DocumentCode
1531875
Title
An Amplitude Resolution Improvement of an RF-DAC Employing Pulsewidth Modulation
Author
Park, Min ; Perrott, Michael H. ; Staszewski, Robert Bogdan
Author_Institution
Maxim Integrated Products, Sunnyvale, CA, USA
Volume
58
Issue
11
fYear
2011
Firstpage
2590
Lastpage
2603
Abstract
We propose a time-domain technique that significantly improves resolution of an RF-DAC. As an alternative to resorting to various resolution improvement attempts in the amplitude domain or through quantization noise shaping, pulsewidth modulation (PWM) of a single unit switching device is employed with fine timing accuracy easily afforded by advanced CMOS technology. The PWM is categorized into centered PWM and noncentered PWM depending on the relative pulse position, and their performance and implementation methods are compared. The technique is examined in the context of a commercial EDGE polar transmitter realized in 65 nm CMOS, which employs an amplitude modulator with basic 10-bit amplitude resolution limited by the RF-DAC switching device mismatches. The proposed architectures with centered PWM and noncentered PWM achieve the worst case resolution improvement of 2.2 bits and 2.5 bits, respectively, assuming 20-ps worst case time granularity of the PWM signal controls.
Keywords
CMOS integrated circuits; amplitude modulation; cellular radio; digital-analogue conversion; pulse position modulation; pulse width modulation; radio transmitters; time-domain analysis; CMOS technology; EDGE polar transmitter; PWM; PWM signal controls; RF-DAC switching device; amplitude modulator; amplitude resolution improvement; pulsewidth modulation; quantization noise shaping; relative pulse position modulation; single unit switching device; size 65 nm; time-domain technique; word length 10 bit; word length 2.2 bit; word length 2.5 bit; Noise; Pulse width modulation; Quantization; Radio frequency; Signal resolution; Switches; Table lookup; Amplitude modulation (AM); Enhanced data rate for GSM evolution (EDGE); RF-DAC; envelope modulation; polar transmitter; pulsewidth modulation (PWM);
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2011.2143030
Filename
5783315
Link To Document