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Development of New IGBT to Reduce Electrical Power Losses and Size of Power Control Unit for Hybrid Vehicles

机译:开发新的IGBT,以减少混合动力车辆电力控制单元的电力损耗和大小

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One way to improve the fuel efficiency of HVs is to reduce the losses and size of the Power Control Unit (PCU). To achieve this, it is important to reduce the losses of power devices (such as IGBTs and FWDs) used in the PCU since their losses account for about 20% of the total loss of an HV. Furthermore, another issue when reducing the size of power devices is ensuring the thermal feasibility of the downsized devices. To achieve the objectives of the 4th generation PCU, the following development targets were set for the IGBTs: reduce power losses by 19.8% and size by 30% compared to the 3rd generation. Power losses were reduced by the development of a new Super Body Layer (SBL) structure, which improved the trade-off relationship between switching and steady-state loss. This trade-off relationship was improved by optimizing the key SBL concentration parameter. Size was reduced by adopting a new environment-friendly IGBT surface electrode structural design that enabled double-sided solder packaging. This approach ensured thermal feasibility caused by the higher current density due to the smaller design. A REduced SURface Field (RESURF) structure was adopted for edge termination. To improve the robustness of the breakdown voltage, an optimum RESURF concentration balance was designed which also contributed to the IGBT’s downsizing. These developments successfully reduced both the loss and size of the IGBTs, thereby reducing the size and loss of the new PCU, and helping to improve the fuel efficiency of Toyota’s 4th generation HVs.
机译:提高HVS燃料效率的一种方法是降低功率控制单元(PCU)的损耗和尺寸。为实现这一目标,重要的是减少PCU中使用的功率设备(如IGBT和FWD)的损失,因为它们的损失占HV总损失的约20%。此外,在减少功率设备尺寸时的另一个问题是确保缩小装置的热可行性。为实现第四代PCU的目标,为IGBTS设置了以下开发目标:与第3代相比,将功率损耗降低了19.8%和大小30%。通过开发新的超级体层(SBL)结构来减少功率损耗,这改善了切换和稳态损耗之间的权衡关系。通过优化键SBL浓度参数来改善这种权衡关系。通过采用新的环保IGBT表面电极结构设计,减少了尺寸,使双面焊接包装能够实现双面焊接包装。这种方法确保了由于由于设计较小而导致的电流密度较高的热可行性。采用了降低的表面场(Resurf)结构进行了边缘终端。为了提高击穿电压的稳健性,设计了最佳的Resurf浓度平衡,这也有助于IGBT的缩小化。这些发展成功地降低了IGBT的损耗和大小,从而降低了新PCU的尺寸和损失,并有助于提高丰田第4代HV的燃料效率。

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