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Design Approach for the Cold Cathode Fluorescent Lamps Backlight Inverters with Lamp Current Balancing Chokes

机译:冷阴极荧光灯背光逆变器的设计方法灯电流平衡扼流圈

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摘要

Parallel resonant ballast inverters are often used to drive fluorescent light application including backlight for the cold cathode fluorescent lamps (CCFL) for liquid crystal display (LCD) units. Besides the traditional requirements of high efficiency, low EMI noise and dimming capability, there are two important requirements. Those are the array light level evenness and the quality of the lamp current waveform. The former is critical especially for very large screen display where CCFL are still attractive. And the latter affects the lifespan of the lamps if the harmonic content of the lamp current is high. Both of these performances are affected by the parasitic elements of both the lamp and the balancing chokes. The issue has never been tackled from an overall point of view. In this paper, theoretical model will be developed and design procedure proposed to determine the critical design parameters. Experiments based on a laboratory 200W prototype were conducted to verify the performance of the proposed circuit model. Although CCFL lamp was used for illustration and experimentation in this paper, the results of this paper are applicable to other lamp that use resonant circuit and inductor balancing chokes in the ballast circuit.
机译:并联谐振镇流器逆变器通常用于驱动荧光应用,包括用于液晶显示器(LCD)单元的冷阴极荧光灯(CCFL)的背光。除了传统的高效率要求,低EMI噪声和调光功能,还有两个重要要求。那些是阵列光线均匀度和灯电流波形的质量。前者至关重要,特别是对于非常大的屏幕显示,CCFL仍然具有吸引力。如果灯电流的谐波含量高,则后者会影响灯的寿命。这两种性能都受到灯和平衡扼流圈的寄生元件的影响。从未从整体角度解决了这个问题。本文将开发理论模型和建议的设计程序来确定关键设计参数。进行了基于实验室200W原型的实验,以验证所提出的电路模型的性能。虽然CCFL灯在本文中用于说明和实验,但本文的结果适用于在镇流器电路中使用谐振电路和电感器平衡扼流圈的其他灯。

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