Title :
Multi-band tunable low noise amplifiers operating at 850MHz and 1900MHz standards
Author :
Eshghabadi, Farshad ; Banitorfian, Fatemeh ; Noh, Norlaili Mohd ; Mustaffa, Mohd Tafir ; Manaf, Asrulnizam Abd ; Sidek, Othman
Author_Institution :
Sch. of Electr. & Electron. Eng., Univ. Sains Malaysia, Nibong Tebal, Malaysia
Abstract :
This paper presents two novel designs for narrowband tunable low-noise amplifier implementation operating at two frequency standards of 850 MHz and 1900 MHz (cellular frequencies such as GSM, CDMA and DCS standards). Both designs benefits from a simple cascode topology with tunable input and output matching networks. Two novel methods to tune the input resonating frequency are introduced: (1) switched transistor width technique, and (2) switched extra Miller and gate-source capacitances technique. Each technique shows its own pros and cons. A comparison between the post-layout simulations results of two designs is made while they are fully matched in desired frequencies. This paper also gives a comparison table between these designs and other similar works in terms of RF performance. The 0.13-μm RF CMOS tunable LNAs have a minimum and maximum power dissipations of 2 and 4 mW, respectively, depending on the tuned resonating frequency.
Keywords :
CMOS analogue integrated circuits; UHF amplifiers; UHF integrated circuits; low noise amplifiers; CDMA standards; DCS standards; GSM standards; RF CMOS tunable LNA; cascode topology; cellular frequencies; frequency 1900 MHz; frequency 850 MHz; gate-source capacitances technique; multiband tunable low noise amplifiers; narrowband amplifier implementation; output matching networks; post-layout simulations; power 2 mW; power 4 mW; resonating frequency; size 0.13 mum; switched extra Miller capacitances technique; switched transistor width technique; tunable input matching networks;
Conference_Titel :
Very Large Scale Integration (VLSI-SoC), 2013 IFIP/IEEE 21st International Conference on
Conference_Location :
Istanbul
DOI :
10.1109/VLSI-SoC.2013.6673251