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Featured researches published by F Tramontana.


international solid-state circuits conference | 2013

A 4b ADC manufactured in a fully-printed organic complementary technology including resistors

Sahel Abdinia; Mohammed Benwadih; Romain Coppard; S Stephanie Jacob; G Maiellaro; Giuseppe Palmisano; M Rizzo; Antonino Scuderi; F Tramontana; van Ahm Arthur Roermund; Eugenio Cantatore

Organic transistors (OTFTs) can be printed on thin plastic substrates to obtain mechanically flexible large-area electronics with high throughput. Examples of applications include sensor-augmented RFIDs fabricated on the packaging of retail items and smart surfaces integrating sensors or actuators. Printed OTFTs have been used to design circuits [1-4], however, these implementations have been mainly limited to digital circuits or large-area switch matrices. A major challenge in the design of printed circuits is the relatively high variability in the characteristics of the OTFTs, which is caused by the low degree of spatial correlation typical of printing processes. A relatively high rate of hard faults is also typical in printed electronics (at the state of the art, yield is acceptable only for a circuit complexity of ~100 transistors).


european solid state device research conference | 2012

High performance printed N and P-type OTFTs for complementary circuits on plastic substrate

S Stephanie Jacob; Mohamed Benwadih; Jacqueline Bablet; Isabelle Chartier; Romain Gwoziecki; Sahel Abdinia; Eugenio Cantatore; Lidia Maddiona; F Tramontana; G Maiellaro; Luigi Mariucci; Giuseppe Palmisano; Romain Coppard

This paper presents a printed organic complementary technology on flexible plastic substrate with high performance N and P-type Organic Thin Film Transistors (OTFTs), based on small-molecule organic semiconductors in solution. Challenges related to the integration of both OTFT types in a common complementary flow are addressed, showing the importance of surface treatments. Data on single devices and elementary complementary digital circuits (inverters and ring oscillators) are presented, demonstrating that a robust and reliable flow with high electrical performances can be established for printed organic devices.


european solid-state circuits conference | 2012

Design of analog and digital building blocks in a fully printed complementary organic technology

Sahel Abdinia; Mohammed Benwadih; Eugenio Cantatore; Isabelle Chartier; S Stephanie Jacob; Lidia Maddiona; G Maiellaro; L Mariucci; Giuseppe Palmisano; M Rapisarda; F Tramontana; van Ahm Arthur Roermund

The paper presents several analog and digital building blocks designed using OTFT devices manufactured in a fully-printed complementary organic technology. Circuit performance and parametric variability are simulated based on a model developed specifically for this technology. Fully-static logic gates and flip-flops as well as a low-area dynamic flip-flop enabled by the use of complementary OTFTs are measured, showing good agreement with simulations. A comparator exploiting offset cancellation techniques achieves a measured offset of less than 200mV. In addition, small-sized envelope detectors are measured at the HF RFID frequency (13.56MHz), to demonstrate the high frequency performance of the OTFTs. All these circuits are building blocks for the realization of a printed RFID tag.


Solid-state Electronics | 2013

High performance printed N and P-type OTFTs enabling digital and analog complementary circuits on flexible plastic substrate

S Stephanie Jacob; Sahel Abdinia; Mohammed Benwadih; Jacqueline Bablet; Isabelle Chartier; Romain Gwoziecki; Eugenio Cantatore; van Ahm Arthur Roermund; Lidia Maddiona; F Tramontana; G Maiellaro; L. Mariucci; Matteo Rapisarda; Giuseppe Palmisano; Romain Coppard


Organic Electronics | 2014

Variation-based design of an AM demodulator in a printed complementary organic technology

Sahel Abdinia; Fabrizio Torricelli; G Maiellaro; Romain Coppard; Anis Daami; S Stephanie Jacob; L. Mariucci; Giuseppe Palmisano; E Ragonese; F Tramontana; van Ahm Arthur Roermund; Eugenio Cantatore


Thin Solid Films | 2009

Effective channel length and parasitic resistance determination in non self-aligned low temperature polycrystalline silicon thin film transistors

A. Valletta; M. Rapisarda; L. Mariucci; A. Pecora; G. Fortunato; Claudia Caligiore; E. Fontana; F Tramontana; Salvatore Leonardi


Solid-state Electronics | 2008

Electrical instability in self-aligned p-channel polysilicon TFTs related to damaged regions present at the gate edges

Matteo Rapisarda; L. Mariucci; A. Valletta; A. Pecora; G. Fortunato; Claudia Caligiore; E. Fontana; Salvatore Leonardi; F Tramontana


Archive | 2012

Design of digital and analogue building blocks based on Monte Carlo simulations for a fully printed organic complementary technology

Sahel Abdinia; Fabrizio Torricelli; Mohammed Benwadih; Romain Coppard; Anis Daami; S Stephanie Jacob; Lidia Maddiona; G Maiellaro; L. Mariucci; M Rizzo; F Tramontana; van Ahm Arthur Roermund; Eugenio Cantatore


Archive | 2007

Process for integrating on an inert substrate a device comprising at least a passive element and an active element and corresponding integrated device

Salvatore Leonardi; Salvatore Coffa; Claudia Caligiore; F Tramontana


ECS Transactions | 2013

Invited) Printed Organic TFTs on Flexible Substrate for Complementary Circuits

Romain Coppard; S Stephanie Jacob; Micael Charbonneau; Mohammed Benwadih; Jacqueline Bablet; Vincent Fischer; Romain Gwoziecky; Isabelle Chartier; Sahel Abdinia; Eugenio Cantatore; Lidia Maddiona; G Maiellaro; Luigi Mariucci; Matteo Rapisarda; F Tramontana

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Sahel Abdinia

Eindhoven University of Technology

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Eugenio Cantatore

Eindhoven University of Technology

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van Ahm Arthur Roermund

Eindhoven University of Technology

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