Intel® Atom™ Processor N270


The Intel® Atom™ processor N270Ω, implemented in 45nm technology, is power-optimized and delivers robust performance-per-watt for cost-effective embedded solutions. Featuring extended lifecycle support, this processor offers an excellent solution for embedded market segments such as digital signage, interactive clients (kiosks, point-of-sale terminals), thin clients, digital security, residential gateways, print imaging, and commercial and industrial control. The processor remains software compatible with previous 32-bit Intel® architecture and complementary silicon.
This single-core processor is validated with the mobile Intel® 945GSE Express Chipset, consisting of the Intel® 82945GSE Graphics Memory Controller Hub and Intel® I/O Controller Hub 7-M. The chipset features power-efficient graphics with an integrated 32-bit 3D graphics engine based on Intel® Graphics Media Accelerator 950 architecture with SDVO, LVDS, CRT, and TV-Out display ports. It provides rich I/O capabilities and flexibility via high-bandwidth interfaces such as PCI Express,* PCI, Serial ATA, and Hi-Speed USB 2.0 connectivity.

Intel® Atom™ Processor Z5xx Series


The Intel® Atom™ processor Z5xx series delivers the benefits of Intel® architecture for small form factor, thermally constrained and fanless embedded applications. Implemented in 45nm technology, these power-optimized processors provide robust performance-per-watt in an ultra-small 13x14 mm package.
Featuring embedded lifecycle support, the Intel Atom processors are ideal for many embedded market segments such as in-vehicle infotainment, medical, interactive client (kiosks, point-of-sale terminals), gaming and industrial control. It remains software compatible with previous 32-bit Intel® architecture and complementary silicon.
These single-core processors are validated with the Intel® System Controller Hub (SCH) US15W, which integrates a graphics memory controller hub and an I/O controller hub into one small 22x22 mm package. This low-power platform has a combined thermal design power under five watts.

Intel® EP80579 Integrated Processor Product Line


Based on Intel® architecture, the Intel® EP80579 Integrated Processor product line is the first in a series of breakthrough system on-a-chip (SOC) processors, delivering excellent performance-per-watt for small form factor designs.
This fully compatible product line (Intel EP80579 Integrated Processor and Intel® EP80579 Integrated Processor with Intel® QuickAssist Technology) provides an outstanding combination of performance, power efficiency, footprint savings and cost-effectiveness compared to discrete, multi-chip solutions.
These integrated processors are ideal for small-to-medium business (SMB) and enterprise security and communications appliances (including VPN/firewall and unified threat management), transaction terminals, interactive clients, print and imaging applications, wireless and WiMax access applications, SMB and home network attached storage, converged IP PBX solutions, converged access platforms, IP media servers, VoIP gateways and industrial automation applications.

Intel® Xeon® processor 7400 series



Extending today's lead in virtualization performance with built-in hardware assisted features and breakthrough gains in performance and energy efficiency²
Built for data-demanding enterprise applications with up to 6 cores and a large shared 16MB L3 cache per processor, enabling more transactions per server
More headroom, improved reliability, and the highest scalability available for large scale server consolidation and business-critical virtualization

Intel® Core™ Solo Processors


For mobile platforms the Intel® Core™ Solo processor represents the next generation in processor innovation.

Intel Core i7 CPU


Intel Core i7 CPUThe code name for the Intel Core i7 is Nehalem. The primary goal of the Nehalem technology is scalability. Intel engineers have taken great pains to design the Intel Core i7 processors for scalability and ensure that the processors dynamically manage many of the core functions, such as cache, threads, and interfaces. In other words, you can expect to see different versions of the Core i7 processor for different types of computers. For example, there will be one version for laptops, a version for servers, another for personal desktops, and so on. This is done to enable various price points, performance, etc. for the needs of different users and requirements, and facilitate the utilization of processing power most efficiently.The Nehalem micro architecture includes many prominent features that will enhance performance. The entire architecture dynamically manages cores, threads, interfaces, and power. The new architecture also allows running two threads simultaneously per core. That means a quad-core processor is capable of running up to eight threads simultaneously. New extensions are applied to Intel Streaming SMID that focus on improving string, XML, and text processing. The architecture also boasts a superior shared L3 cache. The high-end design delivers up to two or three times more peak bandwidth, and up to four times realized bandwidth when compared with Core 2 or Intel Xeon processors.