Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Frederic Zanella"'
Autor:
Guillaume Basset, Mustapha Zahir, Angélique Luu-Dinh, Ana Maria Madrigal, Frederic Zanella, Sören Fricke, Dirk Van Aken, Christian Schneider
Publikováno v:
Applied optics. 59(12)
The optoelectronic properties of image sensors, among which are the photosensitivity and resolution, are key to the quality factors for imaging as well as spectrometry in Earth observation and scientific space exploration missions. Microlens arrays (
Autor:
I. Michel Antolovic, Scott Lindner, Frederic Zanella, Marc Schnieper, Claudio Bruschini, Arin Can Ulku, Rolando Ferrini, Edoardo Charbon, Ekin Kizilkan
Publikováno v:
Quantum Sensing and Nano Electronics and Photonics XVI.
Single-photon avalanche diodes (SPADs) are direct photon-to-digital detectors that enable scalable arrays with Poisson-limited signal-to-noise ratio and picosecond timing resolution. However, SPAD detectors require a guard-ring structure to prevent l
Autor:
Marc Schnieper, Alessandro Mustaccio, Rolando Ferrini, Jurg Schleuniger, Jeremy Disser, Eyad Assaf, Nenad Marjanovic, Frederic Zanella
Publikováno v:
2018 7th Electronic System-Integration Technology Conference (ESTC).
Printed electronics is an emerging industry facilitating widespread, cost-effectiveelectronics for applications such as flexible displays, printed photovoltaics, Organic Light Emitting Diodes, etc. Printed electronics uses additive deposition methods
Autor:
Ernst Meyer, Frederic Zanella, Nenad Marjanovic, Thomas A. Jung, Alexander Bubendorf, H. Bartolf, H.R. Rossmann, Marc Schnieper, Jens Gobrecht, R.A. Minamisawa
Publikováno v:
Microelectronic Engineering. 145:166-169
The aim of this study is to combine the UMOSFET design with its U-shape trench-gate architecture which is well-established in silicon technology and benefits from a reduction in cell pitch size as well as from the elimination of the junction-FET regi
Self-aligned flexible organic thin-film transistors with gates patterned by nano-imprint lithography
Autor:
Christine Prietl, R. Ferrini, R. Jiawook, Frederic Zanella, A. Drost, Kris Myny, Jan Genoe, Barbara Stadlober, Roger Pretot, Roland Schmied, Hassan Hirshy, Herbert Gold, U. Kleb, Johanna Kraxner, Alexander Fian, Robert Muller, M. König, Ki-Dong Lee, N. Marjanović, Anja Haase, J. Ring, Bernd Striedinger
Publikováno v:
Organic Electronics. 22:140-146
Many applications that rely on organic electronic circuits still suffer from the limited switching speed of their basic elements - the organic thin film transistor (OTFT). For a given set of materials the OTFT speed scales inversely with the square o
Autor:
Nenad Marjanovic, Jeremy Disser, Eyad Assaf, Rolando Ferrini, Marc Schnieper, Alessandro Mustaccio, Jurg Schleuniger, Frederic Zanella
Publikováno v:
Industrializing Additive Manufacturing-Proceedings of Additive Manufacturing in Products and Applications-AMPA2017 ISBN: 9783319668659
An innovative electronic system assembly approach, i.e. hybrid integration combining printed electronic components with/on Flexible Circuit Boards (FCBs) equipped with conventional Surface-Mounted components (SMDs) was implemented in order to realize
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::870e7f44cc315680b4472f627b09fb47
https://doi.org/10.1007/978-3-319-66866-6_25
https://doi.org/10.1007/978-3-319-66866-6_25
Autor:
Rolando Ferrini, Jean-Michel Sallese, Christian Enz, Nenad Marjanovic, F. Pengg, Frederic Zanella
Publikováno v:
IEEE Transactions on Electron Devices. 61:1508-1514
In this paper, we propose a methodology to evaluate the potential of submicrometer organic thin-film transistors (OTFTs) with nanoimprinted gate and self-aligned source and drain contacts. In the first step, the dedicated static model we previously r
Autor:
Anja Haase, Jan Genoe, Jean-Michel Sallese, Roger Pretot, Robert Muller, Christian Enz, Nenad Marjanovic, Ki-Dong Lee, Herbert Gold, Alexander Fian, Hassan Hirshy, Frederic Zanella, Rolando Ferrini, A. Drost, Barbara Stadlober, J. Ring, M. König
Publikováno v:
Organic Electronics
Sub-micrometer channel length (0.5 mu m) organic thin-film transistors (OTFTs) are demonstrated using a process flow combining nano-imprint lithography (NIL) and self-alignment (SA). A dedicated test structure was designed and samples were fabricated
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::38d56c5d01489e8c4653dae1de86a7ec
https://infoscience.epfl.ch/record/191055
https://infoscience.epfl.ch/record/191055