IEICE Technical Committee Submission System
Conference Schedule
Online Proceedings
[Sign in]
Tech. Rep. Archives
    [Japanese] / [English] 
( Committee/Place/Topics  ) --Press->
 
( Paper Keywords:  /  Column:Title Auth. Affi. Abst. Keyword ) --Press->

All Technical Committee Conferences  (Searched in: All Years)

Search Results: Conference Papers
 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 13 of 13  /   
Committee Date Time Place Paper Title / Authors Abstract Paper #
AP, RCS
(Joint)
2023-11-15
13:00
Kumamoto Kumamoto Prefectural Workers' Welfare Hall
(Primary: On-site, Secondary: Online)
Study of Single Point-Fed Wi-Fi 2GHz/5GHz Band Shared Antenna Using MACKEY A-Shaped Structure
Hayato Ide, Shigeru Makino (KIT) AP2023-133
MACKEY (Meta-surface inspired Antenna Chip developed by KIT EOE Laboratory) has been proposed as a functional compact an... [more] AP2023-133
pp.22-26
AP 2023-05-11
13:00
Okinawa Okinawa Gender Equality Center
(Primary: On-site, Secondary: Online)
Study and evaluation of MACKEY broadbanding model using inverted-F antennas as feeding elements
Hayato Ide, Kiichi Wakayama, Shigeru Makino (KIT) AP2023-11
MACKEY (Meta-surface inspired Antenna Chip developed by KIT EOE Laboratory) has been proposed as a functional compact an... [more] AP2023-11
pp.19-23
AP 2023-02-15
10:20
Miyagi Tohoku University, Aobayama Campus
(Primary: On-site, Secondary: Online)
Study of a single point power supply for circularly polarized MACKEY
Michinori Yoneda, Keito Yokoe, Shigeru Makino, Kenji Itoh, Masahiko Maeda (KIT) AP2022-199
MACKEY (Meta-surface inspired Antenna Chip developed by KIT EOE Laborator), a functional miniature antenna, was shown to... [more] AP2022-199
pp.11-16
AP 2023-02-16
09:30
Miyagi Tohoku University, Aobayama Campus
(Primary: On-site, Secondary: Online)
Operating principle of MACKEY type H and MACKEY type M
Kota Hakamata, Keito Yokoe, Shigeru Makino, Tetsuo Hirota (KIT) AP2022-209
A functional small antenna “MACKEY” basic type operates not only in free space but also on metal. The objective of this ... [more] AP2022-209
pp.68-73
AP, MW
(Joint)
2022-09-16
11:35
Ehime The Museum of Art, EHIME
(Primary: On-site, Secondary: Online)
Study of Unbalanced MACKEY using Inverted F Antenna as feed element
Kota Hakamata, Keito Yokoe, Kichi Wakayama, Hayato Ide, Shigeru Makino (KIT) AP2022-87
A functional small antenna “MACKEY” basic type operates not only in free space but also on metal. MACKEY broadband type ... [more] AP2022-87
pp.90-95
AP, WPT
(Joint)
2022-01-21
09:25
Tottori Kenmin-Fureai-Kaikan
(Primary: On-site, Secondary: Online)
Research on MACKEY II with Enhanced Robustness
Keisuke Miyashita, Shigeru Makino, Kenji Itoh (Kanazawa Institute of Tec.) AP2021-148
The Meta-surface inspired Antenna Chip developed by KIT EOE Laboratory (MACKEY, Wi-Fi 2.4GHz band) is an electrically sm... [more] AP2021-148
pp.75-79
AP, RCS
(Joint)
2021-11-10
14:05
Nagasaki NBC-Bekkan (Nagasaki)
(Primary: On-site, Secondary: Online)
Research on a MACKEY type M miniaturized by multiple slits
Kota Hakamata, Keisuke Miyashita, Keito Yokoe, Shigeru Makino, Kenji Itoh (KIT) AP2021-102
A functional small antenna “MACKEY” basic type operates not only in free space but also on metal. The goal of this resea... [more] AP2021-102
pp.10-15
MW, AP
(Joint)
2020-09-24
13:50
Online Online [Poster Presentation] Study on thin AMC substrate
Ryota Shinozaki, Jo Tamura, Hiroyuki Arai (YNU) AP2020-52
In recent years, the development of the IoT field has accelerated, and various devices have become wireless. Along with ... [more] AP2020-52
pp.92-93
AP, SANE, SAT
(Joint)
2020-07-15
13:15
Online Online MACEKY II with reduced thickness by using new structure
Keisuke Miyashita, Toshiki Tamura, Shigeru Makino, Kenji Ito (Kanazawa Institute of Technology Univ) AP2020-12
A functional small antenna “MACKEY” basic type (Wi-Fi 2.4GHz band) operates not only in free space but also on metal. Ho... [more] AP2020-12
pp.15-19
AP, SAT, SANE
(Joint)
2016-07-21
15:15
Hokkaido Otaru port marina Feasibility Study of Wideband MACKEY
Tetsuo Moroya, Shigeru Makino, Yasuharu Ohtsubo, Keisuke Noguchi, Tetsuo Hirota, Kenji Itoh (KIT) AP2016-52
In prior study, it was shown MACKEY can be installed on a metal plate without affecting the characteristics of impedance... [more] AP2016-52
pp.87-90
AP 2015-04-22
15:00
Okinawa Ishigaki City [Tutorial Lecture] Basic Design Theory of Frequency Selective Reflector and its Applications
Shigeru Makino (KIT) AP2015-5
This paper provides the relationship between the reflection and the transmission characteristics of FSR and the normali... [more] AP2015-5
pp.17-24
AP 2015-03-19
14:00
Fukui Fukui University, Bunkyou Campus Proposal of a dipole antenna unified with an AMC substrate -- Metamaterial antenna chip MACKEY --
Tetsuo Moroya, Masaki Kotaka, Shigeru Makino, Hideyuki Hayashi, Keisuke Noguchi, Tetsuo Hirota, Kenji Itoh (KIT) AP2014-211
Various domestic appliances have become wireless, and it is necessary to set the wireless terminals anywhere.
In this r... [more]
AP2014-211
pp.1-5
AP 2014-05-30
14:35
Okinawa Okinawa Industory Support Center Examined of Dual Band for the metal-plate loaded capacitance grid type AMC substrate
Shuhei Iwakata, Shigeru Makino, Keisuke Noguchi, Tetsuo Hirota, Kenji Itoh, Masaki Kotaka (Kanazawa Inst. of Tech.), Tetsuo Moroya (KTC) AP2014-37
About AMC substrate using a metal plate loading capacitance grid, conditions of dual frequency, clar-ify the relationshi... [more] AP2014-37
pp.95-98
 Results 1 - 13 of 13  /   
Choose a download format for default settings. [NEW !!]
Text format pLaTeX format CSV format BibTeX format
Copyright and reproduction : All rights are reserved and no part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopy, recording, or any information storage and retrieval system, without permission in writing from the publisher. Notwithstanding, instructors are permitted to photocopy isolated articles for noncommercial classroom use without fee. (License No.: 10GA0019/12GB0052/13GB0056/17GB0034/18GB0034)


[Return to Top Page]

[Return to IEICE Web Page]


The Institute of Electronics, Information and Communication Engineers (IEICE), Japan