DocumentCode :
540609
Title :
Plate wave resonator using rotated Y-cut single crystal LiTaO3 thin film made by ion implant technology
Author :
Kando, Hajime ; Iwamoto, Takashi ; Yoneda, Toshimaro ; Hayakawa, Norihiro ; Iwamoto, Hideki ; Araki, Kiyoto ; Hatsuda, Ippei ; Nagao, Yuji ; Yoshii, Yoshiharu
Author_Institution :
Murata Manuf. Co., Ltd., Nagaokakyo, Japan
fYear :
2010
fDate :
7-10 Dec. 2010
Firstpage :
920
Lastpage :
923
Abstract :
Realization of a high frequency resonator for 3.6 GHz-band filter in the International Mobile Telecommunication Advanced (IMT-Advanced) system is desired. It is difficult to accomplish such a high frequency resonator using conventional surface acoustic wave (SAW) technology. The strip width of the inter-digital transducers (IDT) becomes too narrow in the range of 0.2-0.3 μm, because it has a low SAW velocity of approximately 4000 m/s. Therefore, the formation of IDT is challenging. The authors attempted to realize A1 mode Lamb type plate wave air-gap type membrane resonator by using rotated Y-cut single crystal LiTaO3 thin film. The calculation results of various propagation characteristics in plate wave are presented. Rotated Y-cut single crystal LiTaO3 thin film is difficult to obtain by conventional thin film methods. We focus on utilization of the Smart-cut® process. Smart-cut® process is usually used for manufacturing of silicon on insulator (SOI) wafers. We show that such technique can be applied to form the membrane structure of a single crystal LiTaO3 thin film. The plate wave resonator based on rotated Y-cut single crystal LiTaO3 thin film has a high resonant frequency of 3.38 GHz, a large k2 of about 8 %, and the impedance ratio of 63 dB.
Keywords :
interdigital transducers; ion implantation; lithium compounds; microwave filters; microwave resonators; mobile radio; surface acoustic wave resonator filters; A1 mode Lamb type plate wave; IMT-Advanced system; International Mobile Telecommunication Advanced system; LiTaO3; SAW technology; SOI wafer; Smart-cut process; frequency 3.6 GHz; high frequency resonator; interdigital transducer; ion implant technology; membrane resonator; microwave filter; plate wave resonator; rotated Y-cut single crystal thin film; silicon on insulator; size 0.2 mum to 0.3 mum; surface acoustic wave technology; Biomembranes; Crystals; Films; Impedance; Resonant frequency; Surface acoustic waves; LiTaO3; acoustic resonators; ion implantation; piezoelectric resonators; plate wave;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference Proceedings (APMC), 2010 Asia-Pacific
Conference_Location :
Yokohama
Print_ISBN :
978-1-4244-7590-2
Electronic_ISBN :
978-1-902339-22-2
Type :
conf
Filename :
5728491
Link To Document :
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