Nano- and Micro-Electromechanical Systems: Fundamentals of Nano- and Microengineering, 2/e (Hardcover)
暫譯: 奈米與微型電機系統:奈米與微工程基礎,第2版(精裝本)

Sergey Edward Lyshevski

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商品描述

Description 

  • Establishes the theoretical foundation needed for the synthesis, modeling, simulation, analysis, and design of nano- and microsystems
  • Covers the concepts, techniques, and technologies needed to solve problems related to NEMS and MEMS, devices, and their structures
  • Provides a multidisciplinary approach that encompasses a range of science and engineering disciplines
  • Includes new revisions of every chapter
  • Provides homework problems, case studies, and a solutions manual with qualifying course adoptions

    Society is approaching and advancing nano- and microtechnology from various angles of science and engineering. The need for further fundamental, applied, and experimental research is matched by the demand for quality references that capture the multidisciplinary and multifaceted nature of the science.

    Presenting cutting-edge information that is applicable to many fields, Nano- and Micro-Electromechanical Systems: Fundamentals of Nano and Microengineering, Second Edition builds the theoretical foundation for understanding, modeling, controlling, simulating, and designing nano- and microsystems. The book focuses on the fundamentals of nano- and microengineering and nano- and microtechnology. It emphasizes the multidisciplinary principles of NEMS and MEMS and practical applications of the basic theory in engineering practice and technology development.

    Significantly revised to reflect both fundamental and technological aspects, this second edition introduces the concepts, methods, techniques, and technologies needed to solve a wide variety of problems related to high-performance nano- and microsystems. The book is written in a textbook style and now includes homework problems, examples, and reference lists in every chapter, as well as a separate solutions manual. It is designed to satisfy the growing demands of undergraduate and graduate students, researchers, and professionals in the fields of nano- and microengineering, and to enable them to contribute to the nanotechnology revolution.
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    Table of Contents

    NANOTECHNOLOGY AND MICROTECHNOLOGY (NANO- AND MICRO- SCIENCE, ENGINEERING AND TECHNOLOGY), AND BEYOND
    Introduction and Overview: From Micro- to Nano- and Beyond to Stringo-Scale
    Introductory Definitions to the Subjects
    Current Developments and Needs for Coherent Revolutionary Developments
    Societal Challenges and Implications
    NANO- AND MICROSCALE SYSTEMS, DEVICES, AND STRUCTURES
    Sizing Features: From Micro- to Nano-, and from Nano- to Stringo-Scale MEMS and NEMS Definitions
    Introduction to Taxonomy of Nano- and Microsystem Synthesis and Design
    Introduction to Design and Optimization of Nano- and Microsystems in the Behavioral Domain
    NANO- AND MICROSYSTEMS: CLASSIFICATION AND CONSIDERATION
    Biomimetics, Biological Analogies,and Design of NEMS and MEMS
    Micro- and Nanoelectromechanical Systems: Scaling Laws and Mathematical Modeling
    MEMS Examples and MEMS Architectures
    Introduction to Microfabrication and Micromachining
    FUNDAMENTALS OF MICROFABRICATION AND MEMS FABRICATION TECHNOLOGIES
    Introduction and Description of Basic Processes in Microfabrication
    Microfabrication and Micromachining of ICs, Microstructures, and Microdevices
    MEMS Fabrication Technologies
    DEVISING AND SYNTHESIS OF NEMS AND MEMS
    Motion Nano- and Microdevices: Synthesis and Classification
    Microaccelerometers as Microelectromechanical Microdevices
    Optimization with Application to Synthesis and Classification Solver
    Nanoengineering Bioinformatics and Its Application
    MODELING OF MICRO- AND NANOSCALE ELECTROMECHANICAL SYSTEMS AND DEVICES
    Introduction to Modeling, Analysis, and Simulation
    Basic Electromagnetics with Applications to MEMS and NEMS
    Model Developments of Micro- and Nanoactuators Using Electromagnetics
    Classical Mechanics and Its Application to MEMS
    Equations of Motions
    Direct-Current Micromachines
    Simulation of MEMS in the MATLAB Environment with Examples
    Induction Micromachines
    Synchronous Micromachines
    Permanent-Magnet Stepper Micromotors
    Piezotransducers
    Modeling of Electromagnetic Radiating Energy Microdevices
    Thermodynamics, Thermoanalysis, and Heat Equation
    QUANTUM MECHANICS AND ITS APPLICATIONS
    Atomic Structures and Quantum Mechanics
    Molecular and Nanostructure Dynamics
    Quantum Mechanics and Energy Bands
    MOLECULAR AND CARBON NANOELECTRONICS
    Past, Current, and Future of Electronics with Prospects for 2020 and Beyond
    Fundamentals
    Carbon Nanotubes
    Carbon-Based Nanoelectronics and Three-Dimensional Nano-ICs
    CONTROL OF MEMS AND NEMS
    Continuous-Time and Discrete-Time MEMS
    Analog Control of MEMS Using Transfer Functions
    The Hamilton-Jacobi Theory and Optimal Control of MEMS and NEMS
    Sliding Mode Control of MEMS and NEMS
    Constrained Control of Nonlinear MEMS and NEMS
    Optimization of Microsystems Using Nonquadratic Performance Functionals
    Hamilton-Jacobi Theory and Quantum Mechanics
    Lyapunov Stability Theory in Analysis and Control of MEMS and NEMS
    Digital Control of MEMS and NEMS
    EXAMPLES IN SYNTHESIS, ANALYSIS, DESIGN AND FABRICATION OF MEMS
    Introduction
    Analysis of Energy Conversion and MEMS Performance from Materials and Fabrication Viewpoints
    Analysis of Translational Microtransducers
    Single-Phase Reluctance Micromotors: Modeling, Analysis, and Control
    Microfabrication Topics
    Magnetization Dynamics of Thin Films
    Microstructures and Microtransducers with Permanent-Magnet: Micromirror Actuators
    Reluctance Electromagnetic Micromotors
    Micromachined Polycrystalline Silicon Carbide Micromotors
    Axial Electromagnetic Micromotors
    Cognitive Computer-Aided Design of MEMS

    商品描述(中文翻譯)

    描述
    - 建立合成、建模、模擬、分析和設計奈米及微系統所需的理論基礎
    - 涵蓋解決與奈米電機系統(NEMS)和微電機系統(MEMS)、裝置及其結構相關問題所需的概念、技術和技術
    - 提供一種跨學科的方法,涵蓋多種科學和工程學科
    - 包含每一章的新修訂
    - 提供作業問題、案例研究和解答手冊,適用於合格的課程採用

    社會正從各種科學和工程的角度接近和推進奈米及微技術。對於進一步的基礎、應用和實驗研究的需求,與捕捉科學的跨學科和多面向特性質量參考的需求相匹配。

    《奈米與微電機系統:奈米與微工程的基礎(第二版)》提供了適用於許多領域的前沿資訊,建立了理解、建模、控制、模擬和設計奈米及微系統的理論基礎。本書專注於奈米與微工程及奈米與微技術的基本原理。它強調NEMS和MEMS的跨學科原則以及基本理論在工程實踐和技術開發中的實際應用。

    這一版顯著修訂,以反映基礎和技術方面,介紹了解決與高性能奈米和微系統相關的各種問題所需的概念、方法、技術和技術。本書以教科書風格撰寫,現在每一章都包含作業問題、範例和參考列表,以及單獨的解答手冊。它旨在滿足奈米和微工程領域本科生、研究生、研究人員和專業人士日益增長的需求,並使他們能夠為奈米技術革命做出貢獻。

    目錄
    奈米技術與微技術(奈米與微科學、工程與技術)及其延伸
    - 介紹與概述:從微觀到奈米,並延伸至弦尺度
    - 主題的入門定義
    - 當前發展與一致革命性發展的需求
    - 社會挑戰與影響
    奈米與微尺度系統、裝置與結構
    - 尺寸特徵:從微觀到奈米,從奈米到弦尺度的MEMS和NEMS定義
    - 奈米與微系統合成與設計的分類學介紹
    - 奈米與微系統行為域的設計與優化介紹
    奈米與微系統:分類與考量
    - 生物模擬、生物類比及NEMS和MEMS的設計
    - 微電機系統與奈米電機系統:縮放法則與數學建模
    - MEMS範例與MEMS架構
    - 微製造與微加工介紹
    微製造與MEMS製造技術的基礎
    - 微製造基本過程的介紹與描述
    - IC、微結構和微裝置的微製造與微加工
    - MEMS製造技術
    NEMS和MEMS的設計與合成
    - 動作奈米與微裝置:合成與分類
    - 微加速度計作為微電機微裝置
    - 應用於合成與分類求解器的優化
    - 奈米工程生物信息學及其應用
    微尺度電機系統與裝置的建模
    - 建模、分析與模擬介紹
    - 基本電磁學及其在MEMS和NEMS中的應用
    - 使用電磁學的微型和奈米驅動器模型開發
    - 古典力學及其在MEMS中的應用
    - 運動方程
    - 直流微型機械
    - 在MATLAB環境中模擬MEMS的範例
    - 感應微型機械
    - 同步微型機械
    - 永磁步進微型馬達
    - 壓電傳感器
    - 電磁輻射能微裝置的建模
    - 熱力學、熱分析與熱方程
    量子力學及其應用
    - 原子結構與量子力學
    - 分子與奈米結構動力學
    - 量子力學與能帶
    分子與碳奈米電子學
    - 電子學的過去、現在與未來,展望2020及以後
    - 基礎
    - 碳納米管
    - 碳基奈米電子學與三維奈米IC
    MEMS與NEMS的控制
    - 連續時間與離散時間MEMS
    - 使用傳遞函數的MEMS類比控制
    - 哈密頓-雅可比理論與MEMS和NEMS的最佳控制
    - MEMS和NEMS的滑模控制
    - 非線性MEMS和NEMS的約束控制
    - 使用非二次性能功能的微系統優化
    - 哈密頓-雅可比理論與量子力學
    - 在MEMS和NEMS的分析與控制中的李雅普諾夫穩定性理論
    - MEMS和NEMS的數位控制
    合成、分析、設計與製造MEMS的範例
    - 介紹
    - 從材料與製造觀點分析能量轉換與MEMS性能
    - 翻譯微型傳感器的分析
    - 單相磁阻微型馬達:建模、分析與控制
    - 微製造主題
    - 薄膜的磁化動力學
    - 具有永久磁鐵的微結構與微傳感器:微鏡驅動器
    - 磁阻電磁微型馬達
    - 微加工多晶矽碳化物微型馬達
    - 軸向電磁微型馬達
    - 認知計算機輔助設計的MEMS