage-controlled gate, and the relative simplicity of fabrication of the normally-ON silicon carbide junction field effect transistor make this device the most important player among all state-of-the-art silicon carbide transistors. However, the normally-ON nature counts as the main factor which keeps this device far from being considered as an alternative to the silicon insulated-gate bipolar transistor. A self-powered gate driver without external power supply for normally-ON silicon carbide junction field effect transistors is presented in this paper. The proposed circuit is able to handle the shoot-through current when the devices are subjected to the dc-link voltage by utilizing the energy associated with this current. On the other hand it supplies the necessary negative gate-source voltage during the steady-state operation. A detailed description of the operating states of the proposed circuit along with various design considerations are presented. From experiments which were performed in a half-bridge converter, it is shown that the shoot-through current can be turned off within approximately 15 µs. Moreover, it is shown that the proposed gate driver can properly switch the devices.
机译:常见的碳化硅结场效果晶体管的极低导通电阻,电压控制的栅极和制造的相对简单性使得该装置成为所有最先进的碳化硅晶体管中最重要的球员。然而,通常对onaly的性质计数为使该装置远离被认为是硅绝缘栅双极晶体管的替代的主要因素。本文介绍了一种没有用于正常碳化硅结区效应晶体管的外部电源的自动栅极驱动器。当通过利用与该电流相关联的能量,当器件经受DC链路电压时,所提出的电路能够处理射击电流。另一方面,它在稳态操作期间提供必要的负栅极源电压。提出了提出的电路的操作状态以及各种设计考虑的详细描述。从在半桥转换器中执行的实验,示出了射击电流可以在大约15μs内关闭。此外,示出所提出的栅极驱动器可以正确地切换设备。

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