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Engineering and Technology

D-Index
39
Citations
7606
World Ranking
7602
National Ranking
1369

Overview

Ken-ya Hashimoto is affiliated with the University of Electronic Science and Technology of China.

The primary fields of study for their research include Engineering and Physics and Astronomy. Their work spans several subfields, notably Biomedical Engineering, Electrical and Electronic Engineering, Atomic and Molecular Physics and Optics, Materials Chemistry, and Mechanics of Materials.

The main topics of Ken-ya Hashimoto's research involve Acoustic Wave Resonator Technologies, Advanced MEMS and NEMS Technologies, Ferroelectric and Piezoelectric Materials, Mechanical and Optical Resonators, Ultrasonics and Acoustic Wave Propagation, GaN-based semiconductor devices and materials, and Microwave Engineering and Waveguides.

Frequent publication venues include:

  • Japanese Journal of Applied Physics
  • IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control
  • IEEE Electron Device Letters
  • IEEE Journal of Microwaves
  • IEEE Transactions on Microwave Theory and Techniques

Ken-ya Hashimoto has collaborated extensively with several coauthors, including:

  • Jingfu Bao
  • Yiwen He
  • Ting Wu
  • Yu-Po Wong
  • Zhaohui Wu

Selected recent papers include:

  • "From Microwave Acoustic Filters to Millimeter-Wave Operation and New Applications," 2022, IEEE Journal of Microwaves
  • "Comparative study of piston mode designs for temperature-compensated surface acoustic wave resonators using SiO 2 /LiNbO 3 structure," 2022, Japanese Journal of Applied Physics
  • "Combination of Tetragonal Crystals With LiTaO3 Thin Plate for Transverse Resonance Suppression of Surface Acoustic Wave Devices," 2022, IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control
  • "Spurious Mitigation of Layered Surface Acoustic Wave Resonators With Double-Busbar Configuration Using 42°YX-Lithium Tantalate Thin Plate," 2023, IEEE Transactions on Microwave Theory and Techniques
  • "Broadband piston mode operation of solidly mounted resonator employing A 1 Lamb mode on lithium niobate," 2021, Japanese Journal of Applied Physics

Best Publications

  • Surface Acoustic Wave Devices in Telecommunications

    Ken-ya Hashimoto

  • RF Bulk Acoustic Wave Filters for Communications

    Ken-Ya Hashimoto

  • Microwave acoustic materials, devices, and applications

    R. Weigel;D.P. Morgan;J.M. Owens;A. Ballato

  • Surface Acoustic Wave Devices in Telecommunications: Modelling and Simulation

    Ken-Ya Hashimoto

  • High-performance surface acoustic wave resonators in the 1 to 3 GHz range using a ScAlN/6H-SiC structure

    K. Hashimoto;S. Sato;A. Teshigahara;T. Nakamura

  • Piezoelectric thin-film resonator and filter

    Kenya Hashimoto;Jiansong Liu;Masanori Ueda;Shinji Taniguchi

  • Comparative Study of Acoustic Wave Devices Using Thin Piezoelectric Plates in the 3–5-GHz Range

    Tetsuya Kimura;Masashi Omura;Yutaka Kishimoto;Kenya Hashimoto

  • Microwave Acoustic Wave Devices: Recent Advances on Architectures, Modeling, Materials, and Packaging

    Amelie Hagelauer;Gernot Fattinger;Clemens C. W. Ruppel;Masanori Ueda

  • Surface acoustic wave propagation characterisation by finite-element method and spectral domain analysis

    Gou Endoh;Ken–ya Hashimoto;Masatsune Yamaguchi

  • Elastic, Piezoelectric and Dielectric Properties of Composite Materials

    K.Y. Hashimoto;M. Yarnaguchi

  • Ultra-Wideband Surface Acoustic Wave Devices Using Cu-Grating/Rotated-YX-LiNbO3-Substrate Structure

    Ken-ya Hashimoto;Hiroki Asano;Tatsuya Omori;Masatsune Yamaguchi

  • 3.5 GHz longitudinal leaky surface acoustic wave resonator using a multilayered waveguide structure for high acoustic energy confinement

    Tetsuya Kimura;Tetsuya Kimura;Yutaka Kishimoto;Masashi Omura;Ken-ya Hashimoto

  • Miniature Surface Acoustic Wave Duplexer Using SiO2/Al/LiNbO3 Structure for Wide-Band Code-Division Multiple-Access System

    Hiroyuki Nakamura;Hiroyuki Nakamura;Hidekazu Nakanishi;Tetsuya Tsurunari;Ken Matsunami

  • Recent development of temperature compensated SAW Devices

    Ken Ya Hashimoto;Michio Kadota;Takeshi Nakao;Masanori Ueda

  • Development of an X-Band Filter Using Air-Gap-Type Film Bulk Acoustic Resonators

    Masanori Ueda;Masanori Ueda;Motoaki Hara;Shinji Taniguchi;Tsuyoshi Yokoyama

  • Optimum leaky-SAW cut of LiTaO/sub 3/ for minimised insertion loss devices

    K.-Y. Hashimoto;M. Yamaguchi;S. Mineyoshi;O. Kawachi

  • General-purpose simulator for leaky surface acoustic wave devices based on coupling-of-modes theory

    K. Hashimoto;H. Yamaguchi

  • Tunable Radio-Frequency Filters Using Acoustic Wave Resonators and Variable Capacitors

    Tomoya Komatsu;Ken-ya Hashimoto;Tatsuya Omori;Masatsune Yamaguchi

  • Suppression of Transverse Mode Responses in Ultra-Wideband SAW Resonators Fabricated on a Cu-Grating/15°YX-LiNbO 3 Structure

    T. Omori;K. Matsuda;K.-y. Hashimoto;M. Yamaguchi

  • Acoustic wave device and its making method

    Yoshio Sato;Kenya Hashimoto

  • Surface Acoustic Wave Filters

    Ken-ya Hashimoto;Masatsune Yamaguchi

Frequent Co-Authors

Masayoshi Esashi
Masayoshi Esashi Tohoku University
Michio Kadota
Michio Kadota Tohoku University
Hiroyuki Nakamura
Hiroyuki Nakamura Tokyo Institute of Technology
Shinichi Shikata
Shinichi Shikata Kwansei Gakuin University
Haosu Luo
Haosu Luo Chinese Academy of Sciences
Robert Weigel
Robert Weigel University of Erlangen-Nuremberg
Satoru Matsuda
Satoru Matsuda Keio University
Giuseppe Pezzotti
Giuseppe Pezzotti Kyoto Institute of Technology
Morito Akiyama
Morito Akiyama National Institute of Advanced Industrial Science and Technology
Hiroyuki Fujita
Hiroyuki Fujita Tokyo City University

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