Pranav Mehta discusses the future of embedded devices for his Intel Cup keynote speech, 2010.
Discusses at-home cloud computing and virtualized personal infrastructure, including architecture.
Shadow puppet performance demos the use of Intel® Atom™ processors in puppet control; part 1.
Backstage view of a shadow puppet performance reveals the Intel® Atom™ processor-based robots; part 2.
Sanitary bottle inspection demos the use of an Intel® processor-based online detector; part 1.
Sanitary bottle inspection demos use of an Intel® processor-based online detector; part 2.
Shows haptic feedback glove, Intel® Atom™ processor-based augmented reality technology; part 1.
Demos haptic feedback glove, an Intel® Atom™ processor-based augmented reality technology; part 2.
Demonstrates 3D scanner technology powered by an Intel® processor.
Demonstrates the Intel® Atom™ processor E6x5C series-based platform performance and flexibility.
Provides an overview of heterogeneous architecture and power-performance.
Discusses Intel® Atom™ LEAP* architecture and embedded systems instructions for energy efficiency.
Discusses some of the major problems with firmware development and validation.
Describes current research activities including embedded system design, verification, and testing.
Jan M. Rabaey discusses distributed computing trends in embedded system design.
App Note: Guidelines for conserving board space on x16 DDR2 memory devices. (v.002, Sept. 2008)
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Design Guide: System design recommendations, guidelines, issues, and schematics. (v.005, May 2010)
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Spec Update: Errata, specification changes and clarifications, and document-only changes. (v. 011, May...
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Application Note: Guidelines for selecting Ethernet PHY devices. (v.004, Sept. 2009)
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인터넷 기기용 칩셋은 인텔® 아톰™ 프로세서가 탑재된 장치의 전력 소모량을 줄이고, 혁신 기능을 제공할 뿐 아니라 휴대성을 극대화합니다.
통합 미디어 액세스 컨트롤러를 포함한 해당 인텔® 칩셋과 연결되는 송수신기입니다.
인텔® 아톰™ 프로세서는 태블릿, 스마트폰, 넷북, 하이브리드 및 일반 소비자 가전과 같은 다양한 장치를 구동합니다.
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플랫폼의 통합 미디어 액세스 컨트롤러에 연결되는 단일 포트 송수신기입니다.

