• Microelectronics
  • Vol. 51, Issue 2, 151 (2021)
ZHANG Zheng, ZHANG Yanhua, HUANG Xin, and NA Weicong
Author Affiliations
  • [in Chinese]
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    DOI: 10.13911/j.cnki.1004-3365.200067 Cite this Article
    ZHANG Zheng, ZHANG Yanhua, HUANG Xin, NA Weicong. A Multiband Low Noise Amplifier Based on Tunable Active Inductor[J]. Microelectronics, 2021, 51(2): 151 Copy Citation Text show less
    References

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    [3] HUANG Z Y, HUNG C C. CMOS dual-band low-noise amplifier for world-wide WiMedia ultra-wideband wireless personal area network system [C] ∥ APMC. Yokohama, Japan. 2010: 334-337.

    [4] KUMAR A R, SINGH S G, DUTTA A. Low power reconfigurable multi-mode LNA utilizing subthreshold bias and low-Q inductors [C] ∥ IEEE ISCAS. Lisbon, Portugal. 2015: 650-653.

    [5] FATHIMA A, SUSHMA P S, GAONKAR S. Design of high gain, low power CMOS multi-standard LNA [C] ∥ IEEE RTEICT. Bangalore, India. 2016: 663-666.

    [6] CHIOU H K, LIN J Y, TAI C F. Band selection filter for ultra-wideband/Ku dual-band low-noise amplifier in the CMOS process [J]. IET Microw Antennas & Propag, 2011, 5(7): 823-830.

    [8] KAMSANI N A, THANGASAMY V, BUKHORI M F, et al. A multiband 130 nm CMOS low noise amplifier for LTE bands [C] ∥ IEEE ICSyS. Langkawi, Malaysia. 2015: 106-110.

    [9] ADOM-BAMFI G, ENTESARI K. A multiband low noise amplifier with a switchable Gm active shunt feedback for SDRs [C] ∥ IEEE RWS. Austin, TX, USA. 2016: 179-182.

    [10] PHAN A T, FARRELL R. Reconfigurable multiband multimode LNA for LTE/GSM, WiMAX, and IEEE 802.11.a/b/g/n [C] ∥ 17th IEEE ICECS. Athens, Greece. 2010: 78-81.

    [11] CHEN I C, YANG J R. 3~10 GHz CMOS distributed amplifier low-power and low-noise and high-gain low noise amplifier for UWB systems [C] ∥ IEEE Region 10 Conf TENCON. Fukuoka, Japan. 2010: 2045-2047.

    ZHANG Zheng, ZHANG Yanhua, HUANG Xin, NA Weicong. A Multiband Low Noise Amplifier Based on Tunable Active Inductor[J]. Microelectronics, 2021, 51(2): 151
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