DocumentCode :
2371653
Title :
UWB-IR transceiver for millimeter wave WLAN
Author :
Deparis, Nicolas ; Boe, Alexandre ; Loyez, Christophe ; Rolland, Nathalie ; Rolland, Paul-Alain
Author_Institution :
Avenue Henri Poincare, Villeneuve d´´Ascq
fYear :
2006
fDate :
6-10 Nov. 2006
Firstpage :
4785
Lastpage :
4789
Abstract :
The purpose of this paper is to demonstrate the high potentiality in terms of data rate and multiple access of a novel 60 GHz WLAN architecture for smart objects and indoor communication systems. This approach is based on the up-conversion of an ultra wide bandwidth impulse radio signal (IR-UWB) in the 60 GHz frequency range to benefit of the natural advantages of the UWB technique while avoiding the base band limitations (FCC part 15, interferences, antenna size,...). This complete architecture has been designed using a pHEMT foundry process (f t = 100 GHz). Each mm-wave and base band devices have been tested: mm-wave source, modulator, amplifiers, RF detector and correlator. The final demonstrator is fully monolithically integrated. A space division multiple access (SDMA) multi users is now under test using smart antennas. This is done using quasi-YAGI antennas switched with RF MEMS. In fact, future high data rate WLAN (wireless local area network) will be realized using smart antennas to reduce in the same time the consumption, the link budget and the multipath effects
Keywords :
Yagi antenna arrays; adaptive antenna arrays; indoor radio; micromechanical devices; millimetre wave antenna arrays; space division multiple access; transceivers; ultra wideband communication; wireless LAN; 100 GHz; 60 GHz; IR-UWB; RF MEMS; RF correlators; RF detector; UWB-IR transceiver; amplifiers; indoor communication systems; millimeter wave WLAN architecture; modulator; monolithic integrated demonstrator; multipath effects; multiple access; quasi-YAGI antennas switched; smart antennas; space division multiple access; ultrawide bandwidth impulse radio signal; wireless local area network; Bandwidth; FCC; Frequency; Indoor communication; Millimeter wave communication; Millimeter wave technology; RF signals; Testing; Transceivers; Wireless LAN;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IEEE Industrial Electronics, IECON 2006 - 32nd Annual Conference on
Conference_Location :
Paris
ISSN :
1553-572X
Print_ISBN :
1-4244-0390-1
Type :
conf
DOI :
10.1109/IECON.2006.348123
Filename :
4153384
Link To Document :
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