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Efficiency improvement of dual mode DC-DC buck converter under light load using PTWS with a zero current detector

机译:使用零电流检测器的PTWS在轻负载下提高双模DC-DC降压转换器的效率

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This paper presents a dual-mode DC-DC buck converter using power transistor width scaling (PTWS) with a zero current detector to improve power efficiency under light load. The buck converter is operated in a dual mode, combining the switching frequency modulation (SFM) mode which uses the voltage controlled oscillator (VCO) under light load, with the PWM mode for heavy load. To enhance power efficiency under light load a PTWS scheme is employed, in which the inductor current is detected using a zero current detector (ZCD) and then used to select the gate size of the power switching transistor. The proposed circuit was designed using a Magnachip 0.35μm CMOS process. Simulation results shows that our proposed converter has 81.3% ~ 93% power efficiency for output load currents of 10mA ~ 250mA, which is a 5.3% improvement compared to a simple SFM-PWM dual mode and an 8.9% improvement compared to a PWM-only mode under a light load of 10mA, respectively.
机译:本文提出了一种双模式DC-DC降压转换器,该转换器使用功率晶体管宽度缩放(PTWS)和零电流检测器来提高轻载条件下的功率效率。降压转换器以双模式工作,将开关频率调制(SFM)模式与轻载时的PWM模式结合在一起,该模式在轻载下使用压控振荡器(VCO)。为了提高轻负载下的功率效率,采用了PTWS方案,其中使用零电流检测器(ZCD)检测电感器电流,然后将其用于选择功率开关晶体管的栅极尺寸。拟议的电路是使用Magnachip0.35μmCMOS工艺设计的。仿真结果表明,我们提出的转换器在10mA〜250mA的输出负载电流下具有81.3%〜93%的功率效率,与简单的SFM-PWM双模式相比,提高了5.3%,与仅PWM相比,提高了8.9%。模式分别在10mA的轻负载下进行。

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