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Figure A circuit used to illustrate the step response of a parallel RLC circuit.

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Presentation on theme: "Figure A circuit used to illustrate the step response of a parallel RLC circuit."— Presentation transcript:

1 Figure 8.1 A circuit used to illustrate the natural response of a parallel RLC circuit.

2 Figure 8.2 A circuit used to illustrate the step response of a parallel RLC circuit.

3 Figure 8.3 A circuit used to illustrate the natural response of a series RLC circuit.

4 Figure 8.4 A circuit used to illustrate the step response of a series RLC circuit.

5 TABLE 8.1 Natural Response Parameters of the Parallel RLC Circuit

6 Figure 8.5 A circuit used to illustrate the natural response of a parallel RLC circuit.

7 Figure 8.6 The circuit for Example 8.2.

8 Figure 8.7 The voltage response for Example 8.2.

9 Figure 8.8 The circuit for Example 8.4.

10 Figure 8.9 The voltage response for Example 8.4.

11 Figure 8.10 The voltage response for Example 8.5.

12 Figure 8.11 A circuit used to describe the step response of a parallel RLC circuit.

13 Figure 8.12 The circuit for Example 8.6.

14 Figure 8.13 The current plots for Example 8.9.

15 Figure 8.14 A circuit used to illustrate the natural response of a series RLC circuit.

16 Figure 8.15 A circuit used to illustrate the step response of a series RLC circuit.

17 Figure 8.16 The circuit for Example 8.11.

18 Figure 8.17 The circuit for Example 8.12.

19 Figure 8.18 Two integrating amplifiers connected in cascade.

20 Figure 8.19 The circuit for Example 8.13.

21 Figure 8.20 Cascaded integrating amplifiers with feedback resistors.

22 Figure 8.21 An LC natural response circuit.

23 TABLE 8.2 The Response of a Second-Order Circuit is Overdamped, Underdamped, or Critically Damped

24 TABLE In Determining the Natural Response of a Second-Order Circuit, We First Determine Whether it is Over-, Under-, or Critically Damped, and Then We Solve the Appropriate Equations

25 TABLE In Determining the Step Response of a Second-Order Circuit, We Apply the Appropriate Equations Depending on the Damping

26 Figure P8.11

27 Figure P8.14

28 Figure P8.27

29 Figure P8.30

30 Figure P8.31

31 Figure P8.33

32 Figure P8.35

33 Figure P8.37

34 Figure P8.38

35 Figure P8.41

36 Figure P8.42

37 Figure P8.45

38 Figure P8.46

39 Figure P8.47

40 Figure P8.48

41 Figure P8.49

42 Figure P8.52

43 Figure P8.53

44 Figure P8.54

45 Figure P8.55

46 Figure P8.62

47 Figure P8.63

48 Figure P8.65


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