3D Heterogeneous Integration using MEMS Devices for RF Applications

Author:

Nakazawa Fumihiko,Mi Xiaoyu,Shimanouchi Takeaki,Nakatani Tadashi,Katsuki Takashi,Inoue Hiroaki,Toyoda Osamu,Ueda Satoshi

Abstract

ABSTRACTThis paper presents novel 3D heterogeneous integrations using MEMS Devices for RF applications. We propose a 3D heterogeneous integration method that combines the advantages of LTCC, passive integration, and MEMS technologies. The basic concept is to form a large-size LTCC wiring wafer and then to form high-Q passives or MEMS filters directly on the wafer surface. Other functional devices such as ICs, SAWs, and MEMS switches are mounted above the surface-formed devices. A miniaturized duplexer consisted of IPD, SAW, and film bulk acoustic resonator (FBAR); and a next generation duplexer module consisted of an MEMS tunable filter and a piezoelectric transducer (PZT)-actuated RF MEMS switch were constructed to demonstrate its feasibility and effectiveness.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference11 articles.

1. 10. Nakatani T. , Katsuki T. , Okuda H. , Toyoda O. , Ueda S. , and Nakazawa F. , “PZT Actuated Reliable RF-MEMS Switch using Single Crystal Silicon Asymmetric Beam” Proc. IEEE Asia Pacific Microwave conference, 2011

2. MEMS for wireless communications:  from RF-MEMS components to RF-MEMS-SiP

3. 8. Mi X. , ., “Miniaturized Microwave Tunable Bandpass Filters on High-k LTCC,” Proc. 2010 APMC, pp. 139–142, 2010.

4. MEMS tunable bandpass filters on high-k LTCC

5. 6. Mi X. and Ueda S. , “Integrated Passives for High-Frequency Applications”, in Advanced Microwave Circuits and Systems, ISBN 978-953-307-087-2, pp. 249–289, April 2010.

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