電路學
Circuit Theory
| 節 | 週二 | 週四 |
|---|---|---|
3 10:10–11:00 | 電路學 ED303(光復) 2 節連堂 | |
4 11:10–12:00 | ||
7 15:30–16:20 | 電路學 ED303(光復) 2 節連堂 | |
8 16:30–17:20 |
* 根據陽明交大上課時間表所列
To teach students the basic current and voltage relationship in electric circuit elements and their analysis methods.
微積分
無備註
教師未提供此項資料
1. 教科書內容豐富但也相當精簡,學生也可以參考上課講義對照課本增強理解。 2. 每章均有作業、由助教改完發還。 3. 教學以課堂授課為主。 4. 上課不定時點名,以期中考試佔30%、期末考試佔40%,作業30%為計分標準,點名不到另外扣分。
Basic Concepts
1.Charge and current. 2. voltage. 3. Power and energy.
- 講授:
- 2
Basic Concepts
1. Charge and current. 2. voltage. 3. Power and energy.
- 講授:
- 2
Basic Laws
1. Ohm’s law 2. Kirchhoff’s laws 3. series resistors 4. parallel resistors
- 講授:
- 2
Method of Analysis
1. Nodal analysis 2. Mesh analysis 3. Nodal and mesh analysis with sources
- 講授:
- 2
Circuit Theorems
1. Linear property. 2. Superposition 3. Thevenin’s theorem 4. Norton’s theorem 5. Maximum power transfer
- 講授:
- 2
Operational Amplifiers
1. Ideal op amp. 2. inverting and noninverting amplifiers 3. Summing and difference amplifier 4. cascade of op amps
- 講授:
- 2
Capacitors and Inductors
1. Capacitors 2. series and parallel capacitors. 3. Inductors 4. series and parallel inductors
- 講授:
- 2
First Order Circuits
1. The source free RC circuit. 2. The source free RL circuit. 3. Singularity functions. 4. Step response of an RC or an RL circuit. 5. Applications
- 講授:
- 4
Second Order Circuits
1. Finding initial and final values. 2. The source free response of a series or a parallel RLC circuit. 3. Step response of a series or a parallel RLC circuit. 4. General second order circuits. 5. Second-order op amp circuits.
- 講授:
- 4
Sinusoids and Phasors
1. Sinusoids. 2. Phasors. 3. Phasor relationship for circuit element. 4. impedance and admittance. 5. Kirchhoff law in frequency domain
- 講授:
- 4
Sinusoidal Steady-State Analysis
1. Nodal and mesh analysis. 2. superposition 3. Thevnin and Norton equivalent circuits 4. op amp AC circuits.
- 講授:
- 4
AC Power Analysis
1. Instantaneous and average power. 2. Maximum average power transfer. 3. Effective or RMS values. 4. Apparent power and power factor. 5. Complex power.
- 講授:
- 4
Three-Phase Circuit
1. Balanced three-phase voltages. 2. Balanced Y-Y connection. 3. Balanced Y- connection. 4. Balanced - connection. 5. Balanced -Y connection. 6. power in a balanced system.
- 講授:
- 4
Magnetically Coupled Circuits
1. Mutual inductance. 2. Energy in a coupled system. 3. Linear transformers. 4. Ideal transformers.
- 講授:
- 4
Frequency Response
1. Transfer function. 2. The dB scale. 3. Bode plots. 4. Series and parallel resonances. 5. Passive filters.
- 講授:
- 4
Introduction to Laplace Transforms
1. Definition of the Laplace transform. 2. Properties of the Laplace transform.. 3. The inverse Laplace transform. 4. The convolution integral.
- 講授:
- 4
Applications of Laplace Transforms
1. Circuit element models. 2. Circuit analysis. 3. Transfer functions. 4. State variables.
- 講授:
- 4
Two-port Networks
1. Impedance Parameters. 2. Admittance Parameters. 3. Hybrid parameters. 4. Transmission parameters.
- 講授:
- 4
| 週次 | 主題 |
|---|---|
| 第 1 週 | 1. Instantaneous and average power. 2. Maximum average power transfer. 3. Effective or RMS values. 4. Apparent power and power factor. 5. Complex power. |
| 第 2 週 | 1. charge and current 2. voltage 3. power and energy 1. Ohm’s law 2. Kirchhoff’s laws 3. series resistors 4. parallel resistors |
| 第 3 週 | 1. Nodal analysis 2. Mesh analysis 3. Nodal and mesh analysis with sources 1. Linear property. 2. Superposition 3. Thevenin’s theorem 4. Norton’s theorem |
| 第 4 週 | 1. Ideal op amp. 2. inverting and noninverting amplifiers 3. Summing and difference amplifier 4. cascade of op amps 1. Capacitors 2. series and parallel capacitors. 3. Inductors 4. series and parallel inductors |
| 第 5 週 | 1. The source free RC circuit. 2. The source free RL circuit. 3. Singularity functions. 4. Step response of an RC or an RL circuit. 5. Applications |
| 第 6 週 | 1. Finding initial and final values. 2. The source free response of a series or a parallel RLC circuit. 3. Step response of a series or a parallel RLC circuit. 4. General second order circuits. 5. Second-order op amp circuits. |
| 第 7 週 | 1. Sinusoids. 2. Phasors. 3. Phasor relationship for circuit element. 4. impedance and admittance. 5. Kirchhoff law in frequency domain |
| 第 8 週 | 1. AC Nodal and mesh analysis. 2. superposition 3. AC Thevnin and Norton equivalent circuits 4. op amp AC circuits. |
| 第 8 週 | 1. Balanced three-phase voltages. 2. Balanced Y-Y connection. 3. Balanced Y-? connection. 4. Balanced ?-? connection. 5. Balanced ?-Y connection. 6. power in a balanced system. |
| 第 9 週 | 1. Mutual inductance. 2. Energy in a coupled system. 3. Linear transformers. 4. Ideal transformers. |
| 第 10 週 | 1. Transfer function. 2. The dB scale. 3. Bode plots. 4. Series and parallel resonances. 5. Passive filters. |
| 第 11 週 | 1. Definition of the Laplace transform. 2. Properties of the Laplace transform.. 3. The inverse Laplace transform. 4. The convolution integral. |
| 第 12 週 | 1. Circuit element models. 2. Circuit analysis. 3. Transfer functions. 4. State variables. |
| 第 13 週 | 1. Impedance Parameters. 2. Admittance Parameters. 3. Hybrid parameters. 4. Transmission parameters. |
Fundamentals of Electric Circuits. 6th Ed. Charles K. Alexander, and Matthew N. O. Sadiku, Mc Graw Hill
- 地點
- ED833
- 時間
- 周一下午1:30-3:30
- 聯絡方式
- mhchang@cc.nctu.edu.tw
