用于LED驱动器的0.18μm CMOS 91%效率0.1 to 2a可扩展buck-boost DC-DC转换器

P. Malcovati, M. Belloni, F. Gozzini, Cristiano Bazzani, A. Baschirotto
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引用次数: 36

摘要

一些新兴的便携式应用需要高效率的LED驱动器[1-4]。LED驱动器基本上是一个电流源,它迫使实现所需的光发射所需的电流进入LED。为了提高LED驱动效率,除了控制LED电流外,还需要调节施加到LED本身的电压,以尽量减少驱动电流源的压降,从而减少功耗。根据LED的种类和强制通过LED本身的电流(本设计中为0.1至2A),因此,根据所需的光发射,驱动LED所需的电压在很大范围内(0至5V)变化,同时将驱动电流源上的电压余量保持在最小。从2.7到5.5V的标准电压电源开始,然后需要一个降压升压DC-DC转换器(图16.4.1)。buck-boost DC-DC转换器将LED包含在控制反馈回路中,并且必须提供快速的导通和负载瞬态(约20μs),以便LED本身能够进行脉冲操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 0.18μm CMOS 91%-efficiency 0.1-to-2A scalable buck-boost DC-DC converter for LED drivers
Several emerging portable applications require high-efficiency LED drivers [1-4]. An LED driver is basically a current source that forces the current required for achieving the desired light emission into the LED. In order to increase the LED driver efficiency, besides controlling the LED current, it is necessary to regulate the voltage applied to the LED itself, to minimize the voltage drop across the driver current source and, hence, the power consumption. Depending on the kind of LED and on the current forced through the LED itself (0.1 to 2A in this design) and, hence, on the desired light emission, the voltage required to drive the LED, while maintaining the voltage headroom across the driver current source to the minimum, varies over a wide range (0 to 5V). Starting from a standard voltage supply in the range 2.7 to 5.5V, a buck-boost DC-DC converter is then required (Fig. 16.4.1). The buck-boost DC-DC converter includes the LED in the control feedback loop and has to provide fast turn-on and load transients (on the order of 20μs), in order to allow pulsed operation of the LED itself.
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