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王来利
Professor Supervisor of Doctorate Candidates Supervisor of Master's Candidates
Education Level:With Certificate of Graduation for Doctorate Study
Degree:Doctor
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Research
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Research
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Papers
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.Chenxu Zhao; Guochun Xiao; Lei Zhu; Zetu Gao; Min Wu; Laili Wang.A Multicriteria Constrained Tuning Method With Critical ZVS Operation for 6.78 MHz WPTS,2025
.Xiaohui Lu; Laili Wang.A Novel Method for Real-Time Junction Temperature Monitoring of SiC mosfet Through Sensitivity Amplification of Turn-off Delay Time,2025
.Xiang Zhou;Jiarui Wu;Huan Luo;Zihao Song;Long Pei;Donghua Duan;Peng Guo;Laili Wang;Yan-Fei Liu.Wide Voltage-Regulation Range Synchronous-Rectifier LLC Converter with Novel Operation Modes,2025
.Fengtao Yang; Laili Wang; Xiaoliang She; Zizhen Cheng; Mengyu Zhu; Hong Zhang; Lixin Jia.A High-Sensitive Online Tj Extracting Method Based on Electrothermal Interaction and Linear-Mode Current Response for Power MOSFET Devices,2025
.Weili Guo; Guochun Xiao; Laili Wang.Noncontact Power Module Current Measurement Based on Bonding Wire Current Sensing Using Hybrid Sensor,2025
.W. Mu, Laili Wang et al..Near Junction Integration of Vapor Chamber for Transient Thermal Performance Improvements of SiC Power Module,2025,vol. 6:pp. 286-299,
Patents
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一种基于非切割型纳米晶的高频变压器及设计方法,CN202410866128.X,Invent,2024-7-1,
一种基于电感电流特征值的DAB电感损耗计算方法,CN202210048189.6,Invent,2022-1-17,
一种双面散热芯片倒装的气密性耐高温封装结构,CN202210039284.X,Invent,2022-1-13,
基于开关电容和耦合电感技术的超高压降压型DC-DC变换器,CN202111007756.5,Invent,2021-8-30,
一种碳化硅MOSFET芯片双向开关功率模块及其制备方法,CN202110302888.4,Invent,2021-3-22,
一种基于多线圈解耦集成的紧凑型无线充电系统,CN202011380924.0,Invent,2020-11-30,
Publications
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Projects
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J202504005,军用级2.5kW AC-DC 砖式电源模块关键技术研发,other,2025-4~2026-3,Horizontal Project
20240780,高效高可靠性碳化硅功率模块多芯片并联均流电热综合优化关键技术研究,other,2024-4~2025-11,Horizontal Project
2024其他纵向11,大尺寸高质量第三代半导体 SiC 晶体电阻法生长设备研发及产业化,other,2024-1~2026-12,Vertical project
52325705,电力电子封装集成,National Natural Science Foundation of China (NSFC),2024-1~2028-12,Vertical project
202312270,柔直换流阀用6500V压接IGBT和FRD芯片关键技术研究,other,2023-12~2025-12,Horizontal Project
2023YFB2407401,多端口柔性互联装备模块化设计技术与高效、紧凑功率模组,National Key Technologies R&D Program,2023-12~2026-11,Vertical project