期刊文献+

Full on-chip and area-efficient CMOS LDO with zero to maximum load stability using adaptive frequency compensation 被引量:7

Full on-chip and area-efficient CMOS LDO with zero to maximum load stability using adaptive frequency compensation
原文传递
导出
摘要 A full on-chip and area-efficient low-dropout linear regulator (LDO) is presented. By using the proposed adaptive frequency compensation (AFC) technique, full on-chip integration is achieved without compromising the LDO's stability in the full output current range. Meanwhile, the use of a compact pass transistor (the compact pass transistor serves as the gain fast roll-off output stage in the AFC technique) has enabled the LDO to be very areaefficient. The proposed LDO is implemented in standard 0.35 μm CMOS technology and occupies an active area as small as 220 × 320/zm^2, which is a reduction to 58% compared to state-of-the-art designs using technologies with the same feature size. Measurement results show that the LDO can deliver 0-60 mA output current with 54 μA quiescent current consumption and the regulated output voltage is 1.8 V with an input voltage range from 2 to 3.3 V. A full on-chip and area-efficient low-dropout linear regulator (LDO) is presented. By using the proposed adaptive frequency compensation (AFC) technique, full on-chip integration is achieved without compromising the LDO's stability in the full output current range. Meanwhile, the use of a compact pass transistor (the compact pass transistor serves as the gain fast roll-off output stage in the AFC technique) has enabled the LDO to be very areaefficient. The proposed LDO is implemented in standard 0.35 μm CMOS technology and occupies an active area as small as 220 × 320/zm^2, which is a reduction to 58% compared to state-of-the-art designs using technologies with the same feature size. Measurement results show that the LDO can deliver 0-60 mA output current with 54 μA quiescent current consumption and the regulated output voltage is 1.8 V with an input voltage range from 2 to 3.3 V.
作者 马海峰 周锋
出处 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2010年第1期73-78,共6页 半导体学报(英文版)
基金 supported by Shanghai-Applied Material Research Development Fund(No.09700714100).
关键词 low-dropout regulator frequency compensation full on-chip SYSTEM-ON-CHIP low-dropout regulator frequency compensation full on-chip system-on-chip
  • 相关文献

参考文献11

  • 1Shi C L, Walker B C, Zeisel E, et al. A highly integrated power management IC for advanced mobile applications. IEEE J Solid- State Circuits, 2007, 42(8): 1723.
  • 2Rincon-Mora G A, Allen P E. A low-voltage, low quiescent eurrent, low drop-out regulator. IEEE J Solid-State Circuits, 1998, 33(1): 36.
  • 3Leung K N, Mok P K T, Lau S K. A low-voltage CMOS low- dropout regulator with enhanced loop response. IEEE Symposium on Circuits and Systems, Vancouver, 2004, 1:385.
  • 4Al-Shyoukh M, Lee H, Perez R A. Transient-enhanced low- quiescent current low-dropout regulator with buffer impedance attenuation. IEEE J Solid-State Circuits, 2007, 42(8): 1732.
  • 5Lau S K, Leung K N, Mok P K T. Analysis of low-dropout regulator topologies for low-voltage regulation. IEEE International Conference on Electronic Device and Solid-state Circuits, Hong Kong, 2003:379.
  • 6Leung K N, Mok P K T. A capacitor-free CMOS low-dropout regulator with damping-factor-control frequency compensation. IEEE J Solid-State Circuits, 2003, 38(10): 1691.
  • 7Lau S K, Mok P K T, Leung K N. A low-dropout regulator for SoC with Q-reduction. IEEE J Solid-State Circuits, 2007, 42(3): 658.
  • 8Miliken R J, Silva-Martinez J, Sanchez-Sinencio E. Full on-chip CMOS low-dropout voltage regulator. IEEE Trans Circuit Syst 1, 2007, 54(9): 1879.
  • 9Ahuja B K. An improved frequency compensation technique for CMOS operational amplifiers. IEEE J Solid-State Circuits, 1983, 18(6): 629.
  • 10Lee H, Mok P K T. Active-feedback frequency-compensation technique for low-power multistage amplifiers. IEEE J Solid- State Circuits, 2003, 38(3): 511.

同被引文献15

引证文献7

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