By Daniele Raiteri, Eugenio Cantatore, Arthur van Roermund
This e-book illustrates various circuit designs on plastic foils and gives all of the details had to adopt winning designs in large-area electronics. The authors exhibit architectural, circuit, format, and equipment recommendations and clarify the explanations and the artistic procedure at the back of every one. Readers will find out how to hold less than regulate large-area applied sciences and accomplish powerful, trustworthy circuit designs that may face the demanding situations imposed by way of reasonably cheap low-temperature high-throughput manufacturing.
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Additional resources for Circuit Design on Plastic Foils
W. Xiong, Y. Guo, U. Zschieschang, H. Klauk, B. Murmann, A 3-V, 6-Bit C-2C digital-toanalog converter using complementary organic thin-film transistors on glass. IEEE J. SolidState Circuits. 45(7), 1380–1388 (2010) 5. W. Xiong, U. Zschieschang, H. Klauk, B. Murmann, A 3 V 6b successive-approximation ADC using complementary organic thin-film transistors on glass. 47–49, 2010 6. J. , Amorphous InGaZnO thin-film transistors compatible with roll-to-roll fabrication at room temperature. IEEE Electron Device Lett.
Torricelli et al.  generation of globally shared energy levels, and charge carriers can only occupy physically localized states. In the light of this consideration, also the charge transport has to be supported by different theories. In the case of amorphous metal-oxides materials, the semiconductor is typically described as a system consisting of valence and conduction bands; however localized energy states in the energy gap can trap the charge carriers. If the majority of the charge carriers remains trapped in these localized energy states, the charge transport in the semiconductor can be modeled by means of the Multiple Trapping and Release (MTR) theory .
Phys. Lett. 87(22), 223506 (2005) 17. M. , Mobility model for compact device modeling of OTFTs made with different materials. Solid State Electron. 52(5), 787–794 (2008) 18. O. J. Deen, U. Zschieschang, H. Klauk, Organic thin-film transistors: part I— compact DC modeling. IEEE Transact. Electron Devices. 56(12), 2952–2961 (2009) 19. A. , Plastic transistors in active-matrix displays. Nature. 414(6864), 599– 599 (2001) 20. D. Raiteri, F. Torricelli, E. V. Roermund, A tunable transconductor for analog amplification and filtering based on double-gate organic TFTs.