DocumentCode :
1851670
Title :
The transfer function of the distortionless SAW duplexer for IS’95, GSM and UMTS mobile systems
Author :
Shafik, A. ; Zaghlool, M.S. ; Shennawy, Kh El
Author_Institution :
Arab Acad. for Sci. & Technol., Alexandria
fYear :
2008
fDate :
18-20 March 2008
Firstpage :
1
Lastpage :
10
Abstract :
This paper presents the transfer function of three mobile systems (IS´95, GSM and UMTS) of the distortionless surface acoustic wave duplexer for different window lengths (0.2 mu sec and 2.0 mu sec) using the Fourier transform convolution technique. The closed form of the transfer function of the systems is expressed in terms of the sine integral function. The surface acoustic wave duplexer is considered the main part of the mobile communication devices because of its advantages (small size, high reliability, low cost, high quality factor, temperature stability, wide dynamic range, linear phase response, ruggedness, high stability, reproducibility and achieve superior performance bandwidth). The obtained results show the comparison between the performances of these three mobile systems, the Fresnel ripples in the pass bands and Gibbs ripples in the stop bands are decreased by increasing the window length (SAW transducer time length).
Keywords :
3G mobile communication; Fourier transforms; cellular radio; surface acoustic wave devices; transfer functions; Fourier transform convolution technique; Fresnel ripples; GSM; Gibbs ripples; UMTS; distortionless SAW duplexer; distortionless surface acoustic wave duplexer; mobile communication devices; mobile systems; sine integral function; transfer function; 3G mobile communication; Acoustic distortion; Acoustic waves; Convolution; Fourier transforms; GSM; Stability; Surface acoustic wave devices; Surface acoustic waves; Transfer functions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radio Science Conference, 2008. NRSC 2008. National
Conference_Location :
Tanta Univ.
Print_ISBN :
978-977-5031-95-2
Type :
conf
DOI :
10.1109/NRSC.2008.4542338
Filename :
4542338
Link To Document :
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