Title :
6E-5 High Performance and Miniature Surface Acoustic Wave Devices with Excellent Temperature Stability Using High Density Metal Electrodes
Author_Institution :
Murata Manuf. Co. Ltd., Kyoto
Abstract :
Currently, miniature surface acoustic wave (SAW) devices (filters and duplexers) with a good temperature stability are strongly required. In order to realize its requirement, various SAW substrates combining a high density metal electrode and a substrate were researched. Combination of SAW substrates using high density metal electrodes offers excellent properties such as large electrode reflection coefficient, large mechanical coupling factor, low velocity, and good temperature stability. This paper reviews following application of their structures for the realization of miniature SAW devices with low insertion loss and good temperature stability from various aspects: Intermediate frequency (IF) filters in mobile phones using an shear horizontal (SH) wave propagating on the high density metal electrode on ST-90degX quartz substrate, SAW duplexers for personal communication service system in the United States (US-PCS) and wide band code division multiple access system (W-CDMA) using LSAW on a flattened SiO2 film on high density metal electrodes on LiTaO3 or LiNbO3 substrates, and radio frequency (RF) filters using SH type of elastic boundary wave (EBW) propagating on SiO2 film on high density metal electrode on LiNbO3.
Keywords :
acoustic wave propagation; code division multiple access; elastic waves; electrodes; lithium compounds; micromechanical devices; mobile radio; personal communication networks; quartz; radiofrequency filters; resonator filters; surface acoustic wave filters; thermal stability; LSAW; LiNbO3; LiTaO3; SAW devices; SAW duplexers; SAW filters; SiO2; elastic boundary wave propagation; electrode reflection coefficient; high density metal electrodes; insertion loss; intermediate frequency filters; mechanical coupling factor; miniature surface acoustic wave devices; mobile phones; personal communication service system; radio frequency filters; shear horizontal wave propagation; temperature stability; wide band code division multiple access system; Acoustic waves; Electrodes; Filters; Multiaccess communication; Radio frequency; Stability; Substrates; Surface acoustic wave devices; Surface acoustic waves; Temperature;
Conference_Titel :
Ultrasonics Symposium, 2007. IEEE
Conference_Location :
New York, NY
Print_ISBN :
978-1-4244-1384-3
Electronic_ISBN :
1051-0117
DOI :
10.1109/ULTSYM.2007.133