New PDF release: Circuit Design on Plastic Foils

By Daniele Raiteri, Eugenio Cantatore, Arthur van Roermund

ISBN-10: 3319114263

ISBN-13: 9783319114262

ISBN-10: 3319114271

ISBN-13: 9783319114279

This booklet illustrates quite a few circuit designs on plastic foils and offers the entire info had to adopt profitable designs in large-area electronics. The authors exhibit architectural, circuit, format, and machine strategies and clarify the explanations and the artistic technique at the back of every one. Readers will how to hold less than keep watch over large-area applied sciences and attain strong, trustworthy circuit designs that could face the demanding situations imposed via reasonably cheap low-temperature high-throughput manufacturing.

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Mottaghi, P. Lang, Structure-performance relationship in pentacene-based thin-film transistors.  1409–1411, 2004 4. A. Ulman, Formation and structure of self-assembled monolayers. Chem. Rev. 96(4), 1533–1554 (1996) 5. F. , Transport physics and device modeling of zinc oxide thin-film transistors Part I: Long-channel devices. IEEE Trans. Electron Devices 58(8), 2610–2619 (2011) 6. F. D. dissertation (2010) 7. M. Vissenberg, M. Matters, Theory of the field-effect mobility in amorphous organic transistors.

Therefore, voltages even higher than three times the supply (typically 20 V) are required. In the next chapter, this very same double gate technology will be described more in detail, as it will be used extensively for analog, digital and mixed-signal designs in this work. It is firm belief of the authors that a low-defect unipolar techno­ logy providing dual-gate feature is the only way to achieve low cost, high density (compared to other large-area electronics solutions) and high yield circuits, all factors needed to enable the adoption of such technology in real life applications.

In this case, even exploiting a C-2C approach and external calibration and logic, the resulting converter reaches at the state of the art less than 6 bit linearity [5]. An alternative solution to overcome the issues related to low performance OTAs is to exploit oversampling converters. Unfortunately in this case, the low cut-off frequency of TFTs poses a strong limit to the speed of the comparator, which, at the state of the art, is detrimental for the maximum oversampling factor achievable. For this reason, the ΔΣ modulator reported in [23] achieves an ENOB just a little higher than 4 bits.

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Circuit Design on Plastic Foils by Daniele Raiteri, Eugenio Cantatore, Arthur van Roermund


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