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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 21 - 40 of 43 [Previous]  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
AP, WPT
(Joint)
2018-01-18
- 2018-01-19
Nara ATR Equivalent Central Resistance Theory to Minimize Electromagnetic-Field Leakage from Tx-Rx Symmetric Wireless Couplers
Motoaki Miyazaki, Shinji Abe, Naoki Sakai, Takashi Ohira (TUT)
 [more]
ICD, CPSY, CAS 2017-12-14
15:10
Okinawa Art Hotel Ishigakijima Near-Field Dua-Use Antenna for Magnetic-Field based Communication and Electrical-Field based Distance Sensing in mm^3-Class Sensor Node
Ryo Shirai, Jin Kono (Osaka Univ.), Tetsuya Hirose (Kobe Univ.), Masanori Hashimoto (Osaka Univ.) CAS2017-86 ICD2017-74 CPSY2017-83
This paper proposes a mm${}^3$-class dual-use near-field antenna that can be used for both magnetic-field based communic... [more] CAS2017-86 ICD2017-74 CPSY2017-83
pp.101-105
WPT
(2nd)
2017-12-09
- 2017-12-11
Overseas National University of Singapore(AWPT2017) Design of Capacitive Coupler for High Efficiency Wireless Power Transfer Under Fresh Water
Yasumasa Naka, Kosuke Murai, Masaya Tamura (Toyohashi Tech.)
This paper describes a design method of the capacitive coupler achieving the improvement in efficiency underwater wirele... [more]
WPT
(2nd)
2017-12-09
- 2017-12-11
Overseas National University of Singapore(AWPT2017) Experimental Verification of Optimal Load to Achieve Maximum Efficiency in Capacitive Power Transfer with Resonance Coupling
Kenta Suzuki, Takehiro Imura, Yoichi Hori (UTokyo)
Wireless power transfer (WPT) has become an important technology due to its wide range of applications.
This paper focu... [more]

WPT, EMCJ
(Joint)
2017-11-21
13:50
Tokyo Kikai-Shinko-Kaikan Bldg. Design of coupler for high efficiency wireless power transfer under fresh water with electric coupling
Yasumasa Naka, Kosuke Murai, Masaya Tamura (Toyohashi Univ. ot Tech.) WPT2017-49
This report describes a design method of the capacitive coupler achieving the high efficiency underwater wireless power ... [more] WPT2017-49
pp.27-31
EMCJ, WPT, PEM
(Joint)
2016-11-24
15:50
Tokyo Kikai-Shinko-Kaikan Bldg. Parallel Plate Capacitive Coupler for Auto Parts Locator in Vehicle Component Factory
Motoaki Miyazaki, Shinji Abe, Yoshiki Suzuki, Naoki Sakai, Takashi Ohira (TUT), Masayoshi Sugino (SOKEN) WPT2016-40
This paper proposes a new structure of a parallel plate capacitive coupler for wireless power transfer. The structure ha... [more] WPT2016-40
pp.19-23
ICD 2016-04-14
10:35
Tokyo Kikai-Shinko-Kaikan Bldg. [Invited Lecture] A 7T-SRAM with Data-Write Technique by Capacitive Coupling
Daisaburo Takashima, Masato Endo (Toshiba), Kazuhiro Shimazaki, Manabu Sai (Toshiba Microelectronics), Masaaki Tanino (Toshia Information Systems) ICD2016-2
A 7T-SRAM, in which cell data is written by capacitive coupling, is proposed. The elimination of current-drive in read/w... [more] ICD2016-2
pp.7-12
WPT 2016-02-12
13:45
Kanagawa YRP center, 1st Bldg. Capacitive coupled type carrier system and its future prospects -- Suggestion of a linear drive system as IoT element --
Kenichi Harakawa (ExH Corp.) WPT2015-72
Carrier system as Iot linear component using capacitive coupling and its improved types are discussed. [more] WPT2015-72
pp.1-6
EMCJ, WPT
(Joint)
2016-01-28
11:20
Kumamoto Kumamoto National Colle. Technology Capacitive Coupling Wireless Power Transfer Using Mesh Electrodes
Shinji Abe, Yuki Aoyagi, Hiroki Kuniyoshi, Masaru Tanaka, Naoki Sakai, Takashi Ohira (TUT) WPT2015-64
This paper presents capacitive coupling wireless power transfer using mesh electrodes.
Mesh structure has a number of a... [more]
WPT2015-64
pp.5-10
WPT 2015-06-12
17:00
Tokyo Univ. of Tokyo V-WPT Mechanics Design and Power Transfer Experiment Dedicated to kW-Class EVER Development
Daiki Itokazu, Yuki Aoyagi, Yoichiro Miyazaki, Yoshiki Suzuki, Sonshu Sakihara, Naoki Sakai, Takashi Ohira (Toyohashi Uinv. of Tech.) WPT2015-31
This paper presents design of V-WPT mechanics and power transfer experiment using electric vehicle COMS. We designed a p... [more] WPT2015-31
pp.59-62
MW
(2nd)
2014-11-26
- 2014-11-28
Overseas King Mongkut's Institute of Technology Ladkrabang (KMITL), Bangkok A Dual-band Fractal Slot Antenna Fed by Fractal Capacitive Coupling
Thanakarn Suangun, Norakamon Wongsin, Chatree Mahatthanajatuphat, Prayoot Akkaraekthalin (KMUTNB)
A dual-band fractal slot antenna fed by fractal capacitive coupling is presented, which it is responsibility to the char... [more]
WBS 2013-11-01
11:25
Kagoshima   One Wire PLC System by Inductive Coupling
Shinji Tsuzuki, Hiroyuki Utsunomiya (Ehime Univ.), Takashi Matsui (Shikoku Electric Power), Yoshio Yamada (Ehime Univ.) WBS2013-33
The conventional narrowband power-line communication (NB-PLC) is a two-wire system, that has injected its signal between... [more] WBS2013-33
pp.71-76
MW, AP
(Joint)
2013-09-13
13:55
Tokyo NHK Science Tech. Research Lab. Mechanism Analysis and Characteristics survey of Independent Transmission Line Type WPT System
Koichi Tsunekawa, Chang Yang (Chubu Unv.) AP2013-85
Characteristics and operating principle of WPT system with capacitive coupling (independent transmission line type) are ... [more] AP2013-85
pp.27-30
EE, WPT, IEE-SPC
(Joint) [detail]
2013-07-25
10:55
Tokyo Kikai-Shinko-Kaikan Bldg. Positional Characteristics of the Coupling Coefficient in Wireless Power Transfer with Capacitive Coupling
Takashi Komaru, Hidenori Akita (DENSO CORP.)
Capacitive power transfer has many important merits including less heating and more material options. But its positional... [more]
SIP, CAS, CS 2013-03-14
15:05
Yamagata Keio Univ. Tsuruoka Campus (Yamagata) A study on electrode configuration for distance estimation based on capacitive coupling between sensor nodes
Tatsuya Shinada, Masanori Hashimoto, Takao Onoye (Osaka Univ.) CAS2012-119 SIP2012-150 CS2012-125
We are studying a 3D modeling system using a sensor network that distributes many tiny sensor nodes in a exible object l... [more] CAS2012-119 SIP2012-150 CS2012-125
pp.131-136
SDM, ED 2013-02-28
09:25
Hokkaido Hokkaido Univ. Characteristics of double quantum dot Si single-electron transisor caused by the number change of electrons in quantum dot
Takafumi Uchida, Hiroto Takenaka, Isamu Yoshioka, Masashi Arita (Hokkaido Univ), Akira Fujiwara (NTT), Yasuo Takahashi (Hokkaido Univ) ED2012-138 SDM2012-167
A double quantum-dot (DQD) device is expected as a key device for quantum information processing as well as a single-ele... [more] ED2012-138 SDM2012-167
pp.53-58
ITE-IDY, EID, IEE-EDD 2013-01-25
12:12
Shizuoka Shizuoka Univ. The circuit simuletion and theoretical consideration in capacitive coupling wireless power transfer
Tatsuya Takahashi, Reiji Hattori (Kyushu Univ.) EID2012-31
We proposed the capacitively-coupled wireless power transfer sistem for electronic paper.
The system used a coil for re... [more]
EID2012-31
pp.129-132
EMCJ
(2nd)
2012-11-29
10:55
Tokyo NICT [Poster Presentation] Wireless Energy Transmission for Subcutaneous Implantable Medical Devices by using Capacitive Coupling -- Analysis of Receiving Power and Biological Effect of Electromagnetic Field --
Atsushi Taneda, Kenji Shiba (Tokyo Univ. of Science)
A subcutaneous implantable medical device must be replaced surgically when its batteries start to weaken. Therefore, we ... [more]
MW, WPT
(Joint)
2012-05-25
09:50
Kyoto Kyoto Univ. An Experimental and Theoretical Investigation on Basic Characteristics of Transmission Line Employing 3D Capacitive Coupling Structure
Eui-Hoon Jang, Jang-Hyeon Jeong, Sung-Jo Han, Ki-Jun Son, Young Yun (Korea Maritime Univ.) MW2012-14
In this study, a short-wavelength transmission line employing comb-type capacitive transmission line (CCTL) was studied ... [more] MW2012-14
pp.23-26
AP 2010-01-22
14:20
Yamaguchi Yamaguchi University Wireless Energy Transmission for Small Implantable Medical Devices Using Capacitive Coupling -- Analysis of Maximum Receiving Power --
Hiromi Maruyama, Naoya Higaki, Kenji Shiba (Hiroshima Univ.) AP2009-177
Currently, small implantable medical devices are driven by batteries. However, the implanted device cannot be used to pe... [more] AP2009-177
pp.123-127
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