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a TCAD Lab
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29 Oct 2008 | Tools | Contributor(s): Gerhard Klimeck, Dragica Vasileska
An Assembly of TCAD tools for circuit, device, and process simulation
ABACUS - Assembly of Basic Applications for Coordinated Understanding of Semiconductors
16 Jul 2008 | Tools | Contributor(s): Xufeng Wang, Dragica Vasileska, Gerhard Klimeck
One-stop-shop for teaching semiconductor device education
06 Feb 2008 | Tools | Contributor(s): Saumitra Raj Mehrotra, Abhijeet Paul, Gerhard Klimeck, Dragica Vasileska, Gloria Wahyu Budiman
This tool simulates a Bipolar Junction Transistor (BJT) using a 2D mesh. Powered by PADRE.
Caterin Salas Redondo
I'm from Riohacha, La Guajira (Colombia). I'm Electronic and Electrical Engineer, graduated of the "Technological of Bolivar Uniersity". I belong to the group GAICO since 2007. My principal topic of …
David A Ramirez
Drift-Diffusion Modeling and Numerical Implementation Details
28 May 2010 | Teaching Materials | Contributor(s): Dragica Vasileska
This tutorial describes the constitutive equations for the drift-diffusion model and implementation details such as discretization and numerical solution of the algebraic equations that result from …
ECE 656 Lecture 10: The Drift-Diffusion Equation
18 Sep 2009 | Online Presentations | Contributor(s): Mark Lundstrom
Outline: Transport in the bulk The DD equation Indicial notation DD equation with B-field
ECE 656 Lecture 28: Balance Equation Approach I
13 Nov 2009 | Online Presentations | Contributor(s): Mark Lundstrom
Outline: Introduction General continuity equation Carrier continuity equation Current equation Summary
ECE 656 Lecture 30: Balance Equation Approach I
20 Dec 2011 | Online Presentations | Contributor(s): Mark Lundstrom
This lecture should be viewed in the 2009 teaching ECE 656 Lecture 28: Balance Equation Approach I
ECE 656 Lecture 36: The Course in a Lecture
09 Dec 2009 | Online Presentations | Contributor(s): Mark Lundstrom
ECE 659 Lecture 2: Molecular, Ballistic and Diffusive Transport
21 Jan 2009 | Online Presentations | Contributor(s): Supriyo Datta
From Semi-Classical to Quantum Transport Modeling: Drift-Diffusion and Hydrodynamic Modeling
10 Aug 2009 | Teaching Materials | Contributor(s): Dragica Vasileska
This set of powerpoint slides series provides insight on what are the tools available for modeling devices that behave either classically or quantum-mechanically. An in-depth description is provided …
Homework Exercise on Bipolar Junction Transistors
30 Mar 2008 | Teaching Materials | Contributor(s): Saumitra Raj Mehrotra, Muhammad A. Alam, Gerhard Klimeck
The tutorial questions are based on the Bipolar Junction Transistor Lab v1.0 available online at Bipolar Junction Transistor Lab. Students are asked to find the emitter efficiency, the base …
Homework Exercise on Drift & Diffusion in Bulk Semiconductors
30 Mar 2008 | Teaching Materials | Contributor(s): Saumitra Raj Mehrotra, Gerhard Klimeck
The tutorial questions based on Drift Diffusion Lab v1.0 available online at Drift Diffusion Lab. Students are asked to explore the concepts of Drift, Diffusion, Quasi Fermi Levels, and response to …
Homework Exercise on Drift & Diffusion in Bulk Semiconductors - considerations of lifetime
30 Mar 2008 | Teaching Materials | Contributor(s): Mark Lundstrom, Saumitra Raj Mehrotra
Is there any free licence drift diffusion device simulator that supports MOS and bipolar devices
Open | Responses: 1
A sequel to this question is : Is Bambi simulator still available ??
Kyle M Sundqvist
Kyle Sundqvist received BS degrees in physics and astronomy from the University of Washington, Seattle. He is currently a PhD student in the Physics Department at the University of California, …
Low Field Mobility
28 Mar 2007 | Tools | Contributor(s): Mohamed Mohamed, Anjali Bharthuar, Umberto Ravaioli
Calculates low field electron mobility in III-V semiconductors using Rode's Method
13 May 2004 | Tools | Contributor(s): Steven Clark
MOSFet Demonstration: MOSFET Device Simulation and Analysis
03 Jun 2009 | Animations | Contributor(s): Gerhard Klimeck, Benjamin P Haley
This video shows the simulation and analysis of a MOSFET device using the MOSFet tool. Several powerful analytic features of this tool are demonstrated.
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