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Higher-Level Hardware Synthesis
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ISBN: 1280307161 9786610307166 3540246576 3540213066 Year: 2004 Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer,

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Abstract

In the mid 1960s, when a single chip contained an average of 50 transistors, Gordon Moore observed that integrated circuits were doubling in complexity every year. In an in?uential article published by Electronics Magazine in 1965, Moore predicted that this trend would continue for the next 10 years. Despite being criticized for its “unrealistic optimism,” Moore’s prediction has remained valid for far longer than even he imagined: today, chips built using state-- the-art techniques typically contain several million transistors. The advances in fabrication technology that have supported Moore’s law for four decades have fuelled the computer revolution. However,this exponential increase in transistor density poses new design challenges to engineers and computer scientists alike. New techniques for managing complexity must be developed if circuits are to take full advantage of the vast numbers of transistors available. In this monograph we investigate both (i) the design of high-level languages for hardware description, and (ii) techniques involved in translating these hi- level languages to silicon. We propose SAFL, a ?rst-order functional language designedspeci?callyforbehavioralhardwaredescription,anddescribetheimp- mentation of its associated silicon compiler. We show that the high-level pr- erties of SAFL allow one to exploit program analyses and optimizations that are not employed in existing synthesis systems. Furthermore, since SAFL fully abstracts the low-leveldetails of the implementation technology, we show how it can be compiled to a range of di?erent design styles including fully synchronous design and globally asynchronous locally synchronous (GALS) circuits.

Keywords

Computer hardware description languages --- Silicon compilers --- Electrical Engineering --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Computer hardware description languages. --- Silicon compilers. --- Compilation, Silicon --- Compilers, Silicon --- Silicon compilation --- Hardware description languages, Computer --- Languages, Computer hardware description --- Engineering. --- Computer hardware. --- Microprocessors. --- Software engineering. --- Programming languages (Electronic computers). --- Computer logic. --- Electronics. --- Microelectronics. --- Electronics and Microelectronics, Instrumentation. --- Computer Hardware. --- Processor Architectures. --- Software Engineering. --- Programming Languages, Compilers, Interpreters. --- Logics and Meanings of Programs. --- Electronic digital computers --- Compilers (Computer programs) --- Design and construction --- Data processing --- Computer science. --- Logic design. --- Design, Logic --- Design of logic systems --- Digital electronics --- Electronic circuit design --- Logic circuits --- Machine theory --- Switching theory --- Computer software engineering --- Engineering --- Informatics --- Science --- Electrical engineering --- Physical sciences --- Computer science logic --- Logic, Symbolic and mathematical --- Computer languages --- Computer program languages --- Computer programming languages --- Machine language --- Electronic data processing --- Languages, Artificial --- Minicomputers --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment


Book
The engraved record of the Jacobite movement
Author:
Year: 1996 Publisher: Aldershot, England Brookfield, Vt. Scolar Press Ashgate Pub. Co.

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Book
Portrait prints from the Hope Collection
Authors: ---
ISBN: 1854441078 Year: 1997 Publisher: Oxford Ashmolean Museum

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Book
Genomics and environmental regulation : science, ethics, and law
Authors: --- ---
ISBN: 0801890225 9780801890222 Year: 2008 Publisher: Baltimore : Johns Hopkins University Press,

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To reduce the deleterious effects of environmental contamination, governments across the world have enacted regulations broadly conceived for entire populations. Information arising out of the Human Genome Project and other cutting-edge genetic research is shifting the policymaking process. This fascinating volume draws on experts from academia, government, industry, and nongovernmental organizations to examine the science of genomic research as applied to environmental policy. The first section explores environmental policy applications, including subpopulation genetic profiling, industrial regulations, and standardizing governmental evaluation of genomic data. The second section assesses from multiple angles the legal framework involved in applying genomics to environmental regulation. In the third section, the contributors review closely the implications of genomic research for occupational health, from disease prevention and genetic susceptibility to toxicants, to workers' rights and potential employment discrimination. A fourth section explores the bioethical and philosophical complications of bringing genetic data and research into nonclinical regulatory frameworks.Genomics and Environmental Regulation points to ways in which information on toxicology and genetics can be used to craft more precise and efficient regulations.


Book
Canova: ideal heads
Authors: --- --- --- --- --- et al.
ISBN: 1854440837 Year: 1997 Publisher: Oxford Ashmolean Museum

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Canova, Antonio


Dissertation
Comparison of Heavy Ion and Pulsed Laser Single-Event Effect Test Data for Analogue and Digital Devices

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This thesis examines the comparison of heavy ion and pulse laser SEE testing in analogue (LM124 operational amplifier) and digital parts (23LCV512 SRAM). The testing was conducted for Radtest Ltd and the goal was to collect data for their pulsed laser testing system, SEREEL2. The heavy ion testing was done in Heavy Ion Facility at UCLouvain, Belgium. For the LM124, SET cross sections were calculated and presented as a function of LET. These results showed that the saturation started from around the LET of 30 MeV/(mg/cm) which was similar result to the literature. The pulse shapes from the laser testing were connected to specific transistors with the layout of the device and could be compared between heavy ion data. This comparison showed that the pulse shapes from the heavy ions were possible to be connected to specific transistors. The SET cross sections were calculated also for the most common pulse shape groups and they were presented with the different values of LET. For the 23LCV512, SEU cross sections – for both heavy ion and laser testing – were calculated and presented as a function of LET and laser pulse energy. Unlike with LM124, for the 23LCV512 the same test method did not transfer as well between heavy ion and laser testing. Thus the resulting SEUs were not triggered from the same area resulting in different formats of SEUs. As a solution for this, options like backside testing were discussed.

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Digital
Scottish Liturgical Traditions and Religious Politics : From Reformers to Jacobites, 1560-1764

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History

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