A Design of Wide-Bandwidth LDO Regulator with High Robustness ESD Protection Circuit

被引:1
|
作者
Cho, Han-Hee [1 ]
Koo, Yong-Seo [1 ]
机构
[1] Dankook Univ, Dept Elect & Elect Engn, Yongin, South Korea
关键词
LDO; Linear; Low-dropout; Multiple error amp; Wide-bandwidth; VOLTAGE;
D O I
10.6113/JPE.2015.15.6.1673
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A low dropout (LDO) regulator with a wide-bandwidth is proposed in this paper. The regulator features a Human Body Model (HBM) 8kV-class high robustness ElectroStatic Discharge (ESD) protection circuit, and two error amplifiers (one with low gain and wide bandwidth, and the other with high gain and narrow bandwidth). The dual error amplifiers are located within the feedback loop of the LDO regulator, and they selectively amplify the signal according to its ripples. The proposed LDO regulator is more efficient in its regulation process because of its selective amplification according to frequency and bandwidth. Furthermore, the proposed regulator has the same gain as a conventional LDO at 62 dB with a 130 kHz-wide bandwidth, which is approximately 3.5 times that of a conventional LDO. The proposed device presents a fast response with improved load and line regulation characteristics. In addition, to prevent an increase in the area of the circuit, a body-driven fabrication technique was used for the error amplifier and the pass transistor. The proposed LDO regulator has an input voltage range of 2.5 V to 4.5 V, and it provides a load current of 100 mA in an output voltage range of 1.2 V to 4.1 V. In addition, to prevent damage in the Integrated Circuit (IC) as a result of static electricity, the reliability of IC was improved by embedding a self-produced 8 kV-class (Chip level) ESD protection circuit of a P-substrate-Triggered Silicon Controlled Rectifier (PTSCR) type with high robustness characteristics.
引用
收藏
页码:1673 / 1681
页数:9
相关论文
共 50 条
  • [21] HIGH-POWER WIDE-BANDWIDTH TRAPATT CIRCUITS
    CLORFEINE, AS
    ROSEN, A
    REYNOLDS, JF
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 1975, SC10 (01) : 27 - 31
  • [22] High-saturation current wide-bandwidth photodetectors
    Tulchinsky, DA
    Li, XW
    Li, N
    Demiguel, S
    Campbell, JC
    Williams, KJ
    IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2004, 10 (04) : 702 - 708
  • [23] A wide-bandwidth and high-sensitivity robust microgyroscope
    Sahin, Korhan
    Sahin, Emre
    Alper, Said Emre
    Akin, Tayfun
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2009, 19 (07)
  • [24] FIRMWARE DESIGN FOR WIDE-BANDWIDTH IF SUPPORT AND IMPROVED MEASUREMENT SPEED
    RICE, TA
    HEWLETT-PACKARD JOURNAL, 1995, 46 (05): : 84 - 85
  • [25] A wide-bandwidth PSR-enhanced low-dropout regulator using a bandpass feedforward supply ripple rejection circuit
    Xin Ming
    Nie Li
    Yang Lu
    Zhuo Wang
    Ze-kun Zhou
    Bo Zhang
    Analog Integrated Circuits and Signal Processing, 2014, 80 : 221 - 232
  • [26] A wide-bandwidth PSR-enhanced low-dropout regulator using a bandpass feedforward supply ripple rejection circuit
    Ming, Xin
    Li, Nie
    Lu, Yang
    Wang, Zhuo
    Zhou, Ze-kun
    Zhang, Bo
    ANALOG INTEGRATED CIRCUITS AND SIGNAL PROCESSING, 2014, 80 (02) : 221 - 232
  • [27] A high-precision, wide-bandwidth micromachined tunneling accelerometer
    Liu, CH
    Kenny, TW
    JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2001, 10 (03) : 425 - 433
  • [28] Design of high-reliability LDO with current limiting characteristics with built-in new high tolerance ESD protection circuit (vol 10, 20130516, 2013)
    Jung, Jin Woo
    Koo, Yong Seo
    Lee, Kwang Yeob
    IEICE ELECTRONICS EXPRESS, 2013, 10 (21):
  • [29] Development of high-performance and wide-bandwidth IP router
    Funae, H
    Sudama, T
    Okumiya, K
    Fukunaga, M
    Houji, T
    Sumida, K
    NEC RESEARCH & DEVELOPMENT, 1999, 40 (01): : 96 - 102
  • [30] Systematic Design of Wide-Bandwidth Photonic Crystal Waveguide Bends With High Transmission and Low Dispersion
    Askari, Murtaza
    Momeni, Babak
    Soltani, Mohammad
    Adibi, Ali
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2010, 28 (11) : 1707 - 1713