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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 130  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
MW 2024-05-16
14:30
Osaka Osaka University Toyonaka Campus
(Primary: On-site, Secondary: Online)
Improvement of image rejection by external correction of internal I/Q amplitude and phase shift error in a quadrature mixer
Takaaki Michishita, Yusuke Ohmori, Kousuke Itou, Masaomi Tsuru, Naoki Sakai, Kenji Itoh (KIT)
 [more]
MW, WPT 2024-04-18
14:05
Kanagawa Kanagawa University
(Primary: On-site, Secondary: Online)
A high-dynamic range 5.8 GHz band 1 W rectifier MMIC with low threshold voltage GaAs GADs
Yuya Hirose (Kanazawa IT.), Gaku Kato, Takamasa Kono (Nisshinbo Micro Devices), Naoki Sakai, Kenji Itoh (Kanazawa IT.) WPT2024-4 MW2024-4
 [more] WPT2024-4 MW2024-4
pp.18-22
MW 2024-02-29
13:25
Okayama Okayama Prefectural University
(Primary: On-site, Secondary: Online)
High Dynamic Range 920 MHz Band Low Power Rectenna with Low Threshold voltage GaAs GADs
Taiki Hirase, Yuya Hirose, Tsukasa Hirai (Kanazawa IT.), Gaku Kato, Takamasa Kono (Nisshinbo Micro Devices), Naoki Sakai, Kenji Itoh (Kanazawa IT.) MW2023-179
In In this paper, the 920 MHz band low power rectifiers with low threshold voltage GaAs gated anode diodes (GADs) are de... [more] MW2023-179
pp.25-30
MW 2024-03-01
14:30
Okayama Okayama Prefectural University
(Primary: On-site, Secondary: Online)
[Special Talk] A 2.4-GHz 10 W-Class Bridge Rectifier and Its Efficiency Analysis With the Behavioral Model
Koichi Kikkawa, Tsunehiro Saen, Naoki Sakai, Kenji Itoh (KIT) MW2023-195
This paper presents a 2.4 GHz band 10 W-class bridge rectifier that achieves a high measured efficiency of 90.2%. To cla... [more] MW2023-195
pp.104-109
MW 2023-12-22
11:15
Shizuoka Shizuoka University (Hamamatsu Campus)
(Primary: On-site, Secondary: Online)
28 GHz band highly efficient GaAs rectenna MMIC with EM coupling structure for an external highly efficient wire antenna
Naoki Sakai, Yudai Tondokoro, Akinobu Kobayashi, Keisuke Noguchi, Masaomi Tsuru, Kenji Itoh (KIT) MW2023-156
This paper presents the rectenna structure with a wire-loop antenna for highly efficient rectification. In the structure... [more] MW2023-156
pp.41-47
MW 2023-11-16
15:20
Okinawa Nago City Industrial Support Center (Okinawa)
(Primary: On-site, Secondary: Online)
An even harmonic quadrature mixer MMIC for quantum bits' exciting
Yusuke Ohmori, Kousuke Itou, Takaaki Michishita, Tsukasa Hirai, Masaomi Tsuru, Naoki Sakai (KIT), Shinichi Morisaka, Hidehisa Shiomi, Makoto Negoro (Osaka Univ.), Kenji Itoh (KIT) MW2023-133
This paper describes a prototype of an even harmonic quadrature mixer MMIC used for a microwave source exciting supercon... [more] MW2023-133
pp.37-42
MW 2023-11-17
10:20
Okinawa Nago City Industrial Support Center (Okinawa)
(Primary: On-site, Secondary: Online)
A multi-stage stacked type microwave rectifier for step-downed DC voltage
Yuya Hirose, Naoki Sakai, Kenji Itoh (Kanazawa IT.) MW2023-140
 [more] MW2023-140
pp.76-80
MW 2023-11-17
10:45
Okinawa Nago City Industrial Support Center (Okinawa)
(Primary: On-site, Secondary: Online)
A 28 GHz band SOI-CMOS highly sensitive rectenna MMIC with an impedance transformed loop antenna
Yuudai Tondokoro, Naoya Kakutani, Akinobu Kobayashi, Tukasa Hirai, Naoki Sakai, Kenji Itoh (KIT) MW2023-141
In this report, A 28 GHz band SOI-CMOS highly sensitive rectenna MMIC is demonstrated for millimeter wave WPT systems in... [more] MW2023-141
pp.81-86
MW, AP
(Joint)
2023-09-29
10:40
Kochi Kochi Castle Museum of History
(Primary: On-site, Secondary: Online)
Rectification efficiency formula of RF voltage doubler with matching circuit.
Naoki Sakai, Masaomi Tsuru, Kenji Itoh (KIT) MW2023-86
This paper presents the total efficiency formula of RF voltage doubler with an LC matching circuit. To formulate the tot... [more] MW2023-86
pp.28-33
MW, AP
(Joint)
2023-09-29
11:05
Kochi Kochi Castle Museum of History
(Primary: On-site, Secondary: Online)
28GHz band highly efficient GaAs rectenna MMIC with an impedance transformed small loop antenna
AkinobuKobayashi, Tsukasa Hirai, Yuya Hirose, Naoki Sakai, Kenji Itoh (KIT) MW2023-87
In this report, design and evaluation results of 28 GHz band highly efficient GaAs rectenna MMIC is described for utiliz... [more] MW2023-87
pp.34-39
MW 2023-05-19
10:25
Kyoto Ritsumeikan University
(Primary: On-site, Secondary: Online)
920 MHz band rectenna with the CNT-TFT GAD
Tsukasa Hirai (KIT), Ashuya Takemoto (Toray), Naoki Sakai (KIT), Kenta Noguchi, Shinji Horii (Toray), Kenji Itoh (KIT) MW2023-14
This paper demonstrates 920MHz band rectenna with the gated anode diode (GAD) configured with the carbon nanotube thin f... [more] MW2023-14
pp.29-32
MW 2023-05-19
10:50
Kyoto Ritsumeikan University
(Primary: On-site, Secondary: Online)
5.8 GHz band 10 W rectenna on the aluminum nitride antenna for thermal dispersion
Naoki Sakai, Naoki Furutani, Yuya Hirose, Kaito Uchiyama, Fumiya Komatsu, Kenji Itoh (KIT) MW2023-15
This paper presents the 5.8 GHz band 10W rectenna with GaAs E-pHEMT gated anode diode (GAD) on the aluminum nitride (AlN... [more] MW2023-15
pp.33-37
WPT, MW 2023-04-13
13:40
Tokyo Kikai-Shinko-Kaikan Bldg.
(Primary: On-site, Secondary: Online)
[Invited Talk] High-power rectennas techniques for miclowave power transfer systems
Kenji Itoh, Keisuke Noguchi, Naoki Sakai (Kanazawa IT) WPT2023-2 MW2023-2
In this report, our research activities on rectennas for microwave power transfer (MPT) systems are demonstrated. For th... [more] WPT2023-2 MW2023-2
pp.2-9
WPT, MW 2023-04-13
15:20
Tokyo Kikai-Shinko-Kaikan Bldg.
(Primary: On-site, Secondary: Online)
Power characteristic analysis of 10W-class rectifier MMIC with GaAs E-pHEMT GAD
Ryohei Takaya, Yuya Hirose, Naoki Sakai, Kenji Itoh (KIT) WPT2023-5 MW2023-5
 [more] WPT2023-5 MW2023-5
pp.22-27
WPT 2023-03-17
15:25
Kyoto Kyoto-Univ. (Uji campus)
(Primary: On-site, Secondary: Online)
500 MHz band rectennas with the folded dipole antenna and the small loop antenna
Takumi Itoh, Kaito Matsuda, Naoki Sakai, Kenji Itoh (KIT), Minoru Sudo, Fumiyasu Utsunomiya, Yusuke Takeuchi (ABLIC) WPT2022-61
In this report, the prototyped rectennas for energy harvesting systems using radio waves of the digital terrestrial broa... [more] WPT2022-61
pp.133-137
MW 2023-03-02
14:30
Tottori Tottori Univ.
(Primary: On-site, Secondary: Online)
Quasi millimeter wave high-power rectifier with GaAs E-pHEMT GADs
Naoya Kakutani, Yuya Hirose, Naoki Sakai, Kenji Itoh (KIT) MW2022-165
In this report, quasi-millimeter wave 1 W-class double-voltage rectifier MMIC with 0.18 μm GaAs E-PHEMT gated anode diod... [more] MW2022-165
pp.48-53
MW 2023-03-02
15:35
Tottori Tottori Univ.
(Primary: On-site, Secondary: Online)
[Special Talk] 5.8-GHz band high efficiency 1-W rectenna with short stub connected dipole antenna
Naoki Sakai, Keisuke Noguchi, Kenji Itoh (Kanazawa IT) MW2022-167
This paper presents a 5.8 GHz band 1W rectenna with a short stub connected dipole antenna. The short stub connected dipo... [more] MW2022-167
pp.60-65
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
09:55
Miyagi Tohoku University, Aobayama Campus
(Primary: On-site, Secondary: Online)
Measurement results of 2D arrayed MAKCEY
Hajime Suzuki, Shigeru Makino, Kenji Itoh, Masahiko Maeda (KIT) AP2022-210
 [more] AP2022-210
pp.74-78
WPT
(2nd)
2022-12-05
- 2022-12-06
Kyoto Uji Obaku Plaza Kihada Hall, Uji Campus, Kyoto University
(Primary: On-site, Secondary: Online)
Experiment of wireless power transmission using millimeter-wave rectenna with modulated signal input
Yuta Nakamoto, Naoki Hasegawa, Takashi Hirakawa, Yoshichika Ohta (SoftBank Corp.), Naoki Sakai, Tsukasa Hirai, Kenji Itoh (KIT)
This work focuses on the wireless power transfer (WPT) compatible base station for IoT sensors.
A technique to add WPT ... [more]

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