{"id":225061,"date":"2012-09-09T22:00:00","date_gmt":"2012-09-09T22:00:00","guid":{"rendered":"https:\/\/eenewseurope.artwhere.co\/transmission-de-donnees-courte-portee-ultra-rapide-basee-sur-une-interface-electrique\/"},"modified":"2012-09-09T22:00:00","modified_gmt":"2012-09-09T22:00:00","slug":"transmission-de-donnees-courte-portee-ultra-rapide-basee-sur-une-interface-electrique","status":"publish","type":"post","link":"https:\/\/www.ecinews.fr\/fr\/transmission-de-donnees-courte-portee-ultra-rapide-basee-sur-une-interface-electrique\/","title":{"rendered":"Transmission de donn\u00e9es courte port\u00e9e ultra-rapide bas\u00e9e sur une interface \u00e9lectrique"},"content":{"rendered":"<p class=\"MsoNormal\" style=\"margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal\">L&rsquo;&eacute;tude repose principalement sur une comparaison des avantages et inconv&eacute;nients relatifs de l&rsquo;encodage de la modulation d&rsquo;impulsions en amplitude PAM face au code &agrave; multi-tonalit&eacute; discr&egrave;te DMT sur ce canal particulier. La plateforme de test et de d&eacute;monstration propri&eacute;taire est bas&eacute;e sur les puces test et les cartes d&rsquo;&eacute;valuation pour la famille de convertisseurs CMOS 40 nm 65 GSps, &quot;LEIA&quot; DAC pour la transmission et &quot;LUKE&quot; ADC pour la r&eacute;ception.<\/p>\n<p class=\"MsoNormal\" style=\"margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal\">Le besoin d&rsquo;interconnexions plus rapides et de densit&eacute;s de port plus importantes dans les centres de donn&eacute;es stimule la demande de taux de transmission courte port&eacute;e sup&eacute;rieurs sur les cartes et entre les serveurs. Toutefois d&rsquo;importants obstacles dans la conception des interconnexions de courte port&eacute;e de plus de 30 Gbps apparaissent, m&ecirc;me sur de petits parcours. On atteint ici la limite de la propagation de signal efficace &agrave; l&rsquo;aide de mat&eacute;riaux standard.<\/p>\n<p class=\"MsoNormal\" style=\"margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal\">De m&ecirc;me, dans les r&eacute;seaux de transport optique, l&rsquo;augmentation du trafic de donn&eacute;es fait monter les vitesses requises au centre du r&eacute;seau. Cela g&eacute;n&egrave;re le besoin de d&eacute;bits binaires plus &eacute;lev&eacute;s dans les r&eacute;seaux o&ugrave; le co&ucirc;t, la puissance et la souplesse sont des exigences cl&eacute;s. Au cours de ces derni&egrave;res ann&eacute;es, l&rsquo;utilisation d&rsquo;une d&eacute;tection coh&eacute;rente de liens de transport sur longue distance a permis d&rsquo;obtenir de meilleures performances et une meilleure souplesse de conception en am&eacute;nageant les capacit&eacute;s de traitement du signal num&eacute;rique activ&eacute;es par des convertisseurs haut d&eacute;bit, le tout int&eacute;gr&eacute; dans des technologies CMOS standard. Avec l&rsquo;&eacute;volution du march&eacute;, on s&rsquo;attend &agrave; ce que la m&ecirc;me approche se r&eacute;v&egrave;le n&eacute;cessaire pour transporter des d&eacute;bits de 100 Gbps et plus sur quelques dizaines de kilom&egrave;tres de fibres.<\/p>\n<p class=\"MsoNormal\" style=\"margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal\">Dans les deux cas, l&rsquo;utilisation de la signalisation multi-niveaux ou de l&rsquo;encodage multi-transporteur permet la transmission de d&eacute;bits binaires sup&eacute;rieurs. Pour les interconnexions &eacute;lectriques de courte port&eacute;e, la motivation consiste &agrave; augmenter la production de donn&eacute;es sur la m&ecirc;me liaison. Pour les liaisons de courte port&eacute;e, l&rsquo;objectif est de r&eacute;duire les co&ucirc;ts et l&rsquo;alimentation totale du syst&egrave;me en maintenant une fr&eacute;quence de signalisation faible (ex., 10GBaud) et en utilisant l&rsquo;encodage pour transmettre davantage de bits\/symbole sur des fibres optiques moins on&eacute;reuses.<\/p>\n<p class=\"MsoNormal\" style=\"margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal\">La port&eacute;e des applications potentielles o&ugrave; la signalisation multi-niveaux peut &ecirc;tre utilis&eacute;e est tr&egrave;s vaste, de quelques centim&egrave;tres entre les puces et les modules, &agrave; plusieurs centaines de m&egrave;tres via un centre de donn&eacute;es, ou &agrave; quelques kilom&egrave;tres. L&rsquo;&eacute;l&eacute;ment commun est qu&rsquo;une forme de signalisation non binaire devrait permettre une approche plus &eacute;volutive et flexible, et est viable tant que le ratio puissance\/Gbps est suffisamment bas.<\/p>\n<p class=\"MsoNormal\" style=\"margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal\">&nbsp;<\/p>\n<p><a title=\"emea.fujitsu.com\/semiconductor\" target=\"_blank\" href=\"http:\/\/emea.fujitsu.com\/semiconductor\" rel=\"noopener\">emea.fujitsu.com\/semiconductor<\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Fujitsu Semiconductor Europe (FSEU) vient de pr\u00e9senter une transmission de plus de 100 Gbps sur un canal CEI-28G-VSR unique, quadruplant effectivement la capacit\u00e9 du d\u00e9bit binaire d\u00e9finie par le Forum d&rsquo;interconnexion de r\u00e9seau optique OIF pour cette interface \u00e9lectrique entre puces. Cela constitue maintenant une base pour les possibilit\u00e9s des canaux \u00e9lectriques de courte port\u00e9e avec la m\u00eame technologie de convertisseur CMOS \u00e9prouv\u00e9e dans la pratique et d\u00e9ploy\u00e9e dans les syst\u00e8mes de transport optique grande distance actuels.<\/p>\n","protected":false},"author":22,"featured_media":225062,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[],"tags":[],"domains":[47],"ppma_author":[1149],"class_list":["post-225061","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","domains-electronique-eci"],"acf":[],"yoast_head":"<title>Transmission de donn\u00e9es courte port\u00e9e ultra-rapide bas\u00e9e sur...<\/title>\n<meta name=\"description\" content=\"Fujitsu Semiconductor Europe (FSEU) vient de pr\u00e9senter une transmission de plus de 100 Gbps sur un canal CEI-28G-VSR unique, quadruplant effectivement la...\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.ecinews.fr\/fr\/wp-json\/wp\/v2\/posts\/225061\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Transmission de donn\u00e9es courte port\u00e9e ultra-rapide bas\u00e9e sur une interface \u00e9lectrique\" \/>\n<meta property=\"og:description\" content=\"Fujitsu Semiconductor Europe (FSEU) vient de pr\u00e9senter une transmission de plus de 100 Gbps sur un canal CEI-28G-VSR unique, quadruplant effectivement la capacit\u00e9 du d\u00e9bit binaire d\u00e9finie par le Forum d&#039;interconnexion de r\u00e9seau optique OIF pour cette interface \u00e9lectrique entre puces. 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