12–15 June 2006 ::: Oulu, Finland

University of Oulu, Microelectronics and Materials Physics Laboratories

Invited presentations


The conference organizers are pleased to announce the following topics to be presented at MMA 2006:

 

I-01   General Design Technique for High Q-factor Bragg Reflector Resonators

             Mike Tobar

             Dept. of Physics, University of Western Australia, Crawley, Australia

 

I-02   Low Loss Dielectric Thin Films for Tunable Devices

             Ji-Won Choi

             Thin Film Materials Research Center, KIST, Seoul, Korea

 

I-03   The Tunability and Microwave Properties of BaTiO3-based Homogeneous and its

          Compositionally Graded Thin Films

             Jiwei Zhai

             Functional Materials Research Laboratory, Tongji University, Shanghai, China

 

I-04   FDTD Analysis of Dielectric Resonator Antenna

             Pezholil Mohanan

             Department of Electronics, Cochin University of Science & Technology, Cochin, India

 

I-05   Characterization Techniques for Thin and Thick Ferroelectric Films

             Anatoli Deleniv

             Department of Microtechnology and Nanoscience, Chalmers University of Technology,

             Gothenburg, Sweden

 

I-06   New Development in Copper Compatible Base Metal Dielectric Formulations

             Mike S.H. Chu      -     WITHDRAWN

            

I-07   Novel Dielectric Composites for Microwave Applications

             Hong Wang

             Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education, Xi’an

             Jiaotong University, Xi’an, China

 

I-08   The Losses of Microwave Ferrite Materials at Communication Frequencies

             Paul A. Smith
           
 University of Birmingham, Department of Electrical, Electronic and Computer Engineering,

             Edgbaston, Birmingham, UK
 

I-09   The Electromagnetic Properties of Cu-substituted Garnets with Low Sintering

          Temperature

             Jean-Pierre Ganne

             Thales Research and Technology, Palaiseau, France

 

I-10   Characteristics of Thick Film Resistors Embedded in Low Temperature Co-fired

          Ceramic (LTCC) Substrates

             Chi-Shiung Hsi

             National United University, Dept. of Materials Science and Engineering, Kung-Ching Li,

             MiaoLi, Taiwan

 

I-11   LTCC System with New High ε and Q Material Co-fired with Conventional Low ε

          Base Material for Wireless Communications

             Yukio Higuchi

             Murata Manufacturing Co. Ltd, Kyoto, Japan

 

I-12   Layered Microwave Dielectric Resonators

             Xiang Ming Chen

             Department of Materials Science & Engineering, Zhejiang University, Hangzhou, CHINA

 

I-13   Aerosol Deposition for Post-LTCC

             Yoshihiko Imanaka
            
 Fujitsu Limited, Atsugi, Kanagawa, Japan

I-14   Analysis of Lattice Defect in BMT by Far Infrared Measurements

             Takeshi Shimada
           
 R & D Center, Neomax Co., Ltd., Egawa, Shimamoto, Osaka, Japan

I-15   Raman-Spectroscopic Investigations of Crystal Structure and Phonon Modes of

          Ba(RE1/2Ta1/2)O3 Microwave Ceramics

             Roberto L. Moreira
            
Departamento de Física, Instituto de Ciências Exatas, UFMG, Belo Horizonte, MG, Brazil

I-16   Tailoring the Material Properties of Ba1xSrxTiO3 Based Thin Films to Enable

          Temperature Stable Tunable Microwave Devices

             Melanie W. Cole

             U.S. Army Research Laboratory, Weapons and Materials Research Directorate, Aberdeen

             Proving Ground, Maryland, U.S.A. 

 

I-17   Tailored Strontium Titanate for Tunable Devices: Structural and Dielectric

          Analysis

             Paula M. Vilarinho
            
Department of Ceramics and Glass Engineering, CICECO, University of Aveiro, Portugal

 

I-18   Ceramic Technology to 100GHz

             Charles Free

             Advanced Technology Institute, University of Surrey, Guildford, UK

 

I-19   Dielectric Nanostructures for Terahertz Applications

             Norbert Klein
           
 Forschungszentrum Jülich, Institut für Schichten und Grenzflächen, Germany

I-20   Antenna Miniaturization using Magneto-dielectric Substrates: Physical

          Limitations and Desired Features for the Substrate

             Pekka Ikonen
           
 Radio Laboratory/SMARAD, Helsinki University of Technology, Finland.