Modeling in Analog Design: Current Issues in Electronic Modeling, cartea 2
Editat de Jean-Michel Bergé, Oz Levia, Jacques Rouillarden Limba Engleză Paperback – 14 oct 2012
Modeling in Analog Design introduces the reader to two main language standards: VHDL-A and MHDL. It goes on to provide in-depth examples of the use of these languages to model analog devices. The final part is devoted to the very important topic of modeling the thermal and electrothermal aspects of devices.
This book is essential reading for analog designers using behavioral languages and analog CAD tool development environments who have to provide the tools used by the designers.
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Specificații
ISBN-13: 9781461359883
ISBN-10: 1461359880
Pagini: 168
Ilustrații: XV, 148 p.
Dimensiuni: 160 x 240 x 9 mm
Greutate: 0.25 kg
Ediția:Softcover reprint of the original 1st ed. 1995
Editura: Springer Us
Colecția Springer
Seria Current Issues in Electronic Modeling
Locul publicării:New York, NY, United States
ISBN-10: 1461359880
Pagini: 168
Ilustrații: XV, 148 p.
Dimensiuni: 160 x 240 x 9 mm
Greutate: 0.25 kg
Ediția:Softcover reprint of the original 1st ed. 1995
Editura: Springer Us
Colecția Springer
Seria Current Issues in Electronic Modeling
Locul publicării:New York, NY, United States
Public țintă
ResearchCuprins
1. Vhdl-A Design Objectives and Rationale.- 1.1. Introduction.- 1.2. Scope of VHDL-A.- 1.3. Structure Aspects.- 1.4. Behavior Aspects.- 1.5. Simulation Mechanisms.- 1.6. Interface between Analog and Digital Descriptions.- 1.7. Concluding Remarks.- 2. Modeling in Vhdl-A: Devices, Networks and Systems.- 2.1. Introduction.- 2.2. Overview of VHDL-A.- 2.3. A MOSFET Model.- 2.4. The VHDL-A Code for a MOSFET.- 2.5. Differential Equations and Macro Models in VHDL-A.- 2.6. Conclusion.- 3. Analog Modeling Using Mhdl.- 3.1. Introduction.- 3.2. Features of MHDL.- 3.3. Model and Simulation Types.- 3.4. Analog Modeling Technology with MHDL Examples.- 3.5. CAD/CAE Tool Interaction.- 3.6. Concluding Remarks.- 4. Modeling and Simulation of Electrical and Thermal Interaction.- 4.1. Introduction.- 4.2. Fundamentals of Electro-Thermal Simulation.- 4.3. Modeling Self-Heating Effects.- 4.4. Thermal models.- 4.5. Simulation Considerations.- 4.6. Application Example.- 4.7. Conclusions.- 5. Modeling of Power Mosfet and Bipolar Transistors Taking into Account the Thermoelectrical Interactions.- 5.1. Introduction.- 5.2. Complete Model.- 5.3. The Electrical Network.- 5.4. Thermal Influence on the Electrical Behavior of the Transistors.- 5.5. The Thermal Network.- 5.6. Experiment-Characterization.- 5.7. Conclusion.