9780982299104-0982299109-Practical MEMS: Design of microsystems, accelerometers, gyroscopes, RF MEMS, optical MEMS, and microfluidic systems

Practical MEMS: Design of microsystems, accelerometers, gyroscopes, RF MEMS, optical MEMS, and microfluidic systems

ISBN-13: 9780982299104
ISBN-10: 0982299109
Edition: Illustrated
Author: Ville Kaajakari
Publication date: 2009
Publisher: Small Gear Publishing
Format: Hardcover 496 pages
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Book details

ISBN-13: 9780982299104
ISBN-10: 0982299109
Edition: Illustrated
Author: Ville Kaajakari
Publication date: 2009
Publisher: Small Gear Publishing
Format: Hardcover 496 pages

Summary

Practical MEMS: Design of microsystems, accelerometers, gyroscopes, RF MEMS, optical MEMS, and microfluidic systems (ISBN-13: 9780982299104 and ISBN-10: 0982299109), written by authors Ville Kaajakari, was published by Small Gear Publishing in 2009. With an overall rating of 3.7 stars, it's a notable title among other Electrical & Electronics (Mechanical, Engineering, Nanotechnology, Technology) books. You can easily purchase or rent Practical MEMS: Design of microsystems, accelerometers, gyroscopes, RF MEMS, optical MEMS, and microfluidic systems (Hardcover) from BooksRun, along with many other new and used Electrical & Electronics books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $5.89.

Description

Practical MEMS focuses on analyzing the operational principles of microsystems. The salient features of the book include:

Tutorial approach. The book emphasizes the design and analysis through over 100 calculated examples covering all aspects of MEMS design.

Emphasis on design. This book focuses on the microdevice operation. First, the physical operation principles are covered. Second, the design equations are derived and exemplified. Practical MEMS is a perfect companion to MEMS fabrication textbooks.

Quantitative performance analysis. The critical performance parameters for the given application are identified and analyzed. For example, the noise and power performance of piezoresistive and capacitive accelerometers is analyzed in detail. Mechanical, resistive (thermal and 1/f-noise), and circuit noise analysis is covered.

Application specifications. Different MEMS applications are compared to commercial design requirements. For example, the optical MEMS is analyzed in the context of bar code scanner, projection displays, and optical cross connect specifications.

MEMS economics and market analysis. A full chapter is devoted to yield and cost analysis of microfabricated devices. In addition, the market economics for emerging applications such as RF MEMS is discussed.

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