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Iniewski

Integrated Microsystems

Electronics, Photonics, and Biotechnology

Medium: Buch
ISBN: 978-1-138-07622-8
Verlag: CRC Press
Erscheinungstermin: 29.03.2017
Lieferfrist: bis zu 10 Tage

As rapid technological developments occur in electronics, photonics, mechanics, chemistry, and biology, the demand for portable, lightweight integrated microsystems is relentless. These devices are getting exponentially smaller, increasingly used in everything from video games, hearing aids, and pacemakers to more intricate biomedical engineering and military applications.

Edited by Kris Iniewski, a revolutionary in the field of advanced semiconductor materials, Integrated Microsystems: Electronics, Photonics, and Biotechnology focuses on techniques for optimized design and fabrication of these intelligent miniaturized devices and systems. Composed of contributions from experts in academia and industry around the world, this reference covers processes compatible with CMOS integrated circuits, which combine computation, communications, sensing, and actuation capabilities.

Light on math and physics, with a greater emphasis on microsystem design and configuration and electrical engineering, this book is organized in three sections—Microelectronics and Biosystems, Photonics and Imaging, and Biotechnology and MEMs. It addresses key topics, including physical and chemical sensing, imaging, smart actuation, and data fusion and management. Using tables, figures, and equations to help illustrate concepts, contributors examine and explain the potential of emerging applications for areas including biology, nanotechnology, micro-electromechanical systems (MEMS), microfluidics, and photonics.


Produkteigenschaften


  • Artikelnummer: 9781138076228
  • Medium: Buch
  • ISBN: 978-1-138-07622-8
  • Verlag: CRC Press
  • Erscheinungstermin: 29.03.2017
  • Sprache(n): Englisch
  • Auflage: 1. Auflage 2017
  • Serie: Devices, Circuits, and Systems
  • Produktform: Kartoniert, Paperback
  • Gewicht: 1406 g
  • Seiten: 760
  • Format (B x H x T): 178 x 254 x 41 mm
  • Ausgabetyp: Kein, Unbekannt
Autoren/Hrsg.

Herausgeber

Part I: Microelectronics and BiosystemsEnergizing and Powering MicrosystemsPower Management IC Design for Efficient DVFS-Enabled On-Chip OperationsMeSOC-I: A Mixed Signal SOC for Bioinstrumentation in Medical Treatment and Healthcare SystemDesign of a Low-Power Dual-Mode MUX-Based Transmitter for Biomedical ApplicationsDesign of a Frequency Shift-Based CMOS Magnetic Sensor Array for Point-of-Care (PoC) Biomolecular Diagnosis ApplicationsSystem Architecture for Neural-Electrical Interface and ProcessingTechnological Evolution of Wireless Neurochemical Sensing with Fast-ScanCyclic VoltammetryGiga-Ohm High-Impedance FET Input Amplifiers for Dry Electrode Biosensor Circuits and SystemsRetinal Prostheses: Current Approaches, Challenges, and OutlookA Biomorphic Active Cochlear Model In SilicoMicropower Adaptive VLSI Systems for Acoustic Source Localization and SeparationRemote Frequency Calibration of Passive Wireless MicrosystemsPart II: Photonics and ImagingTerahertz Imaging and Spectroscopy: State-of-the-Art and Future TrendsTerahertz Technology Based on Nanoelectronic DevicesDesign and Assessment Principles of Semiconductor Flat-Panel Detector-Based X-Ray Micro-CT Systems for Small-Animal ImagingPortable High-Frequency Ultrasound Imaging System Design and Hardware ConsiderationsSmart Eye Tracking Sensors Based on Pixel-Level Image Processing CircuitsDesign and Manufacturing of CNT-Based Nanodevices for Optical Sensing ApplicationsAcoustically Controlled All-Fiber LasersUltrafast Fiber LasersHigh-Speed Directly Modulated Injection-Locked VCSELsHigh-Speed Si/Ge-Based Photodiodes for Optical Interconnect ApplicationsPatterned Sapphire and Chip Separation Technique in InGaN-Based LEDsAssembly of Microscopic Three-Dimensional Structures and Their Applications in Three-Dimensional Photonic CrystalsPart III: Biotechnology and MEMsSurface Chemistry for Cell Capture in Microfluidic SystemsTwo-Dimensional Microfluidic Bioarray for Nucleic Acid AnalysisMicrofluidic Systems to Study the Biology of Human Diseases and Identify Potential Therapeutic Targets in Caenorhabditis elegansIII-Nitrides-Based BiosensingNanotechnology-Derived Orthopedic Implant SensorsEngineering Bone Formation with Biologically Inspired NanomaterialsResonance for Multitransducer SystemsPiezoelectric Thin Films for MEMS ApplicationsHfO2 Thin Film for Microelectromechanical Systems Application