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Scalability of Quasi-hysteretic FSM-based Digitally Controlled Single-inductor Dual-string Buck LED Driver To Multiple Strings

机译:基于准迟滞Fsm的数字控制单电感器双串降压LED驱动器对多个串的可扩展性

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摘要

There has been growing interest in Single-Inductor Multiple-Output (SIMO) DC-DC converters due to its reduced cost and smaller form factor in comparison with using multiple single-output converters. An application for such a SIMO-based switching converter is to drive multiple LED strings in a multi-channel LED display. This paper proposes a quasi-hysteretic FSM-based digitally controlled Single-Inductor Dual-Output (SIDO) buck switching LED Driver operating in Discontinuous Conduction Mode (DCM) and extends it to drive multiple outputs. Based on the time-multiplexing control scheme in DCM, a theoretical upper limit of the total number of outputs in a SIMO buck switching LED driver for various backlight LED current values can be derived analytically. The advantages of the proposed SIMO LED driver include reducing the controller design complexity by eliminating loop compensation, driving more LED strings without limited by the maximum LED current rating, performing digital dimming with no additional switches required, and optimization of local bus voltage to compensate for variability of LED forward voltage (VF) in each individual LED string with smaller power loss. Loosely-binned LEDs with larger VF variation can therefore be used for reduced LED costs.
机译:与使用多个单输出转换器相比,单电感多输出(SIMO)DC-DC转换器的成本降低且尺寸更小,对此引起了越来越多的关注。这种基于SIMO的开关转换器的应用是在多通道LED显示器中驱动多个LED串。本文提出了一种基于非磁导模式(DCM)的基于准磁滞FSM的数控单电感双输出(SIDO)降压开关LED驱动器,并将其扩展为驱动多个输出。基于DCM中的时间复用控制方案,可以通过分析得出用于各种背光LED电流值的SIMO降压开关LED驱动器中输出总数的理论上限。提议的SIMO LED驱动器的优点包括:通过消除环路补偿来降低控制器设计的复杂性;驱动更多的LED串而不受最大LED电流额定值的限制;无需任何其他开关即可执行数字调光;以及优化本地总线电压以补偿每个LED串中LED正向电压(VF)的可变性,且功耗较小。因此,可以使用VF变化较大的松散LED来降低LED成本。

著录项

  • 作者

    Sin JKO; Lee ATL; Chan PCH;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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