{"id":605405,"date":"2021-03-17T13:05:01","date_gmt":"2021-03-17T12:05:01","guid":{"rendered":"https:\/\/www.tomshardware.fr\/?p=605405"},"modified":"2023-06-22T17:17:28","modified_gmt":"2023-06-22T15:17:28","slug":"intel-detaille-sa-gamme-rocket-lake-s","status":"publish","type":"post","link":"https:\/\/www.tomshardware.fr\/intel-detaille-sa-gamme-rocket-lake-s\/","title":{"rendered":"Intel d\u00e9taille sa gamme Rocket Lake-S"},"content":{"rendered":"\n
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Intel n\u2019aura finalement pas attendu le 18 mars pour pr\u00e9senter sa gamme de processeurs Rocket Lake-S. Les sp\u00e9cifications et les prix sont disponibles depuis hier. Les nombreuses fuites de ces derniers mois nous avaient permis d\u2019avoir une id\u00e9e plut\u00f4t claire de cette onzi\u00e8me g\u00e9n\u00e9ration, mais toutes les donn\u00e9es sont maintenant officielles. En ce qui concerne l\u2019embargo sur les tests, il se prolonge jusqu\u2019au 30 mars.<\/p>\n\n\n\n

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La gamme Alder Lake mobile d\u00e9voil\u00e9e : des TDP de 5 \u00e0 55 W et de 5 \u00e0 16 c\u0153urs CPU<\/a><\/strong><\/p>\n\n\n\n

Pr\u00e9sentation g\u00e9n\u00e9rale<\/h2>\n\n\n\n

Dans les grandes lignes, les atouts de cette gamme Rocket Lake-S sont une hausse des IPC de 19 % gr\u00e2ce aux c\u0153urs CPU Cypress Cove ainsi qu\u2019une am\u00e9lioration des performances de l\u2019iGPU de 50 % induite par l\u2019architecture Intel Xe. Ces processeurs gagnent \u00e9galement la prise en charge de 20 lignes PCIe 4.0 et le support natif de la m\u00e9moire DDR4-3200 \u2013 enfin, plus ou moins, nous y reviendrons.<\/p>\n\n\n\n

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Les Rocket Lake-S profitent du Deep Learning Boost<\/em> et g\u00e8rent les instructions AVX-512. Ils sont toujours grav\u00e9s en 14 nm et conservent le socket LGA1200 des Comet Lake-S. Par cons\u00e9quent, s\u2019ils d\u00e9barquent avec leurs cartes m\u00e8res s\u00e9rie 500, ils sont aussi r\u00e9tro-compatibles avec certaines cartes m\u00e8res s\u00e9rie 400. En outre, pour les cartes m\u00e8res s\u00e9rie 500, Intel autorise d\u00e9sormais l\u2019overclocking m\u00e9moire sur les mod\u00e8les non-Z, en l’occurence les B560 et H570.<\/p>\n\n\n\n

Il y a cependant un point sur lequel la gamme Rocket Lake-S r\u00e9gresse, c\u2019est le nombre de c\u0153urs CPU des Core i9. Ces derniers perdent deux c\u0153urs CPU et se limitent ainsi \u00e0 8 au lieu de 10 pour Comet Lake-S. En outre, les nouveaux Core i3 et Pentium ne sont pas des puces Rocket Lake-S mais des Comet Lake Refresh.<\/p>\n\n\n\n

Les processeurs Rocket Lake-S se d\u00e9clinent dans des versions 6 ou 8 coeurs CPU. Hormis les mod\u00e8les F et les Core i5-11400, ils embarquent une solution graphique int\u00e9gr\u00e9e UHD Graphic 750 avec 32 unit\u00e9s d\u2019ex\u00e9cution. Ce sont donc 8 UE de plus que sur Comet Lake-S, et l\u2019une des raisons pour lesquelles les Core i9 ont 8 c\u0153urs et non 10. Le moteur graphique g\u00e8re le HEVC, VP9, SCC ou encore l\u2019AV1. Toute la gamme est pr\u00e9sent\u00e9e ci-dessous.<\/p>\n\n\n\n

Rocket Lake-S<\/h2>\n\n\n\n
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Processeur<\/td>C\u0153urs \/
Threads<\/td>
Fr\u00e9quence de base (MHz)<\/td>Fr\u00e9quence maximale sur un c\u0153ur (MHz)<\/td>Fr\u00e9quence maximale sur tous les c\u0153urs (MHz)<\/td>Intel Smart Cache<\/td>TDP
(W)<\/td>
IGP
UHD<\/td>
Prix de vente recommand\u00e9<\/td><\/tr>
i9-11900K<\/td>8 \/ 16<\/td>3500<\/td>5300<\/td>4700<\/td>16 Mo<\/td>125<\/td>750<\/td>$539<\/td><\/tr>
i9-11900KF<\/td>8 \/ 16<\/td>3500<\/td>5300<\/td>4700<\/td>16 Mo<\/td>125<\/td>–<\/td>$513<\/td><\/tr>
i9-11900<\/td>8 \/ 16<\/td>2500<\/td>5200<\/td>4600<\/td>16 Mo<\/td>65<\/td>750<\/td>$439<\/td><\/tr>
i9-11900F<\/td>8 \/ 16<\/td>2500<\/td>5200<\/td>4600<\/td>16 Mo<\/td>65<\/td>–<\/td>$422<\/td><\/tr>
i9-11900T<\/td>8 \/ 16<\/td>1500<\/td>4900<\/td>3700<\/td>16 Mo<\/td>35<\/td>750<\/td>$439<\/td><\/tr>
i7-11700K<\/td>8 \/ 16<\/td>3600<\/td>5000<\/td>4600<\/td>16 Mo<\/td>125<\/td>750<\/td>$399<\/td><\/tr>
i7-11700KF<\/td>8 \/ 16<\/td>3600<\/td>5000<\/td>4600<\/td>16 Mo<\/td>125<\/td>–<\/td>$374<\/td><\/tr>
i7-11700<\/td>8 \/ 16<\/td>2500<\/td>4900<\/td>4400<\/td>16 Mo<\/td>65<\/td>750<\/td>$323<\/td><\/tr>
i7-11700F<\/td>8 \/ 16<\/td>2500<\/td>4900<\/td>4400<\/td>16 Mo<\/td>65<\/td>–<\/td>$298<\/td><\/tr>
i7-11700T<\/td>8 \/ 16<\/td>1400<\/td>4600<\/td>3600<\/td>16 Mo<\/td>35<\/td>750<\/td>$323<\/td><\/tr>
i5-11600K<\/td>6 \/ 12<\/td>3900<\/td>4900<\/td>4600<\/td>12 Mo<\/td>125<\/td>750<\/td>$262<\/td><\/tr>
i5-11600KF<\/td>6 \/ 12<\/td>3900<\/td>4900<\/td>4600<\/td>12 Mo<\/td>125<\/td>–<\/td>$237<\/td><\/tr>
i5-11600<\/td>6 \/ 12<\/td>2800<\/td>4800<\/td>4300<\/td>12 Mo<\/td>65<\/td>750<\/td>$213<\/td><\/tr>
i5-11600T<\/td>6 \/ 12<\/td>1700<\/td>4100<\/td>3500<\/td>12 Mo<\/td>35<\/td>750<\/td>$213<\/td><\/tr>
i5-11500<\/td>6 \/ 12<\/td>2700<\/td>4600<\/td>4200<\/td>12 Mo<\/td>65<\/td>750<\/td>$192<\/td><\/tr>
i5-11500T<\/td>6 \/ 12<\/td>1500<\/td>3900<\/td>3400<\/td>12 Mo<\/td>35<\/td>750<\/td>$192<\/td><\/tr>
i5-11400<\/td>6 \/ 12<\/td>2600<\/td>4400<\/td>4200<\/td>12 Mo<\/td>65<\/td>730<\/td>$182<\/td><\/tr>
i5-11400F<\/td>6 \/ 12<\/td>2600<\/td>4400<\/td>4200<\/td>12 Mo<\/td>65<\/td>–<\/td>$157<\/td><\/tr>
i5-11400T<\/td>6 \/ 12<\/td>1300<\/td>3700<\/td>3300<\/td>12 Mo<\/td>35<\/td>730<\/td>$182<\/td><\/tr><\/tbody><\/table><\/div><\/figure>\n\n\n\n

Comet Lake Refresh<\/h2>\n\n\n\n
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Processeur<\/td>C\u0153urs \/
Threads<\/td>
Fr\u00e9quence de base (MHz)<\/td>Fr\u00e9quence maximale sur un c\u0153ur (MHz)<\/td>Fr\u00e9quence maximale sur tous les c\u0153urs (MHz)<\/td>Intel Smart Cache<\/td>TDP
(W)<\/td>
IGP
UHD<\/td>
Prix de vente recommand\u00e9<\/td><\/td><\/tr>
i3-10325<\/td>4 \/ 8<\/td>3900<\/td>4700<\/td>4500<\/td>8 Mo<\/td>65<\/td>630<\/td>$154<\/td>$154<\/td><\/tr>
i3-10305<\/td>4 \/ 8<\/td>3800<\/td>4500<\/td>4300<\/td>8 Mo<\/td>65<\/td>630<\/td>$143<\/td>$143<\/td><\/tr>
i3-10305T<\/td>4 \/ 8<\/td>3000<\/td>4000<\/td>3700<\/td>8 Mo<\/td>35<\/td>630<\/td>$143<\/td>$143<\/td><\/tr>
i3-10105<\/td>4 \/ 8<\/td>3700<\/td>4400<\/td>4200<\/td>6 Mo<\/td>65<\/td>630<\/td>$122<\/td>$122<\/td><\/tr>
i3-10105F<\/td>4 \/ 8<\/td>3700<\/td>4400<\/td>4200<\/td>6 Mo<\/td>65<\/td>–<\/td>$97<\/td>$97<\/td><\/tr>
i3-10105T<\/td>4 \/ 8<\/td>3000<\/td>3900<\/td>3600<\/td>6 Mo<\/td>35<\/td>630<\/td>$122<\/td>$122<\/td><\/tr>
Pentium Gold G6605<\/td>2 \/ 4<\/td>4300<\/td>–<\/td>–<\/td>4 Mo<\/td>65<\/td>630<\/td>$86<\/td>$86<\/td><\/tr>
Pentium Gold G6505<\/td>2 \/ 4<\/td>4200<\/td>–<\/td>–<\/td>4 Mo<\/td>65<\/td>630<\/td>$75<\/td>$75<\/td><\/tr>
Pentium Gold G6505T<\/td>2 \/ 4<\/td>3600<\/td>–<\/td>–<\/td>4 Mo<\/td>35<\/td>630<\/td>$75<\/td>$75<\/td><\/tr>
Pentium Gold G6405<\/td>2 \/ 4<\/td>4100<\/td>–<\/td>–<\/td>4 Mo<\/td>65<\/td>610<\/td>$64<\/td>$64<\/td><\/tr>
Pentium Gold G6405T<\/td>2 \/ 4<\/td>3500<\/td>–<\/td>–<\/td>4 Mo<\/td>35<\/td>610<\/td>$64<\/td>$64<\/td><\/tr><\/tbody><\/table><\/div><\/figure>\n\n\n\n

Support de la DDR4-3200 en mode Gear 1 uniquement pour le Core i9-11900K<\/h2>\n\n\n\n

Quelques mots sur le support m\u00e9moire. Intel mentionne la DDR4-3200 et la DDR4-2933. N\u00e9anmoins, une note de bas de page pr\u00e9cise que seul le Core i9-11900K b\u00e9n\u00e9ficie d\u2019un support officiel de la DDR4-3200 dans la configuration Gear 1 ; c’est seulement en Gear 2 pour les autres.<\/p>\n\n\n\n

Gear 1 d\u00e9signe le mode synchrone o\u00f9 le contr\u00f4leur m\u00e9moire et la fr\u00e9quence m\u00e9moire fonctionnent en 1:1 ; pour tous les autres, la DDR4-3200 se fait en configuration Gear 2, alias le mode asynchrone en 0,5:1. Celui-ci est toutefois susceptible d\u2019induire de la latence.<\/p>\n\n\n\n

Officiellement, seuls les Core i9-11900K et KF supportent donc la DDR4-3200 \u00e0 1:1 ; l’activer avec un autre processeur sera donc consid\u00e9r\u00e9 comme de l’overclocking.<\/p>\n\n\n\n

Les performances CPU<\/h2>\n\n\n\n

Afin de contrer les Ryzen 5000, pr\u00e9sent\u00e9s par AMD comme les meilleurs processeurs gaming au monde, Intel concentre son offensive sur ce secteur. L\u2019entreprise compare notamment les r\u00e9sultats obtenus par son Core i9-11900K \u00e0 ceux du Ryzen 9 5900X. Malgr\u00e9 ses quatre c\u0153urs suppl\u00e9mentaires, celui-ci est battu sur les quatre titres. Intel oppose \u00e9galement des puces Rocket Lake-S \u00e0 des Comet Lake-S.<\/p>\n\n\n\n

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Seulement Intel a un protocole de test assez \u00e9trange. Dans tous les cas, le syst\u00e8me embarque 32 Go de m\u00e9moire en 14-14-14-34 et une carte graphique NVIDIA GeForce RTX 3080 (un mod\u00e8le Evga XC3 Ultra). Mais bizarrement, les processeurs Rocket Lake-S sont syst\u00e9matiquement mis \u00e0 l’\u00e9preuve avec un PL1 de 250 W. Or, la sp\u00e9cification officielle du PL1 de ces processeurs est de 150 W (c\u2019est d\u2019ailleurs une hausse de 25 W par rapport \u00e0 Comet Lake-S) ; 250 W \u00e9tant le PL2. Le hic, c’est que leurs rivaux conservent leur PL1 d\u2019origine : 105 W pour le Ryzen 9 5900X, 125 W pour les Core i9-10900K et Core i5-10600K. Cela ressemble un peu \u00e0 une course automobile dans laquelle l\u2019une des voitures est autoris\u00e9e \u00e0 rouler en 6e et l\u2019autre en 3e ; pas tr\u00e8s \u00e9quitable\u2026<\/p>\n\n\n\n

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En ce qui concerne les benchmarks applicatifs, Intel met l\u2019accent sur des logiciels qui tirent profit du DL Boost et VNNi ; logiquement, les Rocket Lake-S, qui jouissent de fonctions d’IA acc\u00e9l\u00e9r\u00e9es au niveau mat\u00e9riel, n\u2019ont pas trop de difficult\u00e9 \u00e0 se d\u00e9marquer de leurs anc\u00eatres. C’est de bonne guerre, mais comme toujours, recevez ces tests internes avec prudence.<\/p>\n\n\n\n

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Chipsets 500<\/h2>\n\n\n\n

Ces processeurs Rocket Lake-S peuvent prendre place sur des cartes m\u00e8res de s\u00e9ries 400 ou 500 ; uniquement Z490 et H470 dans le premier cas<\/a>. La r\u00e9tro-compatibilit\u00e9 est compl\u00e8te pour les Comet Lake Refresh. Naturellement, passer \u00e0 une carte m\u00e8re 500 offre quelques avantages.<\/p>\n\n\n\n

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Le premier est un support de l\u2019overclocking m\u00e9moire y compris pour les chipsets B560 et H570. Cela est bien s\u00fbr permis avec les Rocket Lake et Comet Lake Refresh de 11e g\u00e9n\u00e9ration mais aussi avec les Comet Lake de 10e g\u00e9n\u00e9ration.<\/p>\n\n\n\n

Tous les chipsets 500 profitent aussi d\u2019une prise en charge du BAR redimensionnable, sous r\u00e9serve de carte graphique compatible (Radeon RX 6000 ou RTX 3000).<\/p>\n\n\n\n

Pour le PCIe 4.0, les Rocket Lake g\u00e8rent 20 lignes : 16 pour la carte graphique et 4 pour le SSD M.2. En outre, la connexion DMI 3.0 passe de 4 \u00e0 8 lignes, ce qui double th\u00e9oriquement le d\u00e9bit (7,86 Go\/s). En revanche, les chipsets s\u00e9rie 500 restent sur 24 lignes PCIe 3.0 et le privil\u00e8ge du DMI x8 ne concerne pas les cartes m\u00e8res B560 et H510. Celles-ci, comme les cartes m\u00e8res s\u00e9rie 400, ont un DMI x4.<\/p>\n\n\n\n

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Une onzi\u00e8me g\u00e9n\u00e9ration qui cible principalement le milieu de gamme et les joueurs.<\/p>","protected":false},"author":87,"featured_media":605434,"comment_status":"open","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"ep_exclude_from_search":false,"footnotes":""},"categories":[487,4071],"tags":[493],"hubs":[],"acf":{"display_mode":"medium-img","post_show_excerpt":true,"post_source":"","hide_sidebar":false,"hide_advertising":false},"yoast_head":"\nIntel d\u00e9taille sa gamme Rocket Lake-S<\/title>\n<meta name=\"description\" content=\"Une onzi\u00e8me g\u00e9n\u00e9ration qui cible principalement le milieu de gamme et les joueurs.\" \/>\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.tomshardware.fr\/intel-detaille-sa-gamme-rocket-lake-s\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta 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