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Integrated Voltage Regulator for Low-Power Mobile Applications

机译:适用于低功耗移动应用的集成稳压器

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Battery powered mobile devices demand very efficient power management integrated circuits to extend battery life along with a small form-factor. Integrated voltage regulators has inductors and capacitors on-chip to reduce its foot-print. However, these on-chip passives occupy major amount of the silicon real-estate. Improvement in the capacitance/inductance densities will result in smaller form-factor. Also, coupled inductor can reduce the foot-print to nearly half compared to uncoupled inductor. Coupled inductor can also enhance the performance of the voltage regulators where it is used as power transfer element and as filter element. Hence, in this paper, a comparative study of different inductor configurations is undertaken to find the optimum case that can result in best converter performance with respect to efficiency and form-factor. Buck converter regulating 1.8 V to 1.0 V with anti-coupled inductor configuration using out-of-phase input signals produced the best-in-class results. An output voltage ripple of only 18 mVpk-pk, resulting in a peak efficiency of 86.2% for a load current of 300 mA is achieved.
机译:电池供电的移动设备需要非常高效的电源管理集成电路,以延长电池寿命以及减小外形尺寸。集成稳压器在芯片上具有电感器和电容器,以减少其占地面积。但是,这些片上无源器件占据了硅不动产的大部分。电容/电感密度的提高将导致更小的形状因数。此外,与非耦合电感器相比,耦合电感器可将占地面积减少近一半。耦合电感器还可以提高稳压器的性能,将其用作功率传输元件和滤波器元件。因此,在本文中,对不同电感器配置进行了比较研究,以找到可以在效率和外形方面实现最佳转换器性能的最佳情况。采用异相输入信号的反耦合电感器配置,可将1.8 V调节至1.0 V的Buck转换器产生了同类最佳的结果。输出电压纹波仅为18 mVpk-pk,对于300 mA的负载电流可实现86.2%的峰值效率。

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