Title :
A broadband differential cascode power amplifier in 45 nm CMOS for high-speed 60 GHz system-on-chip
Author :
Abbasi, Morteza ; Kjellberg, Torgil ; De Graauw, Anton ; Van der Heijden, Edwin ; Roovers, Raf ; Zirath, Herbert
Author_Institution :
Microwave Electron. Lab., Chalmers Univ. of Technol., Göteborg, Sweden
Abstract :
A compact two-stage differential cascode power amplifier is designed and fabricated in 45 nm standard LP CMOS. The cascode configuration, with the common gate device placed in a separate P-well, provides reliable operating condition for the devices. The amplifier shows 20 dB small-signal gain centered at 60 GHz with a flat frequency response and 1-dB bandwidth of 10 GHz. The broadband large-signal operation is also ensured by providing constant load resistance to both stages over the entire band and coupling them with a dual resonance matching network. The chip delivers 11.2 dBm output power at 1-dB compression and up to 14.5 dBm power in saturation. The power amplifier operates with 2 V supply and draws 90 mA total current which results in 14.4% maximum PAE. The output third order intercept point is measured to be 18 dBm for two-tone measurement at 60 GHz with 0.5 GHz, 1 GHz and 2 GHz frequency separations.
Keywords :
CMOS integrated circuits; power amplifiers; system-on-chip; wideband amplifiers; LP CMOS; bandwidth 10 GHz; broadband differential cascode power amplifier; cascode configuration; current 90 mA; dual resonance matching network; frequency 0.5 GHz; frequency 1 GHz; frequency 2 GHz; frequency 60 GHz; gain 20 dB; size 45 nm; system-on-chip; voltage 2 V; Bandwidth; Broadband amplifiers; Differential amplifiers; Frequency measurement; Frequency response; Gain; High power amplifiers; Power amplifiers; Power system reliability; System-on-a-chip; 45nm CMOS; 60 GHz; cascode; isolated P-well; power amplifier;
Conference_Titel :
Radio Frequency Integrated Circuits Symposium (RFIC), 2010 IEEE
Conference_Location :
Anaheim, CA
Print_ISBN :
978-1-4244-6240-7
DOI :
10.1109/RFIC.2010.5477384