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IEICE TRANSACTIONS zum Thema Elektronik > Band E107-C Nr.12
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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">Zur Vorabveröffentlichung</li> <li class="tab latest is-active">Zur neuesten Ausgabe</li> </ul> </div> <section class="box advance"> <h3>Vorabveröffentlichung (wird sofort nach Annahme online veröffentlicht)</h3> <div class="list"> <ul> <li><h4><a href="https://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0002/_advpub_f"><span class="TEXT-TITLE">Analyse und Entwurf einer grob- und feinsegmentierten LUT-Implementierung für FPGA-basierte, ressourceneffiziente Wired-Logic-DNN-Prozessoren</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuxuan PAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Dongzhu LI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mototsugu HAMADA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Atsutake KOSUGE</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SEI0002/_advpub_f"><span class="TEXT-TITLE">Einzelflussquantenbasierte Koinzidenzschaltungen mit Nb/AlO<sub><i>x</i></sub>/Nb Josephson-Kontakte mit einer kritischen Stromdichte von 10 kA/cm<sup>2</sup></span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shigeyuki Miyajima</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotaka Terai</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shigehito Miki</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/11/28</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0001/_advpub_f"><span class="TEXT-TITLE">Hochverwendbare quantisierte bitserielle Convolutional-Neural-Network-Verarbeitungselement-Arrays mit Weight-Ring-Datenfluss</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Xiaoshu CHENG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yiwen WANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hongfei LOU</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Weiran DING</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ping LI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0003/_advpub_f"><span class="TEXT-TITLE">Ein eingebettetes intelligentes System zur Echtzeit-Bildklassifizierung mit einem neuroinspirierten Farbkonstanzalgorithmus</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Akito MORITA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotsugu OKUNO</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024LHP0004/_advpub_f"><span class="TEXT-TITLE">Optoelektronische Pipeline-Architektur eines Convolutional RNN für energieeffiziente Inferenz bei Lichtgeschwindigkeit</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Chunlu WANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yutaka MASUDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Tohru ISHIHARA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0002/_advpub_f"><span class="TEXT-TITLE">Elektrische Energieübertragung von Polyvinylalkohol-Filmen als auf Dipolenergie basierende triboelektrische Generatoren</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Dai TAGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takaaki MANAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mitsumasa IWAMOTO</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0008/_advpub_f"><span class="TEXT-TITLE">Untersuchung der Akzeptorschicht in invertierten organischen Multifunktionsdioden</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kento KOBAYASHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Riku IMAEDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masahiro MORIMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shigeki NAKA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/11/26</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024SES0001/_advpub_f"><span class="TEXT-TITLE">Funktionsweise des RSFQ-Hardware-Zufallszahlengenerators mit zwei Josephson-Oszillatoren</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshinao MIZUGAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kenta SATO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIMADA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/11/20</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5043/_advpub_f"><span class="TEXT-TITLE">Entwurf eines Bandpassfilter-Leistungsverstärkers basierend auf einer gekoppelten Mikrostreifenleitungsstruktur</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Baoquan ZHONG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhiqun CHENG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Minshi JIA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Bingxin LI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kun WANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhenghao YANG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zheming ZHU</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMS0004/_advpub_f"><span class="TEXT-TITLE">Bayesianische Schätzung von Photovoltaik-Zellschaltungsparametern aus S-förmigen <i>I</i>-<i>V</i> Eigenschaften mit erschwinglichem Rechenaufwand</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuya TADA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/10/31</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024OMP0001/_advpub_f"><span class="TEXT-TITLE">Dampfabscheidung von Naphthalindiimiden mit Vinylgruppen</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Suguru KURATOMI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Satoshi USUI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yoko TATEWAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroaki USUI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0004/_advpub_f"><span class="TEXT-TITLE">Analyse eines optischen Resonators mit Wellenleiterdiskontinuitäten, konstruiert durch einen zweidimensionalen plasmonischen MDM-Wellenleiter</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yoshihiro NAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masahiko NISHIMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mitsuhiro YOKOTA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0007/_advpub_f"><span class="TEXT-TITLE">Anti-Fingerabdruck-Eigenschaften für Mottenaugenfilme durch Fingerabdrucköl absorbierende Beschichtungsmaterialien</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Hoshino</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kentaro Kusama</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takayuki Arai</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/09/18</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REI0001/_advpub_f"><span class="TEXT-TITLE">Entwicklung einer hochpräzisen Analysemethode für elektromagnetische Felder und ihre Anwendung</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tsuneki YAMASAKI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/09/12</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0002/_advpub_f"><span class="TEXT-TITLE">Erweiterte Kelvin-Transformation zur Berechnung strahlender elektromagnetischer Felder</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kengo SUGAHARA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024REP0001/_advpub_f"><span class="TEXT-TITLE">Analyse der Streuung hochfrequenter ebener Wellen an großen Gebäuden mit mehreren Fenstern</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Cuong Manh BUI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi SHIRAI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024RES0003/_advpub_f"><span class="TEXT-TITLE">Optimierte Modenkoeffizienten eines Multimode-Horns mit quadratischer Apertur erzielen konstante Strahlbreiten für den Mehrband-Einsatz</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroyuki DEGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masataka OHIRA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mikio TSUJI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/09/06</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0005/_advpub_f"><span class="TEXT-TITLE">Entwicklung von Flüssigkristallgeräten mit superhoher Auflösung für die elektronische Holographie auf Basis lateraler elektrischer Feldsteuerung</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroto Tochigi</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masakazu Nakatani</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ken-ichi Aoshima</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mayumi Kawana</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuta Yamaguchi</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kenji Machida</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Nobuhiko Funabashi</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hideo Fujikake</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/09/03</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0002/_advpub_f"><span class="TEXT-TITLE">Untersuchung des vertikalen Ausrichtungsübergangs durch UV-Bestrahlung nach Schlitzbeschichtung von UV-härtbaren, mesogenhaltigen Flüssigkristallen</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Imamura</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Daiki Fujii</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuki Enomoto</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuichi Ueno</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yosei Shibata</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Munehiro Kimura</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/08/29</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5022/_advpub_f"><span class="TEXT-TITLE">Untersuchung äquivalenter Strahlungsemissionen von Photovoltaik-Stromleitungskommunikationen anhand eines skalierten Modells</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yongzhe Wei</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhongyuan Zhou</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Zhicheng Xue</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shunyu Yao</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Haichun Wang</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5023/_advpub_f"><span class="TEXT-TITLE">Eine Studie zum optimalen Design einer Magneto-Metaoberfläche für einen THz-Isolator</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Mio TANIGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Akito IGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yasuhide TSUJI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6007/_advpub_f"><span class="TEXT-TITLE">Dielektrische Messung für Flüssigkeiten unter Verwendung eines koaxial gespeisten, großkalibrigen, abgeschnittenen Rundhohlleiters mit guter Wiederholgenauigkeit</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kouji SHIBATA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masaki KOBAYASHI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/08/26</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5059/_advpub_f"><span class="TEXT-TITLE">Entwurfsverfahren für Entkopplungsschaltungen unter Verwendung der Kopplung zwischen Antennen</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Zhi Earn TAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kenjiro MATSUMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAKAGI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiromasa SAEKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masaya TAMURA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0004/_advpub_f"><span class="TEXT-TITLE">Entwicklung eines Netzwerk-Streaming-Systems für CGH-Videos in der kabelgebundenen/kabellosen Kommunikation</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Misato ONISHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuhiro YAMAGUCHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yuji SAKAMOTO</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/08/05</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5014/_advpub_f"><span class="TEXT-TITLE">Feldversuch eines optischen Übertragungsexperiments unter Verwendung einer Mikroresonator-Frequenzkamm-Lichtquelle für optische Kommunikation mit geringer Latenz und kurzer Reichweite</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Koya TANIKAWA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shun FUJII</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Soma KOGURE</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shuya TANAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shun TASAKA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Koshiro WADA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Satoki KAWANISHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takasumi TANABE</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5016/_advpub_f"><span class="TEXT-TITLE">Strahlungsgehärtete Flip-Flops in einem 65 nm-Massenprozess für terrestrische Anwendungen unter Berücksichtigung von Strahlungshärte und Leistungseinbußen</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shotaro SUGITANI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ryuichi NAKAJIMA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Keita YOSHIDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Jun FURUTA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Kazutoshi KOBAYASHI</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0003/_advpub_f"><span class="TEXT-TITLE">Einbettung optischer Komponenten in Wasser, um Wasserbilder zu erstellen, die von Wellen der Wasseroberfläche nicht beeinflusst werden</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryosuke Ichikawa</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Takumi Watanabe</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroki Takatsuka</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shiro Suyama</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hirotsugu Yamamoto</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/08/01</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5032/_advpub_f"><span class="TEXT-TITLE">Mustervergleich zur praktischen und effizienten physischen Designüberprüfung von Zellbibliotheken</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Chan-Liang Wu</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Chih-Wen Lu</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6002/_advpub_f"><span class="TEXT-TITLE">Starke nichtlineare Effekte eines Übertragungsleitungsstummels auf resonante Tunneldiodenoszillatoren</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Umer FAROOQ</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Masayuki MORI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Koichi MAEZAWA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECS6003/_advpub_f"><span class="TEXT-TITLE">Ga-Sn-O-Dünnschicht, Nebel-CVD-Methode und analoger Memristor: vielversprechende Vorschläge für neuromorphe Systeme</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Ryo ITO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Sumio SUGISAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Toshiyuki KAWAHARAMURA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Tokiyoshi MATSUDA</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hidenori KAWANISHI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Mutsumi KIMURA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/07/17</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0002/_advpub_f"><span class="TEXT-TITLE">Abstimmbare Flüssigkristalllinsen aus Biokunststoff für dynamischen Fokus in der virtuellen und erweiterten Realität</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Paul Cain</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/07/16</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DII0006/_advpub_f"><span class="TEXT-TITLE">Millimeterwellen-Bildgebung auf Basis dielektrischer Linsen zur Erkennung verborgener Objekte in Sicherheitsanwendungen</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Arie SETIAWAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Shu SATO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Naruto YONEMOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hitoshi NOHMI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Hiroshi MURATA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>EINGELADENES PAPIER</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024DIS0001/_advpub_f"><span class="TEXT-TITLE">Ursprung der extrem niedrigen Einschaltspannung in blauen organischen Leuchtdioden</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Seiichiro Izawa</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</dt><dd>2024/07/11</dd></dl><dl><dt></dt><dd>KURZES BEITRAG</dd></dl></div><div class="action"><ul><li class="html"><a href="https://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5007/_advpub_f"><span class="TEXT-TITLE">Eine föderierte Modellaktualisierungsmethode für den intelligenten Austausch von Gassensoren</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Hang Liu</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Fei Wu</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5010/_advpub_f"><span class="TEXT-TITLE">Methode zur Schätzung von Streuerinformationen durch TD-SPT unter Verwendung numerischer Daten von Antwortwellenformen rückwärts gerichteter transienter Streufeldkomponenten</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiji GOTO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Toru KAWANO</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Ryohei NAKAMURA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5054/_advpub_f"><span class="TEXT-TITLE">VLSI-Entwurf und Implementierung von ARS zur Periodenschätzung</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takahiro SASAKI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yukihiro KAMIYA</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024ECP5001/_advpub_f"><span class="TEXT-TITLE">Reduzierung der gegenseitigen Kopplung für Dualband-MIMO-Antenne über künstliche Übertragungsleitung</span></a></h4><p class="gt-block"><span id="skip_info" class="notranslate TEXT-AUTHOR">Xiang XIONG</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Wen LI</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Xiaohua TAN</span> <span id="skip_info" class="notranslate TEXT-AUTHOR">Yusheng HU</span> <br> </p><div class="data"> <dl><dt>Veröffentlicht:</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://de.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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/E107-C_11"><span>Vorherige</span></a> </li> <li class="next"></li> </ul> </div> <!-- <table cellspacing="0" cellpadding="0" border="0"> <tr><td align="right"><a href="https://de.global.ieice.org/en_transactions/electronics/E107-C_11"><span>Previous</span></a> </td><td align="left" nowrap></td></tr> </table> --> <h3>Volume E107-C No.12 (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">Sonderteil zur jüngsten Entwicklung elektromechanischer Geräte</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMF0001/_f"><span class="TEXT-TITLE">VORWORT</span></a> <span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://de.global.ieice.org/en_transactions/Author/a_name=Takahiro%20UENO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takahiro UENO</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">FOREWORD</dd></dl><br><dl class="TEXT-COL"><dt class="TEXT-COL"> Seite(n):</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://de.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://de.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://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0001/_f"><span class="TEXT-TITLE">Spannungs-Strom-Kennlinien für jede Lichtbogenlänge von in einem 48 VDC/50 A-600 A Widerstandsstromkreis erzeugten Lichtbögen</span></a> <span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://de.global.ieice.org/en_transactions/Author/a_name=Keiya%20IMORI"><span id="skip_info" class="notranslate TEXT-AUTHOR">Keiya IMORI</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Junya%20SEKIKAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> Veröffentlicht:</dt><dd class="TEXT-COL">2024/08/29</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> Seite(n):</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://de.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://de.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">Elektrische Kontakte werden mit konstanter Öffnungsgeschwindigkeit in einem 48 VDC/50 A-600 A-Widerstandskreis getrennt. Die Unterbrechungslichtbögen werden mit zwei Hochgeschwindigkeitskameras von oben und von der Seite beobachtet. Die Längen der Unterbrechungslichtbögen werden anhand der von den Kameras aufgenommenen Bilder analysiert. Die den analysierten Lichtbogenlängen entsprechenden Lichtbogenspannungen und -ströme werden untersucht, um die Spannungs-Strom-Kennlinien der Unterbrechungslichtbögen zu ermitteln. Es werden Beziehungen zwischen der Lichtbogenlänge gegenüber der Spaltspannung und der Lichtbogenlänge gegenüber dem Stromkreisstrom ermittelt. Diese Ergebnisse streuen leicht. Um eine Eins-zu-eins-Beziehung zwischen der Lichtbogenlänge und der Spaltspannung zu erhalten, müssen daher Näherungskurven für diese Ergebnisse bestimmt werden. Mithilfe dieser Näherungskurven werden schließlich die Spannungs-Strom-Kennlinien für jede Lichtbogenlänge angegeben.</p> </div></div></li><li><h4><a href="https://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2024EMS0002/_f"><span class="TEXT-TITLE">Einfluss der von einer Kontaktfläche geblasenen Luftströmungsrate auf in einem ohmschen Stromkreis mit 100 VDC/5 A auftretende Lichtbögen</span></a> <span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://de.global.ieice.org/en_transactions/Author/a_name=Naoki%20KANDA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Naoki KANDA</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Junya%20SEKIKAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Junya SEKIKAWA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">BRIEF PAPER</dd></dl><br><dl> <dt class="TEXT-COL"> Veröffentlicht:</dt><dd class="TEXT-COL">2024/08/29</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> Seite(n):</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://de.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://de.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">In einem 100 VDC/5 A-Widerstandskreis werden elektrische Silberkontakte mit Luftstromausstoßstruktur mit konstanter Geschwindigkeit getrennt. Zwischen den Kontakten werden Unterbrechungsbögen erzeugt, die durch den Luftstrom zwischen den Kontaktspalten weggeblasen werden. Die Luftstromrate wird durch Ändern der Kontaktformen variiert. Die Unterbrechungsbögen werden von zwei Hochgeschwindigkeitskameras beobachtet. Die folgenden Ergebnisse werden angezeigt. Die Lichtbogendauer wird durch den Luftstrom verkürzt. Wenn die Luftstromrate erhöht wird, wird die Lichtbogendauer kürzer und die Unterbrechungsbögen werden weiter von der Mittelachse der Kontakte nach außen getrieben und erlöschen in einer kürzeren Zeit.</p> </div></div></li><span style="padding: 0.2em 0.2em; margin: 2em 0; background: #f5f5dc;" class="TEXT-SPL">Regulärer Abschnitt</span><hr noshade="" align="right" width="97%" size="1" color="#cccccc"><li><h4><a href="https://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5057/_f"><span class="TEXT-TITLE">Entwurf einer breitbandigen Resonanzübertragung für tiefenfokussierte Wellenformen bei der GAFDEM-Erkundung</span></a> <span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://de.global.ieice.org/en_transactions/Author/a_name=Shengbao%20YU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Shengbao YU</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Fanze%20MENG"><span id="skip_info" class="notranslate TEXT-AUTHOR">Fanze MENG</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Yihan%20SHEN"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yihan SHEN</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Yuzhu%20HAO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yuzhu HAO</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Haigen%20ZHOU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Haigen ZHOU</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Electromagnetic Theory</dd></dl><br><dl> <dt class="TEXT-COL"> Veröffentlicht:</dt><dd class="TEXT-COL">2024/05/02</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> Seite(n):</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://de.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://de.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">Die Ground-Air Frequency Domain Electromagnetic Method (GAFDEM) ist eine schnelle und effektive elektromagnetische Methode zur halbluftgestützten Erkundung von unterirdischen Anomalien. Basierend auf der tiefenfokussierten Übertragungswellenform kann diese Methode die hochauflösende Erkennung von unterirdischen Zielen in bestimmten Tiefen realisieren. Aufgrund der hohen Induktivitäts- und Widerstandsparameter der Übertragungslast bei der GAFDEM-Erkundung fällt der Übertragungsstrom der tiefenfokussierten Wellenform jedoch in den mittleren und hohen Frequenzbändern schnell ab, was die Intensität des Erkennungssignals einschränkt. Um dieses Problem zu lösen, werden ein Breitband-Resonanzkreis und seine Parameterentwurfsmethode vorgeschlagen. Entsprechend dem typischen Übertragungsfrequenzbereich und der Last werden die Parameter entworfen und das Schaltungsmodell simuliert und getestet. Die Ergebnisse zeigen, dass der entworfene Breitband-Resonanzkreis die Übertragungswirkleistung der tiefenfokussierten Wellenform um mehr als 490 % erhöhen, die Blindleistung um mehr als 37 % reduzieren und die Übertragungsstromintensität der Zielfrequenz um das 2.64-fache erhöhen kann. Darüber hinaus weist diese Schaltung eine gute Robustheit auf. Es kann ein guter Resonanzeffekt innerhalb des Fehlerbereichs von ±10 % des Kondensators erzielt werden. Dieses Design bietet GAFDEM eine effektive Möglichkeit, die Intensität hochfrequenter Erkennungssignale zu erhöhen und den oberflächlichen Erkundungseffekt zu verbessern.</p> </div></div></li><li><h4><a href="https://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5060/_f"><span class="TEXT-TITLE">Hochpräzise Temperaturanalyse unter Berücksichtigung temperaturabhängiger Gewebeeigenschaften bei der renalen Denervierung</span></a> <span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://de.global.ieice.org/en_transactions/Author/a_name=Tohgo%20HOSODA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Tohgo HOSODA</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Kazuyuki%20SAITO"><span id="skip_info" class="notranslate TEXT-AUTHOR">Kazuyuki SAITO</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Electromagnetic Theory</dd></dl><br><dl> <dt class="TEXT-COL"> Veröffentlicht:</dt><dd class="TEXT-COL">2024/05/21</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> Seite(n):</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://de.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://de.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">Die transkatheterale renale Denervierung (RDN) ist eine Behandlungsmethode für therapieresistenten Bluthochdruck, bei der die außerhalb der Arterie liegenden Nierennerven mithilfe eines Katheters von innerhalb der Arterie abgetragen werden. In unseren früheren Studien haben wir die Temperatur während der RDN simuliert, indem wir konstante physikalische Eigenschaften von biologischem Gewebe verwendet haben, um die verschiedenen Katheter-RDN-Geräte zu validieren. Einige andere Studien berichten von einer Temperaturabhängigkeit der physikalischen Eigenschaften von biologischem Gewebe. Es gibt jedoch keine Studien, in denen die elektrischen Eigenschaften von Gewebe mit geringem Wassergehalt gemessen wurden. Fettgewebe, eine Art von Gewebe mit geringem Wassergehalt, ist eng mit der RDN verwandt. Deshalb ist es wichtig, die Temperaturabhängigkeit der elektrischen Konstanten von Fettgewebe zu kennen. In dieser Studie haben wir die Beziehung zwischen den elektrischen Konstanten und der Temperatur von Rinderfettgewebe gemessen. Als Nächstes wurde die erhaltene Gleichung der Beziehung zwischen der relativen Permittivität von Fettgewebe und der Temperatur eingeführt. Darüber hinaus wurden die Temperaturabhängigkeit der elektrischen Konstanten von Gewebe mit hohem Wassergehalt und die Temperaturabhängigkeit der thermischen Konstanten von biologischem Gewebe in die Temperaturanalyse eingeführt. Nach 180 Sekunden Erhitzung war die Temperatur des Modells mit Temperaturabhängigkeit der physikalischen Eigenschaften an einer bestimmten Position um 7.25 °C niedriger als die des Modells ohne Temperaturabhängigkeit der physikalischen Eigenschaften. Aus den Ergebnissen lässt sich schließen, dass die Temperaturabhängigkeit der physikalischen Eigenschaften von Bedeutung ist, wenn eine genaue Temperaturanalyse erforderlich ist.</p> </div></div></li><li><h4><a href="https://de.global.ieice.org/en_transactions/electronics/10.1587/transele.2023ECP5051/_f"><span class="TEXT-TITLE">Flächeneffizienter binärisierter Inferenzbeschleuniger für neuronale Netzwerke basierend auf einem zeitmultiplexen XNOR-Multiplikator unter Verwendung eines lastfreien 4T-SRAM</span></a> <span class="open_access">Open Access</span></h4><p class="gt-block"><a href="https://de.global.ieice.org/en_transactions/Author/a_name=Yihan%20ZHU"><span id="skip_info" class="notranslate TEXT-AUTHOR">Yihan ZHU</span></a> <a href="https://de.global.ieice.org/en_transactions/Author/a_name=Takashi%20OHSAWA"><span id="skip_info" class="notranslate TEXT-AUTHOR">Takashi OHSAWA</span></a> <br> </p><div class="data"> <dl><dt> </dt><dd class="notranslate TEXT-COL" id="skip_info">PAPER-Integrated Electronics</dd></dl><br><dl> <dt class="TEXT-COL"> Veröffentlicht:</dt><dd class="TEXT-COL">2024/05/08</dd></dl><dl class="TEXT-COL"><dt class="TEXT-COL"> Seite(n):</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://de.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://de.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">Es wird ein binärer neuronaler Netzwerk-Inferenzbeschleuniger (BNN) entwickelt, bei dem Gewichte in lastfreien statischen Viertransistor-Direktzugriffsspeicherzellen (4T SRAM) gespeichert werden. Es wird ein zeitmultiplexer exklusiver NOR-Multiplikator (XNOR) mit geschalteten Kondensatoren vorgeschlagen, der verhindert, dass die lastfreie 4T SRAM-Zelle während des Betriebs zerstört wird. Außerdem wird ein Akkumulator mit Stromsensorschema vorgeschlagen, um den Multiplikations-Akkumulationsvorgang (MAC) vollständig linear und lesestörungsfrei zu machen. Der BNN-Inferenzbeschleuniger wird auf das MNIST-Datensatzerkennungsproblem mit einer Genauigkeit von 96.2 % für 500 Daten angewendet, und der Durchsatz, die Energieeffizienz und die Flächeneffizienz werden mit 15.50 TOPS, 72.17 TOPS/W und 50.13 TOPS/mm bestätigt.<sup>2</sup>, bzw. durch HSPICE-Simulation in 32 nm-Technologie. Im Vergleich zu den herkömmlichen SRAM-Zellen-basierten BNN-Inferenzbeschleunigern, die auf 32 nm-Technologie skaliert sind, wird die Synapsenzellengröße auf weniger als 16 % (0.235 <i>μ</i>m<sup>2</sup>) und die Zelleffizienz (Synapsen-Array-Fläche/Synapsen-Array plus Peripherieschaltkreise) beträgt 73.27 %, was dem neuesten Stand der Technik der auf SRAM-Zellen basierenden BNN-Beschleuniger entspricht.</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://de.global.ieice.org/" id="set_site_url"> </ul> </div> <div class="pagination"> <ul> <li class="prev"><a href="https://de.global.ieice.org/en_transactions/electronics/E107-C_11"><span>Vorherige</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://de.global.ieice.org/en_transactions/fundamentals">IEICE Trans. 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