DocumentCode :
25155
Title :
A Wideband 2 \\times 13-bit All-Digital I/Q RF-DAC
Author :
Alavi, Morteza S. ; Staszewski, Robert Bogdan ; de Vreede, Leo C. N. ; Long, John R.
Author_Institution :
Dept. of Microelectron., Delft Univ. of Technol., Delft, Netherlands
Volume :
62
Issue :
4
fYear :
2014
fDate :
Apr-14
Firstpage :
732
Lastpage :
752
Abstract :
This paper presents a wideband 2 ×13-bit in-phase/quadrature-phase (I/Q) RF digital-to-analog converter-based all-digital modulator realized in 65-nm CMOS. The isolation between I and Q paths is guaranteed employing 25% duty-cycle differential quadrature clocks. With a 1.3-V supply and an on-chip power combiner, the digital I/Q transmitter provides more than 21-dBm RF output power within a frequency range of 1.36-2.51 GHz. The peak RF output power, overall system, and drain efficiencies of the modulator are 22.8 dBm, 34%, and 42%, respectively. The measured static noise floor is below -160 dBc/Hz. The digital I/Q RF modulator demonstrates an IQ image rejection and local oscillator leakage of -65 and -68 dBc, respectively. It could be linearized using either of the two digital predistortion (DPD) approaches: a memoryless polynomial or a lookup table. Its linearity is examined using single-carrier 4/16/64/256/1024 quadrature amplitude modulation (QAM), as well as multi-carrier 256-QAM orthogonal frequency-division multiplexing baseband signals while their related modulation bandwidth can be as high as 154 MHz. Employing DPD improves the third-order intermodulation product (IM3) by more than 25 dB, while the measured error vector magnitude for a “single-carrier 22-MHz 64-QAM” signal is better than -28 dB.
Keywords :
CMOS digital integrated circuits; OFDM modulation; UHF integrated circuits; digital-analogue conversion; quadrature amplitude modulation; CMOS process; DPD approach; IM3; IQ image rejection; all-digital modulator; bandwidth 22 MHz; digital I/Q RF modulator; digital I/Q transmitter; digital predistortion approach; duty-cycle differential quadrature clocks; efficiency 34 percent; efficiency 42 percent; frequency 1.36 GHz to 2.51 GHz; local oscillator leakage; lookup table; measured error vector magnitude; measured static noise floor; memoryless polynomial; modulation bandwidth; multicarrier 256-QAM; on-chip power combiner; orthogonal frequency-division multiplexing baseband signals; single-carrier 4/16/64/256/1024 quadrature amplitude modulation; single-carrier 64-QAM; size 65 nm; third-order intermodulation product; voltage 1.3 V; wideband all-digital I/Q RF-DAC; wideband in-phase-quadrature-phase RF digital-to-analog converter; word length 13 bit; Baseband; Clocks; Modulation; Noise; Power generation; Radio frequency; Switches; Balun; MOS switch; RF digital-to-analog converter (RF-DAC); class-E power amplifier; digital power amplifier (DPA); digital predistortion (DPD); digital-to-RF-amplitude converter (DRAC); in-phase/quadrature-phase (I/Q) modulator; transformer; transmitter (TX);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2014.2307876
Filename :
6762810
Link To Document :
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