Swisspac Resources Sdn
Total Page:16
File Type:pdf, Size:1020Kb
Load more
Recommended publications
-
Passmark Intel Vs AMD CPU Benchmarks - High End
PassMark Intel vs AMD CPU Benchmarks - High End http://www.cpubenchmark.net/high_end_cpus.html Shopping cart | Search Home Software Hardware Benchmarks Services Store Support Forums About Us Home » CPU Benchmarks » High End CPU's CPU Benchmarks Video Card Benchmarks Hard Drive Benchmarks RAM PC Systems Android iOS / iPhone CPU Benchmarks Over 600,000 CPUs Benchmarked High End CPU's - Intel vs AMD How does your CPU compare? This chart comparing high end CPU's is made using thousands of PerformanceTest benchmark Add your CPU to our benchmark results and is updated daily. These are the high end AMD and Intel CPUs are typically those chart with PerformanceTest V8 found in newer computers. The chart below compares the performance of Intel Xeon CPUs, Intel Core i7 CPUs, AMD Phenom II CPUs and AMD Opterons with multiple cores. Intel processors vs ---- Select A Page ---- AMD chips - find out which CPU's performance is best for your new gaming rig or server! CPU Mark | Price Performance (Click to select desired chart) PassMark - CPU Mark High End CPUs - Updated 26th of August 2013 Price (USD) Intel Xeon E5-2687W @ 3.10GHz 14,564 $1,929.99 Intel Xeon E5-2690 @ 2.90GHz 14,511 $1,920.99 Intel Xeon E5-2680 @ 2.70GHz 13,949 $1,725.99 Intel Xeon E5-2689 @ 2.60GHz 13,444 NA Intel Xeon E5-2670 @ 2.60GHz 13,312 $1,509.00 Intel Core i7-3970X @ 3.50GHz 12,873 $1,006.99 Intel Core i7-3960X @ 3.30GHz 12,749 $965.99 Intel Xeon E5-1660 @ 3.30GHz 12,457 $1,086.99 Intel Xeon E5-2665 @ 2.40GHz 12,453 $1,499.99 Intel Core i7-3930K @ 3.20GHz 12,086 $567.27 Intel Xeon -
Hardware Developments V E-CAM Deliverable 7.9 Deliverable Type: Report Delivered in July, 2020
Hardware developments V E-CAM Deliverable 7.9 Deliverable Type: Report Delivered in July, 2020 E-CAM The European Centre of Excellence for Software, Training and Consultancy in Simulation and Modelling Funded by the European Union under grant agreement 676531 E-CAM Deliverable 7.9 Page ii Project and Deliverable Information Project Title E-CAM: An e-infrastructure for software, training and discussion in simulation and modelling Project Ref. Grant Agreement 676531 Project Website https://www.e-cam2020.eu EC Project Officer Juan Pelegrín Deliverable ID D7.9 Deliverable Nature Report Dissemination Level Public Contractual Date of Delivery Project Month 54(31st March, 2020) Actual Date of Delivery 6th July, 2020 Description of Deliverable Update on "Hardware Developments IV" (Deliverable 7.7) which covers: - Report on hardware developments that will affect the scientific areas of inter- est to E-CAM and detailed feedback to the project software developers (STFC); - discussion of project software needs with hardware and software vendors, completion of survey of what is already available for particular hardware plat- forms (FR-IDF); and, - detailed output from direct face-to-face session between the project end- users, developers and hardware vendors (ICHEC). Document Control Information Title: Hardware developments V ID: D7.9 Version: As of July, 2020 Document Status: Accepted by WP leader Available at: https://www.e-cam2020.eu/deliverables Document history: Internal Project Management Link Review Review Status: Reviewed Written by: Alan Ó Cais(JSC) Contributors: Christopher Werner (ICHEC), Simon Wong (ICHEC), Padraig Ó Conbhuí Authorship (ICHEC), Alan Ó Cais (JSC), Jony Castagna (STFC), Godehard Sutmann (JSC) Reviewed by: Luke Drury (NUID UCD) and Jony Castagna (STFC) Approved by: Godehard Sutmann (JSC) Document Keywords Keywords: E-CAM, HPC, Hardware, CECAM, Materials 6th July, 2020 Disclaimer:This deliverable has been prepared by the responsible Work Package of the Project in accordance with the Consortium Agreement and the Grant Agreement. -
Components © 2017
PCDS.fi Components Mini-ITX SFF Gaming & HTPC Chassis 1/11 2017 AKASA Mini-ITX Compact Thin Cypher Black ALU 1x2.5” VESA 120W Power Adapter 99€ S ILVERSTONE Mini-ITX SFF Slim HTPC Milo ML0 5 Black Slot Loading 1x5.25” 4x2.5” Audio USB 69€ Milo ML0 6 ALU Black Slot Loading 1x5.25” 4x2.5” Audio USB 82€ NEW Milo ML0 9 Black Slim 1x5.25” 4x2.5” Audio USB 82€ NEW Milo ML0 6-E ALU Black Slot Loading 1x5.25” 4x2.5” Audio USB 115€ FRACTAL DESIGN Mini-ITX SFF Slim Gaming & VR NEW Node 202 Black 2x2.5” CC56mm Audio USB Filter 109€ NEW Node 20 2 Integra Black 2x2.5” CC56mm Audio USB Filter Integra 450 PSU 165€ PHANTEKS Mini-ITX SFF Tower NEW ENTHOO EVOLV SHIFT Black 2x3.5” 1x2.5” Audio USB 200mm Fan 135€ S ILVERSTONE Mini-ITX SFF Slim Gaming & VR Milo ML0 7 Black Slot Loading 1x5.25” 1x3.5” 3x2.5” Audio USB 82€ NEW Milo ML0 8 Black Slim 1x5.25” 1x3.5” 2x2.5” CC58mm Audio USB Filter 115€ R AVEN RVZ01 Black Slot Loading 1x5.25” 1x3.5” 3x2.5” Audio USB 2x120mm Fans 129€ NEW R AVEN RVZ01- E Black 3x2.5” CC83mm Audio USB 2x120mm Fans 129€ NEW RAVEN RVZ03 Black 4x2.5” CC83mm Audio USB 2x120mm Fans 135€ NEW R AVEN RVZ0 2 Black Slim 1x5.25” 1x3.5” 2x2.5” Audio USB 115€ NEW R AVEN RVZ0 2 Window Black Slim 1x5.25” 1x3.5” 2x2.5” Audio USB Filter 125€ NEW Fortress FTZ 01 Black / Silver Slot Loading 1x5.25” 1x3.5” 3x2.5” Audio USB 3x120mm Fans 155€ Mini-ITX SFF Cube Chassis 1/11 2017 COOLER MASTER Mini-ITX SFF Cube Elite 1 3 0 Black 1x5.25” 2x3.5” 3x2.5” Audio USB 80+120mm Fans 69€ Elite 1 2 0 Black 1x5.25” 3x3.5”/2.5” Audio USB 80+120mm Fans 71€ Elite 110 Black -
Deliverable 7.7 Deliverable Type: Report Delivered in June, 2019
Hardware developments IV E-CAM Deliverable 7.7 Deliverable Type: Report Delivered in June, 2019 E-CAM The European Centre of Excellence for Software, Training and Consultancy in Simulation and Modelling Funded by the European Union under grant agreement 676531 E-CAM Deliverable 7.7 Page ii Project and Deliverable Information Project Title E-CAM: An e-infrastructure for software, training and discussion in simulation and modelling Project Ref. Grant Agreement 676531 Project Website https://www.e-cam2020.eu EC Project Officer Juan Pelegrín Deliverable ID D7.7 Deliverable Nature Report Dissemination Level Public Contractual Date of Delivery Project Month 44(31st May, 2019) Actual Date of Delivery 25th June, 2019 Description of Deliverable Update on "Hardware Developments III" (Deliverable 7.5) which covers: - Report on hardware developments that will affect the scientific areas of inter- est to E-CAM and detailed feedback to the project software developers (STFC); - discussion of project software needs with hardware and software vendors, completion of survey of what is already available for particular hardware plat- forms (CNRS); and, - detailed output from direct face-to-face session between the project end- users, developers and hardware vendors (ICHEC). Document Control Information Title: Hardware developments IV ID: D7.7 Version: As of June, 2019 Document Status: Accepted by WP leader Available at: https://www.e-cam2020.eu/deliverables Document history: Internal Project Management Link Review Review Status: Reviewed Written by: Alan Ó Cais(JSC) Contributors: Jony Castagna (STFC), Godehard Sutmann (JSC) Authorship Reviewed by: Jony Castagna (STFC) Approved by: Godehard Sutmann (JSC) Document Keywords Keywords: E-CAM, HPC, Hardware, CECAM, Materials 25th June, 2019 Disclaimer:This deliverable has been prepared by the responsible Work Package of the Project in accordance with the Consortium Agreement and the Grant Agreement. -
I Processori Amd Trinity
UNIVERSITA’ DEGLI STUDI DI PADOVA __________________________________________________ Facoltà di Ingegneria Corso di laurea in Ingegneria Informatica I PROCESSORI AMD TRINITY Laureando Relatore Luca Marzaro Prof. Sergio Congiu ___________________________________________________________ ANNO ACCADEMICO 2012/2013 ii iii A Giulia, mamma, papà e Diego iv Indice 1. Introduzione 1 1.1 Cenni storici AMD . 1 1.2 Evoluzione del processore: dall' Am386 alle APU Trinity . 2 2. Trinity: Architettura 5 2.1 Introduzione . 5 2.2 Da Llano a Trinity: architettura Piledriver . 6 2.3 Graphics Memory Controller: architettura VLIW4 . 8 2.4 Un nuovo socket: FM2 . 12 3. Specifiche tecniche 15 3.1 Modelli e dati tecnici . 15 3.2 Comparazione con Llano e Intel core i3 . 17 4. Prestazioni 19 4.1 Introduzione . 19 4.2 Applicazioni multimediali . 22 4.3 Calcolo e compressione . 25 4.4 Consumi . 30 5. Considerazioni finali 35 vi INDICE Bibliografia 37 Capitolo 1 Introduzione 1.1 Cenni storici AMD AMD (Advanced Micro Devices) è una multinazionale americana produttrice di semiconduttori la cui sede si trova a Sunnyvale in California. La peculiarità di tale azienda è la produzione di microprocessori, workstation e server, di chip grafici e di chipset. Si classifica seconda al mondo Figura 1.1: Jerry Sanders nella produzione di microprocessori con architettuta x86 dopo Intel. Il primo maggio 1969 Jerry Sanders (vedi Figura 1.1) e sette amici fondano la AMD. Sei anni più tardi, lanciano nel mercato la prima memoria RAM marchiata AMD, la Am9102 e presentano AMD 8080, una variante dell'INTEL 8080 che lancia l'azienda nel mondo dei microprocessori. Dal 1980 AMD si impone come uno dei principali concorrenti di Intel nel mercato dei processori x86- compatibili. -
ATI Radeon™ HD 2000 Series Technology Overview
C O N F I D E N T I A L ATI Radeon™ HD 2000 Series Technology Overview Richard Huddy Worldwide DevRel Manager, AMD Graphics Products Group Introducing the ATI Radeon™ HD 2000 Series ATI Radeon™ HD 2900 Series – Enthusiast ATI Radeon™ HD 2600 Series – Mainstream ATI Radeon™ HD 2400 Series – Value 2 ATI Radeon HD™ 2000 Series Highlights Technology leadership Cutting-edge image quality features • Highest clock speeds – up to 800 MHz • Advanced anti-aliasing and texture filtering capabilities • Highest transistor density – up to 700 million transistors • Fast High Dynamic Range rendering • Lowest power for mobile • Programmable Tessellation Unit 2nd generation unified architecture ATI Avivo™ HD technology • Superscalar design with up to 320 stream • Delivering the ultimate HD video processing units experience • Optimized for Dynamic Game Computing • HD display and audio connectivity and Accelerated Stream Processing DirectX® 10 Native CrossFire™ technology • Massive shader and geometry processing • Superior multi-GPU support performance • Enabling the next generation of visual effects 3 The March to Reality Radeon HD 2900 Radeon X1950 Radeon Radeon X1800 X800 Radeon Radeon 9700 9800 Radeon 8500 Radeon 4 2nd Generation Unified Shader Architecture y Development from proven and successful Command Processor Sha S “Xenos” design (XBOX 360 graphics) V h e ade der Programmable r t Settupup e x al Z Tessellator r I Scan Converter / I n C ic n s h • New dispatch processor handling thousands of Engine ons Rasterizer Engine d t c r e r u x ar e c t f -
Time Complexity Parallel Local Binary Pattern Feature Extractor on a Graphical Processing Unit
ICIC Express Letters ICIC International ⃝c 2019 ISSN 1881-803X Volume 13, Number 9, September 2019 pp. 867{874 θ(1) TIME COMPLEXITY PARALLEL LOCAL BINARY PATTERN FEATURE EXTRACTOR ON A GRAPHICAL PROCESSING UNIT Ashwath Rao Badanidiyoor and Gopalakrishna Kini Naravi Department of Computer Science and Engineering Manipal Institute of Technology Manipal Academy of Higher Education Manipal, Karnataka 576104, India f ashwath.rao; ng.kini [email protected] Received February 2019; accepted May 2019 Abstract. Local Binary Pattern (LBP) feature is used widely as a texture feature in object recognition, face recognition, real-time recognitions, etc. in an image. LBP feature extraction time is crucial in many real-time applications. To accelerate feature extrac- tion time, in many previous works researchers have used CPU-GPU combination. In this work, we provide a θ(1) time complexity implementation for determining the Local Binary Pattern (LBP) features of an image. This is possible by employing the full capa- bility of a GPU. The implementation is tested on LISS medical images. Keywords: Local binary pattern, Medical image processing, Parallel algorithms, Graph- ical processing unit, CUDA 1. Introduction. Local binary pattern is a visual descriptor proposed in 1990 by Wang and He [1, 2]. Local binary pattern provides a distribution of intensity around a center pixel. It is a non-parametric visual descriptor helpful in describing a distribution around a center value. Since digital images are distributions of intensity, it is helpful in describing an image. The pattern is widely used in texture analysis, object recognition, and image description. The local binary pattern is used widely in real-time description, and analysis of objects in images and videos, owing to its computational efficiency and computational simplicity. -
Comparatif Des Processeurs
Comparatif des processeurs Le microprocesseur (ou processeur) est un composant essentiel de votre ordinateur. Pourtant sur les étiquettes, cet élément est rarement mis en avant, car commercialement ce n'est pas toujours vendeur, les gens font plus attention à la capacité du disque dur, au look de l'ordinateur, ou éventuellement à la puce vidéo. Alors attention quand même, le processeur ne fait pas tout. De la même façon qu'on ne choisit pas une voiture uniquement en fonction du moteur, on ne choisit pas non plus un ordinateur uniquement en fonction du processeur, mais c'est un élément qu'il faut savoir évaluer, au risque de se retrouver avec un ordinateur que vous trouverez toujours trop lent alors qu'il avait l'air très performant en rayon ;) Ce tableau vous aidera à évaluer une grande partie des processeurs existants. La liste des processeurs est triée par ordre alphabétique, et la colonne de droite indique le « score » du processeur. Le score à lui tout seul ne veut rien dire, mais c'est lui qui vous permettra de comparer un processeur par rapport à un autre. Plus le score est élevé, mieux c'est ! Le modèle de microprocesseur est affiché dans les propriétés système et sur l'étiquette en rayon Notez bien sa référence, une seule lettre peut tout changer ! Marque et modèle du processeur Score AMD A10 Micro-6700T APU 1875 AMD A10 PRO-7350B APU 3354 AMD A10 PRO-7800B APU 5313 AMD A10 PRO-7850B APU 5630 AMD A10-4600M APU 3121 AMD A10-4655M APU 2566 AMD A10-4657M APU 3449 AMD A10-5700 APU 4220 AMD A10-5745M APU 2788 AMD A10-5750M APU 3377 -
Ati Radeon Hd 5770 Mac Review All Manuals
Ati radeon hd 5770 mac review All Manuals Ati radeon hd 5770 mac review . Download: Ati radeon hd 5770 mac review XFX Radeon HD 5770 1 GB DDR5 PCIE Graphics Card HD577AZNFC 4.4 out of 5 stars (87). Explore similar items ATI Radeon HD 4870 Graphics Upgrade Kit for Apple Mac Pro 2 of 2 people found the following review helpful. Excellent. Get Immersive DirectX 11 gaming with ATI Radeon HD 5770 graphics. Mac Pro quad-core review: A good investment for users of multi-core Mac apps an ATI Radeon HD 5770 video card with 1GB of video RAM, the late 2013 Mac. This is an ATI Radeon HD 5770 Graphics Video Card pulled working from a 2008 Mac Pro. It is in perfect working condition. This card was flashed for the Mac. Document/File: ati-radeon-hd-5770-mac.pdf, filesize: n/a. 10030s Is there a tutorial, or a place in the users manual, which I need to review? 3.4 GHz,ATI. So we thought wed try a different approach: the Resolume Benchmark, patent pending. Model: Mac Pro desktop GPU: ATI Radeon HD 5770, 1024 MB That left the original Mac Pro behind in the dust as well. I have the same Mac Pro spec wise as you, same Apple ATI Radeon HD 5770 with both. Bringing this beast of a computer up to next-gen speeds! (Just about) Look out for a gaming. Sid Meiers Civilization: Beyond Earth is coming to Mac and Linux this holiday season! ATI Radeon X1000 series, HD 2000 series, 3870, 4670, 6490, 6630, NVIDIA I have a mid-2010 Mac Pro with an ATI Radeon HD 5770, it seems so close to Steam Tuesdays 20% week in review weekly flashback Weekly Roundup. -
Why You Need the EVGA E-Geforce 6800 GS
Why You Need the EVGA e-GeForce 6800 GS GeForce 6800 GS Profile NVIDIA’s announcement of a new GPU product hailing from the now legendary GeForce 6 series adds new fire to the lineup in the form of the GeForce 6800 GS. This powerful cast now reads as GeForce 6800 Ultra, GeForce 6800 GT, GeForce 6800, GeForce 6800 LE AND GeForce 6800 GS. As we know, the GeForce 6 series takes a step back to the more powerful and newer GeForce 7 series released recently. So why did NVIDIA release a new GPU for an older product line? Is it simply a holiday season marketing push, or does the answer have something to do with rival ATI? ATI expanded the RADEON X800 series product line with two new VPU products – the RADEON X800 GT and RADEON X800 GTO - just prior to their announcement of the new RADEON X1000 series. The former is an 8 pixel pipe product, while the latter is built with 12 pipes. Both are targeted for the mid-range market. These new “GT” VPUs place a lot of pressure to NVIDIA’s GeForce 6600 GT (8 pixel pipes) and GeForce 6800 (12 pixel pipes) and forces the company to respond with a new product to meet the challenge head-on. Many of NVIDIA fans might prefer new GeForce 7 products for the mid-range market, but NVIDIA still needs time to prepare them. In fact, NVIDIA’s older but more mature GeForce 6600 or GeForce 6800 series products can be improved to provide enough power to compete with the RADEON X800 GT and GTO. -
CPU Benchmarks Video Card Benchmarks Hard Drive Benchmarks RAM PC Systems Android Ios / Iphone
Software Hardware Benchmarks Services Store Support About Us Forums 0 CPU Benchmarks Video Card Benchmarks Hard Drive Benchmarks RAM PC Systems Android iOS / iPhone CPU Benchmarks Over 1,000,000 CPUs Benchmarked CPU List Below is an alphabetical list of all CPU types that appear in the charts. Clicking on a specific processor name will take you to the chart it appears in and will highlight it for you. Results for Single CPU Systems and Multiple CPU Systems are listed separately. Find CPU Single CPU Systems Multi CPU Systems CPUS High End Single CPU Systems High Mid Range Last updated on the 28th of May 2021 Low Mid Column Range Low End CPU Mark Rank CPU Value Price CPU Name (higher is (lower is (higher is (USD) better) better) better) Best Value (On Market) AArch64 rev 0 (aarch64) 2,335 1605 NA NA Best Value XY AArch64 rev 1 (aarch64) 2,325 1606 NA NA Scatter Best Value AArch64 rev 2 (aarch64) 1,937 1807 NA NA (All time) AArch64 rev 4 (aarch64) 1,676 1968 NA NA New Desktop AC8257V/WAB 693 2730 NA NA New Laptop AMD 3015e 2,678 1472 NA NA Single Thread AMD 3020e 2,637 1481 NA NA Systems with AMD 4700S 17,756 222 NA NA Multiple CPUs Overclocked AMD A4 Micro-6400T APU 1,004 2445 NA NA Power Performance AMD A4 PRO-3340B 1,706 1938 NA NA CPU Mark by AMD A4 PRO-7300B APU 1,481 2097 NA NA Socket Type Cross-Platform AMD A4 PRO-7350B 1,024 2428 NA NA CPU Performance AMD A4-1200 APU 445 2969 NA NA AMD A4-1250 APU 428 2987 NA NA CPU Mega List AMD A4-3300 APU 961 2494 53.40 $18.00* Search Model AMD A4-3300M APU 686 2740 22.86 $29.99* 0 Compare AMD -
Introduction Aux Systèmes Informatiques Introduction Générale
Introduction aux systèmes informatiques Introduction générale Michel Salomon IUT de Belfort-Montbéliard Département d’informatique Michel Salomon Intro. aux sys. info. 1 / 53 Objectifs et organisation Objectifs 1 Savoir utiliser un (des) système(s) informatique(s) ; 2 en appréhender le fonctionnement Organisation Module en deux parties 1 Système d’exploitation (7 sem. - M. Fouzi) 2 Fonctionnement interne d’un ordinateur (6 sem. - M. Salomon) Modalités de Contrôle des Connaissances Chaque partie comptera pour 50% de la note du module Au moins 2 contrôles dans cette partie Michel Salomon Intro. aux sys. info. 2 / 53 L’informatique : un domaine complexe en constante évolution Décrire ce qu’est un ordinateur n’est pas aisé Grande variété d’ordinateurs Netbook Tablette tactile etc. Super-ordinateur Rapidité des évolutions technologiques Illustration par la Loi de Moore (1975) Postulait initialement le doublement du nombre de transistors des microprocesseurs tous les 2 ans ; entre 1971 et 2001 doublement tous les 1,96 années ; “relativement” exacte jusqu’en 2012, depuis ralentissement (phénomène quantique : effet tunnel → limite de miniaturisation) ; version plus commune : doublement d’une grandeur (puissance, capacité, etc.) tous les 18 à 24 mois Michel Salomon Intro. aux sys. info. 3 / 53 L’informatique : un domaine complexe en constante évolution On approche des limites de la technologie actuelle des semi-conducteurs Michel Salomon Intro. aux sys. info. 4 / 53 L’informatique : un domaine complexe en constante évolution Pourquoi réduire la finesse de gravure ? Une gravure plus fine permet d’augmenter la densité des transistors Une même micro-architecture (même nombre de transistors) → implémentée par un “Die” (support physique) plus petit Une même taille de “Die” (plus de transistors disponibles) → implémenter une micro-architecture plus performante Michel Salomon Intro.