Electromechanics and MEMS / by T. Jones and N. Nenadic. [Electronic Resource]
Material type: Computer filePublication details: Cambridge : Cambridge University Press, 2013Description: xx, 559pISBN:- 9781139032605
- 621.381Â J71E
Item type | Home library | Collection | Call number | Status | Notes | Date due | Barcode | Item holds | |
---|---|---|---|---|---|---|---|---|---|
e-Book | S. R. Ranganathan Learning Hub Online | Textbook | 621.381 J71E (Browse shelf(Opens below)) | Available (e-Book For Access) | Platform : Cambridge Core | EB0517 |
Browsing S. R. Ranganathan Learning Hub shelves, Shelving location: Online, Collection: Textbook Close shelf browser (Hides shelf browser)
621.381 52 L972F Fundamentals of Carrier Transport | 621.381 542 R812P Photovoltaic Science and Technology | 621.381 Er44F Fundamentals of Power Electronics | 621.381 J71E Electromechanics and MEMS | 621.381 L963A Advanced RF MEMS | 621.381 Si64S Smart Electronic Materials : Fundamentals and Applications | 621.3813 P879M Microwave Engineering |
Offering a consistent, systematic approach to capacitive, piezoelectric and magnetic MEMS, from basic electromechanical transducers to high-level models for sensors and actuators, this comprehensive textbook equips graduate and senior-level undergraduate students with all the resources necessary to design and develop practical, system-level MEMS models. The concise yet thorough treatment of the underlying principles of electromechanical transduction provides a solid theoretical framework for this development, with each new topic related back to the core concepts. Repeated references to the shared commonalities of all MEMS encourage students to develop a systems-based design perspective. Extensive use is made of easy-to-interpret electrical and mechanical analogs, such as electrical circuits, electromechanical two-port models and the cascade paradigm. Each chapter features worked examples and numerous problems, all designed to test and extend students' understanding of the key principles.
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