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A Study on 60W Class Ultra-small Adapter with Active Snubber Type Flyback Converter

액티브 스너버형 플라이백 컨버터를 적용한 60W급 초소형 어댑터에 관한 연구

  • Ahn, Tae-Young (Department of Applied Electronic Engineering, Cheongju University)
  • Received : 2018.08.27
  • Accepted : 2018.09.19
  • Published : 2018.09.30

Abstract

In this paper, an active snubber type flyback converter was applied to a 60W class adapter and its test results are reported by producing a prototype. Especially, the prototype of the adapter was designed for both input voltage of 110V and 220V. The output voltage was designed for 60W with 19V class which is the most commonly used in laptops. The prototype was designed to a volume of about $50cm^3$ and a power density of about $1.22W/cm^3$ to minimize the size and verify portability. The maximum efficiency of the prototype was 90.88% at its maximum load of 60W against input voltage change and 91.04% was observed at 60W under input voltage of 220V. Furthermore, the stability of the output voltage against load power was observed to be within about 0.07%.

본 논문에서는 액티브 스너버형 플라이백 컨버터를 60W급 어댑터에 적용하고 시험 회로를 제작하여 그 시험 결과를 보고하였다. 특히 어댑터의 시험 회로는 입력전압이 110V와 220V 겸용으로 설계하였으며 출력전압은 노트북 컴퓨터 등에서 가장 많이 사용되는 19V 60W급으로 설계하였다. 시험용 60W급 어댑터의 체적은 약 $50cm^3$, 전력밀도는 약 $1.22W/cm^3$로 설계하여 사이즈를 최소화 시켜서 휴대성을 확인 하였다. 시험 회로는 입력전압 변화에 대해 최대부하 60W에서는 최대 90.88%의 고효율을 나타내었다. 입력전압 220V에서 효율은 60W 출력에서 최대 91.04%이었다. 또한 부하 전력에 대한 출력전압 안정도는 약 0.07%이내로 관측되었다.

Keywords

References

  1. J. S. Yoo, T. Ahn, G. Yu, J. Lee and J. Lee, "A study on novel active clamp snubber applied DC-DC quasi resonant flyback converter to effectively reduce switch voltage surge," ICEMS, 2017, pp. 1-5 DOI:10.1109/ICEMS.2017.8056280
  2. T. Wu, Y. Chang, C. Chang and J. Yang, "Soft-Switching Boost Converter With a Flyback Snubber for High Power Applications," in IEEE Transactions on Power Electronics, vol.27, no.3, pp. 1108-1119, March 2012. DOI:10.1109/TPEL.2011.2126024
  3. L. Chen, H. Hu, Q. Zhang, A. Amirahmadi and I. Batarseh, "A Boundary-Mode Forward-Flyback Converter With an Efficient Active LC Snubber Circuit," in IEEE Transactions on Power Electronics, vol.29, no.6, pp. 2944-2958, June 2014. DOI:10.1109/TPEL.2013.2272661
  4. J. Zhang, X. Huang, X. Wu and Z. Qian, "A High Efficiency Flyback Converter With New Active Clamp Technique," in IEEE Transactions on Power Electronics, vol.25, no.7, pp. 1775-1785, July 2010. DOI:10.1109/TPEL.2010.2042302
  5. Y. Wang, S. Zhang, Y. Guan, X. Liu and D. Xu, "Single-stage QR AC-DC converter based on buck-boost and flyback circuits," in IET Power Electronics, vol.10, no.1, pp. 103-111, Jan 2017. DOI:10.1049/iet-pel.2016.0264
  6. J. Li, F. B. M. van Horck, B. J. Daniel and H. J. Bergveld, "A High-Switching-Frequency Flyback Converter in Resonant Mode," in IEEE Transactions on Power Electronics, vol.32, no.11, pp. 8582-8592, Nov. 2017. DOI:10.1109/TPEL.2016.2642044
  7. J. Park et al., "Quasi-Resonant (QR) Controller With Adaptive Switching Frequency Reduction Scheme for Flyback Converter," in IEEE Transactions on Industrial Electronics, vol.63, no.6, pp. 3571-3581, June 2016. DOI:10.1109/TIE.2016.2523931
  8. C. Pesce, R. Blasco Gimenez, J. Riedemann, I. Andrade and R. Pena, "A DC-DC Converter Based On Modified Flyback Converter Topology," in IEEE Latin America Transactions, vol.14, no.9, pp. 3949-3956, Sept. 2016. DOI:10.1109/TLA.2016.7785917