[Solved]Q2n3906 Vb 91 81 Vout B2 B4 Given Operational Amplifier Circuit Architecture Design Operat Q37139860
Q2N3906 VB 91 81 Vout B2 B4 Given the Operational Amplifier circuit architecture above, design an operational amplifier (choose R1, R2, R3, R4, R5 and assume that β=300, all resistors must be greater than zero) such that the following specifications are met 1. Minimum open loop gain, Avo, 60dB (can be more, this is the minimum requirement) Power dissipation Poc . VCC-20V, VEE–20V 600mW Label the inverting and non-inverting inputs to the OPAMP Run a DC simulation and report the power dissipation and compare it with your hand analysis Report the input current Run an AC analysis (AC Sweep from 1㎐ to l GHz, log sweep) and determine the open loop Gain of the OPAMP. Compare this with your hand analysis and comment on the differences if any. Make a Bode plot of the Magnitude and phase of the gain. At which frequency is the dominant pole located? What is the Bandwidth of the amplifier? Note that this is the open loop bandwidth a. b. c. d. Show transcribed image text Q2N3906 VB 91 81 Vout B2 B4 Given the Operational Amplifier circuit architecture above, design an operational amplifier (choose R1, R2, R3, R4, R5 and assume that β=300, all resistors must be greater than zero) such that the following specifications are met 1. Minimum open loop gain, Avo, 60dB (can be more, this is the minimum requirement) Power dissipation Poc . VCC-20V, VEE–20V 600mW Label the inverting and non-inverting inputs to the OPAMP Run a DC simulation and report the power dissipation and compare it with your hand analysis Report the input current Run an AC analysis (AC Sweep from 1㎐ to l GHz, log sweep) and determine the open loop Gain of the OPAMP. Compare this with your hand analysis and comment on the differences if any. Make a Bode plot of the Magnitude and phase of the gain. At which frequency is the dominant pole located? What is the Bandwidth of the amplifier? Note that this is the open loop bandwidth a. b. c. d.
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