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A Low-Power Time-Synchronization Processor With Symmetric Even/Odd Timer for Charge-Shared LCD Driving of 3DTV Active Shutter Glasses

机译:具有对称偶/奇定时器的低功耗时间同步处理器,用于3DTV主动快门式眼镜的电荷共享LCD驱动

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The proposed sync-processor enables a fractional-order time-synchronization to generate an efficient lens shutter-control timing for the charge-shared LCD lens driving in the 3DTV active shutter glasses. This design implements a universal sync-edge tracer as a pre-processor to form the unit event of the wireless sync-packet, a fractional-order timer to measure the timing period for accurate synchronization of the stereo-vision, and charge-shared driver controlled by the proposed symmetric even/odd timer to provide an efficient charge equalization method. The proposed symmetric even/odd timer block sequentially generates the driver switching events by distributing the driver activation into four pins of the LCD active shutter lenses to reuse the pre-pumped charge of the charge-shared LCD driver, which is sequentially shared between four pins for LCD lens. The proposed sequential lens control by distributing the charge-sharing events also enables the reduction of the hardware size required for the counters and overflow comparators in the switching timer to generate the pulse width modulation (PWM) pulse waveform of the LCD lens control for time-sequential 3D stereo-vision. The implemented one-chip solution, which is applied with all of the proposed techniques to improve the previous work, reduces about 140 of LCD lens driving current, which results in about 30% current reduction in total. This paper describes the system's architecture and the details of the proposed techniques, while also identifying the key concepts and functions.
机译:所提出的同步处理器能够实现分数阶时间同步,从而为3DTV有源快门眼镜中的电荷共享LCD镜头驱动生成高效的镜头快门控制时序。此设计将通用的同步边缘跟踪器用作预处理器以形成无线同步数据包的单元事件,并使用分数阶计时器来测量定时周期以实现立体声视觉的精确同步,并采用电荷共享驱动器由提出的对称偶/奇定时器控制,以提供一种有效的电荷均衡方法。所提出的对称偶/奇计时器块通过将驱动器激活分配到LCD有源快门透镜的四个引脚中来顺序生成驱动器切换事件,以重复使用电荷共享LCD驱动器的预泵送电荷,该电荷在四个引脚之间顺序共享用于LCD镜头。提议的通过分布电荷共享事件的顺序镜头控制,还可以减少切换计时器中计数器和溢出比较器生成LCD镜头控制的脉宽调制(PWM)脉冲波形所需的硬件大小,顺序3D立体视觉。已实施的单芯片解决方案与所有建议的技术一起使用以改善以前的工作,可减少约140的LCD透镜驱动电流,从而使电流总共减少约30%。本文描述了系统的体系结构和所提议技术的细节,同时还确定了关键的概念和功能。

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