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Fast Simulation of Electro-Thermal MEMS - Efficient Dynamic Compact Models (Hardcover, 2007 ed.): Tamara Bechtold, Evgenii B.... Fast Simulation of Electro-Thermal MEMS - Efficient Dynamic Compact Models (Hardcover, 2007 ed.)
Tamara Bechtold, Evgenii B. Rudnyi, Jan G. Korvink
R2,799 Discovery Miles 27 990 Ships in 10 - 15 working days

This book provides the reader with a complete methodology and software environment for creating efficient dynamic compact models for electro-thermal MEMS devices. It supplies the basic knowledge and understanding for using model order reduction at the engineering level. This tutorial is written for MEMS engineers and is enriched with many case studies which equip readers with the know-how to facilitate the simulation of a specific problem.

System-level Modeling of MEMS (Hardcover, Volume 10): Tamara Bechtold, Gabriele Schrag, Lihong Feng System-level Modeling of MEMS (Hardcover, Volume 10)
Tamara Bechtold, Gabriele Schrag, Lihong Feng; Edited by Oliver Brand, Gary K. Fedder, …
R4,551 R3,818 Discovery Miles 38 180 Save R733 (16%) Out of stock

System-level modeling of MEMS - microelectromechanical systems - comprises integrated approaches to simulate, understand, and optimize the performance of sensors, actuators, and microsystems, taking into account the intricacies of the interplay between mechanical and electrical properties, circuitry, packaging, and design considerations. Thereby, system-level modeling overcomes the limitations inherent to methods that focus only on one of these aspects and do not incorporate their mutual dependencies. The book addresses the two most important approaches of system-level modeling, namely physics-based modeling with lumped elements and mathematical modeling employing model order reduction methods, with an emphasis on combining single device models to entire systems. At a clearly understandable and sufficiently detailed level the readers are made familiar with the physical and mathematical underpinnings of MEMS modeling. This enables them to choose the adequate methods for the respective application needs. This work is an invaluable resource for all materials scientists, electrical engineers, scientists working in the semiconductor and/or sensor industry, physicists, and physical chemists.

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