期刊文献+

一种两级误差放大器结构的LDO设计 被引量:2

A LDO regulator with two-stage error amplifier
下载PDF
导出
摘要 基于SMIC 0.18μm CMOS工艺,设计了一种两级误差放大器结构的LDO稳压器。该电路运用两级误差放大器串联方式来改善LDO的瞬态响应性能,采用米勒频率补偿方式提高其稳定性。两级放大器中主放大器运用标准的折叠式共源共栅放大器,决定了电路的主要性能参数;第二级使用带有AB类输出的快速放大器,用来监控LDO输出电压的变化,以快速地响应此变化。电路仿真结果显示:在电源电压为5 V时,输出为1.8 V,输出电压的温度系数为10×10-6/℃;当电源电压从4.5 V到5.5 V变化时,线性瞬态跳变为48 mV;当负载电流从0 mA到60 mA变化时,负载瞬态跳变为5 mV。且环路的相位裕度为74°,整个电路的静态电流为37μA。该电路结构的瞬态跳变电压值远小于其他电路结构,且能实现低功耗供电。 Based on SMIC 0.18 um CMOS process, a LDO linear regulator with two-stage error amplifier is designed. The two error amplifiers installed in series is adopted to improve the transient response of the LDO and applies Miller frequency compensation to improve stability of the circuit. The main amplifier which uses the standard folding cascode amplifier determines the main properties of the circuit. And the second stage using fast amplifier monitors the variation of the LDO output voltage. The simulation results show that the output voltage is 1.8 V and its temperature coefficient is 10×10^-6/℃ under the power supply of 5 V, the linear transient response is 48 mV when the power supply voltage changes from 4.5 V to 5.5 V, the load transient response is 5 mV when the load current changes from 0 to 60 mA, the phase margin is 74°, and the quiescent current of the entire circuit is 37 uA. The transient voltage of this circuit is far less than the other previous circuits, and low-power supply can be achieved.
出处 《电子技术应用》 北大核心 2012年第12期41-44,共4页 Application of Electronic Technique
关键词 低压差线性稳压器 两级误差放大器 快速瞬态响应 低功耗 low dropout linear regulator two-stage error amplifier last transient response low power
  • 相关文献

参考文献8

  • 1RINCON-MORA G A, ALLEN P E.A low-vohage,lowquiescent current,low drop-out regulator[J].IEEE Journal of Solid-State Circuits, 1998,33 (1) : 36-44.
  • 2AL-SHYOUKH M,LEE H ,PEREZ R.A transient-enhanced low-quiescent current low-dropout regulator with buffer impedance attenuation[J].IEEE Journal of Solid-State Circuits, 2007,42(8) : 1732-1742.
  • 3STRIK S, STRIK V.Low quiescent current LDO with improved load transient [C ]. International Biennial Baltic Electronics Conference, Tallinn, Estonia, 2008.
  • 4SIMPSON C.Linear regulators:theory of operation and compensation[Z].National Semiconductor Application Note 1148, 2000.
  • 5MILLIKEN R J, SILVA-MARTINEZ J, SANCHEZ-SINENCIO E.Full on-chip CMOS low-dropout voltage regulator[J]. IEEE Transactions on Circuits and Systems,2007,54(9): 1879-1890.
  • 6毕查德·拉扎维.模拟CMOS集成电路设计[M].西安:西安交通大学出版社,2003:337-338.
  • 7LEUNG K N,MOK P K T.A capacitor-free CMOS lowdropout regulator with damping-factor-control frequency compensation[J].IEEE Journal of Solid-State Circuits, 2003 , 38 (10) : 1691 - 1702.
  • 8Allen P E,Holberg D R(著).CMOS模拟集成电路设计[M].冯军,李智群(译).北京:电子工业出版社,2005.

共引文献118

同被引文献14

  • 1闫良海,吴金,庞坚,姚建楠.LDO过流与温度保护电路的分析与设计[J].电子器件,2006,29(1):127-129. 被引量:23
  • 2骞海荣,邹雪城,陈卫洁,涂熙.一种快速瞬态响应双环路LDO稳压器的设计[J].微电子学,2007,37(1):132-135. 被引量:7
  • 3黄晶生,吴金,刘凡,姚建楠.低压高速LDO电路系统的分析与设计[J].电子器件,2007,30(1):259-262. 被引量:6
  • 4TANTAWY R, BRAUER E. Performance evaluation of CMOS low dropout voltage regulators[C]// 47th IEEE Int Midwest Syrup Circ Syst. Hiroshima, Japan. 2004: 141-144.
  • 5KING B M. Advantages of using PMOS type low- dropout linear regulators in battery applications [J].Ana Applie J, 2000, 2(8) : 16-20.
  • 6BANG S L. Understanding the terms and definitions of LDO voltage regulators [ R]. Texas Instrument Corp. , 1999.
  • 7KUGELATADT T. Fundamental theory of PMOS low-dropout voltage regulators [R]. Texas Instrument Corp, 1999.
  • 8LIN C, FENG Q Y. Design of current limiting circuit in low dropout linear voltage regulator [C] // Asia- Pacific Microwave Conf Proceed. Suzhou, China. 2005 : 4-7.
  • 9PAPPAS I, KAI.ENTERIDIS V, SISKOS S, et al. A complete over-current/short-circuit protection system for low-drop out regulators [C] // IEEE/IFIP 20th Int Conf VLSI-SoC. Santa Cruz, CA, USA. 2012: 303- 306.
  • 10WANG Y S, I.I R X, YU M Y, et al. A low dropout regulator with over current reminder circuits[C] // IEEE 8th Int Conf ASICON. Changsha, China. 2009: 1089-1092.

引证文献2

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部