Title :
A fully-integrated Bluetooth synthesizer using digital pre-distortion for PLL-based GFSK modulation
Author :
Huff, Bill ; Draskovic, Dragan
Author_Institution :
Nat. Semicond., San Diego, CA, USA
Abstract :
Traditionally, GFSK modulation has been implemented using either I-Q up-conversion or by direct open-loop modulation of the VCO. The up-conversion approach is susceptible to an undesired image signal, and is costly in analog area and power. The open-loop modulation approach is prone to VCO frequency drift and gain errors. The approach described in this paper is a closed-loop modulation of a Delta-Sigma PLL with self-calibrated predistortion filtering. Prior examples of the pre-distortion approach have required either precision loop filter components or custom PLL response tuning. Our approach uses on-chip calibration algorithms which program digital filter coefficients to compensate for PLL loop gain and loop filter variations. This paper describes the fully integrated (including loop filter) 2.4 GHz Delta-Sigma frequency synthesizer, the digital pre-distortion filtering used to cancel the PLL´s response, and the calibration algorithms used to adapt the pre-distortion filter coefficients. The synthesizer is implemented as part of a 0.25 μm CMOS Bluetooth radio, and uses approximately 35 mA on 4 mm2 die area.
Keywords :
Bluetooth; CMOS integrated circuits; UHF integrated circuits; calibration; digital filters; distortion; frequency shift keying; frequency synthesizers; phase locked loops; voltage-controlled oscillators; 0.25 micron; 2.4 GHz; 35 mA; CMOS Bluetooth radio; Delta-Sigma PLL; GFSK modulation; VCO; closed-loop modulation; digital pre-distortion filtering; fully-integrated frequency synthesizer; loop filter; on-chip calibration algorithm; Bluetooth; Calibration; Delta modulation; Digital filters; Digital modulation; Filtering; Frequency; Phase locked loops; Synthesizers; Voltage-controlled oscillators;
Conference_Titel :
Radio Frequency Integrated Circuits (RFIC) Symposium, 2003 IEEE
Print_ISBN :
0-7803-7694-3
DOI :
10.1109/RFIC.2003.1213919