Overview:Materials for Mechanical and Optical Microsystems: Volume 444 - MRS Proceedings - Materials research plays a central role in the development of microsystems in a number of different ways. More specifically, materials aspects are important issues for both the choice of fabrication method and the design of microcomponents and systems to obtain the desired functions. This book focuses on materials as they are used in microsystems for mechanics (i.e., mechanical sensors such as accelerometers and pressure sensors, and actuators such as micropumps and micromotors) and optics (i.e., optical microcomponents, couplers and switches). Often the materials used are thin films, with thicknesses ranging from fractions of a micrometer to tens of micrometers, and the properties of which usually strongly depend on the details of the deposition process. Researchers discuss this complex interplay between materials, design and fabrication processes. Topics range from exciting MEMS technologies and exotic materials such as diamond-like carbon and aluminum nitride, to various characterization and testing methods and fabrication techniques.

This book is on page /88f0ff300130a9332bf7ee8997e69000/book/1603729789-9781558993488. It was written by the following authors: Yuji Uenishi, Stefan Johansson, Hiroyuki Fujita, Michael L. Reed, Miko Elwenspoek, Ernst Obermeier. Book Materials for Mechanical and Optical Microsystems: Volume 444 - MRS Proceedings, which can be read online, published by the company: Materials Research Society. Other books on similar topics can be found in sections: Science, Technology, Medicine. The book was published on 1997-03-30 00:00:00. It has 242 pages and is published in Hardback format and weight 500 g. File for download Materials for Mechanical and Optical Microsystems: Volume 444 - MRS Proceedings has PDF format and is called materials-for-mechanical-and-optical-microsystems-volume-444-mrs-proceedings.pdf. Other books you can download below. Our nottedeiricercatoriaq.it site is not responsible for the content of PDF files.


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