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19 Set X Scale to Log. Set Y Axis Primary to Magnitude in Decibels, then click OK. The waveform now shows the response of the circuit over the specified frequency. This is similar to what would be seen on a bode plotter. Use the cursors to get measurements from the waveforms. 22. 22. AC Analysis showing Magnitude in Decibels and Frequency on a logarithmic scale. 20 Again, choose Wave > Scaling.... 21 Set Y Axis Secondary to Phase in Degrees, then click OK. The Y Axis is now split into 2 separate grids, the top grid showing magnitude in decibels and the bottom grid showing phase in degrees.

This is resistor R2. Placing +V and Ground Devices Now you’ll place a voltage source and change its settings. General/Sources/+V] (1) by pressing the 1 (number one) Hotkey. Place it above resistor R2. General/Sources/Ground] (0) by pressing the 0 (zero) Hotkey. Place it below the transistor. 3. 3. The Device Properties dialog box lets you change a wide range of device settings. Ground 4 Change the Label-Value field to read +15V. 5 Click once on the topmost Visible check box. This causes the +V name to be hidden on the schematic.

00mW) appears in the Operating Point chart. 13 Click the Stop button on the Toolbar to stop the simulation and return to editing mode. Creating a Simple RC Circuit Now let’s replace one of the resistors with a capacitor to create a simple RC circuit where you can see the charging of the capacitor. Transient Analysis begins its simulation in a stable DC condition where the capacitors are already charged. Since you want to see the capacitor charging from time zero, you must set the initial condition of the capacitor to 0V.

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