Optical, Acoustic, Magnetic, and Mechanical Sensor Technologies: Devices, Circuits, and Systems
Editat de Krzysztof Iniewskien Limba Engleză Hardback – 25 ian 2012
Used to pick up sound, movement, and optical or magnetic signals, portable and lightweight sensors are perpetually in demand in consumer electronics, biomedical engineering, military applications, and a wide range of other sectors. However, despite extensive existing developments in computing and communications for integrated microsystems, we are only just now seeing real transformational changes in sensors, which are critical to conducting so many advanced, integrated tasks.
This book is designed in two sections—Optical and Acoustic Sensors and Magnetic and Mechanical Sensors—that address the latest developments in sensors.
The first part covers:
- Optical and acoustic sensors, particularly those based on polymer optical fibers
- Potential of integrated optical biosensors and silicon photonics
- Luminescent thermometry and solar cell analyses
- Description of research from United States Army Research Laboratory on sensing applications using photoacoustic spectroscopy
- Advances in the design of underwater acoustic modems
- Magnetic and mechanical sensors, starting with coverage of magnetic field scanning
- Some contributors’ personal accomplishments in combining MEMS and CMOS technologies for artificial microsystems used to sense airflow, temperature, and humidity
- MEMS-based micro hot-plate devices
- Vibration energy harvesting with piezoelectric MEMS
- Self-powered wireless sensing
Toate formatele și edițiile | Preț | Express |
---|---|---|
Paperback (1) | 454.02 lei 6-8 săpt. | |
CRC Press – 30 mar 2017 | 454.02 lei 6-8 săpt. | |
Hardback (1) | 1095.12 lei 6-8 săpt. | |
CRC Press – 25 ian 2012 | 1095.12 lei 6-8 săpt. |
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Specificații
ISBN-13: 9781439869758
ISBN-10: 1439869758
Pagini: 357
Ilustrații: 169 b/w images, 22 tables and 150
Dimensiuni: 156 x 234 x 20 mm
Greutate: 0.64 kg
Ediția:New.
Editura: CRC Press
Colecția CRC Press
Seria Devices, Circuits, and Systems
ISBN-10: 1439869758
Pagini: 357
Ilustrații: 169 b/w images, 22 tables and 150
Dimensiuni: 156 x 234 x 20 mm
Greutate: 0.64 kg
Ediția:New.
Editura: CRC Press
Colecția CRC Press
Seria Devices, Circuits, and Systems
Public țintă
Electrical Engineers, Sensors, Biomedical Engineers, Optics, Circuits, Semiconductors, Chemical EngineeringCuprins
PART 1: Optical and Acoustic Sensors
Optical Fiber Sensors. Sensors Based on Polymer Optical Fibers: Microstructured and Solid Fibers. Label-Free Biosensors for Biomedical Applications: The Potential of Integrated Optical Biosensors and Silicon Photonics. Luminescent Thermometry for Sensing Rapid Thermal Profiles in Fires and Explosions. Solar Cell Analyses with Ultraviolet–Visible–Near-Infrared Spectroscopy and I–V Measurements. Sensing Applications Using Photoacoustic Spectroscopy. Design of a Low-Cost Underwater Acoustic Modem.
PART 2: Magnetic and Mechanical Sensors
Accurate Scanning of Magnetic Fields. Artificial Microsystems for Sensing Airflow, Temperature, and Humidity by Combining MEMS and CMOS Technologies. Microelectromechanical System-Based Micro Hot-Plate Devices. Vibration Energy Harvesting with Piezoelectric Microelectromechanical Systems. Self-Powered Wireless Sensing in Ground Transport Applications.
Optical Fiber Sensors. Sensors Based on Polymer Optical Fibers: Microstructured and Solid Fibers. Label-Free Biosensors for Biomedical Applications: The Potential of Integrated Optical Biosensors and Silicon Photonics. Luminescent Thermometry for Sensing Rapid Thermal Profiles in Fires and Explosions. Solar Cell Analyses with Ultraviolet–Visible–Near-Infrared Spectroscopy and I–V Measurements. Sensing Applications Using Photoacoustic Spectroscopy. Design of a Low-Cost Underwater Acoustic Modem.
PART 2: Magnetic and Mechanical Sensors
Accurate Scanning of Magnetic Fields. Artificial Microsystems for Sensing Airflow, Temperature, and Humidity by Combining MEMS and CMOS Technologies. Microelectromechanical System-Based Micro Hot-Plate Devices. Vibration Energy Harvesting with Piezoelectric Microelectromechanical Systems. Self-Powered Wireless Sensing in Ground Transport Applications.
Notă biografică
Krzysztof (Kris) Iniewski manages R&D at Redlen Technologies Inc., a start-up company in Vancouver, British Columbia, Canada. Redlen’s revolutionary production process for advanced semiconductor materials is enabling a new generation of more accurate, all-digital, radiation-based imaging solutions. Dr. Iniewski is also president of CMOS Emerging Technologies, which organizes high-tech events covering communications, microsystems, optoelectronics, and sensors. Dr. Iniewski has held numerous faculty and management positions at the University of Toronto, the University of Alberta, SFU, and PMC-Sierra, Inc. He holds 18 international patents, has published more than 100 research papers in international journals and conferences, and has written and edited several books. He is frequently invited as a speaker and has consulted for several organizations around the world.
Recenzii
"The theory and operation of intensity and phase-based- and wavelength-based-fibers sensors are nicely reviewed. ... Coverage that may interest our readers includes scanning of magnetic fields, microsystems for sensing airflow, temperature and humidity by combining MEMS and CMOS technologies, MEMS-based hotplate devices for gas sensing applications, vibration energy harvesting methods using piezoelectric based MEMS, and self-powered wireless sensing in ground transport applications. ... Because mathematical details and in-depth theory are not thoroughly reviewed, the presented material is descriptive in nature and includes many illustrations, making this book very accessible to a general technical audience interested in sensing technology."
—John J. Shea, IEEE Electrical Insulation Magazine, March/April, Vol. 29, No.2, 2013
—John J. Shea, IEEE Electrical Insulation Magazine, March/April, Vol. 29, No.2, 2013
Descriere
Although there have been extensive developments in computing and communications needs of integrated microsystems, the sensors required to conduct advanced and integrated tasks are only now seeing transformational change. With their huge potential interfacing applications for biological and medical fields, sensors will soon become ubiquitous. Focusing heavily on practical applications but remaining light on physics and math, this book addresses the developments necessary to make truly integrated sensors a reality in physical, biological, optical, and chemical sensing, as well as future micro- and nanotechnologies.