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Titlebook: Integrated Circuit and System Design. Power and Timing Modeling, Optimization and Simulation; 17th International W Nadine Azémard,Lars Sven

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书目名称Integrated Circuit and System Design. Power and Timing Modeling, Optimization and Simulation
副标题17th International W
编辑Nadine Azémard,Lars Svensson
视频video
丛书名称Lecture Notes in Computer Science
图书封面Titlebook: Integrated Circuit and System Design. Power and Timing Modeling, Optimization and Simulation; 17th International W Nadine Azémard,Lars Sven
描述th Welcome to the proceedings of PATMOS 2007, the 17 in a series of international workshops. PATMOS 2007 was organized by Chalmers University of Technology with IEEE Sweden Chapter of the Solid-State Circuit Society technical - sponsorship and IEEE CEDA sponsorship. Over the years, PATMOS has evolved into an important European event, where - searchers from both industry and academia discuss and investigate the emerging ch- lenges in future and contemporary applications, design methodologies, and tools - quired for the development of the upcoming generations of integrated circuits and systems. The technical program of PATMOS 2007 consisted of state-of-the-art te- nical contributions, three invited talks and an industrial session on design challenges in real-life projects. The technical program focused on timing, performance and power consumption, as well as architectural aspects with particular emphasis on m- eling, design, characterization, analysis and optimization in the nanometer era. The Technical Program Committee, with the assistance of additional expert - viewers, selected the 55 papers presented at PATMOS. The papers were organized into 9 technical sessions and 3 poster ses
出版日期Conference proceedings 2007
关键词CMOS; DOM; Transistor; algorithms; integrated circuits; leakage optimization; logic; logic synthesis; low po
版次1
doihttps://doi.org/10.1007/978-3-540-74442-9
isbn_softcover978-3-540-74441-2
isbn_ebook978-3-540-74442-9Series ISSN 0302-9743 Series E-ISSN 1611-3349
issn_series 0302-9743
copyrightSpringer-Verlag Berlin Heidelberg 2007
The information of publication is updating

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Design of a Linear Power Amplifier with ±1.5V Power Supply Using ALADINntegrated into the ALADIN package, which allows designers to create analog circuit layouts automatically. The optimization is speeded up and the reliability of the design is improved. The benefit of ALADIN is demonstrated with the design of a linear power amplifier with ±1.5V power supply.
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A Simple Statistical Timing Analysis Flow and Its Application to Timing Margin Evaluationiming analysis method considering the lot to lot process shifts occurring during production. This method is first validated for 90nm and 65nm processes. Finally, this statistical timing analysis is applied on basic ring oscillators to evaluate the timing margins introduced at the design level by the traditional corner based approach.
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Design-In Reliability for 90-65nm CMOS Nodes Submitted to Hot-Carriers and NBTI Degradation due to Hot Carrier and Negative Bias Temperature Instability. Simulation capability has been built on top of an existing analog simulator ELDO. Circuits are analyzed using this methodology illustrating the capabilities of the methodology as well highlighting the impacts of the two degradations modes.
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978-3-540-74441-2Springer-Verlag Berlin Heidelberg 2007
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Lecture Notes in Computer Sciencehttp://image.papertrans.cn/i/image/468458.jpg
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System-Level Application-Specific NoC Design for Network and Multimedia Applicationsimplementing complex applications on Network-on-Chips (NoCs), a design methodology is needed for performing exploration at NoC system-level, in order to select the optimal application-specific NoC architecture. The design methodology we present in this paper is based on the exploration of different
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Fast and Accurate Embedded Systems Energy Characterization Using Non-intrusive Measurementse simulation tools to give energy consumption feedback for embedded systems software design. Estimations takes into account the whole system consumption including peripherals. Experiments on a complex ARM9 platform show that our model estimates are in error by less than 10% from real system consumpt
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