A thin-film microprocessor with inkjet print-programmable memory View Full Text


Ontology type: schema:ScholarlyArticle      Open Access: True


Article Info

DATE

2015-05

AUTHORS

Kris Myny, Steve Smout, Maarten Rockelé, Ajay Bhoolokam, Tung Huei Ke, Soeren Steudel, Brian Cobb, Aashini Gulati, Francisco Gonzalez Rodriguez, Koji Obata, Marko Marinkovic, Duy-Vu Pham, Arne Hoppe, Gerwin H. Gelinck, Jan Genoe, Wim Dehaene, Paul Heremans

ABSTRACT

The Internet of Things is driving extensive efforts to develop intelligent everyday objects. This requires seamless integration of relatively simple electronics, for example through 'stick-on' electronics labels. We believe the future evolution of this technology will be governed by Wright's Law, which was first proposed in 1936 and states that the cost of a product decreases with cumulative production. This implies that a generic electronic device that can be tailored for application-specific requirements during downstream integration would be a cornerstone in the development of the Internet of Things. We present an 8-bit thin-film microprocessor with a write-once, read-many (WORM) instruction generator that can be programmed after manufacture via inkjet printing. The processor combines organic p-type and soluble oxide n-type thin-film transistors in a new flavor of the familiar complementary transistor technology with the potential to be manufactured on a very thin polyimide film, enabling low-cost flexible electronics. It operates at 6.5 V and reaches clock frequencies up to 2.1 kHz. An instruction set of 16 code lines, each line providing a 9 bit instruction, is defined by means of inkjet printing of conductive silver inks. More... »

PAGES

7398

References to SciGraph publications

  • 2013-09. Carbon nanotube computer in NATURE
  • 1991-09. The Computer for the 21st Century in SCIENTIFIC AMERICAN
  • Identifiers

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    http://scigraph.springernature.com/pub.10.1038/srep07398

    DOI

    http://dx.doi.org/10.1038/srep07398

    DIMENSIONS

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    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/25492120


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