Nanoelectronics: Physics, Materials and Devices

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Approx.528 pages

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Detaljer
Størrelse og vægt
  • Vægt450 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Nanotechnology Electronic engineering Electronics Engineering Materials science Microstructure Nanoscience. Computer-aided engineering Machine learning Atomic structure Nanowires Modeling Low-dimensional semiconductors Electron Moore's law Green electronics CMOS dram Flexible electronics Materials characterization Process Simulation End of Moore's Law QCA Mitigation Device simulation Electronic device Nonvolatile memories RRAM Low-Dimensional Materials CNT NVM Materials Processing FeRAM Artificial Intelligence Applications Electrochemical energy conversion Electrical Materials Neuromorphic Computing MOSFET Intelligent systems Optical lithography Flash Memory Emerging Memories Power management Double-Gate MOSFET CMOS technology Computational materials science Energy engineering Electrical property Junctionless-FET Device fabrication Ferroelectric Devices Nanofabrication IoT Set Energy Systems Condensed matter physics Quantum-mechanics Nanopatterning Sets BJT Materials Synthesis FeFET Dynamic random access memory (DRAM) Alternatives to traditional CMOS-devices ?Alternate conduction Beyond CMOS Alternate device technologies Biodegradable devices Circuit application Channel engineering CMOS Memory Direct tunneling Electrochemical energy engineering EQCA Dehancement reconfigurable Schottky transistor Emergent computing CNTs Evolution of MOSFET Heterojunction tunnel FET Hot Carrier Degradation Device type Emerging nanoscale devices Laser-assisted patterning Electron-hole bilayer tunnel FET Integrated chip NAND and NOR flash memories Films (surface science) Multigate structure Multiple gate MOSFET Multiple low energy (cold) carriers Materials science engineering Neural networks (biological sciences) Non-CMOS devices Organic thin-film transistors (OTFTs) Materials application Materials property type Optical proximity corrections (OPC) RTDS

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