
Silicon-on-Sapphire Circuits and Systems
Sensor and Biosensor Interfaces
Eugenio Culurciello(Author)
McGraw-Hill Professional (Publisher)
Published on 16. September 2009
Book
Paperback/Softback
416 pages
978-0-07-160848-0 (ISBN)
Description
Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.
The Latest Silicon-on-Sapphire CMOS Design and Fabrication Techniques
Develop high-performance SOS-based microsystems. Filled with examples, schematics, and charts, Silicon-on-Sapphire Circuits and Systems covers the latest analog and mixed-signal IC design techniques.
Learn how to assemble SOI/SOS circuits and systems, work with an insulated substrate and device models, create miniaturized amplifiers and switches, and build ADCs and DACs. You will also find information on constructing photosensitive circuits and memory chips, deploying integrated biosensors, overcoming noise and power issues, and maximizing efficiency. Discover how to:
Extract active and passive device models and parameters
Design single-stage amplifiers, op amps, references, and comparators
Build digital processors, data converters, and mixed-mode circuits
Deploy photodetectors in active pixel sensor and imaging arrays
Optimize performance, quantum efficiency, and signal-to-noise ratio
Develop current and voltage mode SOS-based biosensors
Use CMOS, monolithic, and digital phase-shift isolation techniques
Integrate the latest three-dimensional assemblies and die packages
The Latest Silicon-on-Sapphire CMOS Design and Fabrication Techniques
Develop high-performance SOS-based microsystems. Filled with examples, schematics, and charts, Silicon-on-Sapphire Circuits and Systems covers the latest analog and mixed-signal IC design techniques.
Learn how to assemble SOI/SOS circuits and systems, work with an insulated substrate and device models, create miniaturized amplifiers and switches, and build ADCs and DACs. You will also find information on constructing photosensitive circuits and memory chips, deploying integrated biosensors, overcoming noise and power issues, and maximizing efficiency. Discover how to:
Extract active and passive device models and parameters
Design single-stage amplifiers, op amps, references, and comparators
Build digital processors, data converters, and mixed-mode circuits
Deploy photodetectors in active pixel sensor and imaging arrays
Optimize performance, quantum efficiency, and signal-to-noise ratio
Develop current and voltage mode SOS-based biosensors
Use CMOS, monolithic, and digital phase-shift isolation techniques
Integrate the latest three-dimensional assemblies and die packages
More details
Language
English
Place of publication
United States
Publishing group
McGraw-Hill Education - Europe
Target group
Professional and scholarly
Illustrations
0 Illustrations
Dimensions
Height: 244 mm
Width: 170 mm
Thickness: 22 mm
Weight
711 gr
ISBN-13
978-0-07-160848-0 (9780071608480)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Person
Eugenio Culurciello is an assistant professor of electrical engineering at Yale University.
Content
Ch1. The Silicon-on-Sapphire Fabrication Process
Ch2. SoS Device Modeling for Circuit Design
Ch3. SoS Amplifiers and Basic Analog Circuits
Ch4. SoS Linear Analog Circuits
Ch5. SoS Digital Circuits
Ch6. SoS Analog to Digital Conversion Systems
Ch7. SoS Image Sensors and optoelectronic Systems
Ch8. SoS Biosensor System Interfaces
Ch9. SoS Advanced Analog Circuits and Systems
Ch10. SoS Communication Circuits and Systems
Ch2. SoS Device Modeling for Circuit Design
Ch3. SoS Amplifiers and Basic Analog Circuits
Ch4. SoS Linear Analog Circuits
Ch5. SoS Digital Circuits
Ch6. SoS Analog to Digital Conversion Systems
Ch7. SoS Image Sensors and optoelectronic Systems
Ch8. SoS Biosensor System Interfaces
Ch9. SoS Advanced Analog Circuits and Systems
Ch10. SoS Communication Circuits and Systems