共 19 条
- [1] Abuelnaga A, Narimani M, Bahman A S., A review on IGBT module failure modes and lifetime testing[J], IEEE Access, 9, pp. 9643-9663, (2021)
- [2] Zhang Z, Fu G, Wan B, Et al., A high-efficiency IGBT health status assessment method based on data driven[J], IEEE Transactions on Electron Devices, 68, 1, pp. 168-174, (2020)
- [3] Wang H, Blaabjerg F, Ke M, Et al., Design for reliability in power electronics in renewable energy systems–status and future [C], 4th International conference on power engineering, energy and electrical drives, pp. 1846-1851, (2013)
- [4] Moore L M, Post H N., Five years of operating experience at a large, utility-scale photovoltaic generating plant[J], Progress in Photovoltaics Research & Applications, 16, 3, pp. 249-259, (2008)
- [5] Sommer J P, Licht T, Berg H, Et al., Solder fatigue at high-power IGBT modules [C], 4th International Conference on Integrated Power Systems, pp. 1-6, (2006)
- [6] Nan J, Chen M, Xu S, Et al., Lifetime evaluation of solder layer in an IGBT module under different temperature levels [C], 2016 IEEE 8th International Power Electronics and Motion Control Conference (IPEMC-ECCE Asia), pp. 3137-3141, (2016)
- [7] Junghaenel M, Scheuermann U., Impact of load pulse duration on power cycling lifetime of chip interconnection solder joints[J], Microelectronics Reliability, 76, pp. 480-484, (2017)
- [8] Huang Y, Luo Y, Xiao F, Et al., Physics of failure of die-attach joints in IGBTs under accelerated aging: Evolution of micro-defects in lead-free solder alloys, Microelectronics Reliability, 109, (2020)
- [9] Rao Jie, Wu Jianwen, Jiang Donghang, Et al., Development of pulse variable polarity welding power source based on SiC modules, Transactions of the China Welding Institution, 42, 7, pp. 21-27, (2021)
- [10] Yi Z, Wang H, Wang Z, Et al., Impact of lifetime model selections on the reliability prediction of IGBT modules in modular multilevel converters [C], 2017 IEEE Energy Conversion Congress and Exposition (ECCE), pp. 4202-4207, (2017)