A capacitor-free CMOS LDO regulator with AC-boosting and active-feedback frequency compensation  被引量:2

A capacitor-free CMOS LDO regulator with AC-boosting and active-feedback frequency compensation

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作  者:周前能 王永生 来逢昌 

机构地区:[1]Microelectronics Center, Harbin Institute of Technology

出  处:《Journal of Semiconductors》2009年第4期95-100,共6页半导体学报(英文版)

摘  要:A capacitor-free CMOS low-dropout (LDO) regulator for system-on-chip (SoC) applications is presented. By adopting AC-boosting and active-feedback frequency compensation (ACB-AFFC), the proposed LDO regulator, which is independent of an off-chip capacitor, provides high closed-loop stability. Moreover, a slew rate enhancement circuit is adopted to increase the slew rate and decrease the output voltage dips when the load current is suddenly switched from low to high. The LDO regulator is designed and fabricated in a 0.6 μm CMOS process. The active silicon area is only 770 × 472 μm2. Experimental results show that the total error of the output voltage due to line variation is less than ±0.197%. The load regulation is only 0.35 mV/mA when the load current changes from 0 to 100 mA.A capacitor-free CMOS low-dropout (LDO) regulator for system-on-chip (SoC) applications is presented. By adopting AC-boosting and active-feedback frequency compensation (ACB-AFFC), the proposed LDO regulator, which is independent of an off-chip capacitor, provides high closed-loop stability. Moreover, a slew rate enhancement circuit is adopted to increase the slew rate and decrease the output voltage dips when the load current is suddenly switched from low to high. The LDO regulator is designed and fabricated in a 0.6 μm CMOS process. The active silicon area is only 770 × 472 μm2. Experimental results show that the total error of the output voltage due to line variation is less than ±0.197%. The load regulation is only 0.35 mV/mA when the load current changes from 0 to 100 mA.

关 键 词:low-dropout regulator AC-boosting and active-feedback frequency compensation capacitor-flee 

分 类 号:TN432[电子电信—微电子学与固体电子学]

 

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