• Microelectronics
  • Vol. 53, Issue 1, 25 (2023)
ZHAO Yiqiang1, ZHANG Yourun1, KANG Shijie1, ZHANG Dengfu1, ZHEN Shaowei1, ZHANG Bo1, and ZHANG Jianing2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.13911/j.cnki.1004-3365.210503 Cite this Article
    ZHAO Yiqiang, ZHANG Yourun, KANG Shijie, ZHANG Dengfu, ZHEN Shaowei, ZHANG Bo, ZHANG Jianing. A High CMTI Differential TIA Circuit for Optically Isolated IGBT Gate Driver Chip[J]. Microelectronics, 2023, 53(1): 25 Copy Citation Text show less
    References

    [1] ROUGER N, COLIN D, LE L T, et al. CMOS gate drivers with integrated optical interfaces or extremely fast power transistors [C] // ESARS-ITEC. Toulouse, France. 2017: 1-6.

    [2] WITTMANN J, HACKEL J, SEIDEL A, et al. Capacitive gate drive signal transmission with transient immunity up to 300 V/ns [C] // ANALOG 2016; 15. ITG/GMM- Symp. Bremen, Germany. 2016: 53-57.

    [3] HU B, ZHUO W, HE L, et al. A gate drive with active voltage divider based auxiliary power supply for medium voltage SiC device in high voltage applications [C] // IEEE APEC. San Antonio, TX, USA. 2018: 2979-2985.

    [4] MAUERER M, TUYSUZ A, KOLAR J W. Low-jitter GaN E-HEMT gate driver with high common-mode voltage transient immunity [J]. IEEE Trans Indust Elec, 2017, 64(11): 9043-9051.

    [5] RAGONESE E, PALMISANO G, PARISI A, et al. Highly integrated galvanically isolated systems for data/power transfer [C] // IEEE ICECS. Genoa, Italy. 2019: 518-521.

    [6] LIANG Y F. Intelligent automotive isolated gate driver with adaptive fault management and built-in switched mode power supply [C] // IEEE APEC. New Orleans, LA, USA. 2020: 2643-2646.

    [8] VLADOIANU F, STRELEC M, HUREZ I, et al. Changing the paradigm in common mode transient immunity (CMTI) testing of dual channel galvanically isolated gate drivers [C] // 44th Int Semicond Conf CAS. 2021: 125-128.

    ZHAO Yiqiang, ZHANG Yourun, KANG Shijie, ZHANG Dengfu, ZHEN Shaowei, ZHANG Bo, ZHANG Jianing. A High CMTI Differential TIA Circuit for Optically Isolated IGBT Gate Driver Chip[J]. Microelectronics, 2023, 53(1): 25
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