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Analytical Modeling of Switching Energy of Silicon Carbide Schottky Diodes as Functions of dI $_{bf DS}$/dt and Temperature

机译:碳化硅肖特基二极管的开关能量作为 dI $ _ {bf DS} $ / dt 和温度

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SiC Schottky Barrier diodes (SiC SBD) are known to oscillate/ring in the output terminal when used as free-wheeling diodes in voltage-source converters. This ringing is due to RLC resonance among the diode capacitance, parasitic resistance, and circuit stray inductance. In this paper, a model has been developed for calculating the switching energy of SiC diodes as a function of the switching rate ( of the commutating SiC ) and temperature. It is shown that the damping of the oscillations increases with decreasing temperature and decreasing . This in turn determines the switching energy of the diode, which initially decreases with decreasing and subsequently increases with decreasing thereby indicating an optimal for minimum switching energy. The total switching energy of the diode can be subdivided into three phases namely the current switching phase, the voltage switching phase, and the ringing phase. Although the switching energy in the current switching phase decreases with increasing switching rate, the switching energy of the voltage and ringing phase increases with the switching rate. The model developed characterizes the dependence of diode's switching energy on temperature and , hence, can be used to predict the behavior of the SiC SBD.
机译:当在电压源转换器中用作续流二极管时,SiC肖特基势垒二极管(SiC SBD)会在输出端子中振荡/成环。这种振铃归因于二极管电容,寄生电阻和电路杂散电感之间的RLC谐振。在本文中,已经开发了用于计算SiC二极管的开关能量随开关速率(换向SiC)和温度的函数的模型。结果表明,随着温度的降低和温度的降低,振荡的阻尼增大。这进而确定了二极管的开关能量,该二极管的开关能量最初随着减小而减小,随后随着减小而增大,从而指示出最小开关能量的最佳选择。二极管的总开关能量可以分为三个阶段,即电流开关阶段,电压开关阶段和振铃阶段。尽管当前开关阶段的开关能量随着开关速率的增加而减小,但是电压和振铃阶段的开关能量随着开关速率的增加而增加。建立的模型表征了二极管开关能量对温度的依赖性,因此可用于预测SiC SBD的性能。

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