Duration: (12:10) ?Subscribe5835 2025-02-10T13:44:37+00:00
ECE 606 Solid State Devices L16.1: Recombination \u0026 Generation - Motivation of R-G Formula
(17:32)
ECE 606 Solid State Devices L30.2: MOSFET Introduction - Above-Threshold, Inversion Current
(34:31)
ECE 606 Solid State Devices L13: Band Diagrams
(14:1econd)
ECE 606 Solid State Devices L30.4: MOSFET Introduction - Bulk Charge Theory \u0026 Small Transistors
(7:45)
ECE 606 Solid State Devices L15.2: Non-Equilibrium - Recombination \u0026 Generation Overview
(17:10)
ECE 606 Solid State Devices: Course Trailer
(2:37)
ECE 606 Solid State Devices L32.1: Modern MOSFET - Some of Moore's Law Challenges
(27:3)
ECE 606 Solid State Devices L25.2: Bipolar Junction Transistor - Base Doping Design
(24:5)
ECE 606 Solid State Devices L1.1: Solid State Devices
(16:10)
ECE 606 Solid State Devices L15.1: Non-Equilibrium - Steady State, Transient, Equilibrium
(12:10)
ECE 606 Solid State Devices L4.1: Quantum Mechanics - Classic Systems
(11:57)
ECE 606 Solid State Devices L6.4: Electron Tunneling - Tunneling Through N Barriers - Bandstructure
(12:23)
ECE 606 Solid State Devices L27.2: Heterojunction Bipolar Transistor - Equilibrium Solution
(11:2)
ECE 606 Solid State Devices L25.6: Bipolar Junction Transistor - Short Base Transport
(9:9)
ECE 606 Solid State Devices L6.5: Electron Tunneling - Analytical and Numerical Solution Strategies
(10:5)
ECE 606 Solid State Devices L27.8: Heterojunction Bipolar Transistor - Modern Designs
(8:49)
ECE 606 Solid State Devices L22.2: PN Diode Large Signal Response - Turn-Off/Turn-On Characteristics
(12:32)
ECE 606 Solid State Devices L6.2: Electron Tunneling - Tunneling Through a Single Barrier
(13:16)