• Title/Summary/Keyword: Backlight Inverter

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Charge-Pump High Voltage Inverter for Plasma Backlight using Current Injection Method (CIM(Current Injection Method)을 이용한 Charge-Pump 방식의 Plasma Backlight용 고압Inverter)

  • Jang, Jun-Ho;Kang, Shin-Ho;Lee, Kyung-In;Lee, Jun-Young
    • The Transactions of the Korean Institute of Power Electronics
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    • v.12 no.5
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    • pp.386-393
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    • 2007
  • Charge-pump high voltage inverter for Plasma backlight using CIM(Current Injection Method) is proposed in this paper. Adoption of ERC(Energy Recovery Circuit) is a new attempt in high voltage inverter so that it is not only energy recovery but also improvement of discharge stability and system unstability which is interrupted by noise. Using a charge-pump technique enables low voltage switches to be usable, the cost can be reduced. CIM is adopted to achieve high speed energy recovery in proposed circuit. Operations of the proposed circuit are analyzed for each mode. The proposed circuit is verified to be applicable on a 32 inch plasma backlight panel by experimental results.

A Study on the LCD Backlight Drive using Piezoelectric Transformer (압전 변압기를 이용한 LCD Backlight 구동에 관한 연구)

  • 강태구;이동균;유영한;안형근;한득영
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.273-277
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    • 1999
  • A cold cathode flourescent lamp for the backlight in the notebook computer requires high input voltage about 1300(V) when it turns on. But once a discharge starts, the input voltage can be dropped by about one-third for continued output. The equivalent impedance also varies from open to several dozens of kilo-ohms. The piezoelectric transformer converts electrical energy into mechanical energy and then converts it back to electrical energy at a high voltage. Its high output voltage, high efficiency and small size are suitable for driving the LCD backlight in the notebook computer. The piezoelectric transformer operates near the resonance frequency and the output waveform is close to sine wave with very little noise. This paper suggests an inverter for LCD backlight of notebook computer using piezoelectric transformer that includes voltage to frequency converter for gate signal which is useful for tracking of variable resonance frequency depending on load impedance.

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Low-cost asymmetric control half-bridge inverter for LCD backlight (LCD 백라이트용 저가의 비태칭 제어 하프브리지 인버터)

  • 최성진
    • Proceedings of the KIPE Conference
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    • 2000.07a
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    • pp.509-512
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    • 2000
  • LCD displays for flat monitors the backlit using Cold Cathode Flourescent Lamps(CCFLs) In this paper a low-cost series resonant half-bridge inverter for LCD backlight is proposed as a CCFL ballast. It is regulated by asymmetric control for its fixed frequency soft switching model. The attractiveness of this topology is primarily its low cost because of using BJT switches and reduction of anti-parallel diode. Design procedure and experimental verification from 5W 15"LCD backlight are presented.

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Charge-Pump High Voltage Inverter for Plasma Backlight with Current Injection Method (CIM(Current Injection Method)을 이용한 Charge-Pump 방식의 Plasma Backlight용 고압 Inverter)

  • Jang, Jun-Ho;Kang, Shin-Ho;Lee, Jun-Young
    • Proceedings of the KIPE Conference
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    • 2007.07a
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    • pp.381-383
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    • 2007
  • Charge-pump high voltage inverter for Plasma backlight with CIM(Current Injection Method) is proposed in this paper. Adoption of ERC is a new attempt in high voltage inverter so that it is not only energy recovery but also improvement of discharge stability and system unstability which is interrupted by noise. Using a charge-pump technique enables low voltage switches to be usable, the cost can be reduce. CIM is adopted to achieve high speed energy recovery in proposed circuit. Operations of the proposed circuit are analyzed for each mode. The proposed circuit is verified to be applicable on a 32 inch plasma backlight panel by experimental results.

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Dual Active Clamp Forward(DACF) Inverter for LCD Backlight Drive Applications (LCD Backlight 구동 응용을 위한 고효율 Dual Active Clamp Forward(DACF) Inverter)

  • Shin, Yong-Saeng;Han, Sang-Kyoo;Roh, Chung-Wook;Hong, Sung-Soo;SaKong, Sug-Chin;Kwon, Gi-Hyun;Lee, Hyo-Bum
    • Proceedings of the KIPE Conference
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    • 2007.07a
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    • pp.268-270
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    • 2007
  • LCD Backlight 구동 응용을 위한 새로운 인버터 회로 Topology인 Dual Active Clamp Forward (ACF) Inverter를 제안한다. 제안된 회로는 LCD의 광원 역할을 하는 냉음극 형광램프(Cold Cathode Fluorescent Lamp, CCFL) 구동을 위한 회로로서, 넓은 입력 범위 및 부하 범위에서도 영 전압 스위칭 동작을 보장하며, 출력 AC 전류의 대칭성을 보장한다. 더욱이 기존 Symmetric Phase Shift Full Bridge방식은 특허 우선순위가 있는 방법으로써, Dual ACF Inverter를 사용할 경우 특허 Royalty 부담을 줄일 수 있다. 본 논문에서는 제안된 회로의 동작원리에 대한 타당성을 이론적 분석 및 모의실험을 통하여 검증한다.

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Zero Voltage Switching(ZVS) Dual Half-Bridge Inverter with Wide Input Voltage Range for LCD Backlight Driver (넓은 범위의 ZVS동작을 갖는 LCD Backlight 구동용 Dual Half Bridge Inverter)

  • Jung, Young-Jin;Han, Sang-Kyoo;Roh, Chung-Wook;Hong, Sung-Soo;SaKong, Suk-Chin;Kwon, Gi-Hyun;Lee, Hyo-Bum
    • Proceedings of the KIPE Conference
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    • 2007.07a
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    • pp.144-146
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    • 2007
  • 본 논문에서는 고효율 LCD Backlight 구동을 위해 주로 사용하던 Phase shift Full bridge 방식을 대신할 수 있는 Dual Half Bridge Inverter를 제안하였다. 제안된 회로는 일반적인 Push-Pull 인버터 구동용 제어 IC의 출력 신호 2개로 스위치 4개를 제어할 수 있으며 넓은 범위의 ZVS(zero voltage switching)을 보장하여 소자 발열 및 효율 상승의 이점을 가진다. 제안된 Inverter Topology를 소개하며 동작모드 해석과 시뮬레이션 및 실험을 통한 검증결과를 제시 한다.

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High Power Inverter for LCD Backlight Driving

  • Hur, Jeong-Wook;Kim, Tae-Jo;Lim, Sung-Kyoo
    • 한국정보디스플레이학회:학술대회논문집
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    • 2000.01a
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    • pp.91-92
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    • 2000
  • A high power inverter with 300:1 dimming capability for high luminance, one cell, Osram Planon type, plasma light source for LCD Backlight was designed and tested. It was possible to achieve 300:1 dimming control

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Study on High Efficiency EEFL Backlight inverter for 32-inch LCD TV

  • Oh, Won-Sik;Cho, Kyu-Min;Moon, Gun-Woon;Min, Sook-Kyu;Kim, Hyun-Jin;Jeon, Hyoung-Jun;Kim, Jong-Sun;Mim, Byoung-Woon
    • Proceedings of the KIPE Conference
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    • 2005.07a
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    • pp.405-407
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    • 2005
  • As the screen size of LCD increases, EEFL(External Electrode Fluorescent Lamp) has been suggested to be applicable as backlight source for LCD . Since the electrodes of EEFL are outside of the tube, EEFL enhances the lifetime compared with CCFL(Cold Cathode Fluorescent Lamp), and a single inverter can drive multiple EEFL tubes of which luminance is uniform Therefore, a compact design can be realized and the cost of EEFL application would be much lower than that of CCFL. Moreover, EEFL inverter has higher efficiency per unit power than CCFL inverter. In this paper, a complementary full-bridge PWM(Pulse Width Modulation) inverter was designed for 32-inch LCD TV backlight which has 20 EEFL tubes and adapted two different driving methods to the EEFL inverter. The validity of this study is confirmed from the experimental results.

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The circuit design of small size LCD backlight inverter (소형 TFT-LCD 백라이트 인버터회로 설계)

  • 정상수;김광태
    • Proceedings of the IEEK Conference
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    • 2003.07c
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    • pp.2847-2850
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    • 2003
  • A input voltage conversion dimming control formula and a PMW dimming control formula which have been used for dimming control of CCFL driving inverter in TFT-LCD backlight, are the existing facilities so far, however, in this thesis the circuit is designed by applying The rover inverter that are able to measure output brightness according to changing of duty ratio at PWM and voltage. consequently, it's able to be confirmed that we can have dimming control more detailed than before.

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LCD Backlight Inverter Drive IC (액정디스플레이 후광 인버터 구동 IC)

  • Jeong, Dong-Youl;Jang, Cheon-Seob;Lee, Seung-Zoo
    • Proceedings of the KIEE Conference
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    • 2002.07d
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    • pp.2568-2571
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    • 2002
  • A LCD backlight inverter control IC based on the piezoelectric transformer (PZT) for Cold Cathode Fluorescent Lamp (CCFL) lighting is proposed. It is indeed a variable frequency, variable duty (VFVD) controller having dual feedback control loops for achieving both the regulation of lamp current and the maximum efficiency. The PWM controller regulates the lamp current, while the PLL controller tunes the operating frequency to the frequency that the efficiency of the combined LC-PZT resonator becomes maximum. The mixed PLL/PWM control technique lets the backlight inverter operate at the maximum efficiency in spite of the variation of component and environment. The controller features include a protection for an open or broken lamps, and an open lamp regulation.

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