DocumentCode :
3210864
Title :
A 4–10.6 GHZ low power LNA with dual reactive feedback and very low noise figure
Author :
Abiri, Ebrahim ; Salehi, Mohammad Reza ; Mirzazadeh, Mohammad Sadegh
fYear :
2012
fDate :
15-17 May 2012
Firstpage :
275
Lastpage :
280
Abstract :
A wideband low-noise amplifier (LNA) based on dual reactive feedback configuration and thermal noise canceling is proposed. The flat gain and wideband input impedance matching are achieved by using two reactive feedbacks. By adding an inductor at the source of the input transistor, a noiseless resistance for matching the input stage to source impedance is generated. The effect of cgd, in second stage, is improved by adding an inductor between gate and drain. Theoretical analysis shows that this LNA has a flat gain, low noise figure and good input impedance matching. The LNA is simulated in Agilent Technologies Advanced Design System (ADS). The noise figure is below 2dB and S11 and S22 are below -10dB. Also the minimum power gain (S21) is 10.5 dB. The LNA draws 5.6mA from a 1V supply and the power consumption is 5.1 mW.
Keywords :
feedback amplifiers; impedance matching; inductors; low noise amplifiers; low-power electronics; microwave power amplifiers; microwave power transistors; thermal noise; wideband amplifiers; Agilent Technologies ADS; Agilent Technologies Advanced Design System; band input impedance matching; current 5.6 mA; dual reactive feedback configuration; flat gain impedance matching; frequency 4 GHz to 10.6 GHz; gain 10.5 dB; inductor; input transistor; low noise figure; minimum power gain; noiseless resistance; power 5.1 mW; power consumption; source impedance input stage; theoretical analysis; thermal noise canceling; voltage 1 V; wideband low power LNA; wideband low power low-noise amplifier; Matched filters; Radio frequency; Impedance matching; Low Noise Amplifier (LNA); Low power consumption; Ultra Wideband (UWB); capacitive feedback; stagger tuning technique; thermal noise canceling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Engineering (ICEE), 2012 20th Iranian Conference on
Conference_Location :
Tehran
Print_ISBN :
978-1-4673-1149-6
Type :
conf
DOI :
10.1109/IranianCEE.2012.6292368
Filename :
6292368
Link To Document :
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