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  • 1
    Online Resource
    Online Resource
    [Erscheinungsort nicht ermittelbar] : CRC Press | Boston, MA : Safari
    ISBN: 9781351830249 , 1351830244
    Language: English
    Pages: 1 online resource (224 pages)
    Edition: 1st edition
    DDC: 681.2
    Keywords: Gas detectors ; Microelectromechanical systems ; Nanotechnology ; Electronic books ; local ; Détecteurs de gaz ; Microsystèmes électromécaniques ; Gas detectors ; Microelectromechanical systems ; Nanotechnology
    Abstract: How Can We Lower the Power Consumption of Gas Sensors? There is a growing demand for low-power, high-density gas sensor arrays that can overcome problems relative to high power consumption. Low power consumption is a prerequisite for any type of sensor system to operate at optimum efficiency. Focused on fabrication-friendly microelectromechanical systems (MEMS) and other areas of sensor technology, MEMS and Nanotechnology for Gas Sensors explores the distinct advantages of using MEMS in low power consumption, and provides extensive coverage of the MEMS/nanotechnology platform for gas sensor applications. This book outlines the microfabrication technology needed to fabricate a gas sensor on a MEMS platform. It discusses semiconductors, graphene, nanocrystalline ZnO-based microfabricated sensors, and nanostructures for volatile organic compounds. It also includes performance parameters for the state of the art of sensors, and the applications of MEMS and nanotechnology in different areas relevant to the sensor domain. In addition, the book includes: An introduction to MEMS for MEMS materials, and a historical background of MEMS A concept for cleanroom technology The substrate materials used for MEMS Two types of deposition techniques, including chemical vapour deposition (CVD) The properties and types of photoresists, and the photolithographic processes Different micromachining techniques for the gas sensor platform, and bulk and surface micromachining The design issues of a microheater for MEMS-based sensors The synthesis technique of a nanocrystalline metal oxide layer A detailed review about graphene; its different deposition techniques; and its important electronic, electrical, and mechanical properties with its application as a gas sensor Low-cost, low-temperature synthesis techniques An explanation of volatile organic compound (VOC) detection and how relative humidity affects the sensing parameters MEMS and Nanotechnology for Gas Sensors provides a broad overview of current, emerging, and possible future MEMS applications. MEMS technology can be applied in the automotive, consumer, industrial, and biotechnology domains.
    Note: Online resource; Title from title page (viewed October 9, 2015) , Mode of access: World Wide Web.
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  • 2
    ISBN: 9781119819257 , 1119819253 , 9781119819264 , 1119819261 , 9781119819240 , 1119819245 , 9781119819233
    Language: English
    Pages: 1 online resource (xxi, 362 pages) , illustrations (some color)
    Parallel Title: Erscheint auch als
    DDC: 621.38275
    Keywords: Optical communications Equipment and supplies ; Optical fiber communication ; Signal processing ; Télécommunications par fibres optiques ; Traitement du signal ; Optical communications ; Equipment and supplies ; Optical fiber communication ; Signal processing ; Electronic books
    Abstract: "This book has several objectives. First of all, we lay the groundwork by offering a brief review of the optical switching and networking and the significant successes of recent decades, highlighting key enabling technologies and techniques that have paved the way for modern optical switching networks. We will next explore the broad overview of the future of optical switching and identify important milestones in the development of optical switches of the next generation. In the first section, a detailed introduction opens the way for the reader to learn the history and principles of the topic. The second section focuses on the Switching Devices, the concepts and theories of several optical switching technologies, characteristics and applications areas. The third section explores the optical switching applications in communication networks. Today, optical switching covers a range of technologies and numerous scientific and engineering fields. It is not simple for one to master on several areas in this subject like many modern domains of study. Thus, an edited book of its kind, with several writers, will serve the reader better insight of the subject. We appreciate profoundly the effort, passion and quality of the work of the chapter authors. We are very thankful to many of them, who have not only given their chapters but are also gracious enough to provide important advice and recommendations on preparation of this book. Finally to say, this book is intended to offer readers with an in-depth overview and an in-depth grasp of state-of-the-art optical switching as well as recent and substantial advances in the field of optical switching and networks. It also will be a support for researchers, engineers and experts in developing applications and services in this field"--
    Note: Includes bibliographical references and index. - Description based on online resource; title from digital title page (viewed on July 21, 2022)
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  • 3
    Online Resource
    Online Resource
    [Erscheinungsort nicht ermittelbar] : CRC Press | Boston, MA : Safari
    ISBN: 9781466512665
    Language: English
    Pages: 1 online resource (462 pages)
    Edition: 1st edition
    Keywords: Electronic books ; local
    Abstract: Responding to recent developments and a growing VLSI circuit manufacturing market, Technology Computer Aided Design: Simulation for VLSI MOSFET examines advanced MOSFET processes and devices through TCAD numerical simulations. The book provides a balanced summary of TCAD and MOSFET basic concepts, equations, physics, and new technologies related to TCAD and MOSFET. A firm grasp of these concepts allows for the design of better models, thus streamlining the design process, saving time and money. This book places emphasis on the importance of modeling and simulations of VLSI MOS transistors and TCAD software. Providing background concepts involved in the TCAD simulation of MOSFET devices, it presents concepts in a simplified manner, frequently using comparisons to everyday-life experiences. The book then explains concepts in depth, with required mathematics and program code. This book also details the classical semiconductor physics for understanding the principle of operations for VLSI MOS transistors, illustrates recent developments in the area of MOSFET and other electronic devices, and analyzes the evolution of the role of modeling and simulation of MOSFET. It also provides exposure to the two most commercially popular TCAD simulation tools Silvaco and Sentaurus. • Emphasizes the need for TCAD simulation to be included within VLSI design flow for nano-scale integrated circuits • Introduces the advantages of TCAD simulations for device and process technology characterization • Presents the fundamental physics and mathematics incorporated in the TCAD tools • Includes popular commercial TCAD simulation tools (Silvaco and Sentaurus) • Provides characterization of performances of VLSI MOSFETs through TCAD tools • Offers familiarization to compact modeling for VLSI circuit simulation R&D cost and time for electronic product development is drastically reduced by taking advantage of TCAD tools, making it indispensable for modern VLSI device technologies. They provide a means to characterize the MOS transistors and improve the VLSI circuit simulation procedure. The comprehensive information and systematic approach to design, characterization, fabrication, and computation of VLSI MOS transistor through TCAD tools presented in this book provides a thorough foundation for the development of models that simplify the design verification process and make it cost effective.
    Note: Online resource; Title from title page (viewed September 3, 2018) , Mode of access: World Wide Web.
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