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CIRCUIT ANALYSIS USING SPICE AND PSPICE
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Pulse Source A periodic pulse waveform which goes from V0 to V1 and back can be represented by PULSE V0 V1 delay risetime falltime duration period
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EXAMPLE 15.20 (a) Write the data statement for a pulse waveform which switches 10 times in one second between 1 V and 2 V, with a rise and fall time of 2 ms. The pulse stays at 2 V for 11 ms. The rst pulse starts at t 5 ms. (b) Using Probe, plot the waveform in (a). (a) The data statement is Vs 1 0 PULSE 1 2 5 m 2 m 2 m 11 m 100 m
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(b) The waveform is plotted as shown in Fig. 15-20.
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Fig. 15-20
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Sinusoidal Source The source starts at a constant initial value V0 . At t0 , the exponentially decaying sinusoidal component with frequency f , phase angle, starting amplitude V1 , and decay factor alpha is added to it. The syntax for the waveform is SIN V0 V1 f t0 alpha phase
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EXAMPLE 15.21 (a) Write the mathematical expression and data statement for a dc voltage source of 1 V to which a 100-Hz sine wave with zero phase is added at t 5 ms. The amplitude of the sine wave is 2 V and it decays to zero with a time constant of 10 ms. (b) Using Probe, plot Vs t .
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CIRCUIT ANALYSIS USING SPICE AND PSPICE
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(a) The decay factor is the inverse of the time constant and is equal to alpha 1=0:01 100. voltage is expressed by Vs t 1 2e 100 t 0:005 sin 628:32 t 0:005 u t 0:005 The data statement is Vs 1 0 SIN 1 2 100 5 m 100
For t > 0, the
(b) The waveform is plotted as shown in Fig. 15-21.
Fig. 15-21
EXAMPLE 15.22 Find the voltage across a 1-mF capacitor, with zero initial charge, which is connected to a voltage source through a 1-k
resistor as shown in the circuit in Fig. 15-22(a). The voltage source is described by  15:819 V for 0 < t < 1 ms Vs 10 V for t > 1 ms We use the exponential waveform to represent Vs . The le is 1:0E 6
Dead-beat Pulse-Step response of RC Vs 1 0 EXP( 10 15:819 0 1:0E 6 1:0E 3 R 1 2 1k C 2 0 1 uF .TRAN 1:0E 6 5:0E 3 UIC .PROBE .END
The graph of the capacitor voltage is shown in Fig. 15-22(b). During 0 < t < 1 ms, the transient response grows exponentially toward a dc steady-state value of 15.819 V. At t 1 ms, the response reaches the value of 10 V. Also at t 1 ms, the voltage source drops to 10 V. Since the source and capacitor voltages are equal, the current in the resistor becomes zero and the steady state is reached. The transient response lasts only 1 ms.
CIRCUIT ANALYSIS USING SPICE AND PSPICE
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Fig. 15-22
SUMMARY
In addition to the linear elements and sources used in the preceding sections, nonlinear devices, such as diodes (Dxx), junction eld-e ect transistors (Jxx), mosfets (Mxx), transmission lines (Txx), voltage controlled switches (Sxx), and current controlled switches (Wxx), may be included in the netlist. Sensitivity analysis is done using the .SENS statement. Fourier analysis is done using the .FOUR statement. These can be found in books or manuals for PSpice or Spice. The following summarizes the statements used in this chapter. Data Statements: R, L, C Mutual Inductance Subcircuit Call DC Voltage source DC Current source hnamei kxx Xxx Vxx Ixx hnodesi hind:ai hnamei hnodesi hnodesi hvaluei hinitial conditionsi hind:bi hcoupling coefficienti hconnection nodesi DC hvaluei DC hvaluei
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