• Title/Summary/Keyword: DC-DC 변환회로

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Stacked Interleaved Buck DC-DC Converter With 50MHz Switching Frequency (Stacked Interleaved 방식의 50MHz 스위칭 주파수의 벅 변환기)

  • Kim, Young-Jae;Nam, Hyun-Seok;Ahn, Young-Kook;Roh, Jeong-Jin
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.46 no.6
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    • pp.16-24
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    • 2009
  • In this paper, DC-DC buck converter with on-chip filter inductor and capacitor is presented. By operating at high switching frequency of 50MHz with stacked interleaved topology, we reduced inductor and capacitor sizes compared to previously published DC-DC buck converters. The proposed circuit is designed in a standard $0.5{\mu}m$ CMOS process, and chip area is $9mm^2$. This circuit operated at the input voltage of $3{\sim}5V$ range, the maximum load current of 250mA, and the maximum efficiency of 71%.

Development of High Efficiency DC-DC Converter Circuit Topology for Renewable Energy Application (신재생에너지 연계용 고효율 승압형 DC-DC Converter 회로 토폴로지 개발)

  • Jung, Tae-Uk;Kim, Ju-Yong
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.24 no.1
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    • pp.105-111
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    • 2010
  • This article studies the design of DC-DC Converter to convert low-voltage energy sources generated from renewable power like battery power, photovoltaic power, or fuel cells into high-voltage ones. The circuit topology of H-bridge Converter to convert input voltage, 24[V], into out voltage, 400[V], was realized through applying phase shift angle control so as to manage electric power and voltage in the output side. The advantages of the converter system suggested are the low cost as well as current stress reduction, high efficiency, reliability, and simplified maintenance. It is also found that the system is highly useful to produce residential electric power.

High-Efficiency CMOS PWM DC-DC Buck Converter (고효율 CMOS PWM DC-DC 벅 컨버터)

  • Kim, Seung-Moon;Son, Sang-Jun;Hwang, In-Ho;Yu, Sung-Mok;Yu, Chong-Gun
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2011.10a
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    • pp.398-401
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    • 2011
  • This paper presents a high-efficiency CMOS PWM DC-DC buck converter. It generates a constant output voltage(1-2.8V), from an input voltage(3.4-3.9V). Inductor-based type is chosen and inductor current is controlled with PWM operation. The designed circuit consists of power switch, Pulse Width Generation, Buffer, Zero Current Sensing, Current Sensing Circuit, Clock & Ramp generation, V-I Converter, Soft Start, Compensator and Modulator. Switching Frequency is 1MHz, It operates in CCM when the load current is more than 40mA, and the maximum efficiency is 98.71% at 100mA. Output voltage ripple is 0.98mV(input voltage:3.5V, output voltage:2.5V). The performance of the designed circuit has been verified through extensive simulation using a CMOS $0.18{\mu}m$ technology.

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Design of a DC-DC Converter for CMOS Image Sensors in Bio-sensor Chips (바이오센서용 CMOS 이미지 센서를 위한 DC-DC Converter 설계)

  • Park, Heon;Ha, Pan-Bong;Kim, Young-Hee
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.9 no.6
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    • pp.553-558
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    • 2016
  • A DC-DC converter for CMOS image sensors in bio-sensor chips is proposed. The DC-DC converter generates a PCP voltage, that is an on voltage of a pixel, and an NCP voltage, that is an off voltage of a pixel. The PCP voltage with a ripple voltage of within 1.33V is obtained from a positive charge pump of VPP (=5V) with a ripple voltage of 45.35 by using a regulator. Also, the NCP voltage with a ripple voltage of 0.05mV is obtained from a negative charge pump of VNN (=-2V) with a ripple voltage of 62.8 by using a regulator.

400mA Current-Mode DC-DC Converter for Mobile Multimedia Application (휴대용 멀티미디어 기기를 위한 400mA급 전류 방식 DC-DC 컨버터)

  • Heo, Dong-Hun;Nam, Hyun-Seok;Lee, Min-Woo;Ahn, Young-Kook;Roh, Jeong-Jin
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.45 no.8
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    • pp.24-31
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    • 2008
  • Power converters are becoming an essential block in modem mobile multimedia application. This paper presents a high performance DC-DC buck converter for mobile applications. Controller of DC-DC buck converter is designed by current-mode control method. An current-mode DC-DC converter is implemented in a standard $0.18{\mu}m$ CMOS process, and the overall die size was $1.2mm^2$. The peak efficiency was 86 % with a switching frequency of $1\sim1.5MHz$ and a maximum load current of 400mA.

DC-DC Buck converter Using an Adjustable Dead-time Control Method (적응형 사구간제어기법을 이용한 DC-DC 벅 변환기)

  • Lim, Dong-Kuyn;Yoo, Tai-Kyung;Lee, Gun;Yoon, Kwang-Sub
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.48 no.6
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    • pp.25-32
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    • 2011
  • This paper proposes high efficiency current-mode DC-DC buck converter that are suitable for portable devices. The current-mode DC-DC buck converter using adjustable Dead-time control method improves the power efficiency 2~5%. The buck converter has been implemented with a standard 0.35${\mu}m$ CMOS process. The size of this chip is 0.97$mm^2$. The input range of the fabricated DC-DC buck converter is 2.5V~3.3V, and the output is 1.8V. The maximum loading current of the converter is 500mA and the peak efficiency is 93% at 200mA loads.

A Design of Integrated Circuit for High Efficiency current mode boost DC-DC converter (고효율 전류모드 승압형 DC-DC 컨버터용 집적회로의 설계)

  • Lee, Jun-Sung
    • 전자공학회논문지 IE
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    • v.47 no.2
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    • pp.13-20
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    • 2010
  • This paper describes a current mode PWM DC-DC converter IC for battery charger and supply power converter for portable electronic devices. The maximum supply voltage of IC is 40[V] and 2.8[V]~330[V] DC input power is converted to higher or programmed DC voltage according to external resistor ratio or wire winding ratio of transformer. The maximum supply output current is 3[A] over and voltage error of output node is within 3[%]. The whole circuit needed current mode PWM DC-DC converter circuit is designed. The package dimensions and number of external parts are minimized in order to get a smaller hardware size. The power consumption is smaller then 1[mW] at stand by period with supply voltage of 3.6[V] and maximum energy conversion efficiency is about 86[%]. This device has been designed in a 0.6[um] double poly, double metal 40[V] CMOS process and whole chip size is 2100*2000 [um2].

Analysis of Emission Characteristics of DC/DC Converter by Component Placement (부품배치에 따른 DC/DC 컨버터의 Emission 특성분석)

  • Park, Jin-Hong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.2
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    • pp.639-643
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    • 2018
  • As electronic systems become smaller and more portable, the need for power conversion continues to increase. In addition, system stability must be ensured from switching noise due to power conversion efficiency and power conversion system miniaturization. Therefore, countermeasures to reduce switching noise during power conversion are essential. In this paper, a DC/DC buck converter circuit is constructed, and the characteristics of switching noise generated when changing the parts layout in a four-layer printed circuit board (PCB) structure with a reference plane are compared and analyzed. In addition, switching noise characteristics were compared and analyzed through simulations when the parts layout was different in a two-layer PCB structure from which the reference planes were removed. As a result, it was confirmed that the radiated emissions characteristic is reduced by 12dB and the conducted emissions characteristic decreased by 7dB to 8dB, according to the current return path in the four-layer PCB structure. Thus, it was confirmed that the noise characteristics can be improved according to the configuration of the current return path when the power conversion circuit is designed.

Single-Inductor Multiple-Output DC-DC Converter with Negative Feedback Selection Circuit (부궤환 선택회로를 갖는 단일 인덕터 다중 출력 직류-직류 변환기)

  • Gong, Jung-Chul;Roh, Yong-Seong;Moon, Young-Jin;Choi, Woo-Seok;Yoo, Chang-Sik
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.48 no.12
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    • pp.23-30
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    • 2011
  • This paper presents a Single-Inductor Multiple-Output (SIMO) DC-DC Converter with a negative feedback selection circuit to improve a regulation property at light load and to generate independent multiple outputs. The conventional SIMO DC-DC converter with a fixed negative feedback circuit cannot regulate correctly at light load. The SIMO DC-DC converter with the proposed negative feedback selection circuit has been designed in 0.35um 2-poly 3-metal BCDMOS. This converter is dual output boost converter with the 1.5V input and 2.5V, 3.0V output. The power conversion efficiency varies from 59% at 10mA loads to 85% at 50mA loads.

Design of a DC-DC Step-Down Converter for LED Backlight of Mobile Devices (휴대기기용 LED 백라이트를 위한 감압형 DC-DC 변환기 설계)

  • Son, Hyun-Sik;Lee, Min-Ji;Park, Won-Kyoung;Song, Han-Jung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.3
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    • pp.1700-1706
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    • 2014
  • In this paper, a step down converter for LED backlight of mobile application has been proposed. The converter which is operated with 4 MHz high switching frequency is capable of reducing mounting area of passive devices consists of a power stage and a control block. Circuit elements of the power stage are inductor, output capacitor, MOS transistors and feedback resistors. The control block consists of pulse width modulator, error amplifier and oscillator etc. Proposed step down converter has been designed and verified using a $0.35{\mu}m$ 1-poly 4-metal BCD process technology. Simulation results show that the output voltage is 1.8 V in 3.7 V input voltage, output current 100 mA which is larger than 25 ~ 50 mA in conventional 500 KHz driven converter when the duty ratio is 0.4.