• 제목/요약/키워드: multi-stage rectifier

검색결과 6건 처리시간 0.019초

바이오응용 무선전력전달을 위한 13.56 MHz CMOS 다단 정류기 (A 13.56 MHz CMOS Multi-Stage Rectifier for Wireless Power Transfer in Biomedical Applications)

  • 차혁규
    • 전자공학회논문지
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    • 제50권3호
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    • pp.35-41
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    • 2013
  • $0.18-{\mu}m$ CMOS 반도체 공정을 이용하여 신체에 깊이 이식되어 있는 deep implant 의료 전자기기에서의 무선전력전달을 위한 고효율의 다단 정류기 (multi-stage rectifier)를 구현하였다. 세 개의 단계로 이루어진 정류기는 cross-coupled 된 구조를 이용하여 외부에서 전달되는 작은 AC 입력 신호를 boost하여 1.2-1.5 V의 DC 출력 신호를 implant 전자기기로 전달한다. 설계 된 정류기는 13.56 MHz에서 0.6-Vpp의 작은 RF 입력 신호와 $10-k{\Omega}$의 load 저항이 연결 된 측정 환경에서 최대 70 %의 전력 변환 효율을 달성하였다.

넓은 입력 범위를 갖는 무선 전력 전송용 다중 모드 정류기 설계 (A Design of Wide Input Range Multi-mode Rectifier for Wireless Power Transfer System)

  • 최영수;이강윤
    • 대한전자공학회논문지SD
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    • 제49권4호
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    • pp.34-42
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    • 2012
  • 본 논문에서는 무선전력전송 시스템 수신부의 넓은 입력 범위의 CMOS 다중 모드 정류기를 설계하였다. 다중 모드 정류기의 출력전압을 비교기로 감지하고, 스위치를 컨트롤 하여 정류기 모드를 전환한다. 다중 모드 정류기는 입력 전압의 크기에 따라 자동으로 전파 정류기, 1단 전압 체배기, 2단 전압 체배기로 동작한다. 일반적인 전파 정류기는 10 V에서 20 V까지의 입력 AC 전압에 대해 9 V에서 19 V까지의 출력 DC 전압을 생성할 수 있다. 다중 모드 정류기는 전파 정류기 보다 입력 범위를 5 V 향상시켜서 5 V에서 20 V까지의 입력 AC 전압에 대해 출력 DC 전압은 7.5 V에서 19 V까지 생성되는 것을 보여준다. 다중 모드 정류기의 효율은 전파 정류기 모드에서 94%이다. 제안하는 다중 모드 정류기는 0.35${\mu}m$ BCD 공정으로 설계되었고, 면적은 $2500{\mu}m{\times}1750{\mu}m$ 이다.

동기 정류기를 이용한 클램프 모드 포워드 다중 공진형 컨버터 (Clamp mode forward multi-resonant conveter with synchronous rectifier)

  • 안강순;김희준
    • 전자공학회논문지S
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    • 제34S권2호
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    • pp.112-120
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    • 1997
  • The clamp mode (CM) forward zero voltage switching multi resonant converter (ZVS-MPC) with self-driven synchronous rectifier is studied. The loss at the synchronous rectification stage of the converter is analyzed using MOSFET piecewise linear model and is compared with the loss at the conventional schottky diode rectification stage of th econverter. From the results of the analysis, it is known that the use fo MOSFETs as a synchronous rectifier reduces the loss at the rectification stage overthe whole load range comparing the use of schottky diodes as a conventional rectifier in the converter. In order to verify the validit of the analysis, we have built a 33W(3.3V/10A) CM forward ZVS-MRC with self-driven synchronous rectifier, in which switching frequency is 1MHz, and tested. FRom the experimental results, it is known that the synchronous rectification achieved about 1W improvement in the loss at the rectification stage and about 3% in the efficiency at the converter as compared with the conventional schottky diode rectification.

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동기 정류기를 이용한 클램프 모드 포워드 영전압 스위칭 다중 공진형 컨버터 (CM Forward ZVS-MRC with Synchronous Rectifier)

  • 안강순;김희준
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1996년도 하계학술대회 논문집 A
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    • pp.395-399
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    • 1996
  • The Clamp Mode(CM) Forward Zero Voltage Switching Multi Resonant Converter(ZVS-MRC) with self-driven synchronous rectifier in studied. The loss at the synchronous rectification stage of the converter is analyzed using MOSFET linear model and is compared with the loss at the conventional schottky diode rectification stage of the converter. From the results of the analysis, it is known that the use of MOSFETs as a synchronous rectifier reduces the loss at the rectification stage over the whole load range comparing the use of schottky diodes as a conventional rectifier in the converter. In order to verify the validity of the analysis, we have built a 33W(3.3V/10A) CM Forward ZVS-MRC with self-driven synchronous rectifier, in which switching frequency is 1MHz, and tested. From the experimental results, it is known that the synchronous rectification achieved about 1W improvement in the loss at the rectification stage and about 3% in the efficiency at the converter as compared with the conventional schottky diode rectification.

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Analysis of Multi Level Current Source GTO Inverter for Induction Motor Drives

  • Arase, Takayuki;Matususe, Kouki
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 1998년도 Proceedings ICPE 98 1998 International Conference on Power Electronics
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    • pp.535-540
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    • 1998
  • This paper discusses a triple stage current source GTO inverter system for high power motor drives. The energy rebound circuit of the triple stage inverter not only controls the spike voltage of the GTO inverter but also facilitates PWM control of the thyristor rectifier operated at unity fundamental input power factor. Based on Pspice simulation and experiments, the principles and PWM pulse pattern for removing specific lower harmonics in the inverter's output current are discussed in detail.

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Dual-Output Single-Stage Bridgeless SEPIC with Power Factor Correction

  • Shen, Chih-Lung;Yang, Shih-Hsueh
    • Journal of Power Electronics
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    • 제15권2호
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    • pp.309-318
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    • 2015
  • This study proposes a dual-output single-stage bridgeless single-ended primary-inductor converter (DOSSBS) that can completely remove the front-end full-bridge alternating current-direct current rectifier to accomplish power factor correction for universal line input. Without the need for bridge diodes, the proposed converter has the advantages of low component count and simple structure, and can thus significantly reduce power loss. DOSSBS has two uncommon output ports to provide different voltage levels to loads, instead of using two separate power factor correctors or multi-stage configurations in a single stage. Therefore, this proposed converter is cost-effective and compact. A magnetically coupled inductor is introduced in DOSSBS to replace two separate inductors to decrease volume and cost. Energy stored in the leakage inductance of the coupled inductor can be completely recycled. In each line cycle, the two active switches in DOSSBS are operated in either high-frequency pulse-width modulation pattern or low-frequency rectifying mode for switching loss reduction. A prototype for dealing with an $85-265V_{rms}$ universal line is designed, analyzed, and built. Practical measurements demonstrate the feasibility and functionality of the proposed converter.