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Part II: Current Flow in Basic Circuits
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Part II: Current Flow in Basic Circuits
by Douglas Brooks
PCB Currents: How They Flow, How They React
About This eBook
Title Page
Copyright Page
Dedication Page
Contents
Preface
Focus
Organization
Target Audience
Acknowledgments
About the Author
Part I: The Nature of Current
1. Electrons and Charges
1.1. The Flow of Electrons
1.2. Atomic Structure
1.3. Insulators
1.4. Charge Field
1.5. Magnetic Field
1.6. Forces Driving Current
1.7. Voltage versus Current
1.8. Direction of Current Flow
1.9. Semiconductor Hole Flow
2. Basic Current Concepts
2.1. Types of Current
2.2. Propagation Speeds
2.3. Circuit Timing Issues
2.4. Measures of Current
2.5. Measurement Techniques
2.6. Thermal Noise and Current Thresholds
3. Basic Current Laws
3.1. Flows in a Loop
3.2. Current Is Constant Everywhere in a Loop
3.3. Ohm’s Law
3.4. Kirchhoff’s First Law
3.5. Kirchhoff’s Second Law
Part II: Current Flow in Basic Circuits
4. Resistive Circuits
4.1. Resistivity
4.2. Resistive Current and Phase
4.3. Series Resistors
4.4. Parallel Resistors
4.5. Power and Energy
4.6. Resistive Voltage Divider
5. Reactive Circuits: Capacitors and Capacitance
5.1. The Nature of Capacitance
5.2. Definition of Capacitance
5.3. Current “through” a Capacitor
5.4. AC Current “through” a Capacitor
5.5. Displacement Current
5.6. Ohm’s Law for Capacitance
5.7. Plot of Capacitive Reactance versus Frequency
5.8. Phase Shift for Capacitance
5.9. How Capacitors Combine
5.10. Power Dissipated in a Capacitor
5.11. Formula for Capacitance
6. Reactive Circuits: Inductors and Inductance
6.1. The Nature of Inductance
6.2. Definition of Inductance
6.3. DC Current “through” an Inductor
6.4. AC Current “through” an Inductor
6.5. Ohm’s Law for Inductance
6.6. Plot of Inductive Reactance versus Frequency
6.7. Phase Shift for Inductance
6.8. How Inductors Combine
6.9. Power Dissipated in an Inductor
6.10. General Equation for Inductance
6.11. Skin Effect
7. Reactive Circuits: Resonance
7.1. Series Resonance
7.2. Parallel Resonance
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3. Basic Current Laws
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4. Resistive Circuits
Part II: Current Flow in Basic Circuits
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