期刊文献+

An output amplitude configurable wideband automatic gain control with high gain step accuracy 被引量:1

An output amplitude configurable wideband automatic gain control with high gain step accuracy
原文传递
导出
摘要 An output amplitude configurable wideband automatic gain control(AGC) with high gain step accuracy for the GNSS receiver is presented.The amplitude of an AGC is configurable in order to cooperate with baseband chips to achieve interference suppression and be compatible with different full range ADCs.And what’s more,the gain-boosting technology is introduced and the circuit is improved to increase the step accuracy.A zero,which is composed by the source feedback resistance and the source capacity,is introduced to compensate for the pole.The AGC is fabricated in a 0.18μm CMOS process.The AGC shows a 62 dB gain control range by 1 dB each step with a gain error of less than 0.2 dB.The AGC provides 3 dB bandwidth larger than 80 MHz and the overall power consumption is less than 1.8 mA,and the die area is 800 x 300μm^2. An output amplitude configurable wideband automatic gain control(AGC) with high gain step accuracy for the GNSS receiver is presented.The amplitude of an AGC is configurable in order to cooperate with baseband chips to achieve interference suppression and be compatible with different full range ADCs.And what’s more,the gain-boosting technology is introduced and the circuit is improved to increase the step accuracy.A zero,which is composed by the source feedback resistance and the source capacity,is introduced to compensate for the pole.The AGC is fabricated in a 0.18μm CMOS process.The AGC shows a 62 dB gain control range by 1 dB each step with a gain error of less than 0.2 dB.The AGC provides 3 dB bandwidth larger than 80 MHz and the overall power consumption is less than 1.8 mA,and the die area is 800 x 300μm^2.
作者 何晓丰 莫太山 马成炎 叶甜春 He Xiaofeng;Mo Taishan;Ma Chengyan;Ye Tianchun(Institute of Microelectronics,Chinese Academy of Sciences,Beijing 100029,China;Hangzhou Zhongke Microelectronics Co,Ltd,Hangzhou 310053,China)
出处 《Journal of Semiconductors》 EI CAS CSCD 2012年第2期111-116,共6页 半导体学报(英文版)
基金 supported by the Core Electronic Devices,High-End General Chips and Basic Software Products Major Projects,China(No. 2009ZX01031-002-008) the National High Technology Research and Development Program of China(No.2009AA011601)
关键词 automatic gain control output amplitude configurable high gain step accuracy automatic gain control output amplitude configurable high gain step accuracy
  • 相关文献

参考文献19

  • 1Khoury J M. On the design of constant settling time AGC circuits.IEEE Trans Circuits Syst II, 1998, 45:283.
  • 2Li X Q, Dong L M, Peng X H. A 20 dB, 250 M CMOS variable gain amplifier for GPS receiver. Asia Pacific Conference on Postgraduate Research in Microelectronics and Electronics (PfimeA- sia), 2010:267.
  • 3Lee H D, Lee K A, Hong S. A wideband CMOS variable gain amplifier with an exponential gain control. IEEE Trans Microwave Theory Tech, 2007, 55:1363.
  • 4Rijns J J F. CMOS low-distortion high-frequency variable-gain amplifier. IEEE J Solid-State Circuits, 1996, 31:1029.
  • 5Jeon O, Fox R M, Myers B A. Analog AGC circuitry for a CMOS WLAN receiver. IEEE J Solid-State Circuits, 2006, 41:2291.
  • 6Watanabe O, Otaka S, Ashida M, et al. A 380-MHz CMOS linearin-dB signal-summing variable gain amplifier with gain compen- sation techniques for CDMA systems. Symposium on VLSI Circuits Digest of Technical Papers, 2002:136.
  • 7Duong Q H, Le Q, Kim C W, et al. A 95-dB linear low-power variable gain amplifier. IEEE Trans Circuits Syst I, 2006, 53: 1648.
  • 8Amoroso F. Adaptive A/D converter to suppress CW interference in DSPN spread-spectrum communications. IEEE Trans Commun, 1983, 31:1117.
  • 9Roovers R. Digital controlled variable gain amplifier (DVGA) for IF to digital conversion. Proceedings of the 24th European Solid-State Circuits Conference, 1998:152.
  • 10Alegre J P, Celma S, Calvo B, et al. SiGe analog AGC circuit for an 802.11a WLAN direct conversion receiver. IEEE Trans Circuits Syst II, 2009, 56:93.

同被引文献10

引证文献1

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