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Semiconductor Device Modeling with SpiceJune 1993
Publisher:
  • McGraw-Hill, Inc.
  • Professional Book Group 11 West 19th Street New York, NY
  • United States
ISBN:978-0-07-002469-4
Published:01 June 1993
Pages:
479
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Abstract

From the Publisher:

With all the clarity and hands-on practicality of the best-selling first edition,this revised version explains the ins and outs of SPICE,plus gives new data on modeling advanced devices such as MESFETs,ISFETs,and thyristors. And because it's the only book that describes the models themselves,it helps readers gain maximum value from SPICE,rather than just telling them how to run the program. This guide is also distinctive in covering both MOS and FET models. Step by step,it takes the reader through the modeling process,providing complete information on a variety of semiconductor devices for designing specific circuit applications. These include: Pn junction and Schottky diodes; bipolar junction transistor (BJT); junction field effect transistor (JFET); metal oxide semiconductor transistor (MOST); metal semiconductor field effect transistor (MESFET); ion sensitive field effect transistor (ISFET); semiconductor controlled rectifier (SCR-thyristor).

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  1. Zemliak A (2018). On the minimal time for the process of analog circuit optimization, Analog Integrated Circuits and Signal Processing, 96:3, (475-483), Online publication date: 1-Sep-2018.
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  3. Brinson M and Kuznetsov V (2016). A new approach to compact semiconductor device modelling with Qucs Verilog-A analogue module synthesis, International Journal of Numerical Modelling: Electronic Networks, Devices and Fields, 29:6, (1070-1088), Online publication date: 1-Nov-2016.
  4. Abu Samah N, Lee K and Jarmin R (2016). H$${^{+}}$$+-ion-sensitive FET macromodel in LTSPICE IV, Journal of Computational Electronics, 15:4, (1407-1415), Online publication date: 1-Dec-2016.
  5. Zemliak A, Reyes F, Cid J and Markina T Comparison of characteristics of Lyapunov function for different strategies of circuit optimization Proceedings of the 14th international conference on Automatic Control, Modelling & Simulation, and Proceedings of the 11th international conference on Microelectronics, Nanoelectronics, Optoelectronics, (173-178)
  6. Zemliak A, Peña R and Reyes F Network optimization by generalized methodology Proceedings of the 14th international conference on Automatic Control, Modelling & Simulation, and Proceedings of the 11th international conference on Microelectronics, Nanoelectronics, Optoelectronics, (165-172)
  7. Zemliak A, Michua A and Markina T Analysis of a Lyapunov function characteristics for various strategies of designing circuits Proceeding of 10th WSEAS international conference on electronics, hardware, wireless and optical communications, and 10th WSEAS international conference on signal processing, robotics and automation, and 3rd WSEAS international conference on nanotechnology, and 2nd WSEAS international conference on Plasma-fusion-nuclear physics, (214-219)
  8. Zemliak A and Michua A Process of optimization for analogue networks using parallel computing Proceeding of 10th WSEAS international conference on electronics, hardware, wireless and optical communications, and 10th WSEAS international conference on signal processing, robotics and automation, and 3rd WSEAS international conference on nanotechnology, and 2nd WSEAS international conference on Plasma-fusion-nuclear physics, (418-423)
  9. Zemliak A and Torres M Analysis of the switch points of control vector for the process of circuit optimization Proceeding of 10th WSEAS international conference on electronics, hardware, wireless and optical communications, and 10th WSEAS international conference on signal processing, robotics and automation, and 3rd WSEAS international conference on nanotechnology, and 2nd WSEAS international conference on Plasma-fusion-nuclear physics, (220-226)
  10. Zemliak A, Peña R and Rios E Generalized methodology for analog network optimization Proceedings of the 5th WSEAS international conference on Circuits, systems, signal and telecommunications, (87-94)
  11. Zemliak A, Peña R and Rios E (2018). Generalized optimization methodology for system design, WSEAS TRANSACTIONS on SYSTEMS, 9:6, (679-688), Online publication date: 1-Jun-2010.
  12. Zemliak A, Peña R and Rios E Analog network optimization on basis of generalized methodology Proceedings of the 4th WSEAS international conference on Circuits, systems, signal and telecommunications, (70-76)
  13. Zemliak A, Torres M and Michua A Control vector optimal structure for minimal-time networks optimization Proceedings of the 4th WSEAS international conference on Circuits, systems, signal and telecommunications, (77-85)
  14. Zemliak A and Peña R (2018). Network optimization by generalized methodology, WSEAS Transactions on Circuits and Systems, 8:8, (676-685), Online publication date: 1-Aug-2009.
  15. ACM
    Choudhury M, Yoon Y, Guo J and Mohanram K Technology exploration for graphene nanoribbon FETs Proceedings of the 45th annual Design Automation Conference, (272-277)
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    Strunz K and Su Q (2008). Stochastic formulation of SPICE-type electronic circuit simulation with polynomial chaos, ACM Transactions on Modeling and Computer Simulation (TOMACS), 18:4, (1-23), Online publication date: 1-Sep-2008.
  17. Mohanram K and Guo J Graphene nanoribbon FETs Proceedings of the 2008 IEEE/ACM International Conference on Computer-Aided Design, (412-415)
  18. Zemliak A and Torres M Analysis of the optimal position of the control vector's switching points for the minimal-time circuit design strategy prediction Proceedings of the 7th WSEAS International Conference on Microelectronics, Nanoelectronics, Optoelectronics, (78-83)
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    Marulanda J, Srivastava A and Sharma A Transfer characteristics and high frequency modeling of logic gates using carbon nanotube field effect transistors (CNT-FETs) Proceedings of the 20th annual conference on Integrated circuits and systems design, (202-206)
  20. Zemliak A and Miranda P Analysis of the initial point separate surface for the minimal-time system design process Proceedings of the 9th International Conference on Circuits, (1-6)
  21. Dobeš J and Grábner M Measurement and model identification of semiconductor devices Proceedings of the 4th WSEAS international conference on Applications of electrical engineering, (288-293)
  22. Ratier N and Bruniaux M A symbolic-numeric method to analyse nonlinear differential equations in Fourier domain Proceedings of the 7th WSEAS International Conference on Mathematical Methods and Computational Techniques In Electrical Engineering, (208-213)
  23. Houben S, Maubach J and Mattheij R (2003). An accelerated Poincaré-map method for autonomous oscillators, Applied Mathematics and Computation, 140:2-3, (191-216), Online publication date: 10-Aug-2003.
  24. Langmaack H (2019). The ProCoS Approach to Correct Systems, Real-Time Systems, 13:3, (253-275), Online publication date: 1-Nov-1997.
  25. ACM
    Wolman B and Olson T (1989). IOBENCH: a system independent IO benchmark, ACM SIGARCH Computer Architecture News, 17:5, (55-70), Online publication date: 1-Sep-1989.
Contributors
  • University of Genoa

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