Title :
An efficient integration of GPS and WCDMA radio front-ends
Author :
Spiegel, Solon J. ; Kovacs, Imre I G
Author_Institution :
u-blox AG, Thalwil, Switzerland
fDate :
4/1/2004 12:00:00 AM
Abstract :
An efficient integration of global positioning system (GPS) and universal mobile telecommunication system (UMTS) radio front-end units is presented. The combined front-end unit includes the transmitter and receiver filters, duplex filter, power amplifier, buck regulator, and power detector for the UMTS wireless code-division multiple-access system. The GPS building blocks of the radio front-end unit consist of the low-noise amplifier and RF filter. The inter-system isolation was experimentally quantified and the compared against the minimum inter-system isolation requirements, defined according to desensitization and intermodulation tests in the GPS receiver. The characterized isolation of the antenna array provided 6 dB of margin over the minimum inter-system isolation requirements for 3-dB degradation of the carrier-to-noise ratio in GPS receivers. The UMTS portion of the radio front-end unit was verified against the Third-Generation Partnership Project standard.
Keywords :
3G mobile communication; Global Positioning System; broadband networks; code division multiple access; intermodulation; microwave antenna arrays; microwave filters; microwave power amplifiers; radio receivers; radio transmitters; 3 dB; 6 dB; GPS receiver; RF filter; Third-Generation Partnership Project standard; WCDMA radio front-ends; antenna array; buck regulator; carrier-noise ratio; desensitization; duplex filter; global positioning system; intermodulation tests; intersystem isolation; low-noise amplifier; power amplifier; power detector; radio receiver filter; radio transmitter; universal mobile telecommunication system; wireless code-division multiple-access system; 3G mobile communication; Detectors; Global Positioning System; Multiaccess communication; Power amplifiers; Power filters; Radio transmitters; Radiofrequency amplifiers; Receivers; Regulators;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2004.825665