Title :
A PWM Based Fully Integrated Digital Transmitter/PA for WLAN and LTE Applications
Author :
Hezar, Rahmi ; Lei Ding ; Banerjee, Aritra ; Joonhoi Hur ; Haroun, Baher
Author_Institution :
Kilby Labs., Texas Instrum. Inc., Dallas, TX, USA
Abstract :
In this paper, we present a 23 dBm PWM based fully digital transmitter designed in standard 45 nm CMOS process. The digital transmitter utilizes sigma-delta modulation and pulse-width modulation to convert high resolution baseband I and Q signals into 3-level switching signals, thereby allowing efficient Class-D PA stages to be used. In addition, cascaded sigma-delta stages and switched-capacitor combining are incorporated into the architecture to significantly reduce the out-of-band quantization noise while maintaining excellent efficiency. The proposed transmitter is fully digital from baseband to RF and can be used to replace the entire analog/RF signal chain in a traditional transmitter. It achieves peak output power of 23 dBm with 47% power-added efficiency (PAE). For an 20 MHz OFDM signal with 8.2 dB peak-to-average power ratio (PAR), the PAE is 23%. The linearity of the digital transmitter meets WiFi spectral mask without any digital predistortion.
Keywords :
CMOS digital integrated circuits; Long Term Evolution; OFDM modulation; power amplifiers; pulse width modulation; sigma-delta modulation; switched current circuits; wireless LAN; 3-level switching signals; LTE; OFDM signal; PAE; PWM-based fully integrated digital transmitter; WLAN; WiFi spectral mask; analog-RF signal chain; cascaded sigma-delta stages; digital transmitter linearity; efficiency 23 percent; efficiency 47 percent; efficient class-D PA stages; frequency 20 MHz; high-resolution baseband I-Q signals; out-of-band quantization noise; peak output power; peak-to-average power ratio; power-added efficiency; pulse-width modulation; sigma-delta modulation; size 45 nm; standard CMOS process; switched-capacitor combining; traditional transmitter; Baseband; Capacitors; Peak to average power ratio; Pulse width modulation; Radio frequency; Switches; Transmitters; CMOS power amplifier; Class-D; LTE; RF; WLAN; digital power amplifier; pulse-width modulation; sigma-delta modulation; switched capacitor power amplifier; transmitter;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2015.2403365