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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 25  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
SSS 2019-12-17
13:35
Tokyo   Development of Functional Safety Design Method for High-speed Communication in Autonomous Car
Nozomi Watanabe, Kenichi Shimbo, Tadanobu Toba (Hitachi, Ltd.) SSS2019-23
Along with the improvement of autonomous driving level, a number of Functional Safety (FuSa) elements has increased and ... [more] SSS2019-23
pp.5-8
CAS, CS 2019-03-08
15:50
Kanagawa Shonan Institute of Technology [Special Invited Talk] Development situation of RF analog co-Installed SoC for "60 GHz Band High Rate Close Proximity Radio System" and its conformity plan to various applications
Toru Taniguchi (HRCP) CAS2018-146 CS2018-114
In this paper, we introduce the status of LSI development that conforms to the "60 GHz band high speed proximity wireles... [more] CAS2018-146 CS2018-114
pp.41-46
CPM, OPE, LQE, R, EMD 2015-08-28
11:25
Aomori Aomori-Bussankan-Asupamu [Invited Talk] A standardization trend for 100G/400G Optical transceivers
Hideki Isono (FOC) R2015-41 EMD2015-49 CPM2015-65 OPE2015-80 LQE2015-49
In order to realize high-speed and large-capacity transmission systems on information technology, the forum standardizat... [more] R2015-41 EMD2015-49 CPM2015-65 OPE2015-80 LQE2015-49
pp.91-94
CAS, CS 2015-02-27
09:30
Tottori Tottori University [Special Invited Talk] Latest 100G/400G Optical components standardization trend
Hideki Isono (FOC) CAS2014-132 CS2014-104
In order to realize high-speed and large-capacity transmission systems on information technology, the forum standardizat... [more] CAS2014-132 CS2014-104
pp.73-76
EMD, LQE, OPE, CPM, R 2014-08-22
13:10
Hokkaido Otaru Economy Center [Invited Talk] A standardization trend for 100G/400G Optical components
Hideki Isono (FOC) R2014-43 EMD2014-48 CPM2014-63 OPE2014-73 LQE2014-47
In order to realize high-speed and large-capacity transmission systems on information technology, the forum standardizat... [more] R2014-43 EMD2014-48 CPM2014-63 OPE2014-73 LQE2014-47
pp.99-102
OPE, LQE, CPM, EMD, R 2013-08-30
09:00
Hokkaido sun-refre Hakodate [Invited Talk] A standardization trend for Optical devices
Hideki Isono (Fujitsu Optical Components) R2013-47 EMD2013-53 CPM2013-72 OPE2013-76 LQE2013-46
In order to realize high-speed and large-capacity transmission systems on information technology, forum standardization ... [more] R2013-47 EMD2013-53 CPM2013-72 OPE2013-76 LQE2013-46
pp.95-98
EMD 2013-01-25
13:35
Kanagawa Hitachi, Ltd., (Totsuka, Yokohama) [Invited Talk] The latest trend of PCB pattern design technique for LSI stable operation, suppressing noise and high speed serial interface
Akihiro Tanaka, Hiroyuki Motoki, Hideyuki Nakanishi (Aica Kogyo) EMD2012-97
A design method for power distribution network of printed circuit board (PCB) adopting the parameters of input impedance... [more] EMD2012-97
p.1
ICD, SDM 2012-08-03
15:30
Hokkaido Sapporo Center for Gender Equality, Sapporo, Hokkaido A Low Voltage High-Speed Inductive-Coupling Transceiver with Adaptive Pulse Width Controller Using Multi-Phase Oscillator
Yuki Urano, Takeshi Matsubara (Keio Univ.), Isamu Hayashi (STARC), Abul Hasan Johari, Kaoru Kohira, Teruo Jyo, Tadahiro Kuroda, Hiroki Ishikuro (Keio Univ.) SDM2012-86 ICD2012-54
This paper presents a pulse-based inductive-coupling transceiver with adaptive pulse width controller for high-speed wir... [more] SDM2012-86 ICD2012-54
pp.127-132
HIP 2012-02-10
11:00
Okinawa   Control of IT device usign human motion estimation with depth image sensor
Satoru Odo (Okinawa International University)
Using Kinect, with which the RGB camera images and the depth information can be obtained in real-time manner, we constru... [more]
US 2011-11-24
14:00
Shizuoka Tokai Univ. Effect of surface active solutes to acoustic bubbles observed with high-speed camera
Shota Deno, Pak-Kon Choi (Meiji Univ.) US2011-70
Intense ultrasound produces acoustic bubbles which repeat the oscillation of expansion and contraction. Surfactant mole... [more] US2011-70
pp.27-30
CAS, NLP 2011-10-21
14:05
Shizuoka Shizuoka Univ. [Invited Talk] Receiver Front-End Design for CMOS High-Speed I/O
Masaya Kibune, Hirotaka Tamura, Takuji Yamamoto (FLL) CAS2011-56 NLP2011-83
A CMOS transceiver macro for wire-line communication is required to operate at higher data rate and to be compatible wit... [more] CAS2011-56 NLP2011-83
pp.135-140
ICD, ITE-IST 2011-07-22
16:10
Hiroshima Hiroshima Institute of Technology An 0.5V Transceiver in 65nm CMOS for High-Speed Wireless Proximity Interface
Takeshi Matsubara (Keio Univ.), Isamu Hayashi (STARC), Abul Hasan Johari, Satoshi Kumaki, Kaoru Kohira, Tadahiro Kuroda, Hiroki Ishikuro (Keio Univ.) ICD2011-36
This paper presents a pulse-based inductive-coupling transceiver in 65nm CMOS for High-speed wireless proximity communic... [more] ICD2011-36
pp.119-123
NS, CS, IN
(Joint)
2010-09-02
15:10
Miyagi Tohoku University Development of Integrated Network Monitoring Environment Based on 10-Gb/s Hardware-Assisted Monitoring Platform -- extending perfSONAR using PRESTA 10G --
Kenji Shimizu, Seiki Kuwabara, Katsuhiro Sebayashi, Mitsuru Maruyama (NTT) NS2010-57
We have developed a 10-Gbps network monitoring system based on an off-the-shelf PC with our novel network interface card... [more] NS2010-57
pp.55-58
PRMU, HIP 2010-06-25
10:00
Aomori   Detection and Measurement of Facial Micro-Expression Characteristics for Psychological Analysis
Senya Polikovsky, Yoshinari Kameda, Yuichi Ohta (Univ. of Tsukuba.) PRMU2010-48 HIP2010-37
Detection of facial micro-expression is considered to be useful for recognition of human’s intention, especially for hos... [more] PRMU2010-48 HIP2010-37
pp.57-64
ICD 2010-04-23
15:15
Kanagawa Shonan Institute of Tech. An 8Tb/s 1pJ/b 0.8mm2/Tb/s QDR Inductive-Coupling Interface Between 65nm CMOS GPU and 0.1um DRAM
Noriyuki Miura, Kazutaka Kasuga, Mitsuko Saito, Tadahiro Kuroda (Keio Univ.) ICD2010-18
An 8Tb/s 1pJ/b 0.8mm2/Tb/s inductive-coupling interface between 65nm CMOS GPU and 0.1um DRAM is developed. BER<10-16 ope... [more] ICD2010-18
pp.93-97
SDM 2009-06-19
14:50
Tokyo An401・402 Inst. Indus. Sci., The Univ. of Tokyo Effect of ALD-Al2O3 Layer on Interfacial Reaction between LaAlO and Ge
Mitsuo Sakashita, Ryosuke Kato, Shinya Kyogoku, Hiroki Kondo, Shigeaki Zaima (Nagoya Univ.) SDM2009-37
Ge channel MOSFET with high-k gate dielectric film attract much attention from a viewpoint of realizing high speed and l... [more] SDM2009-37
pp.61-66
MVE 2009-03-25
15:20
Shimane Shimane University A Proposal of Small and Light Haptic Interface for Ten Fingers
Takafumi Aoki (Tokyo Inst. of Tech.), Shoichi Hasegawa (The Univ. of Electro-Commu.), Makoto Sato (Tokyo Inst. of Tech.) MVE2008-120
The purpose of this research is realization of haptic interaction in images projected from projectors. If we consider de... [more] MVE2008-120
pp.53-56
IA 2009-01-28
13:25
Tokyo Kikai-Shinko-Kaikan Bldg. Development of LAN Technology for Super Hi-Vision Distribution
Tsuyoshi Nakatogawa, Madoka Nakamura, Kimiyuki Oyamada (Japan Broadcasting Corp.), Hiroshi Onaka (OITDA/Fujitsu), Shu Namiki (AIST), Tohru Asami (The Univ. of Tokyo) IA2008-51
Super Hi-Vision (SHV) is an extremely high-resolution imagery system. Its video format uses 7680 x 4320 pixels (16 times... [more] IA2008-51
pp.23-28
IA 2009-01-28
13:50
Tokyo Kikai-Shinko-Kaikan Bldg. Study of High-Speed Traffic Monitoring Technologies in Large-Scale Edge Router System
Naoya Ikeda, Yoshinori Watanabe, Yusuke Shomura (ALAXALA Networks Co.), Tohru Asami (Univ. of Tokyo) IA2008-52
To realize a large-scale edge router or switch which has more than 40Gbps lines, a traffic monitoring technology that ca... [more] IA2008-52
pp.29-34
ICD 2008-04-18
14:20
Tokyo   A 250-MHz 1-Mbit Embedded MRAM Macro Using 2T1MTJ Cell with Bitline Separation and Half-pitch Shift Architecture
Noboru Sakimura, Tadahiko Sugibayashi, Ryusuke Nebashi, Hiroaki Honjo, Shinsaku Saito, Yuko Kato, Naoki Kasai (NEC) ICD2008-13
A 250-MHz 1-Mbit MRAM macro is demonstrated in a 0.15-um standard CMOS process with 1.5V supply. Its clock frequency is ... [more] ICD2008-13
pp.69-74
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