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2018 | OriginalPaper | Chapter

A MATLAB-Based Simulator for Amorphous Silicon and Polycrystalline Silicon Thin Film Transistor

Authors : Suman Das, Subham Datta, Somenath Chatterjee

Published in: Advances in Electronics, Communication and Computing

Publisher: Springer Singapore

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Abstract

High-performance active matrix organic light emitting diode (AMOLED) display is driven by a matrix of thin film transistors (TFTs) as a back plane technology. Nowadays, the majority of large area AMOLED display uses a-Si:H TFT and Poly-Si TFT to control the driving current in each and every pixels of AMOLED display. AMATLAB-based simulator for a-Si:H and poly-Si based thin film transistor (TFT)is proposed to address the pixel of AMOLED display. The purpose to design the simulator is to provide a ready reference of the output parameters of conventional (mentioned above) TFTs for the optimization of fabrication processes. This simulator is able to explain transfer characteristics, output characteristics and field effect mobility for both the TFTs.

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Literature
1.
go back to reference Kuo, Y. (ed.): Thin Film Transistors Volume 1: Amorphous Silicon. Kluwer, Boston (2004) Kuo, Y. (ed.): Thin Film Transistors Volume 1: Amorphous Silicon. Kluwer, Boston (2004)
2.
go back to reference Kuo, Y. (ed.): Thin Film Transistors Volume 2: Polycrystalline Silicon. Kluwer, Boston (2004) Kuo, Y. (ed.): Thin Film Transistors Volume 2: Polycrystalline Silicon. Kluwer, Boston (2004)
3.
go back to reference Kuo, Y.: Thin Film Transistor Technology-Past, Present and Future. The Electrochemical Society (2013) Kuo, Y.: Thin Film Transistor Technology-Past, Present and Future. The Electrochemical Society (2013)
4.
go back to reference Das, S., Chatterjee, S.: An efficient modelling of amorphous silicon and polycrystalline silicon thin film transistor for AMOLED display using MATLAB. In: IEEE International Conference on Inventive Computation Technologies (ICICT-2016), (Aug 2016) Das, S., Chatterjee, S.: An efficient modelling of amorphous silicon and polycrystalline silicon thin film transistor for AMOLED display using MATLAB. In: IEEE International Conference on Inventive Computation Technologies (ICICT-2016), (Aug 2016)
5.
go back to reference Servati, P., Nathan, A., Sazonov, A.: A physically-based SPICE model for the leakage current in a-Si:H TFTs accounting for its dependencies on process, geometrical, and bias conditions. Mater. Res Soc. Symp. Proc. 609, A28.3.1–A28.3.6 (2000) Servati, P., Nathan, A., Sazonov, A.: A physically-based SPICE model for the leakage current in a-Si:H TFTs accounting for its dependencies on process, geometrical, and bias conditions. Mater. Res Soc. Symp. Proc. 609, A28.3.1–A28.3.6 (2000)
6.
go back to reference Servati, P., Nathan, A.: Modeling of the reverse characteristics of a-Si:H TFTs. IEEE Trans. ED-49(5), 812–819, (2002) Servati, P., Nathan, A.: Modeling of the reverse characteristics of a-Si:H TFTs. IEEE Trans. ED-49(5), 812–819, (2002)
7.
go back to reference Nathan, A., Servati, P., Karim, K.S., Striakhilev, D., Sazonov, A.: Thin film transistor integration on glass and plastic substrates in amorphous silicon technology. IEE Proc. Circuits Devices Syst. 150(4), 329–338 (2003) Nathan, A., Servati, P., Karim, K.S., Striakhilev, D., Sazonov, A.: Thin film transistor integration on glass and plastic substrates in amorphous silicon technology. IEE Proc. Circuits Devices Syst. 150(4), 329–338 (2003)
8.
go back to reference Zhu, L.: Modeling of a-Si:H TFT I-V Characteristics in the Forward Subthreshold Operation, A thesis presented to the University of Waterloo, Waterloo, Ontario, Canada (2005) Zhu, L.: Modeling of a-Si:H TFT I-V Characteristics in the Forward Subthreshold Operation, A thesis presented to the University of Waterloo, Waterloo, Ontario, Canada (2005)
9.
go back to reference Colalongo, L., Valdinoci, M., Baccarani, G., Migliorato, P., Tallarida, G., Reita, C.: Numerical analysis of poly-Si TFTs under off conditions. Solid-State Electron. 41(4), 627–633 (1997) Colalongo, L., Valdinoci, M., Baccarani, G., Migliorato, P., Tallarida, G., Reita, C.: Numerical analysis of poly-Si TFTs under off conditions. Solid-State Electron. 41(4), 627–633 (1997)
Metadata
Title
A MATLAB-Based Simulator for Amorphous Silicon and Polycrystalline Silicon Thin Film Transistor
Authors
Suman Das
Subham Datta
Somenath Chatterjee
Copyright Year
2018
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-4765-7_76