Title :
A Σ-Δ fractional-N frequency synthesizer using a wide-band integrated VCO and a fast AFC technique for GSM/GPRS/WCDMA applications
Author :
Lee, Han-Il ; Cho, Je-Kwang ; Lee, Kun-Seok ; Hwang, In-Chul ; Ahn, Tae-Won ; Nah, Kyung-Suc ; Park, Byeong-Ha
Author_Institution :
HINET Res. Group, Purdue Univ., West Lafayette, IN, USA
fDate :
7/1/2004 12:00:00 AM
Abstract :
A fractional-N frequency synthesizer (FNFS) in a 0.5-μm SiGe BiCMOS technology is implemented. In order to operate in a wide-band frequency range, a switched-capacitors bank LC tank voltage-controlled oscillator (VCO) and an adaptive frequency calibration (AFC) technique are used. The measured VCO tuning range is as wide as 600 MHz (40%) from 1.15 to 1.75 GHz with a tuning sensitivity from 5.2 to 17.5 MHz/V. A 3-bit fourth-order Σ-Δ modulator is used to reduce out-of-band phase noise and to meet a frequency resolution of less than 3 Hz as well as agile switching time. The experimental results show -80 dBc/Hz in-band phase noise within the loop bandwidth of 25 kHz and -129 dBc/Hz out-of-band phase noise at 400-kHz offset frequency. The fractional spurious is less than -70 dBc/Hz at 300-kHz offset frequency and the reference spur is -75 dBc/Hz. The lock time is less than 150 μs. The proposed synthesizer consumes 19.5 mA from a single 2.8-V supply voltage and meets the requirements of GSM/GPRS/WCDMA applications.
Keywords :
BiCMOS integrated circuits; automatic frequency control; cellular radio; code division multiple access; frequency synthesizers; packet radio networks; phase locked loops; sigma-delta modulation; switched capacitor networks; voltage-controlled oscillators; 0.5 micron; 1.15 to 1.75 GHz; 19.5 mA; 2.8 V; 25 kHz; 300 kHz; 400 kHz; 600 MHz; AFC technique; BiCMOS technology; GPRS applications; GSM applications; LC tank voltage-controlled oscillator; SiGe; WCDMA applications; adaptive frequency calibration; adaptive frequency calibration technique; fractional-JV frequency synthesizer; frequency resolution; in-band phase noise; lock time; loop bandwidth; offset frequency; out-of-band phase noise; phase-locked loop; sigma-delta modulator; switched-capacitor bank; tuning range; tuning sensitivity; wide-band frequency range; wide-band integrated VCO; Automatic frequency control; Frequency synthesizers; GSM; Ground penetrating radar; Multiaccess communication; Phase noise; Silicon germanium; Tuning; Voltage-controlled oscillators; Wideband; AFC; Adaptive frequency calibration; GPRS; GSM; PLL; VCO; WCDMA; frequency synthesizer; general packet radio service; phase-locked loop; sigma-delta modulator; voltage-controlled oscillator;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2004.829938