• Title/Summary/Keyword: Flyback

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The Design and Development of Flyback Transformer for Multi - Out Flyback DC-DC Converter (다(多)출력 DC-DC 플라이백 컨버터용 변압기 설계방법 및 개발)

  • Park, Jong Yeon;Kang, Do Hyung
    • Journal of Industrial Technology
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    • v.20 no.B
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    • pp.163-168
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    • 2000
  • This paper gives a fundamental study of the design method of Flyback Transformer(FBT) in the Multioutput Flyback DC-DC Converter. We explained a winding strategy and Core selecting of the Flyback transformer to get the design guidelines for optimizing the performance of Flyback DC-DC Converter. The final goal of this paper is to obtain design rules of the Flyback transformer to minimize the leakage inductance for good quality of DC Souce.

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Bidirectional Zeta-Flyback Converter for Improved Efficiency (개선된 효율을 가지는 양방향 Zeta-Flyback 컨버터)

  • Jung, Mun-Kyu;Kwon, Young-Ahn
    • Journal of Advanced Marine Engineering and Technology
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    • v.36 no.6
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    • pp.844-849
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    • 2012
  • In this paper, a bidirectional Zeta-Flyback converter is proposed. The topology of the proposed converter is analyzed, which is superposition of bidirectional Flyback converter mode and bidirectional Zeta converter mode in a cycle. The proposed converter allows power flow in either a forward direction or a backward direction. Bidirectional power flow is obtained by a transformer and components. The proposed converter's output is controlled by duty of constant frequency PWM of switch. Compared to conventional bidirectional isolated DC-DC converters, the proposed isolated bidirectional DC-DC converter has high power density and high transformer utilization. To confirm the proposed converter, the simulation and experimental results are presented.

A Study on the Design of Flyback Transformer using Flat copper winding (평면 동판 권선을 이용한 Flyback 변압기 설계에 관한 연구)

  • Kim, Jong-Hae
    • Journal of IKEEE
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    • v.26 no.3
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    • pp.445-455
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    • 2022
  • This paper presents the optimal design of flyback transformer with the flat copper winding method of injection type suitable for the small-size and winding method of automatic type used in 90W DC to DC converter for LED-TV. This paper also proposes the flyback transformer with the flat copper winding method of injection type capable of the winding method of automatic type and the reduction of transformer size and enhanced uniformity in electrical characteristics compared to the conventional mass-production flyback transformer with the winding method of manual type. In particular, the flat copper winding transformer of injection type proposed in this paper is constructed in a vertical winding method of its transformer to realize the winding method of automatic type. The primary and secondary windings of flyback transformer with the flat copper winding method of injection type used the conventional winding, triple insulated winding and the flat copper winding method of injection type, respectively. The optimal design of flyback transformer with the flat copper winding transformer of injection type proposed in this paper suitable for small-size and winding method of automatic type was carried out based on the simulation results using Maxwell 2D and 3D tool.

Study on BLDC Motor Drive using Digitally Controlled Flyback-Converter (디지털적으로 제어되는 플라이백 컨버터를 사용하는 BLDC 전동기 드라이브에 대한 연구)

  • Kim, N.H.;Baik, W.S.;Choi, K.H.;Hwang, D.H.;Kim, M.H.;Won, J.S.;Kim, D.H.
    • Proceedings of the KIPE Conference
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    • 2008.06a
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    • pp.598-600
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    • 2008
  • On this paper, digitally controlled flyback dc-dc converter and dc-ac inverter for bldc motor control are presented, which is used one processor. This system has 12V battery input for the flyback-converter, and the flyback-converter generates 30V output for BLDC motor inverter input. In order to compensate the flyback-converter, the transfer function of flyback converter is derived and digital PI compensator is adapted. Through bode diagram, stability of digital flyback-converter is analyzed. To verify the proposed system, digital simulation of the bldc motor drive using digital flyback-converter are performed.

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A Zero-Current-Zero-Voltage-Transition Flyback Converter using Auxiliary Circuit (보조 회로를 활용한 ZCZVT 소프트 스위칭 플라이백 컨버터)

  • Ju, Hyeon-Seung;Choi, Hyun-Chil
    • The Transactions of the Korean Institute of Power Electronics
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    • v.23 no.6
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    • pp.397-402
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    • 2018
  • In this study, a high-efficiency flyback converter that uses a soft-switching auxiliary circuit is proposed. The structure of the proposed converter adds an inductor, switch, diode, and capacitor to the conventional flyback converter. The switch in the auxiliary circuit and the main switch are turned on and off under soft-switching conditions. Therefore, the switching losses of the proposed flyback converter are considerably smaller than those of conventional flyback converters. The performance of the proposed flyback converter is validated by experiments on a 100 W single-output flyback converter prototype, and design guidelines are presented.

An Analysis and Design Guideline of Forward-Flyback Converter for Input Voltage Varying System (Forward-Flyback Converter를 이용한 입력 전압 가변형 시스템의 분석 및 설계 가이드 라인 제시)

  • Lee, S.W.;Cho, B.H.
    • Proceedings of the KIPE Conference
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    • 2011.11a
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    • pp.183-184
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    • 2011
  • 본 논문은 전압 구동 형태와 전류 구동 형태의 특성을 모두 지니는 Forward-Flyback 컨버터의 특성을 이용하여 입력 전압 가변형 시스템에서의 적용에 대해 논의한다. Forward-Flyback 컨버터는 변압기의 턴비에 따라 입력 전압을 넘겨 Buck 컨버터처럼 동작하는 Forward 단과 변압기의 자화 인덕턴스에 흐르는 전류를 출력 단으로 넘겨 사용하는 Flyback 단이 존재하며 이 중 Forward 단의 동작 조건을 이용하여 출력 전압이 변할 경우 컨버터가 Forward-Flyback 컨버터와 Flyback 컨버터의 두 가지 형태 중 하나를 선택하여 동작하도록 분석 및 설계한다.

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Analysis, Design and Development of a Single Switch Flyback Buck-Boost AC-DC Converter for Low Power Battery Charging Applications

  • Singh, Bhim;Chaturvedi, Ganesh Dutt
    • Journal of Power Electronics
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    • v.7 no.4
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    • pp.318-327
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    • 2007
  • The design and performance analysis of a power factor corrected (PFC), single-phase, single switch flyback buck-boost ac-dc converter is carried out for low power battery charging applications. The proposed configuration of the flyback buck-boost ac-dc converter consists of only one switch and operates in discontinuous current mode (DCM), resulting in simplicity in design and manufacturing and reduction in input current total harmonic distortion (THD). The design procedure of the flyback buck-boost ac-dc converter is presented for the battery charging application. To verify and investigate the design and performance, a simulation study of the flyback buck-boost converter in DCM is performed using the PSIM6.0 platform. A laboratory prototype of the proposed single switch flyback buck-boost ac-dc converter is developed and test results are presented to validate the design and developed model of the system.

A 40-W Flyback Converter with Dual-Operation Modes for Improved Light Load Efficiency

  • Kang, Jin-Gyu;Park, Jeongpyo;Gong, Jung-Chul;Yoo, Changsik
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.15 no.4
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    • pp.493-500
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    • 2015
  • A flyback converter operates with either pulse width modulation (PWM) or pulse frequency modulation (PFM) control scheme depending on the load current. At light load condition, PFM control is employed to reduce the switching frequency and thereby minimize the switching power loss. For heavier load, PWM control is used to regulate the output voltage of the flyback converter. The flyback controller has been implemented in a $0.35{\mu}m$ BCDMOS process and applied to a 40-W flyback converter. The light-load power efficiency of the flyback converter is improved up to 5.7-% comparing with the one operating with a fixed switching frequency.

Balanced Forward-Flyback Converter for high efficiency LED drive (고효율 LED 구동을 위한 Balanced Forward-Flyback 컨버터)

  • Hwang, Min-Ha;Choi, Yoon;Jung, Young-Jin;Oh, Dong-Sung;Han, Sang-Kyoo
    • Proceedings of the KIPE Conference
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    • 2012.07a
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    • pp.246-247
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    • 2012
  • 역률개선용 AC/DC Flyback 컨버터의 경우 우수한 역률을 획득할 수 있으나 코어손실이 크고 효율이 낮으며 반면 Forward 컨버터의 경우 코어손실이 작아 높은 효율을 획득할 수 있으나 Dead zone이 존재하여 고역률 획득이 어려운 단점을 갖는다. 따라서 본 논문에서는 Forward 컨버터와 Flyback 컨버터의 장점을 동시에 구현할 수 있는 고효율 및 고역률 Balanced forward-flyback 컨버터를 제안한다. 제안된 컨버터는 스위치 온 시 Forward 컨버터로 동작하며 스위치 오프 시 트랜스포머 자화인덕터 리셋을 위해 Flyback 컨버터로 동작하므로 고역률 및 고효율 획득이 가능하며 Forward 및 Flyback 컨버터가 다루는 에너지량이 전류평형 캐패시터에 의해 항상 절반씩 배분되므로 AC입력전압의 크기에 관계없이 항상 고효율 획득이 가능하다. 제안된 회로의 타당성 검증을 위해 이론적 분석결과와 24W급 LED 조명 회로에 적용한 실험결과를 제시한다.

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A Novel Soft-Switching Two-Switch Flyback Converter with a Wide Operating Range and Regenerative Clamping

  • Kim, Marn-Go;Jung, Young-Seok
    • Journal of Power Electronics
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    • v.9 no.5
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    • pp.772-780
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    • 2009
  • A novel soft-switching two-switch flyback converter is proposed in this paper. This converter is composed of two active power switches, a flyback transformer, a blocking diode, and two passive regenerative clamping circuits. The proposed converter has the advantages of a low cost circuit configuration, a simple control scheme, a high efficiency, and a wide operating range. The circuit topology, analysis, design considerations, and experimental results of the new flyback converter are presented.