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Please use PSpice, do not use LTSpice. For the comment below, as I stated, you must use PSpice and not anything else. R3 0.22k +
Please use PSpice, do not use LTSpice.
For the comment below, as I stated, you must use PSpice and not anything else.
R3 0.22k + Vee Vbb R2 C Hov PM S01 = 330k or 147K Figure 1. Circuit configuration for Transistor output characteristic testing Part II: Transistor Input Characteristic Procedure: 1. Build the circuit model in PSpice as shown in Fig. 1 with R2 = 330 k12 and R3 = 0.22 k22. 2. Run a DC sweep on the voltage source Vbb to obtain the transistor input characteristics. Do a linear sweep from 0 to 10 V with a linear increment of 5 mV. Instruction: on the menu bar, Analysis => Setup => DC Sweep. Fill the form as Swept var. type => Voltage source; Sweep type => Linear; Name => Vbb; Start value => 0; End value => 10 V; Increment => 0.5 mV. 3. Generate the plot. Note: the X-axis should be Vbe instead of Vbb, and Y-axis should be Ib. R3 0.22k + Vee Vbb R2 C Hov PM S01 = 330k or 147K Figure 1. Circuit configuration for Transistor output characteristic testing Part II: Transistor Input Characteristic Procedure: 1. Build the circuit model in PSpice as shown in Fig. 1 with R2 = 330 k12 and R3 = 0.22 k22. 2. Run a DC sweep on the voltage source Vbb to obtain the transistor input characteristics. Do a linear sweep from 0 to 10 V with a linear increment of 5 mV. Instruction: on the menu bar, Analysis => Setup => DC Sweep. Fill the form as Swept var. type => Voltage source; Sweep type => Linear; Name => Vbb; Start value => 0; End value => 10 V; Increment => 0.5 mV. 3. Generate the plot. Note: the X-axis should be Vbe instead of Vbb, and Y-axis should be IbStep by Step Solution
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