Desktop Processor Roadmap

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1 Desktop Processor Roadmap Solution Providers Accounts October 2008

2 Desktop Division Roadmap Changes since September 2008 Additions Athlon X and 7750 Kuma processors to launch in Q408 Two new Phenom X4 18x00 Deneb processors with 6MB of total cache to launch in Q109 Added a second Phenom X3 14x00 Heka triple core processor to launch in Q109 Changes Phenom X4 1xx00e Propus 65W quad core processor pulled in one quarter Athlon 64 X2 Brisbane dual core processor last time buy pulled in one quarter Removals The following parts were removed from the roadmap due to EOL in Q408 Phenom X Athlon 64 X Athlon X2 4050e Sempron LE Solution Provider Processor Roadmap October 2008

3 Desktop Processors Platform Segment nm 45 nm Agena Quad-Core DDR2, 2M L3 512K L2/Core HT 3.0 Pkg AM2+ Deneb Quad-Core Shared L3 DDR2/DDR3 HT 3.0 Pkg AM2+ and AM3 Propus Quad-Core DDR2/DDR3 HT 3.0 Pkg AM3 Deneb FX Quad-Core Shared L3 DDR2/DDR3 HT 3.0 Pkg AM3 Toliman Triple-Core DDR2, 2M L3 512K L2/Core HT 3.0 Pkg AM2+ Brisbane Dual-Core 512K L2/Core DDR2, AMD-V HT 2.0 Pkg AM2 Lima Single-Core DDR2 512K L2 HT 2.0 Pkg AM2+ Kuma Dual-Core DDR2, 2M L3 512K L2/Core HT 3.0 Pkg AM2+ Heka Triple-Core Shared L3 DDR2/DDR3 HT 3.0 Pkg AM3 Rana Triple-Core DDR2/DDR3 HT 3.0 Pkg AM3 Regor Dual-Core 1MB L2 per Core DDR2/DDR3 HT 3.0 Pkg AM3 Sparta Single-Core DDR K Solution Provider Processor Roadmap October 2008 HT 1.0 Pkg AM2

4 Why Kuma? A note AMD is introducing a dual-core CPU family based on our 65nm Agena architecture. The Kuma core will be offered as an AMD Athlon X2 7-series dual-core processor. Two models will be available at launch, the 2.7GHz model 7750 and the 2.5GHz model Both processors feature 3MB total cache. AMD is launching the 7-series dual-core processors in response to customers who continue to demand high performance dualcore technology even as adoption of the triple-core and quadcore technology increases. The AMD Athlon X2 7-series demonstrates AMD s commitment to meeting customer needs for the high-performance technology they demand. 4 Solution Provider Processor Roadmap October 2008

5 Desktop Processor Longevity 45-nm AMD Phenom X4 Quad-Core Processors Q4 Q1 AMD Phenom X GHz, 8MB Total Cache AMD Phenom X4 20x00 2.8GHz, 8MB Total Cache 125W, AM2+ DDR2 95W AMD Phenom X GHz, 8MB Total Cache 125W, AM2+ DDR2 AMD Phenom X4 20x00 2.6GHz, 8MB Total Cache 95W AMD Phenom X4 18x00 2.6GHz, 6MB Total Cache 95W AMD Phenom X4 18x00 2.4GHz, 6MB Total Cache 95W = Deneb quad-core, DDR3-1333, 45nm SOI, Pkg AM3, 4000 HT 3.0 Bus = Propus quad-core, DDR3-1333, 45nm SOI, 2MB Total Cache, Pkg AM3, >4000 HT 3.0 Bus = Last Order = Final Shipments schedule change 5 Solution Provider Processor Roadmap October 2008

6 Desktop Processor Longevity 65-nm AMD Phenom X4 Quad-Core Processors Q4 Q1 AMD Phenom X GHz, 4000 HT 3.0 Bus 140W 125W AMD Phenom X GHz, 4000 HT 3.0 Bus 125W 95W AMD Phenom X GHz, 3600 HT 3.0 Bus 95W AMD Phenom X GHz, 3600 HT 3.0 Bus 95W = "Agena" quad-core, DDR2-1066, 65nm SOI, 4MB Total Cache, Pkg AM2+ = Last Order = Final Shipments schedule change 6 Solution Provider Processor Roadmap October 2008

7 Desktop Processor Longevity AMD Triple-Core Processors AMD Phenom X3 14x00 2.8GHz, 4000 HT 3.0 Bus Q4 Q1 95W AMD Phenom X3 14x00 2.6GHz, 4000 HT 3.0 Bus 95W AMD Phenom X GHz 95W AMD Phenom X GHz 95W AMD Phenom X GHz 95W AMD Phenom X GHz 95W AMD Phenom X GHz 95W = Heka triple-core, DDR3-1333, 45n SOI, 7.5MB Total Cache, Pkg AM3 = Rana triple-core, DDR3-1333, 45n SOI, 1.5MB Total Cache, Pkg AM3 = Toliman triple-core, DDR2-1066, 65nm SOI, 3.5MB Total Cache, Pkg AM2+, 3600 HT 3.0 Bus = Last Order = Final Shipments schedule change 7 Solution Provider Processor Roadmap October 2008

8 Desktop Processor Longevity 65-nm AMD Athlon Dual-Core Processors Q4 Q1 AMD Athlon X GHz, 3600 HT 3.0 Bus 95W AMD Athlon X GHz, 3600 HT 3.0 Bus 95W AMD Athlon 64 X GHz AMD Athlon 64 X GHz AMD Athlon 64 X GHz AMD Athlon 64 X GHz AMD Athlon 64 X GHz 89W 89W 65W 65W 65W = Brisbane" dual-core, DDR2-800, 1MB Total Cache, 65nm SOI, Pkg AM2, 2000 HT 2.0 link = Kuma" dual-core, DDR2-1066, 3MB Total Cache, 65nm SOI, Pkg AM2+ = Last Order = Final Shipments schedule change 8 Solution Provider Processor Roadmap October 2008

9 Desktop Processor Longevity Energy Efficient Quad-Core Processors Q4 Q1 AMD Phenom X4 9450e 2.1GHz, 3600 HT 3.0 Bus 65W AMD Phenom X4 9350e 2.0GHz, 3600 HT 3.0 Bus 65W AMD Phenom X4 9150e 1.8GHz, 3200 HT 3.0 Bus 65W = Propus quad-core, DDR3-1333, 45nm SOI, 2MB Total Cache, Pkg AM3 = "Agena" quad-core, DDR2-1066, 65nm SOI, 4MB Total Cache, Pkg AM2+ = Last Order = Final Shipments schedule change 9 Solution Provider Processor Roadmap October 2008

10 Desktop Processor Longevity Energy Efficient Triple-Core and Dual-Core Processors Q4 Q1 AMD Phenom X3 8450e 2.1GHz 65W AMD Phenom X3 8250e 1.9GHz 65W AMD Athlon X2 5050e 2.6GHz 45W AMD Athlon X2 4850e 2.5GHz 45W AMD Athlon X2 4450e 2.3GHz 45W = Rana triple-core, DDR3-1333, 45n SOI, 1.5MB Total Cache, Pkg AM3 = Toliman triple-core, DDR2-1066, 65nm SOI, 3.5MB Total Cache, Pkg AM2+, 3600 HT 3.0 Bus = "Brisbane" dual-core, DDR2-800, 1MB Total Cache, 65nm SOI, Pkg AM2, 2000 HT 2.0 Bus = Last Order = Final Shipments schedule change 10 Solution Provider Processor Roadmap October 2008

11 Desktop Processor Longevity AMD Single-Core Processors Q4 Q1 AMD Athlon LE GHz, 512KB L2 45W AMD Athlon LE GHz, 512KB L2 45W AMD Sempron LE GHz, 512KB L2 45W AMD Sempron LE GHz, 512KB L2 45W = Lima" single-core, DDR2-800, 65nm SOI, Pkg AM2, 2000 HT 2.0 Bus = Sparta single-core, DDR2-800, 65nm SOI, Pkg AM2, 1600 HT 1.0 Bus = Last Order = Final Shipments schedule change 11 Solution Provider Processor Roadmap October 2008

12 Production Schedule Upcoming Quad-Core Processor Launches MODEL TDP CORE PKG DVT SAMPLES PRODUCTION ORDER AVAILABILITY AMD Phenom X4 Quad Core Processors 20x00 125W Deneb" AM3 1Q Q Q W Deneb" AM2+ Oct 2008 Dec Q W Deneb" AM2+ Oct 2008 Dec Q x00 95W Deneb" AM3 4Q Q Q x00 95W Deneb" AM3 4Q Q Q x00 95W Deneb AM3 1Q Q Q x00 95W Deneb" AM3 1Q Q Q W "Agena" AM2+ 3Q Q Q W Agena AM2+ 3Q Q Q e 65W "Agena" AM2+ 3Q Q Q Solution Provider Processor Roadmap October 2008

13 Production Schedule Upcoming Triple- and Dual-Core Processor Launches MODEL TDP CORE PKG DVT SAMPLES PRODUCTION ORDER AVAILABILITY AMD Phenom X3 Triple Core Processors 14x00 95W Heka AM3 1Q Q Q x00 95W Heka AM3 1Q Q Q 2009 AMD Athlon X2 Dual Core Processors W Kuma AM2 4Q Q Q W Kuma AM2+ 4Q Q Q e 45W Brisbane AM2+ Sep 2008 Oct 2008 Oct e 22W Brisbane AM2 Sep 2008 Nov 2008 Nov Solution Provider Processor Roadmap October 2008

14 Desktop Processor Roadmap 4Q08 1Q09 AMD Phenom X4 AMD Phenom X x00 20x00 18x00 18x x00 14x AMD Athlon X AMD Athlon LE-1660 LE-1640 LE-1660 AMD Sempron LE-1300 LE-1250 LE-1300 Black = AM2 pkg Green = AM2+ pkg Purple = AM3 pkg 14 Solution Provider Processor Roadmap October 2008

15 Energy Efficient Desktop Roadmap 4Q08 1Q09 AMD Phenom X4 AMD Phenom X3 9450e 9350e 8450e 8250e 9450e 9350e 8450e AMD Athlon X2 5050e 4850e 4450e 5050e 4850e 4450e Black = AM2 pkg Green = AM2+ pkg Purple = AM3 pkg 15 Solution Provider Processor Roadmap October 2008

16 Competitive Positioning 16 Solution Provider Processor Roadmap October 2008

17 Brand Positioning AMD BRAND Intel BRAND / MODEL SERIES AMD Phenom X4 Intel Core 2 Quad Q6/Q8/Q9-series AMD Phenom X3 Intel Core 2 Duo E6/E8-series AMD Athlon X2 Intel Core 2 Duo E4/E7-series Intel Pentium E2/E5-series AMD Athlon AMD Sempron Intel Celeron 4-series (Single-core) This slide represents directional positioning for AMD s product portfolio 17 Solution Provider Processor Roadmap October 2008

18 Q408 Desktop Model Positioning AMD AMD Phenom X4 Q9650 Q9550 Q9400 Q9300 Q6700 Q6600 Core2Quad Intel AMD Phenom X AMD Athlon X2 E8600 E8500 E8400 E6850 E6550 Core2Duo E7400 E7300 E7200 E4700 Core2Duo E5200 E2220 E2200 E2180 Pentium E LE-1660 LE-1640 AMD Athlon LE-1300 LE-1250 AMD Sempron Celeron Solution Provider Processor Roadmap October 2008

19 Processor Features 19 Solution Provider Processor Roadmap October 2008

20 Desktop Processor Features AMD Phenom Quad-Core Processors MODEL CLOCK SPEED TDP CACHE CORE CORES ON DIE MAX CPU BW 1 I/O BUS SPEED 6 Memory Speed IMC 2 CnQ 3 AMD- V EVP 4 AMD Phenom X4 quad-core processors 20x00 3.0GHz 125W GHz 125W GHz 125W 20x00 2.8GHz TBD 8MB Total Cache Deneb 45nm SOI 4 cores 33.1 GB/s yes yes yes yes 20x00 2.6GHz 95W 18x00 2.6GHz 95W 18x00 2.4GHz 95W 6MB Total Cache Deneb 45nm SOI 4 cores 33.1 GB/s yes yes yes yes GHz 140W 125W GHz 125W 95W 4MB Total Cache Agena" 65nm SOI 4 cores 31.5 GB/s yes yes yes yes GHz 95W GHz 95W 9450e 2.1GHz 65W 4MB Total Cache Agena" 65nm SOI 4 cores 29.9 GB/s yes yes yes yes * Enhanced Virus Protection (EVP) is only enabled by certain operating systems including the current versions of Microsoft Windows, Linux, Solaris and BSD Unix. After properly installing the appropriate operating system, users must enable the protection of their applications and associated files from buffer overrun attacks. Contact your application software vendor for information regarding use of the application in conjunction with EVP. AMD strongly recommends that users continue to use third party anti-virus software as part of their security strategy 1 MAX CPU BW = Maximum processor-to-system bandwidth 2 IMC = Integrated Memory Controller 3 CnQ = AMD Cool'n'Quiet technology 4 EVP = Enhanced Virus Protection* 5 indicates the total dedicated L2 cache for the processor Notes: - AM2+ is referenced as AM2r2 in AMD technical documentation.. - Customers should always consult our technical documentation for design specifications 20 Solution Provider Processor Roadmap October 2008 AMD Strategic Desktop Processor Roadmap October 2008 Confidential

21 Desktop Processor Features AMD Phenom Triple-Core Processors MODEL CLOCK SPEED TDP CACHE CORE CORES ON DIE MAX CPU BW 1 I/O BUS SPEED 6 Memory Speed IMC 2 CnQ 3 AMD- V EVP 4 AMD Phenom X3 triple-core processors 14x00 2.8GHz 95W 14x00 2.6GHz 95W 7.5MB Total Cache Heka 45-nm SOI 3 cores 33.1 GB/s yes yes yes yes GHz 95W GHz 95W GHz 95W GHz 95W 8450e 2.1GHz 65W 3.5MB Total Cache Toliman" 65nm SOI 3 cores 27.2 GB/s yes yes yes yes 8250e 1.9GHz 65W GHz 95W Notes: - AM2+ is referenced as AM2r2 in AMD technical documentation.. - Customers should always consult our technical documentation for design specifications * Enhanced Virus Protection (EVP) is only enabled by certain operating systems including the current versions of Microsoft Windows, Linux, Solaris and BSD Unix. After properly installing the appropriate operating system, users must enable the protection of their applications and associated files from buffer overrun attacks. Contact your application software vendor for information regarding use of the application in conjunction with EVP. AMD strongly recommends that users continue to use third party anti-virus software as part of their security strategy. 1 MAX CPU BW = Maximum processor-to-system bandwidth 2 IMC = Integrated Memory Controller 3 CnQ = AMD Cool'n'Quiet technology 4 EVP = Enhanced Virus Protection* 5 indicates the total dedicated L2 cache for the processor 6 Bidirectional I/O Bus Speed 21 Solution Provider Processor Roadmap October 2008

22 Desktop Processor Features AMD Dual-Core Processors MODEL CLOCK SPEED TDP CACHE CORE CORES ON DIE MAX CPU BW 1 I/O BUS SPEED 6 Memory Speed IMC 2 CnQ 3 AMD-V EVP 4 AMD Athlon X2 dual-core processors GHz GHz 95 3MB Total Cache Kuma" 65nm SOI 2 cores 27.2 GB/s yes Yes yes yes GHz 89W GHz 89W GHz 89W 65W 1MB Total Cache "Brisbane" 65nm SOI 2 cores 20.8 GB/s yes Yes yes yes GHz 65W Notes: - AM2+ is referenced as AM2r2 in AMD technical documentation.. - Customers should always consult our technical documentation for design specifications * Enhanced Virus Protection (EVP) is only enabled by certain operating systems including the current versions of Microsoft Windows, Linux, Solaris and BSD Unix. After properly installing the appropriate operating system, users must enable the protection of their applications and associated files from buffer overrun attacks. Contact your application software vendor for information regarding use of the application in conjunction with EVP. AMD strongly recommends that users continue to use third party anti-virus software as part of their security strategy. 1 MAX CPU BW = Maximum processor-to-system bandwidth 2 IMC = Integrated Memory Controller 3 CnQ = AMD Cool'n'Quiet technology 4 EVP = Enhanced Virus Protection* 5 indicates the total dedicated L2 cache for the processor 6 Bidirectional I/O Bus Speed 22 Solution Provider Processor Roadmap October 2008

23 Desktop Processor Features AMD 45W Dual- and Single-Core Processors MODEL CLOCK SPEED TDP CACHE CORE CORES ON DIE MAX CPU BW 1 I/O BUS SPEED 5 Memory Speed IMC 2 CnQ 3 AMD-V EVP 4 AMD Athlon X2 dual-core processors 5050e 4850e 4450e 2.6GHz 2.5GHz 2.3GHz 45W 1MB Total Cache Brisbane 65nm SOI 2 cores 20.8 GB/s yes yes yes yes AMD Athlon processors LE-1660 LE GHz 2.7GHz 45W 512KB Lima" 65nm SOI 1 core 20.8 GB/s yes yes yes yes AMD Sempron processors LE GHz 45W 512KB "Sparta" LE GHz 45W 512KB 65nm SOI 1 core 17.1 GB/s yes yes no yes Notes: - Customers should always consult our technical documentation for design specifications * Enhanced Virus Protection (EVP) is only enabled by certain operating systems including the current versions of Microsoft Windows, Linux, Solaris and BSD Unix. After properly installing the appropriate operating system, users must enable the protection of their applications and associated files from buffer overrun attacks. Contact your application software vendor for information regarding use of the application in conjunction with EVP. AMD strongly recommends that users continue to use third party anti-virus software as part of their security strategy. 1 MAX CPU BW = Maximum processor-to-system bandwidth 2 IMC = Integrated Memory Controller 3 CnQ = AMD Cool'n'Quiet technology 4 EVP = Enhanced Virus Protection* 5 indicates the total dedicated L2 cache for the processor 6 Bidirectional I/O Bus Speed 23 Solution Provider Processor Roadmap October 2008

24 Desktop Technologies FEATURE FUNCTION END USER BENEFIT Direct Connect Architecture Designed to eliminate the real challenges and reduce bottlenecks of traditional front-side bus architectures through the use of separate, dedicated high-speed links between the processor and main memory between the processor and I/O between CPUs on a platform Leading-edge performance Helps avoid delays caused when multiple components compete for access to the same common bus Competing x86 architectures use a common front-side bus (FSB) Native Multi-Core Design Extensive AMD64 architectural optimizations and features enable thorough integration of multiple cores within the same processor, with each core having its own L1 and L2 caches Provides true implementation of multiple processor cores Simultaneous 32-bit and 64-bit computing AMD64 technology enables a breakthrough approach to 64-bit computing that doubles the number o registers in the processor, and offers leading-edge performance on today s 32-bit software applications while enabling a seamless migration to the 64-bit computing future Can support both 32-bit and 64-bit applications Permits continued use of 32-bit software until the end user decides to transition to 64-bit software HyperTransport technology A high-speed, low latency, point-to-point communication link, for outstanding bandwidth between system components Provides incredible system agility and graphics performance capability Integrated Memory Controller Directly connects CPUs to memory, for industry-leading memory performance and bandwidth per CPU Enhances performance as memory access latency can be dramatically reduced 24 Solution Provider Processor Roadmap October 2008

25 Desktop Technologies FEATURE FUNCTION END USER BENEFIT AMD Digital Media XPress DDR2 Memory AMD Cool'n'Quiet Technology AMD Virtualization (AMD-V ) Enhanced Virus Protection (EVP)* Silicon-on-Insulator (SOI) Technology Provides support for SSE, SSE2, SSE3 and MMX instructions 2 nd generation DDR memory designed to improve overall memory performance through increased bandwidth and larger densities For dynamically switching performance states (processor core voltage and operating frequency) based on processor performance requirements Silicon feature-set enhancements designed to improve the performance, reliability, and security of existing and future virtualization environments Sets part of system memory aside as data only so resident code cannot be executed, only read from or written to SOI technology is used to minimize substrate capacitive effects and leakage current for each of the millions of transistors within each AMD64 processor Takes 3-D and graphics to new levels in games, video, DVDs, and more Memory performance Power management to limit heat and noise without hindering performance, making a more pleasant and comfortable home or work environment Get the most out of your hardware by co-locating legacy and modern operating systems, installing trusted and un-trusted partitions on the same hard-disk or using the same machine for both client-facing and business-facing applications. To safeguard music, pictures, video and other important data. AMD64 processors can provide leading-edge performance while also using less power when compared to competing processor designs * Enhanced Virus Protection (EVP) is only enabled by certain operating systems including the current versions of Microsoft Windows, Linux, Solaris and BSD Unix. After properly installing the appropriate operating system, users must enable the protection of their applications and associated files from buffer overrun attacks. Contact your application software vendor for information regarding use of the application in conjunction with EVP. AMD strongly recommends that users continue to use third party anti-virus software as part of their security strategy. 25 Solution Provider Processor Roadmap October 2008

26 AMD Phenom Processor Technologies FEATURE FUNCTION END USER BENEFIT Direct Connect Architecture True Multi-core Processing Integrated Dual Channel Memory Controller with DDR2-800 support HyperTransport technology 3.0 Award winning technology designed to eliminate the real challenges and bottlenecks of system architectures through the use of separate, dedicated high-speed links: Between the processor and main memory Between the processor and I/O Between CPU cores within the same processor An integrated design featuring multiple cores within the same processor, each core having its own L1 and L2 caches, one or more direct connections to the other processor cores, and together sharing an L3 cache for rapid, shared access to memory. Directly connects the processor to memory, optimizing memory performance, decreasing latency and maximizing bandwidth per CPU. Improved memory bandwidth with support for the highest clock speed of DDR2 memory. Power consumption is reduced by operating at lower voltage and frequency from processor cores. 3 rd Generation HyperTransport interface improves performance supporting clock speeds up to 2.6GHz and effective bandwidth up to 5.2 GHz. New power management extensions scale Hypertransport performance to conserve power. Delivers leading-edge PC system performance by eliminating delays caused when multiple components compete for access to the processor bus Competing x86 systems use an outdated, single front-side bus (FSB) which must carry memory access, graphics, CPU to CPU communication and IO traffic! Enables better multi-tasking performance for today s more demanding PC users so they can run more applications and do more in less time. Designed for high performance on demanding multi-threaded applications. Get dramatic application performance improvements with greater system bandwidth and lower latency so users get a better PC experience. Provides incredible system agility and improved 3D graphics performance with full DirectX 10 capability for a more realistic, high resolution gaming experience and enough bandwidth for ultra-high resolution, 1080p video playback. Huge bandwidth means minimal bottlenecks and high performance for hard drive, USB, and other I/O and peripherals. 26 Solution Provider Processor Roadmap October 2008

27 AMD Phenom Processor Technologies FEATURE FUNCTION END USER BENEFIT AMD Balanced Smart Cache AMD Wide Floating Point Accelerator AMD Memory Optimizer Technology A combination of dedicated L1 and L2 caches and a new shared L3 cache which rapidly share information for superior cache performance. Smart Cache manages caches so that the processor cores don t have to, diminishing latency on L2 cache accesses while still enabling faster access to critical shared L3 cache data A full 128 Bit Floating-Point math processing pipeline Optimized memory bandwidth designed for better multi-core operation Supports a better multi-tasking and multithreaded experience and better overall processor performance because each core has its own L2 cache memory and ability to quickly share data among cores utilizing the L3 cache. Ultra fast floating-point performance can help improve the performance of applications like digital media players and immersive 3D games that depend heavily on complex calculations Helps improve performance of multi-threaded software. AMD Digital Media XPress 2.0 AMD Virtualization with Rapid Virtualization Indexing Clock Multiplier Control Provides support for SSE, SSE2, SSE3, SSE4a and MMX instructions Silicon feature-set enhancements designed to improve the performance, reliability, and security of existing and future virtualization environments by allowing virtualized applications with direct and rapid access to their allocated memory. Clock multiplier can be adjusted via bios settings and platform utilities Delivers sharper and more life-like 3-D graphics taking the PC user experience to new levels in games, video, DVDs, and more. Helps virtualization software to run more securely and efficiently enabling a better experience when dealing with virtual systems Enhanced performance tuning enables a wider breadth of control over platform and processor settings. 27 Solution Provider Processor Roadmap October 2008

28 AMD Phenom Processor Technologies FEATURE FUNCTION END USER BENEFIT AMD Cool n Quiet 2.0 Independent Dynamic Core Technology AMD Power Management Dual Dynamic Power Management AMD CoolCore Technology AMD Wideband Frequency Control Multi-Point Thermal Control Enhanced power management features which automatically and instantaneously adjusts performance states and features based on processor performance requirements Fully independent frequency per processor core reduces processor energy consumption by adjusting power usage by core utilization. Processor performance state control is optimized for reduced power consumption. Split power plane design which allows independent voltage planes for processor and memory controller for a wider range of energy usage and on demand performance Coarse & fine transistor control reduces processor energy consumption by turning off unused parts of the processor. Up to eight different performance states to maximize power efficiency. Simplified performance state transitions reduce latency and software overhead of performance states changes. Processor protection featuring multiple sensors across processor silicon designed to automatically reduce speed and heat when temperature exceeds pre-defined limits. Enhanced power optimization technology enables cooler and quieter platform designs by providing extremely efficient performance and energy usage. Helps users get more efficient performance by dynamically adjusting individual core frequencies as required by utilization needs Helps PC users get the performance they need while using demanding applications or multitasking and still get efficient savings when idle or doing more basic tasks Helps improve platform efficiency by providing on demand memory performance while still allowing for decreased system power consumption Helps users get more efficient performance by dynamically activating or turning off parts of the processor. Allows the processor to respond more precisely to user demands, maximizing performance and extending battery life while delivering a better PC user experience. Prevents processor from creating too much heat and enabling a cooler, quieter PC experience. 28 Solution Provider Processor Roadmap October 2008

29 Architecture Comparison AMD Direct Connect Architecture for the peak processor-to-system bandwidth Direct Connect Architecture Front Side Bus Architecture I/O Chipset Up to 4.0GHz bidirectional HyperTransport technology link I/O Chipset 800 or 1066 FSB bottleneck Processor accesses main memory directly on the dedicated memory bus 12.8 GB/s of peak BW (using DDR2-800) for Stars & Cities Cores Processor access to I/O with up to... Up to 16.0 GB/s peak BW for Stars Cores 8.0 GB/s peak BW for Cities Cores With separate busses for memory access and I/O access, the peak processor-to-system BW is the sum of the two bus bandwidths Up to 28.8 GB/s processor-to system peak BW for Stars Cores 20.8 GB/s processor-to system peak BW for Cities Cores Processor indirectly accesses main memory (through North Bridge chip) on the FSB 6.4 GB/s of peak BW (using DDR2-800) Processor I/O access using the same FSB 8.5GB/s of peak BW (using 1066 FSB) 6.4GB/s of peak BW (using 800 FSB) With the FSB used to access both memory and I/O, the peak processor-tosystem BW is the larger of the two values 8.5GB/s of P-S peak BW (using 1066 FSB) 6.4GB/s of P-S peak BW (using 800 FSB) 29 Solution Provider Processor Roadmap October 2008

30 Platform Details 30 Solution Provider Processor Roadmap October 2008

31 Desktop Commercial Platforms Platform Segment CPU Perseus AMD Phenom CPU s Quad ( Agena ), Triple ( Toliman ), Dual ( Brisbane ) cores Dedicated L2 and Shared L3 cache HyperTransport DDR2 memory support AM2+ Package 1 (Backwards Compatible w/ AM2) Enhanced Virus Protection AMD-V Digital Media Express Cool n Quiet 2.0 Chipset GPU AMD 780V; SB700 DirectX 10 ATI Avivo HD DVI/HDMI/DisplayPort Native multi monitor/extended Desktop ATI PowerPlay IGP power management PCIe Gen 2 SATA 3Gb/s ATI Radeon HD 3000 series DirectX 10.1, ATI Avivo HD, UVD Platform Features & Initiatives Business Class CPUs Systems (Industry-leading up to 24-month stability) DASH based manageability TPM based security Energy Efficient Platform AM2+ socket infrastructure (DDR2) 1 Brisbane supports Hypertransport 2.0 and AMpackage 31 Solution Provider Processor Roadmap October 2008

32 Desktop Mainstream Platforms Platform Segment CPU Cartwheel AMD Phenom CPU s Quad ( Agena ), Triple ( Toliman ), Dual ( Brisbane ) cores Dedicated L2 and Shared L3 cache HyperTransport DDR2 memory support AM2+ Package 1 (Backwards Compatible w/ AM2) Enhanced Virus Protection AMD-V Digital Media Express Cool n Quiet Chipset GPU AMD 780G; SB700 DirectX 10 ATI Avivo HD, UVD DVI/HDMI/DisplayPort Native multi monitor/extended Desktop ATI PowerPlay IGP power management PCIe Gen 2 SATA 3Gb/s ATI Radeon HD 3000 series DirectX 10.1, ATI Avivo HD, UVD, Hybrid Crossfire Platform Features & Initiatives AMD Phenom multi-core processors DTX Open-standard Small Form Factor Energy Efficient Platform AM2+ socket infrastructure (DDR2) 1 Brisbane supports Hypertransport 2.0 and AM2 package 32 Solution Provider Processor Roadmap October 2008

33 Desktop Performance Platforms Platform Segment CPU Chipset Spider AMD Phenom CPU s Quad ( Agena ) cores Dedicated L2 and Shared L3 cache HyperTransport 3.0 Up to DDR memory support AM2+ Package (Backwards Compatible w/ AM2) Enhanced Virus Protection AMD-V Digital Media Express Cool n Quiet 2.0 AMD 790FX/GX; SB600/SB750 HyperTransport 3.0 PCIe Gen 2 2 & 4-way 2 CrossFire SATA 3 Gb/s RAID 0, 1, 5 1, 10 Advanced Clock Calibration GPU ATI Radeon HD 3000 series 2 & 4-way CrossFire, DirectX 10.1, GDDR3/GDDR4, Avivo HD, UVD Platform Features & Initiatives AMD Phenom multi-core processors AMD GAME! 2-4 way Crossfire support AM2+ socket infrastructure (DDR2) 1 not available on SB600 2 available on AMD 790FX and RD890 only 33 Solution Provider Processor Roadmap October 2008

34 Trademark Attribution AMD, the AMD Arrow logo and combinations thereof are trademarks of Advanced Micro Devices, Inc. in the United States and/or other jurisdictions. Other names used in this presentation are for identification purposes only and may be trademarks of their respective owners Advanced Micro Devices, Inc. All rights reserved. 34 Solution Provider Processor Roadmap October 2008

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