Microelectronics, Volume. 51, Issue 4, 471(2021)
A 22~4 GHz Low Noise Amplifier with High Gain
[2] [2] LI X, SERDIJN W A, WOESTENBURG B E M, et al. A 1-2 GHz high linearity transformer-feedback power-to- current LNA [J]. Analog Integr Circ Signal Process, 2010, 63(1): 113-119.
[3] [3] YAO J S, SUN X P, LIN B. 15-27 GHz ultra low noise bypass LNA [C] // Proceed IEEE IMS2014. Tampa, FL, USA. 2014:1-3.
[4] [4] KAO H L, YEH C S, CHO C L, et al. Design of an S-band 035 μm AlGaN/GaN LNA using cascode topology [C] // Proceed IEEE 16th Int Symp DDECS. Karlovy Vary, Czech. 2013: 250-253.
[5] [5] DILSHAD U, CHEN C, MIAO J. Compact and efficient wideband variable gain LNA MMIC on InGaAs pHEMT [C] // Proceed 16th IBCAST. Islamabad, Pakistan. 2019: 968-974.
[7] [7] MEMIOGLU O, GUNDEL A. A high linearity wide bandwidth GSM/WCDMA/LTE base station LNA MMIC with ultra low noise figure [C] // Proceed 18th MMS. Istanbul, Turkey. 2018:198-201.
[8] [8] LI H O, LI C C, LI Y, et al. A high linearity wideband LNA with an excellent gain flatness for S-band application [C] // Proceed IEEE 3rd Advan IAEAC. Chongqing, China. 2018: 2469-2472.
[9] [9] HASANI Y, KAMAREI M, NDAGIJIMANA F. New input matching technique for cascode LNA in 90 nm CMOS for millimeter wave applications [C] // Proceed IEEE RFIT. Singapore. 2007: 282-285.
[11] [11] MADAN A, MCPARTLIN M J, MASSE C, et al. A 5 GHz 095 dB NF highly linear cascode floating-body LNA in 180 nm SOI CMOS technology [J]. IEEE Microw Wirel Compon Lett, 2012, 22(4): 200-202.
[13] [13] MYOUNG S S, YOOK J G. Low noise and high linearity LNA based on InGaP/GaAs HBT for 53 GHz WLAN [J]. Microw Opt Tech Lett, 2010, 46(6): 550-553.
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LEI Huakui, LI Zhiqiang, WANG Xiantai, DUAN Liancheng. A 22~4 GHz Low Noise Amplifier with High Gain[J]. Microelectronics, 2021, 51(4): 471
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Received: Sep. 26, 2020
Accepted: --
Published Online: Feb. 21, 2022
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