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RF MEMS Circuit Design for Wireless Communications
27 July 2010

RF MEMS Circuit Design for Wireless Communications
RF MEMS Circuit Design for Wireless Communications
Artech House Publishers 2002 | 224 | ISBN: 1580533299 | PDF | 1
This is the first comprehensive book to address the design of RF MEMS-based circuits for use in high performance wireless systems. A groundbreaking research and reference tool, the book enables you to understand the realm of applications of RF MEMS technology; become knowledgeable of the wide variety and performance levels of RF MEMS devices; and partition the architecture of wireless systems to achieve greater levels of performance. This innovative resource also guides you through the design process of RF MEMS-based circuits, and establishes a practical knowledge base for the design of high-yield RF MEMS-based circuits. ...
MEMS Reliability
25 February 2011

MEMS Reliability
MEMS Reliability
452 pages | Dec 12, 2008 |ISBN: 1441960171 | PDF | 7.5 Mb

The successful launch of viable MEMs product hinges on MEMS reliability, the reliability and qualification for MEMs based products is not widely understood. Companies that have a deep understanding of MEMs reliability view the information as a competitive advantage and are reluctant to share it.
Reliability of MEMS: Testing of Materials and Devices
21 April 2011

Reliability of MEMS: Testing of Materials and Devices

Reliability of MEMS: Testing of Materials and Devices by Osamu Tabata, Toshiyuki Tsuchiya, Oliver Brand

W..y-V.C.H | 2008 | ISBN: 3527314946 | 324 pages | PDF | 14 MB

This first book to cover exclusively and in detail the principles, tools and methods for determining the reliability of microelectromechanical materials, components and devices covers both component materials as well as entire MEMS devices. Divided into two major parts, following a general introductory chapter to reliability issues, the first part looks at the mechanical properties of the materials used in MEMS, explaining in detail the necessary measuring technologies -- nanoindenters, bulge methods, bending tests, tensile tests, and others. Part Two treats the actual devices, organized by important device categories such as pressure sensors, inertial sensors, RF MEMS, and optical MEMS.
MEMS/MOEM Packaging (Mcgraw-Hill Nanoscience and Technology)
1 November 2011

MEMS/MOEM Packaging (Mcgraw-Hill Nanoscience and Technology)
MEMS/MOEM Packaging (Mcgraw-Hill Nanoscience and Technology)
pages | Sep 22 2010 |ISBN: | PDF | 5.5 Mb

While MEMS technology has progressed rapidly, commercialization of MEMS has been hindered by packaging technology barriers and costs. One of the key issues in the industrialization of MEMS, MOEM and ultimately Nanoelectrical devices is the development of appropriate packaging solutions for the protection, assembly, and long term reliable operation. This book rigorously examines the properties of the materials used in MEMS and MOEN assembly then evaluates them in terms of their routing, electrical performance, thermal management and reliability.
MEMS and Nanotechnology, Volume 2
29 March 2011

MEMS and Nanotechnology, Volume 2

MEMS and Nanotechnology, Volume 2: Proceedings of the 2010 Annual Conference on Experimental and Applied Mechanics (Conference Proceedings of the Society for Experimental Mechanics Series) by Tom Proulx (Editor)

S-r; 1st Edition | 15 Mar 2011 | ISBN: 1441988246 | 290 pages | PDF | 28 MB

This the second volume of six from the Annual Conference of the Society for Experimental Mechanics, 2010, brings together 40 chapters on Microelectromechanical Systems and Nanotechnology. It presents early findings from experimental and computational investigations on MEMS and Nanotechnology including contributions on Nanomechanical Standards, Magneto-mechanical MEMS Sensors, Piezoelectric MEMS for Energy Harvesting, and Linear and Nonlinear Mass Sensing.
Advances in Multiphysics Simulation and Experimental Testing of MEMS
2 July 2011

Advances in Multiphysics Simulation and Experimental Testing of MEMS
Advances in Multiphysics Simulation and Experimental Testing of MEMS
355 pages | Aug 31 2010 |ISBN:1860948626 | PDF | 35.5 Mb

This volume takes a much needed multiphysical approach to the numerical and experimental evaluation of the mechanical properties of MEMS and NEMS. The contributed chapters present many of the most recent developments in fields ranging from microfluids and damping to structural analysis, topology optimization and nanoscale simulations. The book responds to a growing need emerging in academia and industry to merge different areas of expertise towards a unified design and analysis of MEMS and NEMS. Contents
Inertial MEMS: Principles and Practice
2 February 2012

Inertial MEMS: Principles and Practice

Inertial MEMS: Principles and Practice
English | Publisher: Cambridge University Press | 492 Pages | ISBN 13: 9780521766586 | PDF | 5.13 MB

A practical and systematic overview of the design, fabrication and test of MEMS-based inertial sensors, this invaluable resource shows you how to analyze and transform application requirements into practical designs and helps you to avoid potential pitfalls and cut design time.
Microsensors, MEMS and Smart Devices
18 October 2010

Microsensors, MEMS and Smart Devices
Microsensors, MEMS and Smart Devices
528 pages | Dec 12, 2007 |ISBN: 047186109X | PDF | 8 Mb

Microsensors and MEMS (micro-electro-mechanical systems) are revolutionising the semiconductor industry. A microsystem or the so-called "system-on-a-chip" combines microelectronic circuitry with microsensors and microactuators. This emergent field has seen the development of applications ranging from the electronic nose and intelligent ear to micro-tweezers and the modern ink-jet nozzle.
Vibrations of Elastic Systems: With Applications to MEMS and NEMS
16 April 2012

Vibrations of Elastic Systems: With Applications to MEMS and NEMS
Vibrations of Elastic Systems: With Applications to MEMS and NEMS
505 pages | Publisher: Springer (January 16, 2012) | ISBN: 9400726716 | PDF | 7.7 Mb

This work presents a unified approach to the vibrations of elastic systems as applied to MEMS devices, mechanical components, and civil structures. Applications include atomic force microscopes, energy harvesters, and carbon nanotubes and consider such complicating effects as squeeze film damping, viscous fluid loading, in-plane forces, and proof mass interactions with their elastic supports.
Feedback Control of MEMS to Atoms
18 April 2012

Feedback Control of MEMS to Atoms

Feedback Control of MEMS to Atoms
2012 | 392 Pages | ISBN: 1441958312 | PDF | 8 MB

Control from MEMS to Atoms illustrates the use of control and control systems as an essential part of functioning integrated systems. The book is organized according to the dimensional scale of the problem, starting with micro-scale systems and ending with atomic-scale systems. Similar to macro-scale machines and processes, control systems can play a major role in improving the performance of micro- and nano-scale systems and in enabling new capabilities that would otherwise not be possible. However, the majority of problems at these scales present many new challenges that go beyond the current state-of-the-art in control engineering. This is a result of the multidisciplinary nature of micro/nanotechnology, which requires the merging of control engineering with physics, biology and chemistry.