HIROKAWA Jiro | Tokyo Institute of Technology
スポンサーリンク
概要
関連著者
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HIROKAWA Jiro
Tokyo Institute of Technology
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Ando M
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Ando Makoto
The Authors Are With The Department Of Electrical And Electronic Engineering Tokyo Institute Of Tech
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Ando M
Tokyo Institute Of Technology
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Hirokawa J
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Hirokawa Jiro
Department Of Electrical & Electronic Engineering Tokyo Institute Of Technology
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Hirokawa Jiro
Dept. Of Electrical And Electronic Eng. Graduate School Of Science And Engineering Tokyo Institute O
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Ando Makoto
Faculty Of Engineering Tokyo Institute Of Technology
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Ando Makoto
Dept. Of Electrical And Electronic Eng. Graduate School Of Science And Engineering Tokyo Institute O
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Hirokawa Jiro
Department Of Electrical & Electronic Engineering Faculty Of Engineering Tokyo Institute Of Tech
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Ando Makoto
Department Of Applied Physics Faculty Of Engineering Tokyo University Of Agriculture And Technology
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ANDO Makoto
Tokyo Institute of Technology
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Ando Makoto
Department Of Cardiovascular Surgery Sakakibara Heart Institute
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Ando Makoto
Tokyo Inst. Of Technol. Tokyo Jpn
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HIROKAWA Jiro
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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ANDO Makoto
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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Ando Makoto
Department Of Cardiovascular Surgery The Sakakibara Heart Institute
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Hirokawa Jiro
Dept. Of Electrical Amp Electronic Eng. Tokyo Institute Of Technology
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She Yuanfeng
Dept. Of Electrical And Electronic Eng. Tokyo Institute Of Technology
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Ando Makoto
Dept. Of Electrical & Electronic Eng. Tokyo Institute Of Technology
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SHE Yuanfeng
Dept. of Electrical and Electronic Engineering, Tokyo Institute of Technology
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ANDO Makoto
Dept. of Electrical and Electronic Engineering, Tokyo Institute of Technology
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HIROKAWA Jiro
Dept. of Electrical and Electronic Engineering, Tokyo Institute of Technology
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SAKURAI Kimio
Tokyo Institute of Technology
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Hirano T
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Ando Makoto
Department Of Electrical & Electronic Engineering Tokyo Institute Of Technology
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Huong Tran
Dept. Of Electrical And Electronic Eng. Tokyo Institute Of Technology
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Zhang Miao
Dept. Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Sakakibara K
Department Of Electrical And Electronic Engineering Faculty Of Engineering Tokyo Institute Of Techno
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HIRANO Takuichi
Tokyo Institute of Technology
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Sakurai Kimio
Dept. Of Electrical And Electronic Eng. Graduate School Of Science And Engineering Tokyo Institute O
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HASHIMOTO Koh
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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SHE Yuanfeng
Tokyo Institute of Technology
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Sakurai K
Tokyo Institute Of Technology
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Lee Jae-ho
Dept. Of Electrical & Electronic Eng. Tokyo Institute Of Technology
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Kim Dongjin
Dept. Of Electrical And Electronic Eng. Graduate School Of Science And Engineering Tokyo Institute O
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Fujimoto Masahiro
Hirai Seimitsu Kogyo Corporation
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Ueda Hideki
Department Of Electrical & Electronic Engineering Tokyo Institute Of Technology
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Hanatani Daisuke
Hirai Seimitsu Kogyo Corporation
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UEDA Hideki
Tokyo Institute of Technology
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Hashimoto Koh
Department Of Complexity Science And Engineering The Graduate School Of Frontier Scierces University
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Lee Jae-ho
Tokyo Institute Of Technology
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Nagatsuma Tadao
Dept. Of Systems Innovation Graduate School Of Engineering Science Osaka University
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Zhang Miao
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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FUJIMOTO Masahiro
Hirai Precision Ind. Co. Ltd.
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HANATANI Daisuke
Hirai Precision Ind. Co. Ltd.
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HUONG Tran
Dept. of Materials Science, Toyohashi University of Technology
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Suzuki Takehito
Department Of Electrical And Electronic Engineering Ibaraki University
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ALBANI Matteo
University of Siena
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Suzuki Takehito
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Yoshida Goro
Jrc
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Hirano Takuichi
Dept. of International Development Eng., Tokyo Institute of Technology
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SAMARDZIJA Miroslav
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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LEE JungAun
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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Tung Nguyen
Department Of Electrical & Electronic Engineering Tokyo Institute Of Technology
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Lee Jungaun
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Ueda Hideki
Department Of Cardiovascular Surgery Kkr Sapporo Medical Center
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Takada Takuma
Dept. of Systems Innovation, Graduate School of Engineering Science, Osaka University
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Takada Takuma
Dept. Of Systems Innovation Graduate School Of Engineering Science Osaka University
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Jayawardene Rushanthi
Dept. Of Electrical & Electronic Engineering Tokyo Institute Of Technology
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Samardzija Miroslav
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Jayawardene Rushanthi
Tokyo Institute of Technology
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Nguyen Tung
Tokyo Institute of Technology
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Takano Yasutomo
Tokyo Institute of Technology
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Amano Osamu
NEC-Toshiba Space Systems
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Matsuzaki Takaomi
NEC-Toshiba Space Systems
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Koreeda Shuichi
NEC-Toshiba Space Systems
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Zhang Miao
Dept. Of Electrical And Electronic Eng. Graduate School Of Science And Engineering Tokyo Institute Of Technology
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常光 康弘
日本無線株式会社研究開発本部技術開発部アンテナグループ
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常光 康弘
横浜国立大学工学部
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常光 康弘
拓殖大学工学部電子工学科
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ZHANG Miao
Dept. of Electrical and Electronic Engineering, Tokyo Institute of Technology
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Ueda Hideki
Department of Surgery, Course of Interventional Medicine (E1), Osaka University Graduate School of M
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Tran Thi
Department Of Veterinary Medicine College Of Agriculture And Applied Biology Campus Ii Cantho Univer
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Hashimoto Koh
Dept. Of Electrical And Electronic Eng. Tokyo Institute Of Technology
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ZHANG Miao
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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Tran Thi
Dept. of Electrical and Electronic Eng. Tokyo Institute of Technology
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Tung Nguyen
Department Of Mechanical Engineering Doshisha University
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HIRANO Takuichi
Department of International Development Engineering, Tokyo Institute of Technology
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Hirano Takuichi
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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TRAN Thi
Tokyo Institute of Technology
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KOGAMI Yoshinori
Utsunomiya University
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Huey Koh
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Goto N
Radial Antenna Laboratory
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Amano Osamu
Space Engineering Division Nec/toshiba Space Systems Ltd.
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Kazama Yasuhiro
Japan Radio Company
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KAMATA Yukio
Institute of Space and Astronautical Science of JAXA
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TSUNEMITSU Yasuhiro
JRC
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GOTO Naohisa
Radial Antenna Laboratory
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MIURA Yohei
JRC
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YOUNG John
Japan Radio Corporation, Ltd.
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Kim Dongjin
Dept. of Electrical and Electronic Eng., Graduate School of Science and Engineering, Tokyo Institute
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Young John
Japan Radio Corporation Ltd.
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Koh KimHuey
Tokyo Institute of Technology
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Hirachi Yasutake
AMMSYS Inc.
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Kogami Yoshinori
Utsunomiya Univ. Utsunomiya‐shi Jpn
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SHE Yuanfeng
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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She Yuanfeng
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Tran Thi
Department Of Nutrition School Of Medicine The University Of Tokushima
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Okada Kenichi
Tokyo Inst. Of Technol. Yokohama‐shi Jpn
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Kazama Yasuhiro
Japan Radio Co. Ltd. Mitaka‐shi Jpn
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Kazama Yasuhiro
Japan Radio Co. Ltd.
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Sakurai Kimio
Dept. of Electrical and Electronic Eng., Graduate School of Science and Engineering, Tokyo Institute
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Mohibul Hasan
Dept. of Electrical & Electronic Engineering Tokyo Institute of Technology
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Jayawardene Rushanthi
Dept. of Electrical & Electronic Engineering Tokyo Institute of Technology
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Mohibul Hasan
Dept. Of Electrical & Electronic Engineering Tokyo Institute Of Technology
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ONO Yuya
Tokyo Institute of Technology
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Fujino Ryusuke
Tokyo Institute of Technology
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MIURA Yohei
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology
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IGARASHI Kazufumi
Development Department, Research & Development Center, Japan Radio Co., Ltd.
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YOSHIDA Goro
Development Department, Research & Development Center, Japan Radio Co., Ltd.
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HANATANI Daisuke
LTCC Lab, Ogaki plant, Hiraiseimitsu Cooperation
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FUJIMOTO Masahiro
LTCC Lab, Ogaki plant, Hiraiseimitsu Cooperation
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Igarashi Kazufumi
Development Department Research & Development Center Japan Radio Co. Ltd.
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LEE Jae-Ho
Dept. of Civil Eng., Kobe Univ.
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Le Hung
Tokyo Institute of Technology
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Vu Le
Tokyo Institute of Technology
著作論文
- Broadband Design and Fabrication of Partially-Corporate Feed Double-Layer Waveguide Slot Antennas with Magnetic Wall Terminations due to Symmetrical Waveguide Connections
- A Coaxial Feeder with Two Pairs of Parasitic Pins for Realizing Rotationally Symmetric Aperture Illumination in Spiral Array Radial Line Slot Antennas
- B-1-59 Antenna Efficiency Estimation according to the Loss Evaluation of Post-Wall Waveguides in Millimeter-Wave Bands
- C-2-70 Prediction of Transmission Losses in Microstrip Lines and Post-wall Waveguides in Various Frequency Bands by using Effective Conductivity and Complex Permittivity obtained by a Whispering Gallery Mode Resonator Technique
- C-2-44 CONFORMATION OF EFFECTIVE CONDUCTIVITY MEASURED BY A WHISPERING GALLERY MODE RESONATOR IN THE MILLIMETER-WAVE BAND BY MICROSTRIP-LINE TRANSMISSION LOSSES EVALUATION
- Fabrication of Alternating-Phase Fed Single-Layer Slotted Waveguide Arrays Using Plastic Materials with Metal-Plating
- Evaluation of Effective Conductivity of Copper-Clad Dielectric Laminate Substrates in Millimeter-Wave Bands Using Whispering Gallery Mode Resonators
- B-1-57 Design of Sequentially Rotated Circularly Polarized 2x2 Patch Antenna Arrays for Monopulse Operation
- B-1-167 Limitation of a Solid-Wall Waveguide Approximation in the Design of a Post-Wall Waveguide Linear Array
- A Post-Wall Center-Feed Waveguide Circuit Consisting of T-Junctions for Reducing the Slot-Free Area in a Parallel Plate Slot Array Antenna
- Connected Post-Wall (C-PW) Waveguide for Efficient Design of Broad Wall Slots by Using Equivalent Solid-Wall Waveguide
- Design of Post-Wall Feed Waveguide for a Parallel Plate Slot Array by an Analysis Model with Corrected Solid-Walls
- Design of Narrow Wall Windows in a Waveguide to Feed Partially-Dielectric-Filled Oversized-Rectangular Waveguide Based on 2-Dimensional Analysis of Two Orthogonal Directions
- Analysis and Design of a Reflection-Cancelling Transverse Slot-Pair Array with Grating-Lobe Suppressing Baffles
- Analysis and Uniform Design of a Single-Layer Slotted Waveguide Array Antenna with Baffles
- Bandwidth Enhancement of Aperture Feed by an Air Rectangular Cavity Backing in a LTCC Post-Wall Waveguide
- Step Width Tolerable for Offset of the Aperture in a Millimeter-Wave Transducer between Post-Wall and Hollow Standard Waveguides
- B-1-154 Power Divider for Feed of Oversized Dielectric-Coated Rectangular Waveguide
- The Ridged Cross-Junction Multiple-Way Power Divider for Small Blockage and Symmetrical Slot Arrangement in the Center Feed Single-Layer Slotted Waveguide Array
- B-1-69 Design of a Circularly Polarized Patch Antenna on the Thick Resin of a Silicon Chip
- B-1-54 Full Array Optimization of a Linear, Edge Slot Array with Low Sidelobes
- B-1-72 120GHz-band Design of a Corporate-feed Plate-laminated Waveguide Slot Array Antenna
- B-1-73 LTCC Partially-Filled Oversized Rectangular Waveguide-Fed Slot Array in the Millimeter-Wave Band
- B-1-57 Radial Line Slot Antenna with an Elliptical Beam
- A Coaxial Feeder with Two Pairs of Parasitic Pins for Realizing Rotationally Symmetric Aperture Illumination in Spiral Array Radial Line Slot Antennas
- Practical Slot Array Design by Method of Moments Using One Basis Function and Constant Correction Length
- A Center-Feed Linear Array of Reflection-Canceling Slot Pairs on Post-Wall Waveguide
- Loss of Post-Wall Waveguides and Efficiency Estimation of Parallel-Plate Slot Arrays Fed by the Post-Wall Waveguide in the Millimeter-Wave Band
- Full-Wave Design Considering Slot Admittance in 2-D Waveguide Slot Arrays with Perfect Input Matching
- Design of a Partially-Corporate Feed Double-Layer Slotted Waveguide Array Antenna in 39GHz Band and Fabrication by Diffusion Bonding of Laminated Thin Metal Plates
- B-1-150 Transmission Loss of the LTCC Partially-Filled Single Mode Waveguide in the Millimeter-Wave Band
- B-1-44 Effect of Localized Rain on Rain Attenuation in Tokyo Tech Millimeter-wave Model Network
- B-1-146 Design and Fabrication of Double-Layer Waveguide Slot Array Antennas using Diffusion Bonding of Laminated Thin Plate for 350 GHz-band
- B-1-152 Numerical Optimization for Flat Elliptical Beam Radial Line Slot Antenna
- Design and Measurement of a Corporate-feed Plate-laminated Waveguide Slot Array Antenna for 120 GHz-band
- Eigenmode Analysis of Propagation Constant for a Microstrip Line with Dummy Fills on a Si CMOS Substrate
- Loss Reduction by Air-Region Insertion to LTCC Rectangular-Waveguide Slot Array Antenna in the Millimeter-Wave Band (放送技術)
- B-1-71 Design of Dual-polarization Corporate-feed Waveguide Slot Array Antenna using Diffusion Bonding of Laminated Thin Plate for 60 GHz-band
- B-1-70 Loss Evaluation and Bandwidth Enhancement of LTCC Single-mode Waveguide Slot Array with Air Region in the Millimeter-Wave Band
- B-1-66 Study of Cylindrical wave propagation in Honeycomb for use in mm-wave RLSA
- A High-Efficiency Circularly-Polarized Aperture Array Antenna with a Corporate-Feed Circuit in the 60GHz Band
- Loss Reduction by Air-Region Insertion to LTCC Rectangular-Waveguide Slot Array Antenna in the Millimeter-Wave Band (アンテナ・伝播)
- An Equivalent Double Layer Model for a Fast Design and Analysis of High Gain-Multilayer Radial Line Slot Antennas
- B-1-13 Spatial Variability of Rain Attenuation in Tokyo Tech Millimeter-wave Model Network
- B-1-32 Spatial-temporal Characteristics of Rain Attenuation in Tokyo Tech Millimeter-wave Model Network