Title :
Miniaturization and advanced functionalities of SAW devices
Author :
Meier, Hans ; Baier, Thomas ; Riha, Gerd
Author_Institution :
Surface Acoustic Wave Components Div, EPCOS AG, Munich, Germany
fDate :
10/1/2000 12:00:00 AM
Abstract :
Apart from the active semiconductor chips a multitude of surface acoustic wave filters (SAW filters) are the key components that make modern RF circuits for mobile telecommunication and multimedia applications work. The latter are the most sophisticated and delicate species of passive components of which today´s RF applications contain several hundred. While active integration has led to decreasing numbers of semiconductors inside a phone, at the time being the passive components outnumber the actives by far. Obviously, the highest potential for further miniaturization lies in the passive components. As the market asks for further miniaturized mobile phones and digital tuners EPCOS tackles this challenge not only by further shrinking the SAW filters but also by integrating additional functions into the SAW filters which were originally not SAW related at all. This paper briefly presents several applications for such highly miniaturized SAW filters offering superior filter performance combined with additional features like impedance transformation, balun functionality or double balanced operation, allowing for smaller and cheaper designs by effectively reducing PCB space as well as component count
Keywords :
baluns; impedance convertors; multimedia communication; passive filters; surface acoustic wave filters; EPCOS; PCB space; SAW devices; SAW filters; active integration; balun functionality; component count; double balanced operation; filter performance; impedance transformation; multimedia applications; passive components; Acoustic waves; Circuits; Impedance; Mobile handsets; Modems; Radio frequency; SAW filters; Surface acoustic wave devices; Surface acoustic waves; Tuners;
Conference_Titel :
Ultrasonics Symposium, 2000 IEEE
Print_ISBN :
0-7803-6365-5
DOI :
10.1109/ULTSYM.2000.922581