Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
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Showing 1 to 20 of 90 for “"Moore's Law"”.
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Identifying data center supply and demand
… of issues surrounding data center demand, Moore's Law and cloud computing, and then transitions to presentation of research on data center demand and supply.
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Energy-Efficient and Error-Tolerant Digital Design
… computational models may be key to extending Moore's law into the deep nanoscale silicon and post-silicon era.
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Computational study of advanced semiconducting materials for next-generation electronic devices
… below 10nm, leading to the forthcoming end of Moore's law. One of the proposed ways to advance beyond Moore's law is to use alternative, advanced semiconducting materials such as indium gallium arsenide (InGaAs) and gallium oxide (Ga2O3), mainly for their superior electronic properties compared …
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Scaling trapped-ion quantum computers with CMOS-integrated state readout
… a powerful new computing paradigm as traditional Moore's law scaling slows due to skyrocketing costs of shrinking feature sizes, interconnects becoming the dominant source of energy consumption and delay as transistor critical dimensions fall below 10 nm, and power density limiting the activity …
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Large-scale high-density terahertz radiator and receiver Arrays on silicon chips
… their application space. Currently, thanks to Moore's law, the f[subscript max] of many transistors in commercially-available processes have reached the terahertz region, making generating terahertz waves from DC on low-cost chips possible, but due to limited gain, generating high-power …
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Hybrid spintronics and straintronics: An ultra-low-energy computing paradigm
… electronic devices in accordance with Moore's law is the excessive energy dissipation that takes place in the device during switching of bits. Unlike charge-based devices, spin-based devices are switched by flipping spins without moving charge in space. Although some energy is still …
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Miniature Thermoelectric Coolers for On-Chip Hot Spots
Following Moore's Law, semiconductor transistor density has doubled roughly every 18 months to alleviate increasing IC performance demands. Growing microprocessor complexity and performance, coupled with the functional integration of logic and memory components in chip architecture, have led to …
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Assessing Photoelectric Fusion Technologies: Market Potential and Strategic Insights from NTT's IOWN Case
… energy efficiency, suggesting the limits of Moore's Law and Dennard scaling. The thesis explores the adoption of silicon photonics as a significant innovation, shifting from electrical to optical signals, particularly within Nippon Telegraph and Telephone Public Corporation (NTT)'s Innovative …
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Environmentally benign manufacturing of three dimensional integrated circuits
… in performance and cost as predicted by Moore's law. It has become important now more than ever to include an environmental impact evaluation of future technologies, before they are introduced into manufacturing, in order to identify potentially environmentally harmful materials or …
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Mutex Locking versus Hardware Transactional Memory: An Experimental Evaluation
… a degree in cache size improvements. But since Moore's law still largely continues "lunch", i.e. program performance, can still be bought at the price of rewriting code for multiple cores, which is enabled by the trend Moore's law describes. Multicore architectures cannot aid performance for …
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3D Electro-thermal Monte Carlo Study of Transport in confined Silicon Devices
… physically reduced in size, allowing the famous Moore's law to hold true. As these transistors approach the atomic scale, however, further reduction becomes less probable and practical. As new technologies overcome these limitations, they face new, unexpected problems, including the ability to …
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Reliable spin-based computing systems
… scaling beyond the electronics based on Moore's law requires the adoption of alternate state variables including spin. Spin based devices offer several advantages such as low device count and non-volatility, and have the potential to beat the energy-delay product of CMOS. However, thermal …
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Efficient Deep Learning with Sparsity: Algorithms, Systems, and Applications
… input and model sizes. On the supply side, as Moore's Law slows down, hardware no longer delivers increasing performance within the same power budget. In this dissertation, we present our solutions across the algorithm, system, and application stacks to address the demand-supply gap through the …
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Through-substrate interconnects for 3-D integration and RF systems
… needs. While devices have scaled according to Moore's law, interconnects have lagged. As metal line widths shrink and line lengths increase, parasitic resistance, capacitance, and inductance degrade circuit performance by increasing delays, loading, and power consumption. Separately, silicon …
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ELECTRONIC DESIGN AUTOMATION TOOLS AND DESIGN STUDY FOR HETEROGENEOUS MONOLITHIC 3D INTEGRATED CIRCUITS
Technology scaling predicted by Moore's law is gradually slowing down and new alternatives to silicon-based transistors are being explored. Some of the most promising solutions make use of materials such as carbon nanotubes or ferroelectric layers in the gate stack. While such materials bring …
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Low-Impact Profiling of Streaming, Heterogeneous Applications
… in fabrication process technology: i.e., Moore's Law) into architectures that allow computer scientists to accelerate application performance. As feature-size continues to shrink, architects of commodity processors are designing increasingly more cores on a chip. While additional cores can …
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The Spillable Environment: Expanding a Handheld Device's Screen Real Estate and Interactive Capabilities
… interface and environment. As time progresses, Moore's law predicts that the computational power of handheld devices will increase dramatically in the future, promoting the interaction with a larger screen. Users can then use their peripheral vision to recognize spatial relationships between …
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FCUDA: Efficient high-level automation CUDA-to-FPGA compilation
… in the past decade. The bottleneck of Moore's law and the increasing power consumption in the traditional computing industry have stimulated the popularity of parallel computing. GPUs and FPGAs became popular and played very important roles in heterogeneous systems for accelerating …
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Software orchestration of instruction level parallelism on tiled processor architectures
… budget will continue to blossom according to Moore's law, latency from global wires will severely limit the ability to scale centralized structures at high frequencies. A tiled processor architecture (TPA) eliminates long wires from its design by distributing its resources over a pipelined …
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An evaluation of indium antimonide quantum well transistor technology
… it may complement silicon transistor to extend Moore's law in the next decade. The prospect of InSb transistor is also compared with other nanotechnology transistors, such as carbon nanotube and silicon nanowire. Several potential markets are figured out, namely, microprocessor, low noise …
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