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Committee Date Time Place Paper Title / Authors Abstract Paper #
SDM, ED, CPM 2019-05-17
Shizuoka Shizuoka Univ. (Hamamatsu) Characterization of flexible thermoelectric materials for wearable power generators
Hiroya Ikeda, Faizan Khan, Misa Ohkubo, Arockiyasamy Periyanayaga Kristy (Shizuoka Univ.), Toshitaka Yamakawa (Kumamoto Univ.), Kazushi Ikeda (NAIST), Masaru Shimomura, Kenji Murakami, Yasuhiro Hayakawa (Shizuoka Univ.), Faiz Salleh (Univ. Malaya), Yuhei Suzuki (Shizuoka Univ.) ED2019-23 CPM2019-14 SDM2019-21
We have measured the Seebeck coefficient of a carbon fabric (CAF) using a homemade measurement system for flexible therm... [more] ED2019-23 CPM2019-14 SDM2019-21
CPM, ED, SDM 2016-05-19
Shizuoka Shizuoka University, Hamamatsu campus (Joint Research Lab.) Thermoelectric characteristics of flexible material with ZnO nanostructures
Masaya Wanami, Selvaraj Shanthi, Yuhei Suzuki, Veluswamy Pandiyarasan (Shizuoka Univ.), Faiz Salleh (Univ. Malaya), Masaru Shimomura, Kenji Murakami, Hiroya Ikeda (Shizuoka Univ.) ED2016-16 CPM2016-4 SDM2016-21
For high-efficiency wearable power generator, we have investigated the ZnO nanostructures grown on cotton fabric (CF) as... [more] ED2016-16 CPM2016-4 SDM2016-21
ED, SDM 2016-03-03
Hokkaido Centennial Hall, Hokkaido Univ. Evaluation of wearable thermoelectric power generators by Sb-/Ag- doped ZnO nanocomposites and their properties
Veluswamy Pandiyarasan, Jayaram Archana, Mani Navaneethan (Shizuoka Univ.), Salleh Faiz (Univ. Malaya), Yasuhiro Hayakawa, Hiroya Ikeda (Shizuoka Univ.) ED2015-122 SDM2015-129
Zinc Oxide (ZnO) has been investigated as an oxide thermoelectric material and doping of ZnO with n- and p- type nanostr... [more] ED2015-122 SDM2015-129
(Joint) [detail]
Kyoto   A Time-Sharing Principle-based A Time-Sharing Principle-based Frequency Doubler ZCS High Frequency-Resonant Inverter for Inductive Power Transfer -- The First Report on the Experimental Evaluation --
Kyohei Konishi, Tomokazu Mishima (Kobe Univ.), Mutsuo Nakaoka (Univ. Malaya) EE2015-8
This paper presents an evaluation on a time-sharing principle-based frequency doubler zero current soft-switching (ZCS) ... [more] EE2015-8
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