Novel Advances in Microsystems Technologies and Their Applications
Herausgeber: Francis, Laurent A; Iniewski, Krzysztof
Novel Advances in Microsystems Technologies and Their Applications
Herausgeber: Francis, Laurent A; Iniewski, Krzysztof
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Microsystems technologies have found their way into an impressive variety of applications, from mobile phones and displays to smart grids and electric cars. This book explores the state of the art and the applications of microelectronics technologies. It covers a wide range of topics, including organic and flexible electronics, imaging and display technologies, sensing, and biomedical microsystems. The book serves as a source of inspiration for anyone who wants to further develop the technologies, create new applications, or get a better understanding of this multidisciplinary field.
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Microsystems technologies have found their way into an impressive variety of applications, from mobile phones and displays to smart grids and electric cars. This book explores the state of the art and the applications of microelectronics technologies. It covers a wide range of topics, including organic and flexible electronics, imaging and display technologies, sensing, and biomedical microsystems. The book serves as a source of inspiration for anyone who wants to further develop the technologies, create new applications, or get a better understanding of this multidisciplinary field.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 650
- Erscheinungstermin: 26. Juli 2013
- Englisch
- Abmessung: 241mm x 159mm x 40mm
- Gewicht: 1075g
- ISBN-13: 9781466560666
- ISBN-10: 1466560665
- Artikelnr.: 37055486
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 650
- Erscheinungstermin: 26. Juli 2013
- Englisch
- Abmessung: 241mm x 159mm x 40mm
- Gewicht: 1075g
- ISBN-13: 9781466560666
- ISBN-10: 1466560665
- Artikelnr.: 37055486
Laurent A. Francis is an associate professor in the Electrical Engineering Department at the Université catholique de Louvain, Belgium. His main focus is on co-integrated, ultra-low-power CMOS MEMS sensors for biomedical applications and harsh environments. He was previously a researcher at IMEC in Leuven, Belgium, and a visiting professor at the Université de Sherbrooke, Canada. He has published more than 60 research papers in scientific journals, international conferences, and books, and he holds one patent. He is a board member of the Belgian National Committee on Biomedical Engineering and an editorial board member of the Journal of Sensors. He is also a regular member of the IEEE. Krzysztof (Kris) Iniewski manages R&D at Redlen Technologies, Inc., a startup company in Vancouver, Canada. He is also a president of CMOS Emerging Technologies Research Inc., an organization of high-tech events covering communications, microsystems, optoelectronics, and sensors. Dr. Iniewski has held numerous faculty and management positions at the University of Toronto, University of Alberta, Simon Fraser University, and PMC-Sierra, Inc. He has published more than 100 research papers in international journals and conferences. He holds 18 international patents granted in the United States, Canada, France, Germany, and Japan. He is a frequent invited speaker, has consulted for multiple organizations internationally, and has written and edited several books.
Part I Organic and Flexible Electronics: Device Modelling for SPICE Simulations in Organic Technologies. Nanoscale Phase Separation and Device Engineering in Polymer Solar Cells. Mechanically Flexible Interconnects and TSVs: Applications in CMOS/MEMS Integration. A Wafer
Scale Rapid Electronic Systems Prototyping Platform: User Support Tools and Thermo
Mechanical Validation. Part II Imaging and Display Technologies: mirasol Displays: MEMS
Based Reflective Display Systems. Thin
Film Transistors Fabricated on Intentionally Agglomerated, Laser
Crystallized Silicon on Insulator. New Approaches for High
Speed, High
Resolution Imaging. Terahertz Communications for Terabit Wireless Imaging. Increasing Projector Contrast and Brightness through Light Redirection. Part III Sensors and Microdevices: Theoretical Electromagnetic Survey: Application to a CMOS
MEMS Planar Electrodynamic Microphone. Thin
Film Sensors. Technologies for Electric Current Sensors. Power Density Limits and Benchmarking of Resonant Piezoelectric Vibration Energy Harvesters. Microwave Sensors for Non
Invasive Monitoring of Industrial Processes. Microwave Reflectometry for Sensing Applications in the Agrofood Industry. Part IV Point
of
Care and Biosensors: Applications of Sensor Systems in Prognostics and Health Management. Rigid Body Motion Capturing by Means of Wearable Inertial and Magnetic MEMS Sensor Assembly: Towards the Reconstitution of the Posture of Free
Ranging Animals in Bio
Logging. Point
of
Care Testing Platform with Nanogap
Embedded Field
Effect Transistors. Bionanotechnological Advances in Neural Recording and Stimulation. Part V Ultra
Low
Power Biomedical Systems : Advances in Ultra
Low
Power Miniaturized Applications for Health Care and Sports: The Sensium(TM) Platform. Ultra
Low
Power Harvesting Body
Centred Electronics for Future Health Monitoring Devices. ADC Basics and Design Techniques for a Low
Power ADC for Biomedical Applications. Ultra
Low
Power Techniques in Small Autonomous Implants and Sensor Nodes. Index.
Scale Rapid Electronic Systems Prototyping Platform: User Support Tools and Thermo
Mechanical Validation. Part II Imaging and Display Technologies: mirasol Displays: MEMS
Based Reflective Display Systems. Thin
Film Transistors Fabricated on Intentionally Agglomerated, Laser
Crystallized Silicon on Insulator. New Approaches for High
Speed, High
Resolution Imaging. Terahertz Communications for Terabit Wireless Imaging. Increasing Projector Contrast and Brightness through Light Redirection. Part III Sensors and Microdevices: Theoretical Electromagnetic Survey: Application to a CMOS
MEMS Planar Electrodynamic Microphone. Thin
Film Sensors. Technologies for Electric Current Sensors. Power Density Limits and Benchmarking of Resonant Piezoelectric Vibration Energy Harvesters. Microwave Sensors for Non
Invasive Monitoring of Industrial Processes. Microwave Reflectometry for Sensing Applications in the Agrofood Industry. Part IV Point
of
Care and Biosensors: Applications of Sensor Systems in Prognostics and Health Management. Rigid Body Motion Capturing by Means of Wearable Inertial and Magnetic MEMS Sensor Assembly: Towards the Reconstitution of the Posture of Free
Ranging Animals in Bio
Logging. Point
of
Care Testing Platform with Nanogap
Embedded Field
Effect Transistors. Bionanotechnological Advances in Neural Recording and Stimulation. Part V Ultra
Low
Power Biomedical Systems : Advances in Ultra
Low
Power Miniaturized Applications for Health Care and Sports: The Sensium(TM) Platform. Ultra
Low
Power Harvesting Body
Centred Electronics for Future Health Monitoring Devices. ADC Basics and Design Techniques for a Low
Power ADC for Biomedical Applications. Ultra
Low
Power Techniques in Small Autonomous Implants and Sensor Nodes. Index.
Part I Organic and Flexible Electronics: Device Modelling for SPICE Simulations in Organic Technologies. Nanoscale Phase Separation and Device Engineering in Polymer Solar Cells. Mechanically Flexible Interconnects and TSVs: Applications in CMOS/MEMS Integration. A Wafer
Scale Rapid Electronic Systems Prototyping Platform: User Support Tools and Thermo
Mechanical Validation. Part II Imaging and Display Technologies: mirasol Displays: MEMS
Based Reflective Display Systems. Thin
Film Transistors Fabricated on Intentionally Agglomerated, Laser
Crystallized Silicon on Insulator. New Approaches for High
Speed, High
Resolution Imaging. Terahertz Communications for Terabit Wireless Imaging. Increasing Projector Contrast and Brightness through Light Redirection. Part III Sensors and Microdevices: Theoretical Electromagnetic Survey: Application to a CMOS
MEMS Planar Electrodynamic Microphone. Thin
Film Sensors. Technologies for Electric Current Sensors. Power Density Limits and Benchmarking of Resonant Piezoelectric Vibration Energy Harvesters. Microwave Sensors for Non
Invasive Monitoring of Industrial Processes. Microwave Reflectometry for Sensing Applications in the Agrofood Industry. Part IV Point
of
Care and Biosensors: Applications of Sensor Systems in Prognostics and Health Management. Rigid Body Motion Capturing by Means of Wearable Inertial and Magnetic MEMS Sensor Assembly: Towards the Reconstitution of the Posture of Free
Ranging Animals in Bio
Logging. Point
of
Care Testing Platform with Nanogap
Embedded Field
Effect Transistors. Bionanotechnological Advances in Neural Recording and Stimulation. Part V Ultra
Low
Power Biomedical Systems : Advances in Ultra
Low
Power Miniaturized Applications for Health Care and Sports: The Sensium(TM) Platform. Ultra
Low
Power Harvesting Body
Centred Electronics for Future Health Monitoring Devices. ADC Basics and Design Techniques for a Low
Power ADC for Biomedical Applications. Ultra
Low
Power Techniques in Small Autonomous Implants and Sensor Nodes. Index.
Scale Rapid Electronic Systems Prototyping Platform: User Support Tools and Thermo
Mechanical Validation. Part II Imaging and Display Technologies: mirasol Displays: MEMS
Based Reflective Display Systems. Thin
Film Transistors Fabricated on Intentionally Agglomerated, Laser
Crystallized Silicon on Insulator. New Approaches for High
Speed, High
Resolution Imaging. Terahertz Communications for Terabit Wireless Imaging. Increasing Projector Contrast and Brightness through Light Redirection. Part III Sensors and Microdevices: Theoretical Electromagnetic Survey: Application to a CMOS
MEMS Planar Electrodynamic Microphone. Thin
Film Sensors. Technologies for Electric Current Sensors. Power Density Limits and Benchmarking of Resonant Piezoelectric Vibration Energy Harvesters. Microwave Sensors for Non
Invasive Monitoring of Industrial Processes. Microwave Reflectometry for Sensing Applications in the Agrofood Industry. Part IV Point
of
Care and Biosensors: Applications of Sensor Systems in Prognostics and Health Management. Rigid Body Motion Capturing by Means of Wearable Inertial and Magnetic MEMS Sensor Assembly: Towards the Reconstitution of the Posture of Free
Ranging Animals in Bio
Logging. Point
of
Care Testing Platform with Nanogap
Embedded Field
Effect Transistors. Bionanotechnological Advances in Neural Recording and Stimulation. Part V Ultra
Low
Power Biomedical Systems : Advances in Ultra
Low
Power Miniaturized Applications for Health Care and Sports: The Sensium(TM) Platform. Ultra
Low
Power Harvesting Body
Centred Electronics for Future Health Monitoring Devices. ADC Basics and Design Techniques for a Low
Power ADC for Biomedical Applications. Ultra
Low
Power Techniques in Small Autonomous Implants and Sensor Nodes. Index.