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Choose as shown in figure 4 below: Figure C 4. Moreover you should name your file Lab Exercise. Problème d'activation de l'aide de Delphi 7 sous Windows 7 64 bits Le premier pas pour obtenir une de ces plaques de circuit imprimé ou PCB Printed Circuit Boards est la réalisation du design, pour utiliser les outils spécifiques qui existent dans le marché. Schematic: page 1 is the page where you draw the circuit.

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For the inverting adder, the output is the sum of the input voltages provided the resistances connected with the voltage sources are equal and the value of feedback resistance is in accordance the formula for gain. For the subtractor, the output the difference of the voltages applied at the non-inverting and the inverting terminals of the op-amp. This configuration is otherwise known as a differential amplifier diff-amp. For the integrator, the output is a function of inverse of product of the feedback capacitor and input resistance R1 and the integration of the input voltage with respect to time.

The output lags the input sine wave by. For the differentiator, the output is a function of product of the input capacitor C1 and input resistance R1 and the integration of the input voltage with respect to time.

For the inverting adder, the sign of the output voltage is reversed which means that the polarity is reversed. The sum of ratios of voltages of sources and the resistances connected to them equals the ratio of the output voltage to the feedback resistance. Mathematically, Thus, increasing the value of Rf shall result in a corresponding increase in the value of VO provided it does not exceed the value of the dc voltage provided to the op-amp. The sum of the input source voltages cannot exceed the value of the dc provided to the op-amp.

As the sum approaches the value of dc provided to the op-amp the output voltage becomes constant and it the modulus does not increase with increase in the input voltage. DC Sweep response of the output for inverting adder 4. For the non-inverting configuration, the sum of the input voltages is reflected as the output voltages only if the gain of the non-inverting configuration i.

This happens due to the fact that the transistors present inside the op-amp can only provide an output less than or equal to the dc voltage provided to them. DC Sweep response of the output for non-inverting adder 6. For the integrator circuit, the output is times the integration of the input voltage with respect to time. First, the Ground potential reference point is a circuit node or in the Place menu.

We want to Place this node in our circuit.


So, you may reach this by pointing to the Place menu. Now, click on Ground, and you will see the Ground dialog box. Click on the Add Library button and select the source library from the PSpice folder.

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After returning to the dialog box you should see the Libraries highlighted as shown. Then, click on OK and you will now find that there is a Ground symbol attached to your mouse Cursor. Place this by clicking with the left mouse button. Then, click with the right mouse button. If you are not careful here, you will accidentally create 3 two ground terminals one will have to be deleted by right clicking on the part and deleting it.

Now, we will add a conductor Wire to our circuit. Again, proceed to the Place menu, select Wire, and this will now create a drawing tool. You may create the wire by placing the mouse cursor on the terminal at the top of the Ground symbol and then holding down the left mouse button while dragging the mouse cursor upwards as you can see this is the standard Windows drawing paradigm so this will be familiar to you.

Now, we must start to add Resistor and Source components.

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To obtain and Place these parts we again navigate to the Place menu. But, this time, click on Part.


This will bring up a Place Part dialog box. At this stage, we need to add Parts Libraries to our list of choices. You will need to perform this only once, in the future, the Libraries will appear by default. Click on Add Libraries and select all the libraries listed in the PSpice folder. Now, we can add a Resistor to our circuit.


This will bring up a list of parts in the Part List box. Now, scroll down to R and click on this.


Click the OK button to select this and then you are ready to Place this part. Proceed to place this part as shown in Figure 4. To place a power source, follow the same steps as above, but remember to search for VDC in the Parts dialog box.


To change the value of a part, double click on the number representing the value, and enter the required magnitude in the value field. Draw the circuit show in Figure 5 in PSpice. Now, with our circuit complete, we are ready to start a Simulation. First, we must configure the Simulation tool.

Name your simulation and leave the inherit from field to none.

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When ready click Create. This will bring up the Simulation Settings Dialog Box. Now, the Analysis type we must select is Bias Point.

You can reach this by scrolling through the Analysis type selections and clicking on Bias Point. See Figure 6 To check the bias currents click on the I button in the tool bar.