DocumentCode
1967860
Title
A 10.7 MHz IF-to-baseband /spl Sigma//spl Delta/ A/D conversion system for AM/FM radio receivers
Author
van der Zwan, E. ; Philips, K. ; Bastiaansen, C.
Author_Institution
Philips Res. Lab., Eindhoven, Netherlands
fYear
2000
fDate
9-9 Feb. 2000
Firstpage
340
Lastpage
341
Abstract
This analog-to-digital converter digitizes a radio signal at a 10.7 MHz intermediate frequency (IF) using integrated quadrature mixing and /spl Sigma//spl Delta/ modulation. The paper shows a block diagram of a highly-integrated AM/FM radio receiver. The IF A/D conversion and digital filtering, demodulation and further signal processing can be integrated on a single CMOS IC. The radio front-end mixes both AM and FM signals to 10.7 MHz IF, so that the A/D conversion is shared. A single channel filter is used, selecting one 200 kHz FM channel. For AM, over 20 channels pass through this filter, resulting in high dynamic range of the IF signal. When the radio is tuned to a weak AM radio station, strong neighboring channels should not introduce disturbance of the weak signal. This multi-channel aspect for AM puts severe requirements on the automatic gain control (AGC) amplifier and A/D converter in terms of noise, intermodulation and crossmodulation distortion.
Keywords
automatic gain control; demodulation; intermodulation distortion; radio receivers; sigma-delta modulation; 10.7 MHz; AM/FM radio receivers; IF-to-baseband sigma-delta A/D conversion system; automatic gain control; crossmodulation distortion; demodulation; dynamic range; integrated quadrature mixing; intermodulation distortion; multi-channel aspect; neighboring channels; single channel filter; Analog-digital conversion; Demodulation; Digital filters; Digital modulation; Digital signal processing; Filtering; Frequency conversion; Frequency modulation; RF signals; Receivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid-State Circuits Conference, 2000. Digest of Technical Papers. ISSCC. 2000 IEEE International
Conference_Location
San Francisco, CA, USA
ISSN
0193-6530
Print_ISBN
0-7803-5853-8
Type
conf
DOI
10.1109/ISSCC.2000.839807
Filename
839807
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