By L. H. Fenical
An research of using PSpice for circuit research and layout. It covers community research utilizing either passive and energetic units, and discusses a mode for identifying the features of nonlinear magnetic cores for transformers and inductors.
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Extra info for PSpice: a tutorial
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5. To learn how to use PSpice to calculate the dc and ac input and output impedance of passive circuits. INTRODUCTION In Chapter 1 we investigated how to label nodes and print to the screen the information calculated for a circuit. This information was contained in the output file created by PSpice. Although this information is valuable, most of the time we will not be working with simple circuits. More information is needed than bias point calculations supply. In this chapter we investigate some of the functions available in PSpice that allow us to get a range of values for various inputs.
PRINT command is in the specific order that you list in the command. Thus this table will be in the following order: Vin VO) V(4) I(RG) V(3,4) For this netlist we are generating 41 values for each parameter in the table. 3 .. PLOT In most cases, tables of data are necessary. Tables, though, are usually not easy to interpret. A graph provides a picture of the circuit operation. Looking at large amounts of data in tables to determine the operation of a circuit is, at best, tedious. Although our imagination is good, it is difficult to see in our mind's eye how data in a table will look when they are graphed.
0KOHM This line completes the circuit and makes the current path to ground complete. The requirements for this line are the same as those for line 3. Node 2 now has two connections, as does node 0, which fulfills the requirement that there be no open circuits anywhere in the circuit. Also, we do not have to supply the voltage source with any resistance for this netlist. If we wish, we could consider R I to be the source resistance for the circuit. END This is how PSpice knows that any file has ended.