Inkjet-based Micromanufacturing

ISBN 13 : 9783527319046

Inkjet-based Micromanufacturing

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9783527319046: Inkjet-based Micromanufacturing
Biographie de l'auteur :

Jan G. Korvink holds a Chair for Microsystems Engineering at the University of Freiburg, Germany, where he also directs the Freiburg Institute for Advanced Studies – FRIAS. He has co–authored more than 160 papers in scientific journals, as well as numerous conference papers, book chapters and a book on semiconductors for engineers. His research interests cover the modeling, simulation and low cost fabrication of MEMS/NEMS, and applications in magnetic resonance. In 2011 he received a European Research Council (ERC) Advanced Grant, the Red Dot Design Concept Award and the University of Freiburg Teaching Award.

Patrick J. Smith is a Lecturer in Manufacturing Technology for the University of Sheffield, UK. He has published over 40 journal and conference papers, and has 3 patents. His main research interests are concerned with reactive inkjet printing, controlled crystallisation using inkjet and additive manufacture.

Dong–Youn Shin is Assistant Professor at the Pukyong National University in Busan, South Korea. Before his appointment, he was research engineer at LG Chem Research Park and then senior research scientist in the division of nanomechanical systems at the Korean Institute of Machinery and Materials in South Korea. He holds 38 patents and over 70 conference and journal papers. His research interests lie in maskless lithography and fine pattern generation for displays and electronics with the piezo inkjet printing technology.

Présentation de l'éditeur :

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

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Korvink, Jan G. (EDT)/ Smith, Patrick J. (EDT)/ Shin, Dong-youn (EDT)/ Brand, Oliver (EDT)/ Fedder, Gary K. (EDT)
Edité par Wiley-VCH Verlag GmbH 2012-04-04, Weinheim (2012)
ISBN 10 : 3527319042 ISBN 13 : 9783527319046
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Description du livre Wiley-VCH Verlag GmbH 2012-04-04, Weinheim, 2012. hardback. État : New. N° de réf. du libraire 9783527319046

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Oliver Brand
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Description du livre Wiley VCH, 2012. HRD. État : New. New Book. Shipped from UK in 4 to 14 days. Established seller since 2000. N° de réf. du libraire FW-9783527319046

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Editor: Jan G. Korvink (University of Freiburg, Germany); Editor: Patrick J. Smith (University of Sheffield, UK); Editor: Dong-Youn Shin (Korea Institute of Machinery & Materials); Series Editor: Oliver Brand (Georgia Institute of Technology, Atlanta,
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Description du livre John Wiley and Sons. État : New. Brand New. N° de réf. du libraire 3527319042

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Jan G. Korvink
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ISBN 10 : 3527319042 ISBN 13 : 9783527319046
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Description du livre Wiley VCH Verlag Gmbh Apr 2012, 2012. Buch. État : Neu. 240x170x15 mm. Neuware - Jan G. Korvink holds a Chair for Microsystem Technology at the University of Freiburg, Germany, where he runs the laboratory for microsystem simulation. He has co-authored more than 100 papers in scientific journals and conference digests, as well as numerous book chapters and a book on semiconductors for engineers. His research interests cover the modeling and simulation of microsystems and the low-cost fabrication of polymer-based MEMS. 371 pp. Englisch. N° de réf. du libraire 9783527319046

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Korvink, Jan G. / Smith, Patrick
ISBN 10 : 3527319042 ISBN 13 : 9783527319046
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Description du livre État : New. Publisher/Verlag: Wiley-VCH | A unique combination of vital yet hard-to-come-by practical knowledge in one handbook and ready reference, offering a well-balanced industrial and academic perspective. From the basics of instrumentation, via patterning and its control to system integration for applications. | 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 developmentOverview of Inkjet-based Micromanufacturing:Thermal InkjetTheory and ModelingPost-Printing Processes for Inorganic Inks for Plastic ElectronicsApplicationsInkjet Ink FormulationsInkjet Fabrication of Printed Circuit BoardsAntennas for Radio Frequency Identification TagsInkjet Printing for MEMS | List of Contributors XIII1 Overview of Inkjet-Based Micromanufacturing 1David Wallace1.1 Introduction 11.2 Inkjet Technology 11.2.1 Continuous Mode Inkjet (CIJ) Technology 21.2.2 Demand Mode Inkjet Technology 21.3 Fluid Requirements 31.4 Pattern Formation: Fluid/Substrate Interaction 51.5 Micromanufacturing 61.5.1 Introduction 61.5.2 Limitations and Opportunities in Micromanufacturing 71.5.3 Benefits of Inkjet in Microfabrication 81.6 Examples of Inkjet in Micromanufacturing 91.6.1 Chemical Sensors 91.6.2 Optical MEMS Devices 101.6.3 Bio-MEMS Devices 121.6.4 Assembly and Packaging 131.7 Conclusions 14Acknowledgments 14References 142 Combinatorial Screening of Materials Using Inkjet Printing as a Patterning Technique 19Anke Teichler, Jolke Perelaer, and Ulrich S. Schubert2.1 Introduction 192.2 Inkjet Printing - from Well-Defined Dots to Homogeneous Films 202.3 Thin-Film Libraries Prepared by Inkjet Printing 252.4 Combinatorial Screening of Materials for Organic Solar Cells 282.5 Conclusion and Outlook 34References 353 Thermal Inkjet 41Naoki Morita3.1 History of Thermal Inkjet Technology 413.2 Market Trends for Inkjet Products and Electrophotography 423.3 Structures of Various TIJ Heads 433.4 Research on Rapid Boiling and Principle of TIJ 443.5 Inkjetting Mechanism of TIJ 473.6 Basic Jetting Behavior of TIJ 483.6.1 Input Power Characteristics 483.6.2 Frequency Characteristics 493.6.3 Dependency on Temperature 493.7 TIJ Behavior Analysis Using Simulation 513.7.1 Cylindrical Thermal Propagating Calculation Based on the Finite Element Method (Software Name: Ansys) 513.7.2 Fluidic Free Boundary Calculation Based on the Finite Differentiation Method (Software name: Flow3D) 513.8 Issues with Reliability in TIJ 533.9 Present and Future Evolution in TIJ Technology 54References 554 High-Resolution Electrohydrodynamic Inkjet 57Park Jang-Ung and John A. Rogers4.1 Introduction 574.2 Printing System 574.3 Control of Jet Motions 594.4 Drop-on-Demand Mode Printing 604.5 Versatility of Printable Materials and Resolutions 624.6 Applications in Electronics and Biotechnology 644.7 High-Resolution Printing of Charge 69References 705 Cross Talk in Piezo Inkjet 73Herman Wijshoff5.1 Introduction 735.2 Electrical Cross Talk 735.3 Direct Cross Talk 745.4 Pressure-Induced Cross Talk 765.5 Acoustic Cross Talk 785.6 Printhead Resonance 815.7 Residual Vibrations 83References 846 Patterning 87Pat. N° de réf. du libraire K9783527319046

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Jan G. Korvink
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Description du livre Wiley VCH Verlag Gmbh Apr 2012, 2012. Buch. État : Neu. 240x170x15 mm. Neuware - Jan G. Korvink holds a Chair for Microsystem Technology at the University of Freiburg, Germany, where he runs the laboratory for microsystem simulation. He has co-authored more than 100 papers in scientific journals and conference digests, as well as numerous book chapters and a book on semiconductors for engineers. His research interests cover the modeling and simulation of microsystems and the low-cost fabrication of polymer-based MEMS. 371 pp. Englisch. N° de réf. du libraire 9783527319046

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Jan G. Korvink
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Description du livre Wiley VCH Verlag Gmbh Apr 2012, 2012. Buch. État : Neu. 240x170x15 mm. Neuware - Jan G. Korvink holds a Chair for Microsystem Technology at the University of Freiburg, Germany, where he runs the laboratory for microsystem simulation. He has co-authored more than 100 papers in scientific journals and conference digests, as well as numerous book chapters and a book on semiconductors for engineers. His research interests cover the modeling and simulation of microsystems and the low-cost fabrication of polymer-based MEMS. 371 pp. Englisch. N° de réf. du libraire 9783527319046

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Jan G. Korvink
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Description du livre Wiley VCH Verlag Gmbh Apr 2012, 2012. Buch. État : Neu. 240x170x15 mm. Neuware - Jan G. Korvink holds a Chair for Microsystem Technology at the University of Freiburg, Germany, where he runs the laboratory for microsystem simulation. He has co-authored more than 100 papers in scientific journals and conference digests, as well as numerous book chapters and a book on semiconductors for engineers. His research interests cover the modeling and simulation of microsystems and the low-cost fabrication of polymer-based MEMS. 371 pp. Englisch. N° de réf. du libraire 9783527319046

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Description du livre Wiley-VCH, 2012. Hardcover. État : New. N° de réf. du libraire P113527319042

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Jan G. Korvink
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