From the publisher with all the clarity and hands on practicality of the best selling first editionthis revised version explains the ins and outs of spiceplus gives new data on modeling advanced devices such as mesfetsisfetsand thyristors. He has done research in the areas of semiconductor device modeling as well as circuit simulation and optimization he is the author of several papers on semiconductor device models for cad applications he is currently researching the development of semiconductor based biosensor models for biomedical technologies. Physically based scalable spice modeling methodologies for modern power electronic devices modern day power electronics encompasses a wide spectrum of semiconductor device types all of which present unique benefits and trade offs in the design spectrum. Semiconductor device modeling with spice giuseppe massobrio department of electronics dibe university of genova genova italy paolo antognetti department of electronics dibe university of genova genova italy second edition mcgraw hill inc new york san francisco washington dc auckland bogota caracas lisbon london madrid mexico city milan. Semiconductor device modeling creates models for the behavior of the electrical devices based on fundamental physics such as the doping profiles of the devices it may also include the creation of compact models such as the well known spice transistor models which try to capture the electrical behavior of such devices but do not generally derive them from the underlying physics
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