摘要
简要叙述了电力半导体模块的发展过程,介绍了晶闸管智能模块的结构和特性,描述了IGBT智能模块的现状和发展趋势,指出了我国大力发展IPEM的必要性。
出处
《电子产品世界》
2002年第02A期29-31,共3页
Electronic Engineering & Product World
同被引文献10
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3Szymon B,Pramod Ghimre,Angel Ruiz de Vega,Stig Munk-Nielsen.Online Vce measurement method for wear-out monitoring of high power IGBT modules[C].Power Electronics and Applications(EPE),201315th European Conference on,p1-7,2-6 Sept.2013.
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8Huang F,Flett F.IGBT fault protection based on di/dt feedback control[C]//Power Electronics Specialists Conference,2007.PESC 2007.IEEE,2007:1478-1484,17-21.
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9WANG Zhi-qiang,SHI Xiao-jie.A di/dt feedback based active gate driver for smart switching and fast overcurrent protection of IGBT modules[J].IEEE Transactions on Power Electronics,2014:3720-3732.
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10WANG Zhi-qiang,SHI Xiao-jie,Leon M,et al.A fast overcurrent protection scheme for IGBT modules through dynamic fault current evaluation[C]//Applied Power Electronics Conference and Exposition(APEC),2013 Twenty-Eighth Annual IEEE,2013:577-583,17-21.
二级引证文献7
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1孙浩,杨媛,李春雷.一种基于数字可编程芯片的大功率IGBT驱动电路[J].数字技术与应用,2016,34(12):99-99. 被引量:1
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2孙浩,杨媛,高勇.基于4级U_(ce)检测的大功率IGBT过流保护策略[J].电气传动,2017,47(8):76-80. 被引量:6
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3吴伟亮,简优宗,于彬.一种数字IGBT驱动器的设计[J].电气传动,2019,49(10):87-90. 被引量:2
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4俞京,徐茂生,路兵.汽油发动机点火线圈失效机理分析[J].汽车电器,2020(8):62-63.
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5孙永新,黄海波,卢军,李艳,李森.感应加热电源IGBT驱动与保护电路的设计[J].湖北汽车工业学院学报,2020,34(3):42-46. 被引量:3
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6王佳军,陈息坤,顾隽楠,李睿莹,孙泽.一种大功率IGBT模块驱动电路设计[J].微特电机,2021,49(11):43-46. 被引量:5
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7马继晶,吴有智,蒋小龙,岳志明.一种数字式IGBT软关断策略的研究[J].工业控制计算机,2022,35(6):159-160. 被引量:1
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