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IEICE TRANSACTIONS sur l'Électronique > Tome E107-C No.12

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score_name" id="skip_info">Eigenfactor</p> <p class="score">0.002</p> </li> <li> <p class="notranslate score_name" id="skip_info">article influence</p> <p class="score">0.1</p> </li> <li> <p class="notranslate score_name" id="skip_info">Cite Score</p> <p class="score">1.3</p> </li> </ul> </div> <div class="action_box"> <ul> <li> <span class="cap js-modal-open" data-tippy-content="add issue to my alerts" data-target="modal_sign_personal"> <a href="add_alerts/electronics/"><i class="fas fa-plus-square" style="color: #C0C0C0"></i></a> </span> </li> </ul> </div> </div> <div class="left_box"> <div class="nav-tab"> <ul class="clearfix"> <li class="tab advance">Vers la publication anticipée</li> <li class="tab latest is-active">Vers le dernier numéro</li> </ul> </div> <section class="box advance"> <h3>Publication anticipée (mise en ligne immédiatement après acceptation)</h3> <div class="list"> <ul> <li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0002/_advpub_f"><span class="TEXT-TITLE">Analyse et conception d'une implémentation de LUT segmentée grossièrement et finement pour les processeurs DNN à logique câblée à ressources efficaces basés sur FPGA</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuxuan PAN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Dongzhu LI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mototsugu HAMADA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Atsutake KOSUGE</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/28</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (10MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SEI0002/_advpub_f"><span class="TEXT-TITLE">Circuits de coïncidence quantiques à flux unique utilisant Nb/AlO<sub><i>x</i></sub>/Nb Jonctions Josephson avec une densité de courant critique de 10 kA/cm<sup>2</sup></span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shigeyuki Miyajima</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotaka Terai</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shigehito Miki</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/28</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SEI0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SEI0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (895.1KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0001/_advpub_f"><span class="TEXT-TITLE">Réseau neuronal convolutionnel bit-série quantifié à réutilisation élevée, matrices d'éléments de traitement avec flux de données d'anneau de pondération</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Xiaoshu CHENG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yiwen WANG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hongfei LOU</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Weiran DING</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Ping LI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/27</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.1MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0003/_advpub_f"><span class="TEXT-TITLE">Un système intelligent intégré pour la classification d'images en temps réel avec un algorithme de constance des couleurs inspiré du cerveau</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akito MORITA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotsugu OKUNO</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/27</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (4.1MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0004/_advpub_f"><span class="TEXT-TITLE">Architecture de pipeline optoélectronique de RNN convolutionnel pour une inférence économe en énergie à la vitesse de la lumière</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Chunlu WANG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yutaka MASUDA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Tohru ISHIHARA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (2.4MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0002/_advpub_f"><span class="TEXT-TITLE">Transmission d'énergie électrique à partir de films de poly(alcool vinylique) comme générateurs triboélectriques à énergie dipolaire</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Dai TAGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Takaaki MANAKA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mitsumasa IWAMOTO</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (845.8KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0008/_advpub_f"><span class="TEXT-TITLE">Etude de la couche acceptrice dans les diodes organiques multifonctions inversées</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kento KOBAYASHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Riku IMAEDA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masahiro MORIMOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shigeki NAKA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0008/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0008/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (361.7KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_advpub_f"><span class="TEXT-TITLE">Fonctionnement du générateur de nombres aléatoires matériel RSFQ comprenant deux oscillateurs Josephson</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshinao MIZUGAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kenta SATO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIMADA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/20</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1023.3KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_advpub_f"><span class="TEXT-TITLE">Conception d'un amplificateur de puissance à filtrage passe-bande basé sur une structure de ligne microruban couplée</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Baoquan ZHONG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhiqun CHENG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Minshi JIA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Bingxin LI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kun WANG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhenghao YANG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zheming ZHU</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/11/06</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (901.8KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_advpub_f"><span class="TEXT-TITLE">Estimation bayésienne des paramètres du circuit de cellules photovoltaïques à partir de la forme en S <i>I</i>-<i>V</i> Caractéristiques avec un coût de calcul abordable</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuya TADA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/10/31</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (402.6KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_advpub_f"><span class="TEXT-TITLE">Dépôt en phase vapeur de naphtalènediimides contenant des groupes vinyliques</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Suguru KURATOMI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Satoshi USUI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yoko TATEWAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroaki USUI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/10/08</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (4MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_advpub_f"><span class="TEXT-TITLE">Analyse d'un résonateur optique avec discontinuités de guide d'ondes construit par un guide d'ondes plasmonique MDM bidimensionnel</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshihiro NAKA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masahiko NISHIMOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mitsuhiro YOKOTA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/09/20</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (552.3KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_advpub_f"><span class="TEXT-TITLE">Propriétés anti-empreintes digitales pour les films anti-mites grâce à des matériaux de revêtement absorbant les huiles d'empreintes digitales</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Hoshino</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kentaro Kusama</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Takayuki Arai</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/09/18</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (571KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_advpub_f"><span class="TEXT-TITLE">Construction d'une méthode d'analyse de haute précision des champs électromagnétiques et son application</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tsuneki YAMASAKI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/09/12</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (696.7KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_advpub_f"><span class="TEXT-TITLE">Transformation Kelvin étendue pour résoudre les champs électromagnétiques rayonnants</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kengo SUGAHARA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/09/10</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (5.6MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_advpub_f"><span class="TEXT-TITLE">Analyse de la diffusion des ondes planes à haute fréquence par de grands bâtiments dotés de plusieurs fenêtres</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Cuong Manh BUI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIRAI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/09/06</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (5.5MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_advpub_f"><span class="TEXT-TITLE">Coefficients de mode optimisés d'un cornet multimode à ouverture carrée permettant d'obtenir des largeurs de faisceau constantes pour une utilisation multibande</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroyuki DEGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masataka OHIRA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mikio TSUJI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/09/06</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.1MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_advpub_f"><span class="TEXT-TITLE">Conception de dispositifs à cristaux liquides à très haute résolution pour l'holographie électronique basée sur la commande par champ électrique latéral</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroto Tochigi</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masakazu Nakatani</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Ken-ichi Aoshima</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mayumi Kawana</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuta Yamaguchi</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kenji Machida</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Nobuhiko Funabashi</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hideo Fujikake</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/09/03</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.1MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_advpub_f"><span class="TEXT-TITLE">Étude sur la transition d'alignement vertical par irradiation UV après revêtement par fente de cristaux liquides additionnés de mésogène durcissables aux UV</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Imamura</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Daiki Fujii</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Enomoto</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuichi Ueno</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yosei Shibata</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Munehiro Kimura</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (868.6KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_advpub_f"><span class="TEXT-TITLE">Enquête sur les émissions rayonnées équivalentes des communications par lignes électriques photovoltaïques à l'aide d'un modèle à l'échelle</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yongzhe Wei</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhongyuan Zhou</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Zhicheng Xue</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shunyu Yao</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Haichun Wang</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/28</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (815.6KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_advpub_f"><span class="TEXT-TITLE">Une étude sur la conception optimale de la magnéto-métasurface pour l'isolateur THz</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Mio TANIGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/26</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.8MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_advpub_f"><span class="TEXT-TITLE">Mesure diélectrique pour les liquides à l'aide d'un guide d'onde circulaire à coupure de grand diamètre de type à alimentation coaxiale avec une bonne répétabilité</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kouji SHIBATA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masaki KOBAYASHI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/26</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (405.6KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_advpub_f"><span class="TEXT-TITLE">Procédures de conception d'un circuit de découplage utilisant le couplage entre antennes</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Zhi Earn TAN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kenjiro MATSUMOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAKAGI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiromasa SAEKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAMURA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/15</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.8MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_advpub_f"><span class="TEXT-TITLE">Développement d'un système de streaming réseau pour la vidéo CGH dans les communications filaires/sans fil</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Misato ONISHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuhiro YAMAGUCHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yuji SAKAMOTO</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (4.3MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_advpub_f"><span class="TEXT-TITLE">Essai sur le terrain d'une expérience de transmission optique utilisant une source de lumière à peigne de fréquence à microrésonateur pour une communication optique à faible latence et à courte portée</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Koya TANIKAWA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shun FUJII</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Soma KOGURE</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shuya TANAKA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shun TASAKA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Koshiro WADA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Satoki KAWANISHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Takasumi TANABE</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (5.9MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_advpub_f"><span class="TEXT-TITLE">Tongs durcies aux radiations dans un processus en vrac de 65 nm pour les applications terrestres faisant face à la dureté des radiations et aux surcharges de performances</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shotaro SUGITANI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Ryuichi NAKAJIMA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Keita YOSHIDA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Jun FURUTA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Kazutoshi KOBAYASHI</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.9MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_advpub_f"><span class="TEXT-TITLE">Intégration de composants optiques dans l'eau pour que les images aquatiques ne soient pas affectées par les ondulations de la surface de l'eau</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke Ichikawa</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Takumi Watanabe</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Takatsuka</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shiro Suyama</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotsugu Yamamoto</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/08/01</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.2MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_advpub_f"><span class="TEXT-TITLE">Correspondance de modèles pour une vérification réalisable et efficace de la conception physique des bibliothèques de cellules</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Chan-Liang Wu</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Chih-Wen Lu</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/07/23</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.7MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_advpub_f"><span class="TEXT-TITLE">Forts effets non linéaires d'un tronçon de ligne de transmission sur des oscillateurs à diode tunnel résonante</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Umer FAROOQ</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Masayuki MORI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Koichi MAEZAWA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.5MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_advpub_f"><span class="TEXT-TITLE">Film mince Ga-Sn-O, méthode brouillard-CVD et memristor analogique : propositions prometteuses pour les systèmes neuromorphiques</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryo ITO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Sumio SUGISAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Toshiyuki KAWAHARAMURA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Tokiyoshi MATSUDA</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hidenori KAWANISHI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Mutsumi KIMURA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.8MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_advpub_f"><span class="TEXT-TITLE">Lentilles à cristaux liquides accordables en bioplastique pour une mise au point dynamique en réalité virtuelle et augmentée</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Paul Cain</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/07/16</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (506.3KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_advpub_f"><span class="TEXT-TITLE">Imagerie à ondes millimétriques basée sur une lentille diélectrique pour la détection d'objets dissimulés dans les applications de sécurité</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Arie SETIAWAN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Shu SATO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Naruto YONEMOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hitoshi NOHMI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi MURATA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>COMMUNICATION INVITEE</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.4MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_advpub_f"><span class="TEXT-TITLE">Origine de la tension d'activation extrêmement faible dans la diode électroluminescente organique bleue</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Seiichiro Izawa</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>BREF DOCUMENT</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (581.3KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_advpub_f"><span class="TEXT-TITLE">Une méthode de mise à jour du modèle fédéré pour le remplacement des capteurs de gaz intelligents</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hang Liu</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Fei Wu</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/06/27</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (953.9KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_advpub_f"><span class="TEXT-TITLE">Méthode d'estimation des informations de diffusion par TD-SPT utilisant des données numériques de formes d'onde de réponse des composants du champ de diffusion transitoire vers l'arrière</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiji GOTO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Toru KAWANO</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Ryohei NAKAMURA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/06/18</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (801.7KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_advpub_f"><span class="TEXT-TITLE">Conception VLSI et mise en œuvre de l'ARS pour l'estimation des périodes</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takahiro SASAKI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yukihiro KAMIYA</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/06/11</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (1.3MB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_advpub_f"><span class="TEXT-TITLE">Réduction de couplage mutuel pour antenne MIMO double bande via ligne de transmission artificielle</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Xiang XIONG</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Wen LI</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Xiaohua TAN</span>&nbsp;&nbsp;<span id="skip_info" class="notranslate TEXT-AUTHOR">Yusheng HU</span>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>Publié&nbsp;:</dt><dd>2024/06/11</dd></dl><dl><dt></dt><dd>PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_advpub_f"><span id="skip_info" class="notranslate">Summary</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_pdf_advpub" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Free </span><span id="skip_info" class="notranslate">PDF (2.4MB) </span></a></li></ul></div></li> </ul> </div> </section> <section class="box latest is-show"> <div class="whole_issue"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.E107-C_202412/_pdf_Wholeissue" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate">Whole issue <span>(14.4MB)</span> </span></a></div><style> .whole_issue00 { display: block; text-decoration: none; width: 200px; text-align: center; color: #fff; border: solid 1px #b03527; background-color: gray; border-radius: 50px; padding: 10px 0; margin: 0 auto 20px 0; position: absolute; top: 25px; } </style> <div class="pagination top"> <ul style="justify-content: center; text-align: center;"> <li class="prev"><a href="https://fr.global.ieice.org/en_transactions/electronics/E107-C_11"><span>Précédent</span></a> </li> <li class="next"></li> </ul> </div> <!-- <table cellspacing="0" cellpadding="0" border="0"> <tr><td align="right"><a href="https://fr.global.ieice.org/en_transactions/electronics/E107-C_11"><span>Previous</span></a> </td><td align="left" nowrap></td></tr> </table> --> <h3>Volume&nbsp;E107-C&nbsp;No.12&nbsp;&nbsp;(Publication Date:2024/12/01)</h3> <div class="list"> <ul> <span style="padding: 0.2em 0.2em; margin: 2em 0; background: #f5f5dc;" class="TEXT-SPL">Section spéciale sur le développement récent des dispositifs électromécaniques</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMF0001/_f"><span class="TEXT-TITLE">AVANT-PROPOS</span></a>&nbsp;<span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Takahiro%20UENO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takahiro UENO</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">FOREWORD</dd></dl><br><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; Page(s) :</dt><dd class="TEXT-COL">517-517</dd></dl></div><div class="action"><ul><span class="summary toggle"></span><span class="summary_txt"></span> <input type="hidden" name="pid" value="e107-c_12_517" id="hidden0"><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMF0001/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMF0001/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (213KB) </span></a></li></ul></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_f"><span class="TEXT-TITLE">Caractéristiques tension-courant pour chaque longueur d'arc des arcs de coupure générés dans un circuit résistif 48 V CC/50 A-600 A</span></a>&nbsp;<span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Keiya%20IMORI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiya IMORI</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Junya%20SEKIKAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; Publié&nbsp;:</dt><dd class="TEXT-COL">2024/08/29</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; Page(s) :</dt><dd class="TEXT-COL">518-521</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_12_518" id="hidden1"><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (385.6KB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">Les contacts électriques sont séparés à une vitesse d'ouverture constante dans un circuit résistif de 48 V CC/50 A-600 A. Les arcs de rupture sont observés à l'aide de deux caméras à grande vitesse depuis le dessus et le côté. Les longueurs des arcs de rupture sont analysées à partir d'images prises par les caméras. Les tensions et les courants d'arc correspondant aux longueurs d'arc analysées sont étudiés pour obtenir les caractéristiques tension-courant des arcs de rupture. Les relations entre la longueur de l'arc par rapport à la tension d'écartement et la longueur de l'arc par rapport au courant du circuit sont obtenues. Ces résultats sont légèrement dispersés. Par conséquent, pour obtenir des relations biunivoques entre la longueur de l'arc et la tension d'écartement, des courbes approximatives doivent être déterminées pour ces résultats. À l'aide de ces courbes approximatives, les caractéristiques tension-courant pour chaque longueur d'arc sont finalement indiquées.</p> </div></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_f"><span class="TEXT-TITLE">Effet du débit d'air soufflé depuis une surface de contact sur les arcs de rupture se produisant dans un circuit résistif 100 V CC/5 A</span></a>&nbsp;<span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Naoki%20KANDA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Naoki KANDA</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Junya%20SEKIKAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; Publié&nbsp;:</dt><dd class="TEXT-COL">2024/08/29</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; Page(s) :</dt><dd class="TEXT-COL">522-525</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_12_522" id="hidden2"><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (1.5MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">Dans un circuit résistif de 100 V CC/5 A, les contacts électriques en argent avec structure d'éjection de flux d'air sont séparés à vitesse constante. Des arcs de rupture sont générés entre les contacts et soufflés par le flux d'air entre l'espace de contact. Le débit d'air varie en changeant la forme des contacts. Les arcs de rupture sont observés par deux caméras à grande vitesse. Les résultats suivants sont présentés. La durée de l'arc est raccourcie par le flux d'air. Lorsque le débit d'air augmente, la durée de l'arc devient plus courte et les arcs de rupture sont poussés plus loin de l'axe central des contacts et s'éteignent sur une longueur plus courte.</p> </div></div></li><span style="padding: 0.2em 0.2em; margin: 2em 0; background: #f5f5dc;" class="TEXT-SPL">Section régulière</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_f"><span class="TEXT-TITLE">Design of Broadband Resonant Transmission for Depth-Focused Waveform in GAFDEM Exploration</span></a>&nbsp;<span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Shengbao%20YU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shengbao YU</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Fanze%20MENG"><span id="skip_info" class="notranslate TEXT-AUTHOR">Fanze MENG</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Yihan%20SHEN"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yihan SHEN</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Yuzhu%20HAO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuzhu HAO</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Haigen%20ZHOU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Haigen ZHOU</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Electromagnetic Theory</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; Publié&nbsp;:</dt><dd class="TEXT-COL">2024/05/02</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; Page(s) :</dt><dd class="TEXT-COL">526-535</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_12_526" id="hidden3"><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (4MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">The Ground-Air Frequency Domain Electromagnetic Method (GAFDEM) is a fast and effective semi-airborne electromagnetic exploration method for subsurface anomaly targets. Based on the depth-focused transmission waveform, this method can realize the high-resolution detection of underground targets at specific depths. However, due to the high inductance and resistance parameters of the transmitting load in GAFDEM exploration, the transmission current of the depth-focused waveform decays rapidly in the middle and high-frequency bands, which restricts the detection signal intensity. To solve this problem, a broadband resonant circuit and its parameter design method are proposed. According to the typical transmission frequency range and load, the parameters are designed, and the circuit model is simulated and tested. The results show that the designed broadband resonant circuit can increase the transmission active power of the depth-focused waveform by more than 490%, reduce the reactive power by more than 37%, and increase the transmission current intensity of the target frequency by 2.64 times. Moreover, this circuit has good robustness. It can achieve a good resonance effect within the error range of ±10% of capacitor. This design provides an effective way for GAFDEM to enhance the intensity of high-frequency detection signals and improve the shallow exploration effect.</p> </div></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_f"><span class="TEXT-TITLE">Analyse de température de haute précision prenant en compte les propriétés des tissus dépendants de la température dans la dénervation rénale</span></a>&nbsp;<span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Tohgo%20HOSODA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tohgo HOSODA</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Kazuyuki%20SAITO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuyuki SAITO</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Electromagnetic Theory</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; Publié&nbsp;:</dt><dd class="TEXT-COL">2024/05/21</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; Page(s) :</dt><dd class="TEXT-COL">536-544</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_12_536" id="hidden4"><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (5.6MB) </span></a></li></ul><div class="summary_txt"> <p class="TEXT-COL">La dénervation rénale transcathéter (RDN) est un traitement de l'hypertension résistante, qui est réalisée en ablant les nerfs rénaux situés à l'extérieur de l'artère à l'aide d'un cathéter provenant de l'intérieur de l'artère. Nos études précédentes ont simulé la température pendant la RDN en utilisant les propriétés physiques constantes du tissu biologique pour valider les différents dispositifs de cathéter RDN. Certaines autres études rapportent la dépendance à la température des propriétés physiques des tissus biologiques. Cependant, aucune étude n'a mesuré les propriétés électriques des tissus à faible teneur en eau. Le tissu adipeux, un type de tissu à faible teneur en eau, est étroitement lié à la RDN. Par conséquent, il est important de connaître la dépendance à la température des constantes électriques du tissu adipeux. Dans cette étude, nous avons mesuré la relation entre les constantes électriques et la température du tissu adipeux bovin. Ensuite, l'équation obtenue de la relation entre la permittivité relative du tissu adipeux et la température a été introduite. De plus, la dépendance à la température des constantes électriques des tissus à forte teneur en eau et la dépendance à la température des constantes thermiques des tissus biologiques ont également été introduites dans l'analyse de la température. Après 180 secondes de chauffage, la température du modèle avec la dépendance à la température des propriétés physiques était de 7.25 °C inférieure à celle du modèle sans la dépendance à la température des propriétés physiques à une certaine position. D'après les résultats, on peut dire que la dépendance à la température des propriétés physiques sera significative lorsqu'une analyse précise de la température sera nécessaire.</p> </div></div></li><li><h4><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5051/_f"><span class="TEXT-TITLE">Area-Efficient Binarized Neural Network Inference Accelerator Based on Time-Multiplexed XNOR Multiplier Using Loadless 4T SRAM</span></a>&nbsp;<span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Yihan%20ZHU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yihan ZHU</span></a>&nbsp;&nbsp;<a href="https://fr.global.ieice.org/en_transactions/Author/a_name=Takashi%20OHSAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takashi OHSAWA</span></a>&nbsp;&nbsp;<br> </p><div class="data"> <dl><dt>&nbsp;</dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Integrated Electronics</dd></dl><br><dl> <dt class="TEXT-COL">&nbsp; Publié&nbsp;:</dt><dd class="TEXT-COL">2024/05/08</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL">&nbsp; Page(s) :</dt><dd class="TEXT-COL">545-556</dd></dl></div><div class="action"><ul><li class="summary toggle"><a onclick="ga('send', 'event', 'summary', 'click', 'EC');"><span id="skip_info" class="notranslate"><i class="fas fa-angle-down"></i></span></a></li> <input type="hidden" name="pid" value="e107-c_12_545" id="hidden5"><li class="html"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5051/_f" onclick="ga('send', 'event', 'intro', 'click', 'EC');"><span id="skip_info" class="notranslate">HTML</span></a></li><li class="pdf"><a href="https://fr.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5051/_pdf" onclick="ga('send', 'event', 'PDF', 'Down Load', 'EC');" target="_blank"><i class="fas fa-file-pdf"></i><span id="skip_info" class="notranslate"><span id="skip_info" class="notranslate">Free </span>PDF (3MB) </span></a></li></ul><div class="summary_txt"> <p class="gt-block TEXT-COL">A binarized neural network (BNN) inference accelerator is designed in which weights are stores in loadless four-transistor static random access memory (4T SRAM) cells. A time-multiplexed exclusive NOR (XNOR) multiplier with switched capacitors is proposed which prevents the loadless 4T SRAM cell from being destroyed in the operation. An accumulator with current sensing scheme is also proposed to make the multiply-accumulate operation (MAC) completely linear and read-disturb free. The BNN inference accelerator is applied to the MNIST dataset recognition problem with accuracy of 96.2% for 500 data and the throughput, the energy efficiency and the area efficiency are confirmed to be 15.50 TOPS, 72.17 TOPS/W and 50.13 TOPS/mm<sup>2</sup>, respectively, by HSPICE simulation in 32 nm technology. Compared with the conventional SRAM cell based BNN inference accelerators which are scaled to 32 nm technology, the synapse cell size is reduced to less than 16% (0.235 <i>μ</i>m<sup>2</sup>) and the cell efficiency (synapse array area/synapse array plus peripheral circuits) is 73.27% which is equivalent to the state-of-the-art of the SRAM cell based BNN accelerators.</p> </div></div></li><input type="hidden" name="request_uri" value="/en_transactions/electronics" id="set_request_uri"><input type="hidden" name="site_url" value="https://fr.global.ieice.org/" id="set_site_url"> </ul> </div> <div class="pagination"> <ul> <li class="prev"><a href="https://fr.global.ieice.org/en_transactions/electronics/E107-C_11"><span>Précédent</span></a> </li> <li class="next"></li> </ul> </div> </section> </div> <div class="right_box"> <!-- <div id="aside"></div> --> <!-- -------------aside.html------------- --> <section class="latest_issue"> <h4 id="skip_info" class="notranslate">Latest Issue</h4> <ul id="skip_info" class="notranslate"> <li class="a"><a href="https://fr.global.ieice.org/en_transactions/fundamentals">IEICE Trans. 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