Instructor(s) | Arman Aghaee [Coordinator] Office: EPH426 Phone: TBA Email: arman.aghaee@torontomu.ca Office Hours: Fridays 10 AM - 11 AM | ||||||||||||||
Calendar Description | This course builds on the introductory course ELE202 in electric circuit analysis. The course topics include a brief overview of circuit variables, elements, laws and theorems; mutual inductance and the ideal transformer model; 3-phase circuits; the operational amplifier as an active circuit element. Also, simple opamp circuits, the Laplace transform with applications to differential equations and electric circuits, frequency responses, Bode plots, resonant circuits, Fourier series; two port networks, and network parameters for interconnection of two-port networks; use of PSpice simulation software to solve circuit problems. | ||||||||||||||
Prerequisites | CHY 102, MTH 140, MTH 141, PCS 125, PCS 211, CPS 125, ELE 202, MTH 240 | ||||||||||||||
Antirequisites | None | ||||||||||||||
Corerequisites | MTH 312 | ||||||||||||||
Compulsory Text(s): |
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Reference Text(s): |
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Learning Objectives (Indicators) | At the end of this course, the successful student will be able to:
NOTE:Numbers in parentheses refer to the graduate attributes required by the Canadian Engineering Accreditation Board (CEAB). | ||||||||||||||
Course Organization | 4.0 hours of lecture per week for 13 weeks | ||||||||||||||
Teaching Assistants | Negar Karimpour Suren Saleminezhad | ||||||||||||||
Course Evaluation |
Note: In order for a student to pass a course, a minimum overall course mark of 50% must be obtained. In addition, for courses that have both "Theory and Laboratory" components, the student must pass the Laboratory and Theory portions separately by achieving a minimum of 50% in the combined Laboratory components and 50% in the combined Theory components. Please refer to the "Course Evaluation" section above for details on the Theory and Laboratory components (if applicable). | ||||||||||||||
Examinations | Midterm is closed book during class hours for 1.5 hours. It covers all material taught. It comprises of 3 questions with subsections. Final Exam is closed book for 2 hours. It covers all material taught after the Midterm. It comprises of 4 questions with subsections. If a midterm exam is missed due to verified medical or personal circumstances (with an approved ACR), the student must inform the instructor to arrange a make-up exam. If a lab or tutorial is missed due to verified medical or personal circumstances (with an approved ACR), the student must notify both the TA and the instructor to arrange a make-up or determine if the grade can be redistributed to other components. | ||||||||||||||
Other Evaluation Information | In order for a student to pass a course, a minimum overall course mark of 50% must be obtained. In addition, for courses that have both "Theory and Laboratory" components, the student must pass the Laboratory and Theory portions separately by achieving a minimum of 50% in the combined Laboratory components and 50% in the combined Theory components. Please refer to the "Course Evaluation" section above for details on the Theory and Laboratory components. | ||||||||||||||
Teaching Methods | In person Lectures, Tutorials, and Labs. | ||||||||||||||
Other Information | None |
Week | Hours | Chapters / | Topic, description |
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Week 1 | 4 | 5 | Operational Amplifiers |
Week 2-3 | 8 | 8 | Second Order Circuits |
Week 4-5 | 8 | 14 | Frequency Response |
Week 6-7 | 8 | 15 & 16 | Laplace Transforms |
Week 8 | 4 | 13 | Magnetically Coupled Circuits |
Week 9 | 4 | 12 | Three-Phase Circuits |
Week 10-11 | 8 | 17 | Fourier Series |
Week 12 | 4 | 19 | Two Port Networks |
Week | L/T/A | Description |
---|---|---|
1 | No Lab | No Lab/Tutorial |
2 | Exp 1 | Expt-1: OPAMP circuits: Prelab Assignment |
3 | Exp 1 | Expt-1: OPAMP circuits: Lab Procedure Step 5 |
4 | Tutorial 1 | Chapter 5 OPAMP |
5 | Exp 2 | Expt-2: Step Response, 1st & 2nd order circuits |
6 | Tutorial 2 | Chapter 8 Second Order Circuit |
7 | Midterm | Midterm Week: No labs and tutorials |
8 | Tutorial 3 | Chapter 14 Frequency Response |
9 | Exp 3 | Expt-3: Frequency Response |
10 | Tutorial 4 | Chapters 15 and 16 Laplace Transforms |
11 | Exp 4 | Expt-4: Filters (Ch-14) |
12 | Exp 5 | Expt-5: Mutual Inductance (Ch-13) |
13 | No Lab | No Lab/Tutorial |
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