Inkjet-Configurable Gate Array

Towards Application Specific Printed Electronic Circuits

Nonfiction, Science & Nature, Technology, Electronics, Circuits
Cover of the book Inkjet-Configurable Gate Array by Mohammad Mashayekhi, Springer International Publishing
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Author: Mohammad Mashayekhi ISBN: 9783319721163
Publisher: Springer International Publishing Publication: December 29, 2017
Imprint: Springer Language: English
Author: Mohammad Mashayekhi
ISBN: 9783319721163
Publisher: Springer International Publishing
Publication: December 29, 2017
Imprint: Springer
Language: English

This thesis reports on an outstanding research advance in the development of Application Specific Printed Electronic (ASPE) circuits. It proposes the novel Inkjet-Configurable Gate Array (IGA) concept as a design-manufacturing method for the direct mapping of digital functions on top of new prefabricated structures.

 The thesis begins by providing details on the generation of the IGA bulk, and subsequently presents Drop-on-Demand configurable methodologies for the metallization of IGAs. Lastly, it demonstrates IGAs’ suitability for personalization and yield improvement, and reports on the integration of various circuits into IGA bulk. In addition to highlighting novel results, the thesis also offers a comprehensive introduction to printed electronics, from technology development, to design methods, tools and kits.

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This thesis reports on an outstanding research advance in the development of Application Specific Printed Electronic (ASPE) circuits. It proposes the novel Inkjet-Configurable Gate Array (IGA) concept as a design-manufacturing method for the direct mapping of digital functions on top of new prefabricated structures.

 The thesis begins by providing details on the generation of the IGA bulk, and subsequently presents Drop-on-Demand configurable methodologies for the metallization of IGAs. Lastly, it demonstrates IGAs’ suitability for personalization and yield improvement, and reports on the integration of various circuits into IGA bulk. In addition to highlighting novel results, the thesis also offers a comprehensive introduction to printed electronics, from technology development, to design methods, tools and kits.

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