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Showing 1 - 8 of 8 matches in All Departments

LIGA and its Applications (Hardcover): Volker Saile, Ulrike Wallrabe, Osamu Tabata, Jan G. Korvink LIGA and its Applications (Hardcover)
Volker Saile, Ulrike Wallrabe, Osamu Tabata, Jan G. Korvink; Series edited by Oliver Brand, …
R6,638 R5,324 Discovery Miles 53 240 Save R1,314 (20%) Out of stock

Covering technological aspects as well as the suitability and applicability of various kinds of uses, this handbook shows optimization strategies, techniques and assembly pathways to achieve the combination of complex, even three-dimensional structures with simple manufacturing steps. The authors provide information on markets, commercialization opportunities and aspects of mass or large-scale production as well as design tools, experimental techniques, novel materials, and ideas for future improvements. Not only do they weigh up cost versus quantity, they also consider CMOS and LIGA strategies.
Of interest to physicists, electronics engineers, materials scientists, institutional and industrial libraries as well as graduate students of the relevant disciplines.

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.

Inkjet-based Micromanufacturing (Hardcover, Volume 9): Oliver Brand, Gary K. Fedder, Christofer Hierold, Jan G. Korvink, Osamu... Inkjet-based Micromanufacturing (Hardcover, Volume 9)
Oliver Brand, Gary K. Fedder, Christofer Hierold, Jan G. Korvink, Osamu Tabata; Series edited by …
R4,940 R2,690 Discovery Miles 26 900 Save R2,250 (46%) Out of stock

Inkjet-based Micromanufacturing Inkjet technology goes way beyond putting ink on paper: it enables simpler, faster and more reliable manufacturing processes in the fields of micro- and nanotechnology. Modern inkjet heads are per se precision instruments that deposit droplets of fluids on a variety of surfaces in programmable, repeating patterns, allowing, after suitable modifications and adaptations, the manufacturing of devices such as thin-film transistors, polymer-based displays and photovoltaic elements. Moreover, inkjet technology facilitates the large-scale production of flexible RFID transponders needed, eg, for automated logistics and miniaturized sensors for applications in health surveillance. The book gives an introduction to inkjet-based micromanufacturing, followed by an overview of the underlying theories and models, which provides the basis for a full understanding and a successful usage of inkjet-based methods in current microsystems research and development Overview of Inkjet-based Micromanufacturing: Thermal Inkjet Theory and Modeling Post-Printing Processes for Inorganic Inks for Plastic Electronics Applications Inkjet Ink Formulations Inkjet Fabrication of Printed Circuit Boards Antennas for Radio Frequency Identification Tags Inkjet Printing for MEMS

Micro- and Nanomanipulation Tools (Hardcover): Yu Sun, Xinyu Liu Micro- and Nanomanipulation Tools (Hardcover)
Yu Sun, Xinyu Liu; Series edited by Oliver Brand, Gary K. Fedder, Christofer Hierold, …
R4,574 R3,648 Discovery Miles 36 480 Save R926 (20%) Out of stock

Combining robotics with nanotechnology, this ready reference summarizes the fundamentals and emerging applications in this fascinating research field. This is the first book to introduce tools specifically designed and made for manipulating micro- and nanometer-sized objects, and presents such examples as semiconductor packaging and clinical diagnostics as well as surgery. The first part discusses various topics of on-chip and device-based micro- and nanomanipulation, including the use of acoustic, magnetic, optical or dielectrophoretic fields, while surface-driven and high-speed microfluidic manipulation for biophysical applications are also covered. In the second part of the book, the main focus is on microrobotic tools. Alongside magnetic micromanipulators, bacteria and untethered, chapters also discuss silicon nano- and integrated optical tweezers. The book closes with a number of chapters on nanomanipulation using AFM and nanocoils under optical and electron microscopes. Exciting images from the tiniest robotic systems at the nano-level are used to illustrate the examples throughout the work. A must-have book for readers with a background ranging from engineering to nanotechnology.

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.

Enabling Technology for MEMS and Nanodevices - Advanced Micro and Nanosystems (Paperback): Henry Baltes, Oliver Brand, Gary K.... Enabling Technology for MEMS and Nanodevices - Advanced Micro and Nanosystems (Paperback)
Henry Baltes, Oliver Brand, Gary K. Fedder, Christofer Hierold, Jan G. Korvink, …
R2,346 R1,901 Discovery Miles 19 010 Save R445 (19%) Out of stock

This edition of 'CMOS-MEMS' was originally published in the successful series 'Advanced Micro & Nanosystems'. A close look at enabling technologies is taken, the first section on MEMS featuring an introduction to the challenges and benefi ts of three-dimensional silicon processing. An insider's view of industrial MEMS commercialization is followed by chapters on capacitive interfaces for MEMS, packaging issues of micro- and nanosystems, MEMS contributions to high frequency integrated resonators and filters, and the uses of MEMS in mass data storage and electrochemical imaging by means of scanning micro- and nanoprobes. The second section on nanodevices first tackles the emerging topic of nanofluidics with a contribution each on simulation tools and on devices and uses, followed by another two on nanosensors featuring CNT sensors and CMOS-based DNA sensor arrays, respectively.

Resonant MEMS - Fundamentals, Implementation, and Application (Hardcover): Oliver Brand, Isabelle Dufour, Stephen Heinrich,... Resonant MEMS - Fundamentals, Implementation, and Application (Hardcover)
Oliver Brand, Isabelle Dufour, Stephen Heinrich, Fabien Josse; Series edited by Gary K. Fedder, …
R4,282 R3,687 Discovery Miles 36 870 Save R595 (14%) Out of stock

Part of the AMN book series, this book covers the principles, modeling and implementation as well as applications of resonant MEMS from a unified viewpoint. It starts out with the fundamental equations and phenomena that govern the behavior of resonant MEMS and then gives a detailed overview of their implementation in capacitive, piezoelectric, thermal and organic devices, complemented by chapters addressing the packaging of the devices and their stability. The last part of the book is devoted to the cutting-edge applications of resonant MEMS such as inertial, chemical and biosensors, fluid properties sensors, timing devices and energy harvesting systems.

Carbon Nanotube Devices - Properties, Modeling, Integration and Applications (Hardcover): Christofer Hierold Carbon Nanotube Devices - Properties, Modeling, Integration and Applications (Hardcover)
Christofer Hierold; Series edited by Oliver Brand, Gary K. Fedder, Jan G. Korvink, Osamu Tabata
R5,300 Discovery Miles 53 000 Out of stock

Following on from the first AMN volume, this handy reference and textbook examines the topic of nanosystem design in further detail. It explains the physical and chemical basics behind the design and fabrication of nanodevices, covering all important, recent advances in the field, while introducing nanosystems to less experienced readers.

The result is an important source for a fast, accurate overview of the state of the art of nanosystem realization, summarizing further important literature.

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