{"id":224485,"date":"2012-06-07T22:00:00","date_gmt":"2012-06-07T22:00:00","guid":{"rendered":"https:\/\/eenewseurope.artwhere.co\/controleur-de-partage-de-courant\/"},"modified":"2012-06-07T22:00:00","modified_gmt":"2012-06-07T22:00:00","slug":"controleur-de-partage-de-courant","status":"publish","type":"post","link":"https:\/\/test.ecinews.fr\/fr\/controleur-de-partage-de-courant\/","title":{"rendered":"Contr\u00f4leur de partage de courant"},"content":{"rendered":"<p style=\"margin-right:28.3pt;line-height:150%\" class=\"MsoNormal\">Les concepteurs de syst&egrave;mes de grande disponibilit&eacute; cr&eacute;ent une redondance dans leurs circuits de puissance en mettant en parall&egrave;le deux alimentations similaires &agrave; diodes (circuit OU &agrave; diodes), de telle sorte qu&rsquo;une d&rsquo;elles puisse supporter la charge quand l&rsquo;autre est d&eacute;faillante. De plus, la fiabilit&eacute; du syst&egrave;me est accrue si les deux alimentations fonctionnent simultan&eacute;ment, chacune se partageant la moiti&eacute; du courant dans la charge. Des intensit&eacute;s plus faibles conduisent &agrave; un fonctionnement &agrave; moindre d&eacute;gagement de chaleur, r&eacute;duisant de moiti&eacute; l&rsquo;occurrence d&rsquo;un dysfonctionnement chaque fois que la temp&eacute;rature d&eacute;cro&icirc;t de 10 &deg;C. Les autres b&eacute;n&eacute;fices de ce syst&egrave;me comprennent une restauration plus rapide apr&egrave;s une d&eacute;faillance et la possibilit&eacute; de faire fonctionner les alimentations au plus pr&egrave;s de leur point de fonctionnement maximum. Jusqu&rsquo;alors, les solutions de partage du courant n&eacute;cessitaient un contr&ocirc;le actif des alimentations via leurs broches de r&eacute;glages ou leurs r&eacute;seaux de r&eacute;gulation. Elles requ&eacute;raient &eacute;galement un bus de partage et une compensation pour la stabilit&eacute; selon le type d&rsquo;alimentation. Ce contr&ocirc;leur simplifie grandement les mises en &oelig;uvre des syst&egrave;mes de puissance fiables. Il contr&ocirc;le des MOSFET canal N en s&eacute;rie avec chacune des alimentations. Ces transistors fonctionnent comme des diodes ayant une tension directe variable. Le contr&ocirc;leur r&egrave;gle cette tension directe afin d&rsquo;annuler le d&eacute;s&eacute;quilibre des tensions des alimentations d&rsquo;entr&eacute;e jusqu&rsquo;&agrave; ce que les intensit&eacute;s de chacune d&rsquo;elles soient &eacute;gales. Afin de limiter la dissipation de puissance des&nbsp;MOSFET, la chute de tension maximale &agrave; leurs bornes est r&eacute;glable par une r&eacute;sistance externe.<br \/>\nCe contr&ocirc;leur fonctionne avec des alimentations dans la gamme de 0 V &agrave; 18 V. Lors de dysfonctionnements des dur&eacute;es de conduction et d&rsquo;arr&ecirc;t, un MOSFET rapide limite la chute de tension dans la charge et les courants de courts-circuits de recouvrement (Shoot-Through) entre les alimentations.&nbsp; Les broches de validation permettent de bloquer chaque MOSFET. Quand les deux sont &agrave; l&rsquo;arr&ecirc;t, l&rsquo;intensit&eacute; du contr&ocirc;leur diminue. Les broches d&rsquo;&eacute;tat de marche des MOSFET peuvent servir pour signaler une d&eacute;faillance dans le partage du courant par l&rsquo;allumage d&rsquo;une LED rouge. La caract&eacute;ristique de partage de la charge peut &eacute;galement &ecirc;tre arr&ecirc;t&eacute;e pour faire fonctionner le composant en un contr&ocirc;leur double &agrave; diodes id&eacute;ales.<br \/>\nSp&eacute;cifi&eacute; sur les gammes de temp&eacute;ratures commerciales et industrielles, ce contr&ocirc;leur est pr&eacute;sent&eacute; en bo&icirc;tiers DFN 16 broches de 4 x 3 mm et MSOP16. Les cartes d&rsquo;&eacute;valuation de ce circuit sont &eacute;galement disponibles. <\/p>\n<p style=\"margin-right:28.3pt;line-height:150%\" class=\"MsoNormal\"><a href=\"http:\/\/www.linear.com\/product\/LTC4370\" target=\"_blank\" title=\"www.linear.com\/product\/LTC4370\" rel=\"noopener\">www.linear.com\/product\/LTC4370<\/a><span style=\"font-size:12.0pt;color:blue\"><\/span><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Linear Technology pr\u00e9sente le LTC4370, un contr\u00f4leur de partage du courant avec circuit de blocage des courants inverses. Il lib\u00e8re le concepteur des limitations et complications inh\u00e9rentes aux m\u00e9thodes de partage du courant actuelles afin d\u2019obtenir une solution de partage entre deux alimentations, plus simple, plus rapide, plus compacte et d\u2019une dur\u00e9e de vie plus longue. En incorporant le comportement des diodes, le contr\u00f4leur emp\u00eache que le dysfonctionnement d\u2019une alimentation ne fasse tomber tout le syst\u00e8me.<\/p>\n","protected":false},"author":22,"featured_media":224486,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[881],"tags":[],"domains":[47],"ppma_author":[1149],"class_list":["post-224485","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-nouveaux-produits","domains-electronique-eci"],"acf":[],"yoast_head":"<title>Contr\u00f4leur de partage de courant ...<\/title>\n<meta name=\"description\" content=\"Linear Technology pr\u00e9sente le LTC4370, un contr\u00f4leur de partage du courant avec circuit de blocage des courants inverses. 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