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A breakthrough in supercomputing speed, Intel® Many Integrated Core Architecture delivers performance and compatibility for highly-parallel HPC apps.
Software Developers Guide: Intel® Xeon Phi™ coprocessor architecture, power management, RAS features, OS support, APIs, usage models, more.
Les processeurs Intel® Xeon® E5 associent performances et rentabilité.
Les produits Intel® pour serveurs renforcent les performances et le rendement énergétique des applications métier gourmandes en données.
Altair’s Bill Nitzberg and Eric Lequiniou explain how Intel® Xeon Phi™ coprocessors speed up high performance computing simulations.
NAG’s Mike Dewar discusses how porting legacy code to Intel® Xeon Phi™ coprocessors enables users to solve large data problems quickly.
NICS explains how the Intel® Xeon Phi™ coprocessor enables parallel machines and energy-efficient supercomputers like the Beacon* cluster.
French supercomputer vendor Bull discusses optimizing applications and improving speeds on their HPC blades featuring Intel® Xeon Phi™ coprocessors.
IBM VP Bob Galush speaks at the Intel® Xeon Phi™ launch event, highlighting the development of high performance computing products.
Demonstrates installation of the Intel® Xeon Phi™ coprocessor card, showing where it connects inside the server sled of the Dell PowerEdge C8220XP*.
Lead Systems Engineer Dr. Dan Duffy describes NASA’s experience using Intel® Xeon Phi™ coprocessors to run high fidelity global climate models.
TACC describes their efforts in combining the Intel® Xeon Phi™ coprocessor with the new Stampede* supercomputer at Supercomputing 2012.
La famille de processeurs Intel® Xeon® E7 est conçue pour les solutions HPC indispensables aux services informatiques des entreprises.
Performance 1-socket, 1U rack-optimized systems with eight 2.5” hot-swap HDDs for embedded environments.
Easily optimize highly parallel application workloads; Intel® Xeon Phi™ coprocessor delivers more performance and increases efficiency.
Datasheet: Documentation for the Intel® Xeon Phi™ coprocessor, including architecture, thermal and mechanical specs, pin data, and power management.
Guide: Describes Intel® Xeon Phi™ coprocessor safety and compliance standards for system installation, including grounding and cooling requirements.
Solution Brief: Delivers greater aggregate performance for highly parallel application processing while eliminating dual-programming architecture.
At the Ohio Supercomputer Center, an Intel® Xeon® processor-based system delivers 1.5x the performance at 60% of the power of the previous platform.
Intel software partners praise Intel® Xeon Phi™ coprocessors: improved performance and developer productivity, energy efficient, and cost effective.
Case Study: South Ural State University deploys an Intel® Xeon Phi™ coprocessor-based HPC, delivering new performance, efficiency, and lower costs.
L'architecture Intel® Many Integrated Core (Intel® MIC) marque un pas de géant en matière de vitesse, de performances et de compatibilité des supercalculateurs.
Performance Brief: Benchmarks showing theoretical maximums, performance per watt, and more for the Intel® Xeon Phi™ coprocessor.
Basé sur l'architecture MIC (Many Integrated Core), le coprocesseur Intel® Xeon Phi™ 5110P permet de tirer les meilleures performances des…
ScaleMP’s Shai Fultheim explains how Intel® Xeon Phi™ coprocessors run large scale virtual machines without the constraints of physical systems.