首页> 外文会议>IEEE International Solid- State Circuits Conference >12.4 A 7.5W-output-power 96-efficiency capacitor-free single-inductor 4-channel all-digital integrated DC-DC LED driver in a 0.18μm technology
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12.4 A 7.5W-output-power 96-efficiency capacitor-free single-inductor 4-channel all-digital integrated DC-DC LED driver in a 0.18μm technology

机译:12.4采用0.18μm技术的7.5W输出功率,效率为96%的无电容器单电感4通道全数字集成DC-DC LED驱动器

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Today's general lighting development is driven by improvements in semiconductor-based systems. It is expected that solid-state lighting (SSL) will dominate general lighting in the near future. Two main challenges that must be met in SSL are the reduction of the bill of materials (BOM), and an increase in functionality. In [1], a floating DC-DC buck controller is presented. This controller adds to the BOM, as every device of the power path is discrete and the ASIC can only drive a single LED string. In contrast to that, [2] offers a high-current fully integrated power stage. However, several external passives are introduced and the technology inhibits stacking multiple LEDs for high luminous efficacy. To overcome this, [3] presents an integrated HV power path with only the inductor as an external component. Ina parallel development, [4] reports an LED driver similar to [3], but that uses a discrete Schottky diode for asynchronous rectification. In fact, [1-4] demonstrate single output LED drivers without additional functionality or full color spectrum. To overcome these drawbacks in light spectrum and control, [5] presents a 3-channel LED driver. However, the external passives are numerous, which significantly impairs the overall BOM.
机译:如今,基于基于半导体的系统的改进推动了通用照明的发展。预计在不久的将来,固态照明(SSL)将主导普通照明。 SSL必须满足的两个主要挑战是减少物料清单(BOM)和增加功能。在[1]中,提出了一种浮动DC-DC降压控制器。该控制器增加了BOM,因为电源路径中的每个设备都是离散的,而ASIC只能驱动单个LED串。与此相反,[2]提供了一种高电流,完全集成的功率级。但是,引入了多个外部无源元件,该技术禁止堆叠多个LED以实现高发光效率。为了克服这个问题,[3]提出了一个集成的HV电源路径,仅将电感器作为外部组件。在并行开发中,[4]报告了一种类似于[3]的LED驱动器,但它使用分立的肖特基二极管进行异步整流。实际上,[1-4]演示了没有附加功能或全色谱的单输出LED驱动器。为了克服光谱和控制方面的这些缺点,[5]提出了一种3通道LED驱动器。但是,外部无源器件数量众多,这极大地损害了总体BOM。

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