Browse > Article

통신용 고밀도, 고효율 전원 장치 설계  

Kim, Yeong-Gyu ((주)동이일렉콤 진원연구소 연구1팀)
Publication Information
KIPE Magazine / v.27, no.3, 2022 , pp. 38-48 More about this Journal
Keywords
Citations & Related Records
연도 인용수 순위
  • Reference
1 Q. Li, B. Liu, S. Duan, L. Wang, B. Xu, and C. Luo, "Analytical switching loss model of cascode GaN HEMTs based totem-pole PFC converters considering stray inductances," in 2018 1st Workshop on Wide Bandgap Power Devices and Applications in Asia, 2018.
2 K. M. Yoo, S. K. Lim, and J. Y. Lee, "A high efficiency single-stage PFC flyback for PDP sustaining power module," Journal of The Korean Society of Semiconductor & Display Technology, Vol. 5, No.3, pp. 11-16, 2006.
3 J. S. Yoo, Y. M. Gil, and T. Y. Aim, "Study on the power factor correction circuit applying multiple coupling inductor with expandable integrated magnetic structure," Journal of The Korean Society of Semiconductor & Display Technology, Vol. 17, No.1, pp. 21-26, 2018.
4 T. Y. Ahn, "A study on interleaved bridgeless switching rectifier using magnetic coupled inductor," Journal of The Korean Institute of Illuminating and Electrical Installation Engineers, Vol. 32, No.1, pp. 99-107, 2018.   DOI
5 R. Zhang, S. Liu, B. Li, N. Zhao, G. Wang, and D. Xu, "Totem-pole bridgeless boost PFC converter based on GaN HEMT for air conditioning applications," IEEE Conference on Energy Internet and Energy System Integration (EI2), 2018.
6 B. Zhang, Q. Lin, Y. Shimada, J. Imaoka, M. Shoyama, and S. Tomioka, "Analysis and reduction method of conducted noise in GaN HEMTs based totem-pole bridgeless PFC converter," in 2016 IEEE 8th International Power Electronics and Motion Control Conference, 2016.
7 J. G. Kim and O. Yang, "Efficiency characteristics of DC-DC boost convener using GaN, cool MOS, and SiC MOSFET," Journal of The Korean Society of Semiconductor & Display Technology, Vol. 16, No.2, pp. 49-54, 2017.
8 D. W. Kang and J. Jo, " Improvement of temperature characteristics in ceramic-packaged shunt resistors," Journal of The Korean Society of Semiconductor & Display Technology, Vol. 14, No.3, pp. 57-60, 2015.
9 N. Quentin, R. Perrin, C. Martin, C. Joubert, B. Lacombe, and C. Buttay, "GaN active-clamp flyback convener with resonant operation over a wide input voltage range," PCIM, pp. 1-8, 2016.
10 T. Y. Choi, D. K. Ryu, W. S. Lee, J. J. Aim, C. Y. Won, and S. S. Kim, "A study on PFC of active clamp ZVS flyback converter," JIEIE, pp. 49-57, 2001.
11 J. Y. Jung, J. Y. Bae, S. D. Kwon, D. H. Lee, Y. Kim, "A study on the two-switch intereaved active clamp forward converter," JIEIE, pp. 136-144, 2010.
12 J. Y. Lin, Y. K. Lo, H. J. Chiu, C. F. Wang, and C. Y. Lin, "An active-clamping ZVS flyback converter with integrated transformer," IPEC, pp. 172-176, 2014.
13 C. S. Park, J. W. Jo, and T. U. Jung, "Study on the fly-back converter using active-clamp," JIEIE, pp. 186-187, 2013.
14 C. S. Park and T. U. Jung, "A study on the controllable snubber for switching loss reduction in interleaved fly-back converter," JIEIE, pp. 57-64,2015.
15 J. Park, Y. J. Moon, M. G. Jeong, J. G. Kang, S. H. Kim, J. C. Gong, and C. Yoo "Quasi-resonant (QR) controller with adaptive switching frequency reduction scheme for flyback converter," IEEE Transactions on Industrial Electronics, Vol. 63, No.6, pp. 3571-3581, 2016.   DOI
16 P. Meng, X. Wu, J. Yang, H. Chen, and Z. Qian, "Analysis and design considerations for EM] and losses of RCD snubber in flyback converter," APEC, pp. 642-647, 2010.
17 T. Lagap and S. Munk-Nielsen, "An RCDD snubber for a bidirectional flyback converter," EPE, pp. 1-10, 2015.
18 S. Shin, B. Ko, and H. So, "Noncontact thermal mapping method based on local temperature data using deep neural network regression," International Journal of Heat and Mass Transfer 183, Vol. 122236, 2022.
19 X. HLlang, J. Feng, W. Du, F. C. Lee, and Q. Li, "Design consideration of MHz active clamp flyback converter with GaN devices for low power adapter application," APEC, pp. 2334-2341, 2016.
20 J. Zhang, H. Zeng, and X. Wu, "An adaptive blanking time control scheme for an audible noise-free quasi-resonant flyback converter," IEEE Transactions on Power Electronics, Vol. 26, No. 10, pp. 2735-2742, 2011.   DOI