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Scaling Issues and Design of MEMS By Salvatore Baglio, Salvatore Castorina, Nicolo Savalli(auth.)
2008 | 237 Pages | ISBN: 047001699X | PDF | 10 MB

This accessible volume delivers a complete design methodology for microelectromechanical systems (MEMS). Focusing on the scaling of an autonomous micro-system, it explains the real-world problems and theoretical concepts of several different aspects inherent to the miniaturization of sensors and actuators. It reports on the analysis of dimensional scaling, the modelling, design and experimental characterization of a wide range of specific devices and applications, including: temperature microsensors based on an integrated complementary metal-oxide-semiconductor (CMOS) thermocouple; mechanical sensors; inductive microsensors for the detection of magnetic particles; electrostatic, thermal and magnetic actuators. With an original approach, this informative text encompasses the entire range of themes currently at the forefront of MEMS, including an analysis of the importantissue of energy sources in MEMS. In addition, the book explores contemporary research into the design of complete MEMS with a case study on colonies of microbots. Scaling Issues and Design of MEMS aims to improve the reader's basic knowledge on modelling issues of complex micro devices, and to encourage new thinking about scaling effects. It will provide support for practising engineers working within the defence industry and will also be of welcome interest to graduate students and researchers with a background in electronic engineering, physics, chemistry, biology and materials science.Content: Chapter 1 Scaling of MEMS (pages 1-17): Chapter 2 Scaling of Microactuators - An Overview (pages 19-52): Chapter 3 Scaling of Thermal Sensors (pages 53-72): Chapter 4 Inductive Sensors for Magnetic Fields (pages 73-101): Chapter 5 Scaling of Mechanical Sensors (pages 103-148): Chapter 6 Scaling of Energy Sources (pages 149-168): Chapter 7 Technologies and Architectures for Autonomous MEMS Microrobots (pages 169-178): Chapter 8 Moving Towards the Nanoscale (pages 179-187): Chapter 9 Examples of Scaling Effects Analysis - DIEES?MEMSLAB (pages 189-220): Chapter 10 Concluding Remarks (pages 221-222):

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