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Experimental Investigation on Switching Characteristics of High-Current Insulated Gate Bipolar Transistors at Low Currents

机译:低电流大电流绝缘栅双极晶体管开关特性的实验研究

摘要

Insulated gate bipolar transistors (IGBTs) are usedudin high-power voltage-source converters rated up to hundreds of kilowatts or even a few megawatts. Knowledge of device switching characteristics is required for reliable design and operation of the converters. Switching characteristics are studied widely at high current levels, and corresponding data are available in datasheets.udBut the devices in a converter also switch low currents close to the zero crossings of the line currents. Further, the switching behaviour under these conditions could significantly influence the output waveform quality including zero crossover distortion. Hence, the switching characteristics of high-current IGBTs (300-A and 75-A IGBT modules) at low load current magnitudes are investigated experimentally in this paper. The collector current, gate-emitter voltage and collector-emitter voltage are measured at various low values of current (less than 10% of the device rated current). A specially designed in-house constructed coaxial current transformer (CCT) is used for device current measurement without increasing the loop inductance in the power circuit. Experimental results show that the device voltage rise time increases significantly during turn-off transitions at low currents.
机译:绝缘栅双极型晶体管(IGBT)用于额定功率高达数百千瓦甚至几兆瓦的大功率电压源转换器。为了可靠地设计和运行转换器,需要具备设备开关特性的知识。在高电流水平下,开关特性得到了广泛的研究,相应的数据可在数据表中找到。 ud但是,转换器中的器件还可以在接近线路电流零交叉点的位置切换低电流。此外,在这些条件下的开关行为可能会严重影响包括零交叉失真在内的输出波形质量。因此,本文通过实验研究了大电流IGBT(300-A和75-A IGBT模块)在低负载电流大小下的开关特性。在各种低电流值(小于器件额定电流的10%)下测量集电极电流,栅极-发射极电压和集电极-发射极电压。专门设计的内部构造的同轴电流互感器(CCT)用于设备电流测量,而不会增加电源电路中的环路电感。实验结果表明,在低电流下的关断过渡期间,器件电压上升时间显着增加。

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