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Design and analysis for backlight inverter with six-phase PWM dimming control circuit

机译:具有六相PWM调光控制电路的背光逆变器的设计与分析

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This paper proposes a novel dimming control scheme which possesses six-phase PWM dimming control for backlight inverter. We adopt six-phase PWM dimming control circuit to control the brightness of twelve lamps. Each phase driving circuit can control two lamps. Circuit architecture is full bridge circuit which can improve the total efficiency of driving circuit. Due to single-phase PWM dimming consumes large input current Iin(A) Iin(A) than six -phase PWM dimming at the same PDIM. So, it causes that single-phase dimming presents larger percent error range (-6.36 ~ +9.8%) and six-phase dimming presents smaller percent error range(-1.26~+1.98%)in average lamp current Ioavg (mA) comparing with lamp currents Io(mA). Hence the six-phase dimming achieves uniform output lamp currents which is called current equalization. From the experimental results, We verify that six-phase dimming is better than conventional single-phase dimming in the performance and in power efficiency η. We use twelve CCFLs(300-mm/2.4-mm) inside of a 24 inch LCDTV.
机译:本文提出了一种新型调光控制方案,具有用于背光逆变器的六相PWM调光控制。我们采用六相PWM调光控制电路来控制十二灯的亮度。每个相位驱动电路可以控制两个灯。电路架构是全桥电路,可以提高驱动电路的总效率。由于单相PWM调光,消耗大输入电流IIN(a)IIN(a)比同一PDIM的六个相PWM调光。因此,它会导致单相调调光显示较大的误差范围(-6.36〜+ 9.8%),六相调在与...相比的平均灯电流IOAVG(MA)中的误差范围(-1.26〜+ 1.98%)。灯电流IO(MA)。因此,六相调使得均匀的输出灯电流称为电流均衡。从实验结果来看,我们验证了六相调调光优于性能和功率效率η中的传统单相调。我们在24英寸LCDTV内使用12个CCFL(300 mm / 2.4 mm)。

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