Intel is the world's largest manufacturer of semiconductors and has established a heritage of innovation that continues to expand the reach and promise of computing while advancing the ways people work and live worldwide. Intel's entire processor portfolio provides design engineers with direct access to the industry's most advanced processors. Intel's industry-leading technologies are created using the most advanced foundry process technologies in the industry, producing unprecedented levels of performance and efficiency.
The Intel® Internet of Things Solutions Alliance is one of the world's most recognized and trusted technology ecosystems. Members of the Intel IoT include leading solution and service providers from a broad range of industries, who provide the hardware, software, firmware, tools, and systems integration that developers need to take a leading role in the rise of intelligent systems.
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Intel Processor families include the most powerful and flexible Central Processing Units (CPUs) available today. Utilizing industry leading 22nm device fabrication techniques, Intel continues to pack greater processing power into smaller spaces than ever before, providing desktop, mobile, and embedded products with maximum performance per watt across a wide range of applications.
Intel 4th generation Core Processor family delivers Desktop, Mobile, and Embedded products with maximum performance per watt. Intel Haswell Architecture is based on a 22 nm process and utilizes FinFET technology for reduced leakage and lowered power consumption.
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Intel's 3rd Generation Microarchitecture brings with it an enormous jump forward in features and performance. The first microprocessor to be developed using Intel's revolutionary 22nm process technology, the 3rd generation Intel Core processor offers a harmony of features.
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Intel's 2nd Generation Intel® Core™ processor family is the next generation of 64-bit, multi-core processors built on 32-nm process technology. The processor is designed for a two-chip platform. The two-chip platform consists of a processor and a Platform Controller Hub (PCH) and enables higher performance, lower cost, easier validation, and improved x-y footprint.
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Intel's Silvermont 22nm Microarchitecture is designed in 22nm technology based on the next generation Intel Atom™ microarchitecture.
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Intel's Saltwell Microarchitecture is a part of the Atom Family of processors based on 32nm process technology with second generation high-k + metal gate transistors.
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Intel's Bonnell Microarchitecture is a part of the Atom Family of processors based on 45nm process technology.
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Intel's Quark SoC X1000 Processors are the first product in a new roadmap of innovative, small core products targeted at rapidly growing areas ranging from industrial IoT to wearables.
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Intel's 3rd Generation Xeon Processors are 64-bit, multi-core processors built on 22nm process technology.
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Intel's 2nd Generation Intel Core processor family is the next generation of 64-bit, multi-core processors built on 32nm process technology.
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Intel's NUC family of kits and boards puts the world in the palm of your hand. Powered by either Intel Celeron® processors or 3rd generation Intel Core™ processors on a four-by-four-inch motherboard and enclosed in a tiny case, this next-generation computer kit is big on performance yet surprisingly small in size.
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Intel's NIC Ethernet Network Adapters Series includes Gigabit and 10 Gigabit server adapters that allow for an easy upgrade of server systems to connections designed to meet the throughput and latency requirements of bandwidth-hungry applications.
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Intel's Ethernet Network Controllers are single, compact controllers with an integrated Gigabit Ethernet Media Access Control (MAC) and physical layer (PHY) or a physical layer (PHY) designed to connect to appropriate Intel chipsets with an integrated Media Access Controller (MAC).
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Intel Mobile and Desktop Express Chipsets deliver a Platform Controller Hub (PCH) with extensive I/O support. Intel's PCH connects Intel Core processors with a motherboard via the Flexible Display Interface (FDI) and Direct Media Interface (DMI).
Intel's DK50 Series Gateway Solutions for the Internet of Things (IoT) is a platform that enables companies to seamlessly interconnect industrial infrastructure devices and secure data flow between devices and the cloud. This series is designed using the Intel Quark SoC X1000 and is geared towards developers and enthusiasts. Gateway Solutions for IoT enables customers to securely aggregate, share, and filter data for analysis. It helps ensure federated data generated by devices and systems can travel securely and safely from the edge to the cloud and back—without replacing existing infrastructure.
Intel's Next Unit of Computing: NUC & DE3815TYBE Board & DE3815TYKHE Kit are built with an Intel® Atom™ (Bay Trail) processor for intelligent systems and is a pint-sized powerhouse for value-conscious businesses and organizations. This low-cost, low-power solution introduces many firsts to the Intel NUC uCFF form-factor: fanless thermal solution for the ultimate silence and reliability, on-board flash storage for small-footprint software solutions, internal flat panel display connectivity for built-in screens, VGA port for monitor compatibility in legacy installations, serial ports for peripherals requiring the robustness of hardware handshaking, watchdog timer for resilient system availability, and also I2C and PWM signals for interfacing with sensors and other embedded devices enabling the Internet of Things. And with its three year supply availability, the Intel NUC DE3815TYKHE and DE3815TYBE will be around to support long development and production ramp cycles.
Intel's Industrial Solutions System Consolidation Series greatly simplifies the ability to use virtualization technology to combine what were previously discrete subsystems into a single system by pre-integrating key software and hardware components, thus reducing development time for original equipment manufacturers (OEMs). Systems based on this integrated solution should enable product manufacturers to reduce cost and complexity because multiple factory functions are consolidated, resulting in decreased operating expense, factory footprint, energy consumption, and integration and support effort. The solution contains an industrial computer with a power-efficient, quadcore Intel Core™ i7 processor with Intel Virtualization Technology and supports common I/O for industrial applications such as RS-232/422/485, USB 2.0 and 3.0, Ethernet, VGA+DVI dual-display output by DVI-I connector, and mini-PCI Express sockets. The platform is fanless and ruggedized for use in industrial environments and includes a minimum 120GB solid-state drive and 16GB DDR3 memory. The solution integrates a production-ready virtualization software stack with three preconfigured virtual machines (VMs) running a combination of real-time and embedded operating systems. Developers can utilize the two instances of Wind River VxWorks RTOS to run applications with real-time performance requirements while simultaneously running embedded and/or general-purpose applications on Wind River Linux 5.0. To help developers port their applications to the multi-OS environment, the development kit provides the Wind River Workbench development environment.
Intel's DN2820FYKH Celeron N2820 Next Unit of Computing (NUC) with an Intel Celeron processor provides computing and entertainment capabilities beyond the basics, all from the iconic small form factor. Designed with value in mind, the Intel NUC DN2820FYKH strikes the right balance of affordability, connectivity and performance to drive your home office or home theater experience. Internal support for a 2.5 inch HDD enables storage options whether the need be low-cost or cavernous drives. Built-in WiFi and Bluetooth connectivity provides freedom to enjoy your experience anywhere you want, not to mention uncluttering your den or living room. And with an infrared sensor for remote controls, HDMI video to power the big screen, a combined headphone/microphone jack, and USB 3.0 for fast transfer of media files, the Intel NUC DN2820FYKH gives you the value you want with the performance you demand.
Intel's Solid-State Drives (SSDs) are a high-performance hard drive alternative that can boost your PC to the next level in storage performance and reliability. Improved performance, increased reliability, and lower operating costs are just a few of the benefits of using Intel SSDs. The SSD 530 SSD Series utilizes its new small form factor, higher performance, and low idle power to offer the next generation of consumer computing. These SSDs continue to evolve as these are aimed at a wide array of consumer platforms including Ultrabook™, traditional desktops and laptops, as well as the latest tablets and small form factor mobile systems. Intel's DC S3500 Solid-State Drive (SSD) Series offers the next generation of data center SSDs combining fast consistent read performance with strong data protection, and leading edge 20nm flash technology. These SSDs deliver data at a rapid pace, with consistently low latencies and tight IOPS distribution.
Intel's Mobile Express Chipsets deliver a platform controller hub with extensive I/O support. Intel's platform controller hub (PCH) connects Intel processors with a motherboard via the Flexible Display Interface (FDI) and Direct Media Interface (DMI). The PCH Display Interface integrates the latest display technologies such as HDMI, DisplayPort, Embedded DisplayPort, Intel SDVO, and DVI, along with legacy display technologies. The PCH interfaces with the PCI Express Root Ports and supports the PCI Express Rev. 2.0, and supports a wide number and variety of port widths. Serial ATA is also supported, along with Advanced Host Controller Interface (AHCI), Intel Rapid Storage Technology, and Intel Smart Response Technology. Universal Serial Bus (USB) Controllers are available up to USB 3.0, and a Gigabit Ethernet Controller is available as well. Enhanced power management is included and permits software independent entrance into low-power states, and includes Intel Active Management Technology (AMT). Intel Virtualization Technology for Directed I/O supports the virtualization of platforms based on Intel Processors, and enables multiple operating systems and applications to run in independent partitions. Finally, an Intel High Definition Audio Controller provides and array of inputs and outputs.
Intel's Silvermont 22nm Microarchitecture is designed in 22nm technology based on the next generation Intel Atom™ microarchitecture. Silvermont is a new low power SoC processor microarchitecture. The technology is aimed squarely at low-power requirements in market segments from smartphones to the data center. Silvermont will be the foundation for a range of innovative products, and will be manufactured using the company's leading-edge, 22nm Tri-Gate SoC manufacturing process, which brings significant performance increases and improved energy efficiency. The Silvermont microarchitecture delivers industry-leading performance-per-watt efficiency. The highly balanced design brings increased support for a wider dynamic range and seamlessly scales up and down in performance and power efficiency. On a variety of standard metrics, Silvermont also enables ~3x peak performance or the same performance at ~5x lower power over the current-generation Intel Atom processor core.
Intel I/O Controllers & Hubs include the Thunderbolt controllers and the ICH I/O Controller Hubs. The Thunderbolt is a transformational high-speed, dual protocol I/O that provides unmatched performance over current I/O technologies with 10Gbps bi-directional transfer speeds. It provides flexibility and simplicity by supporting both data (PCIe) and video (DisplayPort) on a single cable connection that can daisy-chain up to six devices. Thunderbolt technology enables flexible and innovative system designs and is ideal for thin profile systems and devices such as Ultrabooks. The ICH I/O Controller Hubs provide extensive I/O support with functions and capabilities that include PCI Express, PCI Local Bus, ACPI power management, enhanced DMA controller, interrupt controller, and timer functions. These controller hubs can include integrated Serial ATA host controllers with independent DMA operation, integrated IDE controller, USB host interface, integrated LAN controller, integrated 10/100/1000 Gigabit Ethernet MAC, system management bus (SMBus), firmware hub (FWH) and serial peripheral interface (SPI) interfaces.
Intel's 4th generation Core Processor family delivers Desktop, Mobile, and Embedded products with maximum performance per watt. Intel Haswell Architecture is based on a 22nm process and utilizes FinFET technology for reduced leakage and lowered power consumption. Idle state power consumption has been lowered, creating a 20x improvement from the previous generation, with a 3 second wakeup time possible using Intel Rapid Start. Intel Wireless Display is available to stream content from portable products to a compatible HDTV. Processors are available as low as 35W Thermal Design Power for embedded applications. Desktop performance processors are available with a clock speed up to 3.9GHz when utilizing Intel Turbo mode. Sockets supported are LGA 2001 for desktop and rPGA947 & BGA1364 for mobile. Haswell New Instructions include Advanced Vector Extensions 2, gather, BMI1, BMI2, and FMA3 support.
Intel's 3rd generation core processor family consists of 64-bit, multi-core processors built on 22nm process technology. The processor is designed for a two-chip platform. The two-chip platform consists of a processor and a Platform Controller Hub (PCH) and enables higher performance, lower cost, easier validation, and improved x-y footprint. The processor includes Integrated Display Engine, Processor Graphics, and an Integrated Memory Controller. The processor is designed for desktop or mobile platforms.
Intel's NUC family of kits and boards puts the world in the palm of your hand. Powered by either Intel Celeron® processors or 3rd and 4th generation Intel Core™ processors on a four-by-four-inch motherboard and enclosed in a tiny case, these next-generation computer kits are big on performance yet surprisingly small in size. From digital signage to customer service kiosks, from home theater systems to digital jukeboxes, Intel NUC is an intelligent device for small spaces or anywhere else you can imagine.
Intel's Ethernet Network Connections provide cost-effective, efficient solutions for the data center, embedded, and client platforms. Gigabit and 10 Gigabit server adapters allow for an easy upgrade of server systems to connections designed to meet the throughput and latency requirements of bandwidth-hungry applications. Gigabit desktop adapters maximize system performance for PCs with PCI Express slots. Intel's Ethernet Converged Network Adapters deliver 10 Gigabit Ethernet on the latest server platforms. PRO/1000 Gigabit Server Adapters bring cost-effective Gigabit performance to desktop or network environments.
Intel's 2nd Generation Intel® Core™ processor family are 64-bit, multi-core processors built on 32nm process technology. The processor is designed for a two-chip platform. The two-chip platform consists of a processor and a Platform Controller Hub (PCH) and enables higher performance, lower cost, easier validation, and improved x-y footprint. The processor includes Integrated Display Engine, Processor Graphics, and an Integrated Memory Controller. The processor is designed for desktop or mobile platforms.
Intel's Ethernet Network Controllers are single, compact controllers with an integrated Gigabit Ethernet Media Access Control (MAC) and physical layer (PHY) or a physical layer (PHY) designed to connect to appropriate Intel chipsets with an integrated Media Access Controller (MAC). These devices are all designed for desktop, workstation and mobile PC Network designs with critical space constraints. Each devices allows for a Gigabit Ethernet implementation in a very small area that is footprint compatible with current generation 10/100Mbps Fast Ethernet designs.
Intel's broad product portfolio supports a wide range of markets. Select an Intel Solution below to learn more.