ECE 210 Class Calendar

August 2016
MonTueWedThuFriSatSun
1

2

3

4

5

6

7

8

9

10

11

12

13

14

15

16

17

18

19

20

21

22

Introduction & voltage, current power, KVL, KCL 0, 1.1-2

23

Elements, sources, solutions of circuit problems, 1.3

24

Complex numbers review 1.4, App. C, Resistor combinations, 2.1

25

26

Source combinations, node voltage method, 2.1-2

27

28

29

Node voltage method, 2.2

30

Loop current method, 2.3

31

Linearity & superposition, 2.4

    

September 2016
MonTueWedThuFriSatSun
   1

2

Thevenin & Norton, 2.4

3

4

5

LABOR DAY

6

Available power & max power transfer, 2.5

7

Op-amps & ideal op-amp approximations, 3.1

8

9

Op-amps & ideal op-amp approximations, 3.1

10

11

12

Differentiators & integrators, 3.2

13

Introduction to LTI systems, 3.3

14

1st order RC ckt response to constant inputs, 3.4.1

15

16

RC & RL ckts with constant inputs, 3.4.1-2

17

18

19

RC & RL ckts with time-varying inputs, 3.4.3

20

Transient & steady-state response in LTI systems, 3.4.3, 3.5

21

Phasors & sinusoidal SS solutions of linear ODEs, 4.1.1-2, Lab 1

22

EXAM 1

23

NO CLASS

24

25

26

EXAM 1 REVIEW

27

Impedance & phasors in sinusoidal steady state ckts, 4.1.3, 4.2.1

28

Phasor ckt analysis, 4.2.2-3

29

30

Avg and available power, 4.3

  

October 2016
MonTueWedThuFriSatSun
     1

2

3

Resonance, 4.4

4

Frequency response of dissipative LTI systems, 5.1-2

5

LTI system response to co-sinusoids & multi-frequency inputs 5.3-5, Lab 2

6

7

Periodic signals, 6.1

8

9

10

Fourier series & its forms 6.2

11

Fourier series examples, 6.2

12

LTI system response to periodic inputs, 6.3.1

13

14

Avg signal power, Parseval's thm, harmonic distortion, 6.3.2-3, Last day for ECE 211

15

16

17

Fourier transform of aperiodic signals, 7.1

18

Fourier transform pairs and properties of FT, 7.1

19

Signal energy and bandwidth, 7.2, Lab 3

20

EXAM 2

21

NO CLASS

22

23

24

EXAM 2 REVIEW

25

LTI system response using FT, 7.3

26

Modulation property, AM signal, coherent demodulation, 8.1-2

27

28

Envelope detection, superhet AM receiver, 8.3-4

29

30

31

Convolution & FT convolution properties, 9.1.1-2

      

November 2016
MonTueWedThuFriSatSun
 1

Graphical convolution, 9.1.3

2

Convolution examples, 9.1.3, Lab 4

3

4

Impulse & its properties, 9.2

5

6

7

FT of power signals, 9.2-3

8

Sampling & analog signal reconstruction, 9.4

9

Impulse response & BIBO stability, 10.1-2

10

11

Causality & LTIC systems, 10.3-5

12

13

14

Transfer function & Laplace transform, 11.1

15

Properties of LT, 11.1

16

Inverse Laplace transform & PFE, 11.2, Lab 5

17

EXAM 3

18

NO CLASS

19

20

21

22

23

24

25

26

27

28

EXAM 3 REVIEW

29

s-domain ckt analysis, general response of LTIC systems, 11.3, 11.4.1

30

Zero-input response in LTIC ckts & systems, 11.4.1-2

    

December 2016
MonTueWedThuFriSatSun
   1

2

Ckt initial value problems, 11.4.3

3

4

5

LTIC system combinations, Ideal filters, 2nd order systems, 11.5,12.1-2

6

Q, Butterworth filter design 12.2-3

7

REVIEW

8

READING DAY

9

FINAL EXAM

10

11

12

13

14

15

16

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31