DocumentCode :
3098651
Title :
Concurrent multiband low noise amplifier with multisection impedance transformer
Author :
Wibisono, Gunawan ; Firmansyah, T.
Author_Institution :
Dept. of Electr. Eng., Univ. of Indonesia, Depok, Indonesia
fYear :
2012
fDate :
4-7 Dec. 2012
Firstpage :
914
Lastpage :
916
Abstract :
In this paper, multiband low noise amplifier (LNA) with multi-section impedance transformer (MIT) as impedance matching is designed, fabricated and evaluated. MIT is used as input and output impedance matching because MIT has higher stability, large Q factor, and low noise than lumped component. MIT is easy to fabricate and measure. The aim of the research is to design multiband LNA with MIT at center frequencies located at 0.95 GHz for GSM, 1.85 GHz for WCDMA and 2.65 GHz for LTE. Designed and evaluated of the proposed multiband LNA with MIT is done by using advanced desain system (ADS). It shown from the simulated results that performances of the proposed LNA at center frequency of 0.950 GHz has return loss, S11 = -23.541 dB, insertion loss, S21 = 18.911 dB, noise figure, NF = 1.475 dB, VSWR = 1.143, and FoM = 8.38, respectively. At center frequency of 1.85 GHz, the proposed LNA has S11 = -23.771 dB, S21 = 12.858 dB, NF = 1.988 dB, VSWR = 1.139, and FoM = 2.616. At center frequency 2.65 GHz, the proposed LNA has S11 = -23.521 dB, S21 = 10.180 dB, NF = 2.776 dB, VSWR = 1.143, and FoM = 1.152. The center frequencies of fabricated proposed multiband LNA with MIT are shifted in average to 5-10 MHz lead to simulation results, and the performances of the fabricated of the proposed LNA with MIT are degraded about 7-10% by using Monte-Carlo Yield Analysis.
Keywords :
Monte Carlo methods; UHF amplifiers; impedance convertors; impedance matching; low noise amplifiers; ADS; GSM; LNA; LTE; MIT; Monte-Carlo yield analysis; WCDMA; advanced desain system; concurrent multiband low noise amplifier; frequency 0.95 GHz; frequency 1.85 GHz; frequency 2.65 GHz; frequency 5 MHz to 10 MHz; input impedance matching; loss 10.180 dB; loss 12.858 dB; loss 18.911 dB; loss 23.521 dB; loss 23.541 dB; loss 23.711 dB; multisection impedance transformer; noise figure 1.475 dB; noise figure 1.988 dB; noise figure 2.776 dB; output impedance matching; CMOS integrated circuits; Dual band; Educational institutions; Impedance; Impedance matching; Low-noise amplifiers; Noise measurement; Concurrent multiband LNA; multi-section impedance transformer (MIT);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference Proceedings (APMC), 2012 Asia-Pacific
Conference_Location :
Kaohsiung
Print_ISBN :
978-1-4577-1330-9
Electronic_ISBN :
978-1-4577-1331-6
Type :
conf
DOI :
10.1109/APMC.2012.6421776
Filename :
6421776
Link To Document :
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