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E E 2315 Lecture 08 - Introduction to Operational Amplifiers.

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Presentation on theme: "E E 2315 Lecture 08 - Introduction to Operational Amplifiers."— Presentation transcript:

1 E E 2315 Lecture 08 - Introduction to Operational Amplifiers

2 Operational Amplifiers Ideal operational amplifiers are easily analyzed Assumptions for ideal operation are realistic Inexpensive commercial Op-Amps available as integrated circuits Practical applications for instrumentation, signal processing and control circuits

3  A741 Pinout

4 Op Amp Terminals

5 Op Amp Terminal Currents

6 Op Amp Terminal Voltages

7 Equivalent Circuit

8 Assumptions for Ideal Op Amp Open loop Gain, A    v p - v n  0 Then v p - v n  0  R i   R i    i p  0 and i n  0 Gain is linear up to the saturation voltage Saturation voltage equals power supply voltage

9 Open-Loop Characteristics

10 Inverting Amplifier and V n = 0 and i n = 0. Then KCL at node n yields:

11 Saturated Mode Inverting Amplifier with +V cc = 5 V and V cc = -5V. R f = 10 k  and R g = 1 k 

12 Non-Inverting Amplifier KCL at node n: v n = v p = v g

13 Summing Amplifier (1/2)

14 Summing Amplifier (2/2)

15 Difference Amplifier (1/3) KCL @ n:

16 Difference Amplifier (2/3) Voltage Divider @ p:

17 Difference Amplifier (3/3) Substitute: into: and simplify: If: Then:

18 Analyzing an OpAmp Circuit


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