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A dual-mode analog baseband with digital-assisted DC-offset calibration for WCDMA/GSM receivers

A dual-mode analog baseband with digital-assisted DC-offset calibration for WCDMA/GSM receivers
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摘要 A dual-mode analog baseband with digital-assisted DC-offset calibration (DCOC) for WCDMA/GSM receiver is presented. A digital-assisted DCOC is proposed to solve the DC-offset problem by removing the DC- offset component only. This method has no bandwidth sacrifice. After calibration the measured output residual offset voltage is within 5 mV at most gain settings and the IIP2 is more than 60 dBm. The baseband is designed to be reconfigurable at bandwidths of 200 kHz and 2.1 MHz. Total baseband gain can be programmed from 6 to 54 dB. The chip is manufactured with 0.13μm CMOS technology and consumes 10 mA from a 1.5 V supply in the GSM mode including an on-chip buffer while the core area occupies 1.2 mm^2. A dual-mode analog baseband with digital-assisted DC-offset calibration (DCOC) for WCDMA/GSM receiver is presented. A digital-assisted DCOC is proposed to solve the DC-offset problem by removing the DC- offset component only. This method has no bandwidth sacrifice. After calibration the measured output residual offset voltage is within 5 mV at most gain settings and the IIP2 is more than 60 dBm. The baseband is designed to be reconfigurable at bandwidths of 200 kHz and 2.1 MHz. Total baseband gain can be programmed from 6 to 54 dB. The chip is manufactured with 0.13μm CMOS technology and consumes 10 mA from a 1.5 V supply in the GSM mode including an on-chip buffer while the core area occupies 1.2 mm^2.
出处 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2011年第12期95-100,共6页 半导体学报(英文版)
基金 Project supported by the National High Technology Research and Development Program of China(Nos.2009AA01Z261,2009ZX01031- 003 -002 )
关键词 analog baseband digital-assisted DCOC reconfigurable receiver analog baseband digital-assisted DCOC reconfigurable receiver
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参考文献9

  • 1Giannini V, Cranincks J. Baseband analog circuits for software defined radio. Springer, 2008.
  • 2Gharpurey R, Vanduru N, Dantoni F, et al. A direct conversion receiver for the 3G WCDMA standard. IEEE J Solid-State Cir- cuits, 2003, 38(3): 556.
  • 3Reynolds S K, Floyd B A, Beukema T, et al. A direct conversion receiver IC for WCDMA mobile systems. IEEE J Solid-State Circuits, 2003, 38(9): 1555.
  • 4Razavi B. Design considerations for direct-conversion receivers. IEEE Trans Circuits Syst, 1997, 44(6): 428.
  • 53rd Generation Partnership Project. UE Radio Transmission and Reception (FDD), Technical Specification. TS25.101, V5.7.0.
  • 6Daniel L K, Shah M, Godambe N, et al. A single-chip triband (2100, 1900, 850/800 MHz) WCDMA/HSDPA cellular transceiver. IEEE J Solid-State Circuits, 2006, 41(5): 1122.
  • 7Zhou Zhujing, Li Zhisheng, Li Ning, et al. A highly linear filter and VGA with DC-offset correction for GSM/WCDMA receivers. Chinese Journal of Semiconductors, 2007, 28(3): 372.
  • 8D'Amico, Baschirotto S, de Matties M, et al. A CMOS 5 nV/√Hz-IRN 74 dB-gain-range 82 dB-DR multi-standard baseband chain for Bluetooth UMTS and WLAN. IEEE J Solid- State Circuits, 2008, 43(7): 1534.
  • 9Giannini V, Craninckx J, D'Amico S, et al. Flexible baseband analog circuits for software-defined radio front-ends. IEEE J Solid-State Circuits, 2007, 42(7): 1501.

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