조립형 박막 트랜지스터 모델링 프레임워크

Assembly Modeling Framework for Thin-Film Transistors

  • 정태호 (서울과학기술대학교 전자IT미디어 공학과)
  • Jung, Taeho (Department of Electronic and IT Media Engineering, Seoul National University of Science and Technology)
  • 투고 : 2017.09.01
  • 심사 : 2017.09.18
  • 발행 : 2017.09.30

초록

As the demand on displays increases, new thin-film transistors such as metal oxide transistor are continuously being invented. When designing a circuit consisting of such new transistors, a new transistor model based on proper charge transport mechanisms is needed for each of them. In this paper, a modeling framework which enables to choose charge transport mechanisms that are limited to certain operation regions and assemble them into a transistor model instead of making an integrated transistor model dedicated to each transistor. The framework consists of a graphic user interface to choose charge transport models and a current calculation part, which is also implemented in AIM-SPICE for circuit simulation.

키워드

참고문헌

  1. S. M. Lee, J. H. Kwon, S. Kwon, and K. C. Choi, "A Review of Flexible OLEDs Toward Highly Durable Unusual Displays," IEEE Trans. Electron Devices, vol. 64, pp. 1922-1931, May (2017). https://doi.org/10.1109/TED.2017.2647964
  2. S. Lee, S. Jeon, R. Chaji, and A. Nathan, "Transparent Semiconducting Oxide Technology for Touch Free Interactive Flexible Displays," Proc. IEEE, vol. 103, pp. 644-664, Apr. (2015). https://doi.org/10.1109/JPROC.2015.2405767
  3. H. Klauk, "Organic thin-film transistors," Chem. Soc. Rev., vol. 39, pp. 2643-2666, Jun. (2010). https://doi.org/10.1039/b909902f
  4. J. K. Jeong, "The status and perspectives of metal oxide thin-film transistors for active matrix flexible displays," Semicond. Sci. Technol., vol. 26, p. 34008, (2011). https://doi.org/10.1088/0268-1242/26/3/034008
  5. F. Torricelli, "Charge Transport in Organic Transistors Accounting for a Wide Distribution of Carrier Energies; Part I: Theory," IEEE Trans. Electron Devices, vol. 59, pp. 1514-1519, May (2012). https://doi.org/10.1109/TED.2012.2187830
  6. M. S. Shur, H. C. Slade, M. D. Jacunski, A. A. Owusu, and T. Ytterdal, "SPICE Models for Amorphous Silicon and Polysilicon Thin Film Transistors," J. Electrochem. Soc., vol. 144, pp. 2833-2839, Aug. (1997). https://doi.org/10.1149/1.1837903
  7. S. Chung, S. O. Kim, S. K. Kwon, C. Lee, and Y. Hong, "All-Inkjet-Printed Organic Thin-Film Transistor Inverter on Flexible Plastic Substrate," IEEE Electron Device Lett., vol. 32, pp. 1134-1136, Aug. (2011). https://doi.org/10.1109/LED.2011.2156757
  8. P. Servati and A. Nathan, "Modeling of the reverse characteristics of a-Si:H TFTs," IEEE Trans. Electron Devices, vol. 49, pp. 812-819, May (2002). https://doi.org/10.1109/16.998589
  9. J. Friedl, Mastering Regular Expressions. O'Reilly Media, Inc., pp. 143-184, (2006).
  10. M. Gabbrielli and S. Martini, "Programming Languages: Principles and Paradigms," Springer Science & Business Media, pp. 122-123, (2010).