Modeling For Effective Computer Support To Mems Product Development
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Author | : Cornelius T. Leondes |
Publisher | : Springer Science & Business Media |
Total Pages | : 2142 |
Release | : 2007-10-08 |
Genre | : Technology & Engineering |
ISBN | : 0387257861 |
This significant and uniquely comprehensive five-volume reference is a valuable source for research workers, practitioners, computer scientists, students, and technologists. It covers all of the major topics within the subject and offers a comprehensive treatment of MEMS design, fabrication techniques, and manufacturing methods. It also includes current medical applications of MEMS technology and provides applications of MEMS to opto-electronic devices. It is clearly written, self-contained, and accessible, with helpful standard features including an introduction, summary, extensive figures and design examples with comprehensive reference lists.
Author | : American Society of Mechanical Engineers, Design Engineering Division Staff |
Publisher | : |
Total Pages | : 620 |
Release | : 2005 |
Genre | : Computer-aided design |
ISBN | : 9780791847404 |
Author | : |
Publisher | : |
Total Pages | : 770 |
Release | : 2005 |
Genre | : Computers |
ISBN | : |
Author | : John A. Pelesko |
Publisher | : CRC Press |
Total Pages | : 382 |
Release | : 2002-11-25 |
Genre | : Mathematics |
ISBN | : 1420035290 |
Designing small structures necessitates an a priori understanding of various device behaviors. The way to gain such understanding is to construct, analyze, and interpret the proper mathematical model. Through such models, Modeling MEMS and NEMS illuminates microscale and nanoscale phenomena, thereby facilitating the design and optimization o
Author | : Alissa M. Fitzgerald |
Publisher | : Springer Nature |
Total Pages | : 282 |
Release | : 2021-03-16 |
Genre | : Technology & Engineering |
ISBN | : 3030617092 |
Drawing on their experiences in successfully executing hundreds of MEMS development projects, the authors present the first practical guide to navigating the technical and business challenges of MEMS product development, from the initial concept stage all the way to commercialization. The strategies and tactics presented, when practiced diligently, can shorten development timelines, help avoid common pitfalls, and improve the odds of success, especially when resources are limited. MEMS Product Development illuminates what it really takes to develop a novel MEMS product so that innovators, designers, entrepreneurs, product managers, investors, and executives may properly prepare their companies to succeed.
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 76 |
Release | : 1998-01-01 |
Genre | : Technology & Engineering |
ISBN | : 0309059801 |
Microelectromenchanical systems (MEMS) is a revolutionary field that adapts for new uses a technology already optimized to accomplish a specific set of objectives. The silicon-based integrated circuits process is so highly refined it can produce millions of electrical elements on a single chip and define their critical dimensions to tolerances of 100-billionths of a meter. The MEMS revolution harnesses the integrated circuitry know-how to build working microsystems from micromechanical and microelectronic elements. MEMS is a multidisciplinary field involving challenges and opportunites for electrical, mechanical, chemical, and biomedical engineering as well as physics, biology, and chemistry. As MEMS begin to permeate more and more industrial procedures, society as a whole will be strongly affected because MEMS provide a new design technology that could rivalâ€"perhaps surpassâ€"the societal impact of integrated circuits.
Author | : Dirk Ortloff |
Publisher | : Springer Science & Business Media |
Total Pages | : 216 |
Release | : 2013-10-11 |
Genre | : Technology & Engineering |
ISBN | : 3709107067 |
This book provides the methodological background to directing cooperative product engineering projects in a micro and nanotechnology setting. The methodology is based on well-established methods like PRINCE2 and StageGate, which are supplemented by best practices that can be individually tailored to the actual nature and size of the project at hand. This book is intended for everyone who takes an active role in either practical product engineering or in teaching it. This includes project and product management staff and program management offices in companies working on innovation projects, those active in innovation, as well as professors and students in engineering and management.
Author | : Peter Kopacek |
Publisher | : Gulf Professional Publishing |
Total Pages | : 364 |
Release | : 2005-08-12 |
Genre | : Science |
ISBN | : 9780080442495 |
Author | : Paolo Di Barba |
Publisher | : Springer |
Total Pages | : 191 |
Release | : 2019-06-26 |
Genre | : Technology & Engineering |
ISBN | : 3030214966 |
This book highlights numerical models as powerful tools for the optimal design of Micro-Electro-Mechanical Systems (MEMS). Most MEMS experts have a background in electronics, where circuit models or behavioral models (i.e. lumped-parameter models) of devices are preferred to field models. This is certainly convenient in terms of preliminary design, e.g. in the prototyping stage. However, design optimization should also take into account fine-sizing effects on device behavior and therefore be based on distributed-parameter models, such as finite-element models. The book shows how the combination of automated optimal design and field-based models can produce powerful design toolboxes for MEMS. It especially focuses on illustrating theoretical concepts with practical examples, fostering comprehension through a problem-solving approach. By comparing the results obtained using different methods, readers will learn to identify their respective strengths and weaknesses. In addition, special emphasis is given to evolutionary computing and nature-inspired optimization strategies, the effectiveness of which has already been amply demonstrated. Given its scope, the book provides PhD students, researchers and professionals in the area of computer-aided analysis with a comprehensive, yet concise and practice-oriented guide to MEMS design and optimization. To benefit most from the book, readers should have a basic grasp of electromagnetism, vector analysis and numerical methods.
Author | : Oliver Brand |
Publisher | : John Wiley & Sons |
Total Pages | : 562 |
Release | : 2012-12-20 |
Genre | : Technology & Engineering |
ISBN | : 3527647120 |
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.