← Back to PHY301
Current sources and Voltage sources | Circuit Theory | PHY301_Lecture05
PHY301 — Circuit Theory
Other Lectures
Introduction: Basic Concepts and Definitions | Circuit Theory | PHY301_Lecture01Basic Electricity and Circuit Elements | Circuit Theory | PHY301_Lecture02Resistance in Series and Parallel | Circuit Theory | PHY301_Lecture03Inductance Capacitance Ohm's Law Power Dissipation in Resistance | Circuit Theory | PHY301_Lecture04Voltage divider and Current divider circuit networks | Circuit Theory | PHY301_Lecture06Kirchhoff's Laws- Kirchhoff's Current Law (KCL) | Circuit Theory | PHY301_Lecture07Application of Kirchhoff's Current Law (KCL)- Nodal Analysis | Circuit Theory | PHY301_Lecture08Application of Nodal Analysis – circuit examples | Circuit Theory | PHY301_Lecture09Applications of nodal analysis - Super Node | Circuit Theory | PHY301_Lecture10Applications of Nodal Analysis - Super Node technique | Circuit Theory | PHY301_Lecture11Kirchhoff's Voltage Law (KVL) - Loop - Examples of Loop Analysis | Circuit Theory | PHY301_Lecture12Applications of Loop Analysis (KVL) – Solving circuit networks | Circuit Theory | PHY301_Lecture13Applications of Loop Analysis use of KVL | Circuit Theory | PHY301_Lecture14Applications of Loop Analysis use of KVL Solving circuit network | Circuit Theory | PHY301_Lecture15Applications of Loop Analysis, use of KVL circuit networks | Circuit Theory | PHY30_ Lecture16Applications of Loop Analysis use KVL Solving circuit networks | Circuit Theory | PHY301_Lecture17Applications of Loop Analysis - Super Mesh Technique | Circuit Theory | PHY301_Lecture18Applications of Loop Analysis - Super Mesh Technique-examples | Circuit Theory | PHY301_Lecture19Super Mesh Technique Coupling equation | Circuit Theory | PHY301_Lecture20Applications of Loop Analysis by using dependent sources | Circuit Theory | PHY301_Lecture21Matrices Determinants method solving complex circuit equations | Circuit Theory | PHY301_Lecture22Superposition Theorem and its applications in circuit networks | Circuit Theory | PHY301_Lecture23Source Transformation and its applications in circuit networks | Circuit Theory | PHY301_Lecture24Source Transformation and its applications in circuit networks | Circuit Theory | PHY301_Lecture25Thevenin's Theorem and its applications in circuit networks | Circuit Theory | PHY301_Lecture26Norton's Theorem and its applications in circuit network | Circuit Theory | PHY301_Lecture27Norton's Theorem and its applications in circuit networks | Circuit Theory | PHY301_Lecture28Basic Semiconductor concepts | Circuit Theory | PHY301_Lecture29PN Junction Diode - Ideal Diode Ideal Diode as a Rectifier | Circuit Theory | PHY301_Lecture30Terminal characteristics of Junction Diode - Forward bias region | Circuit Theory | PHY301_Lecture31Reverse bias region Break down region Analysis of Diode circuits | Circuit Theory | PHY301_Lecture32DC or Static Resistance - The constant voltage drop model | Circuit Theory | PHY301_Lecture33Small Signal Model and its applications | Circuit Theory | PHY301_Lecture34Transformers - step up-step down-Applications | Circuit Theory | PHY301_Lecture35Load voltage and current - Average Load voltage and current | Circuit Theory | PHY301_Lecture36Peak Inverse Voltage (PIV) - Full wave rectifier | Circuit Theory | PHY301_Lecture37Negative full wave rectifier - Full wave bridge rectifier | Circuit Theory | PHY301_Lecture38Filters - Clippers - Series Clippers | Circuit Theory | PHY301_Lecture39Parallel Clippers - Clampers | Circuit Theory | PHY301_ Lecture40Diode logic gates (OR Gate, AND Gate) - Voltage Multipliers | Circuit Theory | PHY301_Lecture41Applications of Zener Diode shunt regulator | Circuit Theory | PHY301_Lecture42Bipolar Junction Transistors (BJT) - Modes of operations of BJT | Circuit Theory | PHY301_Lecture43DC biasing of Transistor Characteristic of BJT Load line analysis| Circuit Theory | PHY301_Lecture44DC Biasing of Bipolar Junction Transistors (BJT)| Circuit Theory | PHY301_Lecture45
Handouts
PHY301updated HandoutsDownload