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Circuitos integrados
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Semiconductores
4
Procesamiento de datos
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Application specific integrated circuits
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Array processors
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Digital techniques
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Diseño de circuitos electrónicos
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Diseño y construcción
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Electrónica digital
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Integración a gran escala
2
Signal processing
2
CAD/CAM (Sistemas)
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Circuitos integrados en muy gran escala
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Circuitos integrados lineales
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Diseño
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Diseño de circuitos electronicos
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Informática
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Ingeniería biomédica
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Inteligencia artificial
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Semiconductores de metal-óxido complementarios
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Simulación por computadores
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Teoría de la codificación
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301“…A mathematical model is developed to illustrate the operating principle of the design. The VLSI architecture is designed for the logic core. …”
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302por Adesina, Naheem Olakunle“…In recent years, graphene has received so much attention because of its superlative properties and its potential to revolutionize electronics, especially in VLSI. This study analyzes the effect of single-event upset (SEU) in an SRAM cell, which employs a metal-oxide semiconductor type graphene nano-ribbon field effect transistor (MOS-GNRFET) and compares the results with another SRAM cell designed using a PTM 10 nm FinFET node. …”
Publicado 2023
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303“…Compared with the best fit heuristic algorithm, this approach reduces the processing time, and emerging evidence has indicated that this new approach is affordable to parallelism and analog very large scale integration (VLSI) implementation allowing the VM migration detection to be performed better.…”
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304“…This study aims to present an effective VLSI circuit for multi-channel spike sorting. The circuit supports the spike detection, feature extraction and classification operations. …”
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305“…The problem of finding delays in VLSI circuits is equivalent to a graph optimisation problem. …”
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306“…Along with deep scaling transistors and complex electronics information exchange networks, very-large-scale-integrated (VLSI) circuits require high performance and ultra-low power consumption. …”
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307“…. * Provides an introduction to VLSI testing and diagnosis, with a focus on delay testing and small-delay defects; * Presents the most effective techniques for screening small-delay defects, such as long path-based, slack-based, critical fault-based, and noise-aware methodologies; * Shows readers to use timing information for small-delay defect diagnosis, in order to increase the resolution of their current diagnosis flow.…”
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308
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309“…The proceedings covers latest progresses in the cutting-edge research on various research areas of Image, Language Processing, Computer Vision and Pattern Recognition, Machine Learning, Data Mining and Computational Life Sciences, Management of Data including Big Data and Analytics, Distributed and Mobile Systems including Grid and Cloud infrastructure, Information Security and Privacy, VLSI, Electronic Circuits, Power Systems, Antenna, Computational fluid dynamics & Heat transfer, Intelligent Manufacturing, Signal Processing, Intelligent Computing, Soft Computing, Bio-informatics, Bio Computing, Web Security, Privacy and E-Commerce, E-governance, Service Orient Architecture, Data Engineering, Open Systems, Optimization, Communications, Smart wireless and sensor Networks, Smart Antennae, Networking and Information security, Machine Learning, Mobile Computing and Applications, Industrial Automation and MES, Cloud Computing, Green IT, IT for Rural Engineering, Business Computing, Business Intelligence, ICT for Education for solving hard problems, and finally to create awareness about these domains to a wider audience of practitioners.…”
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310“…The areas covered under these sections are wireless communication and radio technologies, optical communication, communication hardware evolution, machine-to-machine communication networks, routing techniques, network analytics, network applications and services, satellite and space communications, technologies for e-communication, wireless Ad-Hoc and sensor networks, communications and information security, signal processing for communications, communication software, microwave informatics, robotics and automation, optimization techniques and algorithms, intelligent transport, mechatronics system, guidance and navigation, algorithms, linear/non-linear control, home automation, sensors, smart cities, control systems, high performance computing, cognition control, adaptive control, distributed control, prediction models, hybrid control system, control applications, power system, manufacturing, agriculture cyber physical system, network control system, genetic control based, wearable devices, nano devices, MEMS, bio-inspired computing, embedded and real-time software, VLSI and embedded systems, FPGA, digital system and logic design, image and video processing, machine vision, medical imaging, and reconfigurable computing systems.…”
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311BORA: a front end board, with local intelligence, for the RICH detector of the Compass collaborationpor Baum, G, Birsa, R, Bradamante, Franco, Bressan, A, Colavita, A A, Crespo, M, Costa, S, Dalla Torre, S, Fauland, P, Finger, M H, Fratnik, Fabio, Giorgi, M A, Gobbo, B, Grasso, A, Lamanna, M, Martin, A, Menon, G I, Panzieri, D, Schiavon, R P, Tessarotto, F, Zanetti, A M“…The front-end electronics controls the sample-and-hold operation after the arrival of an event trigger, acquires the analog voltages from the pre-amp VLSI and converts them into 10 bits at a rate of 20 Ms/s per analog channel. …”
Publicado 1999
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312“…The ADC proposed in this paper is part of a larger VLSI (Very Large Scale Integration) circuit, called Detector Control Unit (DCU), whose aim is to monitor some critical quantities in the High-Energy Physical experiments inside the Large Hadron Collider (LHC). …”
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313por Mandal, Saptarshi, El-Amin, Ammaarah, Alexander, Kaitlyn, Rajendran, Bipin, Jha, Rashmi“…A comparison between a 20 nm × 20 nm sized synaptic memory device with that of a state-of-the-art VLSI SRAM synapse showed ~10× reduction in area and >10(6) times reduction in the power consumption per learning cycle.…”
Publicado 2014
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314“…This paper proposes a real-time feature extraction VLSI architecture for high-resolution images based on the accelerated KAZE algorithm. …”
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315por Gorgulu, Kazim, Gok, Abdullah, Yilmaz, Mehmet, Topalli, Kagan, Bıyıklı, Necmi, Okyay, Ali K.“…Common infrared absorbing materials are not standard in Si VLSI technology. We demonstrate ultra-broadband mid-infrared absorbers based purely on silicon. …”
Publicado 2016
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316“…Furthermore, a pipelined VLSI architecture is designed using 28-nm digital CMOS technology offered by Semiconductor Manufacturing International Corporation (SMIC). …”
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317por Bhuyan, Manabendra“…It describes smart sensors, cogent sensors, soft sensors, self-validating sensors, VLSI sensors, temperature-compensating sensors, microcontrollers and ANN-based sensors, and indirect measurement sensors. …”
Publicado 2011
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318por Volpi, Guido“…To achieve this goal, the FTK uses a fully parallel architecture, with algorithms designed to exploit the computing power of custom VLSI chips, the Associative Memory, as well as modern FPGAs. …”
Publicado 2015
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319por Huang, Thomas“…However, because of the progress in computer, LSI, and VLSI technologies, we have now reached a stage when many useful processing tasks can be done in a reasonable amount of time. …”
Publicado 1981
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320por Borer, K, Beringer, J, Anghinolfi, Francis, Aspell, P, Chilingarov, A G, Jarron, Pierre, Heijne, Erik H M, Santiard, Jean-Claude, Verweij, H, Gössling, C, Lisowski, B, Reichold, A, Bonino, R, Clark, A G, Kambara, H, La Marra, D, Léger, A, Wu, X, Richeux, J P, Taylor, G N, Fedotov, M G, Kuper, E A, Velikzhanin, Yu S, Campbell, D, Murray, P, Seller, P“…Our basic readout concept is to integrate a fast amplifier, analog memory, sparse data scan circuit and analog-to-digital convertor (ADC) on a single VLSI chip. This architecture will provide full analog information of charged particle hits associated unambiguously to one LHC beam crossing, which is expected to be at a frequency of 40 MHz. …”
Publicado 1995
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