DocumentCode :
811569
Title :
A Fully Integrated 0.13- \\mu m CMOS Digital Low-IF DBS Satellite Tuner Using a Ring Oscillator-Based Frequency Synthesizer
Author :
Maxim, Adrian ; Poorfard, Ramin K. ; Johnson, Richard A. ; Crawley, Philip John ; Kao, James T. ; Dong, Zhiwei ; Chennam, Madhu ; Nutt, Tim ; Trager, David
Author_Institution :
Silicon Labs. Inc, Austin, TX
Volume :
42
Issue :
5
fYear :
2007
fDate :
5/1/2007 12:00:00 AM
Firstpage :
967
Lastpage :
982
Abstract :
A low-IF fully integrated tuner for DBS satellite TV applications has been realized in 0.13-mum CMOS. A wideband ring oscillator-based frequency synthesizer having a large frequency step was used to downconvert a cluster of channels to a sliding low-IF frequency, while the second downconversion to baseband was performed in the digital domain. Eliminating the inductors and using a small-area oscillator has reduced both the parasitic magnetic and substrate coupling, allowing single-chip integration of the sensitive tuner and the noisy digital demodulator. A significant reduction in die area was achieved by using a single oscillator to cover the entire satellite TV spectrum, while a noise attenuator was cascaded with the PLL passive loop filter to reduce the equivalent VCO tuning gain. This improves PLL noise and spur performance and allows the on-chip integration of the loop filter. The digital low-IF tuner allows the use of a discrete step AGC loop that results in lower noise figure and higher linearity. Automatic signal path gain and bandwidth digital calibration was realized using replica ring oscillators. Tuner specifications include: 90 dB gain range, 10 dB noise figure at max gain, +25dBm IIP3 at min gain, 1.3deg rms integrated phase noise, <-50dBc spurs, 0.5-W power consumption from dual 1.8/3.3-V supplies, and 1.8times1.2 mm2 die area
Keywords :
CMOS digital integrated circuits; direct broadcasting by satellite; frequency synthesizers; low noise amplifiers; passive filters; phase locked loops; phase noise; tuning; voltage-controlled oscillators; 0.13 micron; 0.5 W; 1.8 V; 10 dB; 3.3 V; CMOS digital low-IF DBS satellite tuner; DBS satellite TV applications; PLL noise; PLL passive loop filter; automatic signal path gain; bandwidth digital calibration; digital low-IF tuner; direct broadcast satellite; discrete step AGC loop; equivalent VCO tuning gain; inductors; low-IF fully integrated tuner; low-IF receiver; low-noise amplifier; noise attenuator; noisy digital demodulator; parasitic magnetic coupling; phase locked loop; phase noise; replica ring oscillators; satellite TV spectrum; small-area oscillator; spur performance; substrate coupling; voltage controlled oscillator; wideband ring oscillator-based frequency synthesizer; Filters; Frequency synthesizers; Magnetic noise; Magnetic separation; Noise reduction; Oscillators; Phase locked loops; Satellite broadcasting; TV; Tuners; CMOS; Direct Broadcast Satellite (DBS); SoC; low-IF receiver; low-noise amplifier (LNA); mixer; phase noise; phase-locked loop (PLL); ring VCO; satellite TV; tuner;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2007.894336
Filename :
4160076
Link To Document :
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