液晶面板寄生电容效应建模及消除策略

Chang-Hua Lin, Tsung-You Hung, Chien-Ming Wang, Kai-Jun Pai
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引用次数: 1

摘要

建立了液晶面板寄生电容的数学模型,探讨了漏电流效应对液晶面板电特性的影响。首先,采用D类谐振背光逆变器作为主电路。其次,将寄生电容引起的相位角变化作为控制策略的参考参数。采用一次侧控制,结合DPLL技术,形成反馈机制,跟踪最优工作频率。从而降低寄生电容的影响,从而消除漏电流的影响,从而提高系统的效率和稳定性。详细介绍了完整的数学分析和设计考虑。实验结果与理论预测一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of the Parasitical Capacitance Effect in LCD Panel and Corresponding Elimination Strategy
A mathematical model of parasitical capacitance in LCD panel is conducted to explore the influence of leakage current effect on electric characteristics. First, a class D resonant backlight inverter is employed to act as the main circuit. Next, the phase angle variations caused by the parasitic capacitances is considered as a reference parameter in the proposed control strategy. By using the primary-side control and incorporating the DPLL technique to form a feedback mechanism to track the optimal operating frequency. And then the influence of parasitic capacitance can be reduced so as to eliminate the leakage current effect, hence, the system efficiency and stability will be improved. Complete mathematical analysis and design considerations are detailed. Experimental results agree with the theoretical predictions.
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