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Accurate analytical modeling for switching energy of PiN diodes reverse recovery

机译:PiN二极管反向恢复的开关能量的精确分析模型

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摘要

PiN diodes are known to significantly contribute to switching energy as a result of reverse-recovery charge during turn-off. At high switching rates, the overlap between the high peak reserve-recovery current and the high peak voltage overshoot contributes to significant switching energy. The peak reverse-recovery current depends on the temperature and switching rate, whereas the peak diode voltage overshoot depends additionally on the stray inductance. Furthermore, the slope of the diode turn-off current is constant at high insulated-gate bipolar transistor (IGBT) switching rates and varies for low IGBT switching rates. In this paper, an analytical model for calculating PiN diode switching energy at different switching rates and temperatures is presented and validated by ultrafast and standard recovery diodes with different current ratings. Measurements of current commutation in IGBT/PiN diode pairs have been made at different switching rates and temperatures and used to validate the model. It is shown here that there is an optimal switching rate to minimize switching energy. The model is able to correctly predict the switching rate and temperature dependence of the PiN diode switching energies for different devices.
机译:众所周知,PiN二极管由于关断期间的反向恢复电荷而对开关能量有重大贡献。在高开关速率下,高的峰值储备恢复电流和高的峰值电压过冲之间的交叠会产生很大的开关能量。峰值反向恢复电流取决于温度和开关速率,而峰值二极管电压过冲还取决于杂散电感。此外,二极管关断电流的斜率在高绝缘栅双极晶体管(IGBT)开关速率下是恒定的,而在低IGBT开关速率下会变化。本文提出了一种用于计算不同开关速率和温度下的PiN二极管开关能量的分析模型,并通过具有不同额定电流的超快和标准恢复二极管进行了验证。 IGBT / PiN二极管对中电流换向的测量已在不同的开关速率和温度下进行,并用于验证模型。在此示出,存在最佳的开关速率以最小化开关能量。该模型能够正确预测不同设备的PiN二极管开关能量的开关速率和温度依赖性。

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