• Title/Summary/Keyword: LLC Resonant Converter

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Design Methodology for Transformers Including Integrated and Center-tapped Structures for LLC Resonant Converters

  • Jung, Jee-Hoon;Choi, Jong-Moon;Kwon, Joong-Gi
    • Journal of Power Electronics
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    • v.9 no.2
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    • pp.215-223
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    • 2009
  • A design methodology for transformers including integrated and center-tapped structures for LLC resonant converters is proposed. In the LLC resonant converter, the resonant inductor in the primary side can be merged in the transformer as a leakage inductance. And, the absence of the secondary filter inductor creates low voltage stress on the secondary rectifiers and is cost-effective. A center-tapped structure of the transformer secondary side is widely used in commercial applications because of its higher efficiency and lower cost than full-bridge structures in the rectifying stages. However, this transformer structure has problems of resonance imbalance and transformer inefficiency caused by leakage inductance imbalance in the secondary side and the position of the air-gap in the transformer, respectively. In this paper, gain curves and soft-switching conditions are derived by first harmonic approximation (FHA) and operating circuit simulation. In addition, the effects of the transformer including integrated and center-tapped structures are analyzed by new FHA models and simulations to obtain an optimal design. Finally, the effects of the air-gap position are analyzed by an electromagnetic field simulator. The proposed analysis and design are verified by experimental results with a 385W LLC resonant converter.

The Secondary LLC Series Resonant Converter for the Boost DC/DC Converter (변압기 2차측 LLC 직렬공진컨버터 적용 승압형 DC/DC 컨버터)

  • Lee Hyun-Kwan;Lee Gi-Sik;Chung Bong-Geon;Kong Young-Su;Kim Eun-Soo;Cha In-Su;Yoon Jeong-Phil
    • Proceedings of the KIPE Conference
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    • 2006.06a
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    • pp.277-280
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    • 2006
  • Recently, the high frequency isolated boost DC/DC converter has been widely used for the PCS (Power Conditioning System) system because of its small size and low cost. However, the high frequency isolated boost DC/DC converters applied the conventional voltage-fed converter and current-fed converter have the problems such as the high conduction losses and the surge voltage due to the high circulating current and the leakage inductance, respectively. To overcome this problems, in this paper the secondary LLC resonant converter is proposed, and the experimental results of the secondary LLC series resonant converter for boost DC/DC converter are verified on the simulation based on the theoretical analysis and the 1kW experimental prototype.

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Power supply design and discharge characteristics analysis of xenon flashlamp by using LLC resonance rhenomena (LLC 공진현상을 이용한 제논 플래쉬램프 전원회로의 설계 및 방전특성분석)

  • Lee, Hee-Chang
    • Journal of Advanced Marine Engineering and Technology
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    • v.38 no.3
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    • pp.312-317
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    • 2014
  • In this paper, I propose the design technology of LLC resonant converter for the xenon flashlamp that is used to the solid state laser. Through the fabrication of 1.5kW large scale LLC resonant converter, the discharge characteristics are carried out, and introduce the new control method for limiting inrush current by the abrupt load current changes. The mathematical modeling for the lamp discharge includes the internal loss and lamp parameters. I propose the optimal method for the driving conditions of xenon flashlamp from the simulation results comparing the real measurements.

High Frequency (MHz) LLC Resonant Converter for a Capacitor Coupling Wireless Power Transfer (CCWPT) (커패시터 커플링 무선 전력 전송을 위한 MHz LLC 공진형 컨버터)

  • You, Young-Soo;Moon, HyunWon;Yi, Kang-Hyun
    • The Transactions of the Korean Institute of Power Electronics
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    • v.21 no.2
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    • pp.111-116
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    • 2016
  • This paper proposes a high-frequency (MHz) LLC resonant converter for a capacitor coupling wireless power transfer (CCWPT). The CCWPT uses electric field in the coupling capacitor between the transmitter and receiver electrodes with a dielectric layer. Given that capacitance is very small and the impedance is large, transferring power with a simple series resonance is difficult. Therefore, the high frequency (MHz) and high Q factor LLC converter is proposed to reduce the impedance of the coupling capacitance and to obtain a high output voltage. This paper deals with the operation analysis of the proposed LLC converter and a theoretical capacitance estimation. The operation and features of the proposed CCWPT LLC converter is verified with a 4.2 W prototype for charging mobile devices.

Resonant Capacitor On/Off Control of Half-Bridge LLC Converter for High Efficiency Server Power Supply (고효율 서버용 전원 장치를 위한 하프-브리지 LLC 컨버터의 공진 커패시터 온-오프 제어)

  • Lee, Jae-Bum;Baek, Jae-Il;Youn, Han-Shin;Moon, Gun-Woo
    • Proceedings of the KIPE Conference
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    • 2015.07a
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    • pp.285-286
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    • 2015
  • In this letter, a simple control method of the HB LLC converter with one additional switch and capacitor in the primary side is proposed for wide-input-voltage applications with the hold-up time conditions. At nominal input, since the proposed method enables the HB LLC converter to operate with large transformer magnetizing inductance, it can reduce the conduction and switch turn-off losses in the primary side, which makes a high efficiency. On the other hand, during the hold-up time, since the proposed method increases the resonant capacitance by turning on one additional switch, the HB LLC converter can obtain high voltage gain.

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A Study on 120Hz Output Voltage Ripple Reduction of LLC Converter using Resonant Controller (공진 제어기를 이용한 LLC 컨버터의 출력전압 120Hz 맥동저감에 관한 연구)

  • So, Byong-Chul;Lee, Sang-Ri;Kim, Hag-Wone;Cho, Kwan-Yuhl;Hwang, Soon-Sang;Choi, Eun-Seok
    • The Transactions of the Korean Institute of Power Electronics
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    • v.17 no.4
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    • pp.345-352
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    • 2012
  • This paper proposes a new method to reduce 120Hz output voltage ripple of LLC converter using resonant voltage controller. This method can reduce the 120Hz output voltage ripple with very high gain at this frequency by the resonant controller with previous PI voltage controller. The reason why the voltage ripple can be reduced is explained by the Bode diagram comparing with the previous PI controller. The simulation with Matlab/Simulink is carried out for this resonant controller and the simulation results show that resonant controller can reduce the 120Hz output voltage ripple. Experiments with DSP controller also carried out and the experimental results also show that the usefulness of the proposed voltage controller.

Power Conditioning System using LLC Resonant Inverter with Two Resonant Tanks (두개의 공진탱크회로를 갖는 LLC 공진 인버터 적용 PCS)

  • Yoon, Kwang-Ho;Chung, Bong-Gun;Lee, Kwang-Ho;Kim, Joo-Hoon;Kim, Eun-Soo;Choi, Joon-Young
    • The Transactions of the Korean Institute of Power Electronics
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    • v.15 no.6
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    • pp.477-486
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    • 2010
  • Recently, Power Conditioning System (PCS) tends to become more compact, and tends to require higher efficiency, and higher power density with better performance. To meet these requirements, a novel topology consisted of LLC resonant inverter with two resonant tanks for low power losses and Low Frequency (LF) cyclo-converter for sine wave filtering is proposed. The operating schemes are analyzed and described. A 400W proto product is built, tested and verified the performances by connecting the 110Vac 60Hz utility line.

Analysis of Cross-Regulation Characteristics for Multi-Output LLC Resonant Converter (다중출력 LLC 공진 컨버터의 Cross-regulation 특성 분석)

  • Jeong, Jin-Woo;Lim, Jeong-Gyu;Chung, Se-Kyo;Kim, Jong-Hae;Oh, Dong-Sung
    • Proceedings of the KIPE Conference
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    • 2011.07a
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    • pp.151-152
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    • 2011
  • This paper describes a cross-regulation characteristics of a multi-output LLC resonant converter widely used in consumer electronics. The output characteristics of the multi-output LLC converter is derived from the assumption that the current and voltage to flow through the resonant network is sinusoidal and the duty loss is investigated. The simulation results are provided to verify the theoretic results.

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PWM/PFM Dual Mode SMPS Controller IC for Active Forward Clamp and LLC Resonant Converters

  • Cheon, Jeong-In;Ha, Chang-Woo
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.7 no.2
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    • pp.94-97
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    • 2007
  • The desin and implementation of a CMOS analog integrated circuit that provides dual-mode modulations, PWM for active clamp reset converter and PFM for LLC resonant converter, is described. The proposed controller is capable of implementing programmable soft start and current-mode control with compensating ramp for PWM and frequency shifting soft start for PFM. Also it provides delay time for both modes. PWM mode is implemented by active clamp reset converter and PFM mode is implemented by LLC resonant convereter, respectively. The chip is fabricated using the 0.6um high voltage CMOS process.

High Switching Frequency and High Power Density Three-Level LLC Resonant Converter using Integrated Magnetics (Integrated Magnetics를 적용한 고속 스위칭 및 고전력밀도 3 레벨 LLC 공진형 컨버터)

  • Nam, Kyung-Hoon;Park, Chul-Wan;Bae, Ji-Hun;Ji, Sang-Keun;Ryu, Dong-Kyun;Choi, Heung-Gyoon;Han, Sang-Kyoo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.22 no.6
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    • pp.551-554
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    • 2017
  • This paper proposes a three-level LLC resonant converter using integrated magnetics (IM). Given that the switch voltage stress of the proposed converter is guaranteed to be half of the input voltage, the switching losses can be greatly reduced, thereby benefitting the high-frequency operation. To reduce the volume of reactive components such as transformers, high-frequency driving and planar core are applied. However, two resonant inductors and one transformer are required because of the three-level structure and the limited leakage inductance of the planar transformer for the resonant operation. Therefore, the effect of volume reduction is not very large. In order to solve these drawbacks, this paper proposes a new IM that integrates all magnetic elements used in the proposed three-level resonant converter by using the magnetizing inductor as a resonant inductor. The experimental results are presented by conducting a theoretical analysis of a prototype with 350 W to 800 kHz.