Title :
A 25 dBm outphasing power amplifier with novel non-isolated combining network
Author :
Lei Ding ; Hur, Jin ; Hezar, Rahmi ; Haroun, Baher
Author_Institution :
Texas Instrum., Dallas, TX, USA
Abstract :
This paper presents a 25 dBm outphasing power amplifier designed in a standard 45 nm CMOS process. Instead of using bulky quarter-wave transmission lines or transformers as non-isolated combiners, we propose a new combiner based on lump elements. The elements of the combiner act differently for in-phase and out-of-phase components, which allows additional resonant networks to be formed for improved backoff efficiency. The proposed PA design achieves 55% peak power added efficiency (PAE) at 900 MHz and 45% at 2.4 GHz. For an OFDM signal with 6 dB PAR, the PAE is 32% at 900 MHz and 22% at 2.4 GHz. The linearity of the PA meets WiFi spec without digital predistortion (DPD). With DPD, the linearity of the PA can be improved further to reach -53 dBc, -50 dBc, -42 dBc ACPR for 10 MHz, 20 MHz, and 2-carrier 20 MHz LTE signals.
Keywords :
CMOS analogue integrated circuits; HF amplifiers; UHF integrated circuits; UHF power amplifiers; integrated circuit design; power combiners; CMOS process; DPD; LTE signal; OFDM signal; PA; PAE; PAR; WiFi spec; bulky quarter-wave transmission line; digital predistortion; efficiency 22 percent; efficiency 32 percent; efficiency 45 percent; efficiency 55 percent; frequency 10 MHz; frequency 2.4 GHz; frequency 20 MHz; frequency 900 MHz; gain 6 dB; in-phase component; lump element; nonisolated combining network; out-of-phase component; outphasing power amplifier; power added efficiency; resonant network; size 45 nm; transformer; Bandwidth; Inductors; Linearity; Peak to average power ratio; Power generation; Standards; Switches; CMOS power amplifier; Class-D; LINC; digital predistortion; non-isolated combiner; outphasing;
Conference_Titel :
Radio Frequency Integrated Circuits Symposium, 2014 IEEE
Conference_Location :
Tampa, FL
Print_ISBN :
978-1-4799-3862-9
DOI :
10.1109/RFIC.2014.6851706