DocumentCode :
3147367
Title :
Practical modeling and de-embedding procedure for matching circuit of triple band front-end module used for EGSM/DCS/PCS cellular phone system
Author :
Shibagaki, N. ; Sakiyama, K. ; Hikkita, M.
Author_Institution :
Central Res. Lab., Hitachi Ltd., Japan
fYear :
2004
fDate :
2-3 Dec. 2004
Firstpage :
125
Lastpage :
129
Abstract :
Integration of the antenna front-end module is improved using balanced SAW technology and LTCC technology with sophisticated 3D electromagnetic simulation techniques. New SAW front-end modules for use in EGSM/DCS/PCS triple-band cellular phones have been developed. Conventional RF section designs utilize matching circuits between the front-end module and the RF-IC, which has a complex load impedance. Our new concept front-end module includes the matching circuit for size reduction. Due to the internal matching circuit, the front-end modules are no longer standard 50 ohm system devices. We have demonstrated a practical modeling and de-embedding procedure for the internal RF-IC matching circuit. With this technique, we can evaluate SAW filter characteristics, such as insertion loss, VSWR and amplitude/phase balance, in the nominal output impedance of the SAW filter (e.g.,150 ohm balance) in spite of complex output impedance values for the front-end modules. This modeling technique is useful, not only for inspection of SAW filters for front-end modules, but also for investigating yield problems due to component variations in matching circuits. We believe this technique is useful for developing new concept front-end modules that include matching circuits for the RF-IC.
Keywords :
cellular radio; electric impedance; impedance matching; integrated circuit modelling; modules; radiofrequency integrated circuits; surface acoustic wave filters; 3D electromagnetic simulation techniques; DCS; EGSM; LTCC technology; PCS; antenna front-end module; balanced SAW technology; cellular phone system; complex load impedance; de-embedding procedure; matching circuit; modeling procedure; triple band front-end module; Cellular phones; Circuit simulation; Distributed control; Impedance; Insertion loss; Inspection; Personal communication networks; Radio frequency; SAW filters; Surface acoustic waves;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Measurements Conference, Fall 2004. 64th ARFTG
Print_ISBN :
0-7803-8952-2
Type :
conf
DOI :
10.1109/ARFTGF.2004.1427583
Filename :
1427583
Link To Document :
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